Piston.my

BEV

Lexus began its electrification journey back in 2005 with the RX400h hybrid, followed by hybrid variants of other models as well as the CT-200h, which was only available with a hybrid powertrain. Today, with the world premiere of the new RZ 450e, Toyota’s luxury brand begins a new era of battery-electric vehicles (BEVs) and the Lexus Electrified vision.

As the brand’s first BEV built on a dedicated platform, the RZ heralds the transition of Lexus into a BEV-centred brand. Besides a brand new design, it also offers advanced electrification technologies developed over many years of hybrid vehicle development.

2023 Lexus RZ 450e EV

New visual identity for BEVs
The exterior design presents a new visual identity as the familiar spindle grille is replaced by a minimalist BEV Spindle Body which focuses on aerodynamic efficiencies, optimized proportions, and style, versus serving the cooling and exhaust needs of an internal combustion engine. The rear features the spelled-out LEXUS logo as part of a clean and simple horizontal design that highlights the wider rear track while above is a distinct roof spoiler.

2023 Lexus RZ 450e EV

The interior is likewise minimalist, with an airy and luxurious environment that Lexus has long been known for, along with high-quality craftsmanship. Based on the tazuna concept, the cabin advances the human-centred philosophy of Lexus by welcoming occupants with intuitive controls oriented around the driver, ensuring maximum concentration on driving.

2023 Lexus RZ 450e EV

2023 Lexus RZ 450e EV

New steering wheel design
The application of shift-by-wire has resulted in a Lexus-first dial shift knob mounted on the centre console. More eye-catching will be the compact yoke-like steering wheel which is said to greatly reduce the driver’s workload by eliminating the need for hand-over-hand operation (eg in u-turns and parking). It also enabled the designers to lower placement of the instrument panel for better forward vision.

The RZ’s long wheelbase of 2850 mm within an overall body length of 4805 mm provides spacious rear-seat accommodation. An electronic ‘e-latch’ system is used to operate the doors while highly efficient Lexus-first electric radiant heaters, combined with a heat-pump system, ensure passenger ambient comfort. Three types of seat materials are used, including Ultrasuede, a refined material that uses 30% bio-based sustainable materials.

2023 Lexus RZ 450e EV

2023 Lexus RZ 450e EV

Overhead, some variants have a panoramic roof which is designed with heat shielding, thermal insulation and 99% UV protection. The glass also has a Lexus-first dimming function which, without a physical curtain, can instantly block light according to the needs of the occupants.

Different challenges for quietness
Quietness has been a hallmark of Lexus models since the very first one and besides generous use of high quality insulation, the engineers have also looked for the sources of noise and eliminated them. With the RZ powered by electric motors, new challenges were presented to the engineers who had to create a balance between sound generation and a very quiet interior space.

The underfloor battery functions as a sound barrier, the bonnet perimeter is sealed to eliminate noise caused by turbulent airflow. and acoustic glass suppresses other unwanted sounds. Additionally, the engineers have tuned sound frequencies to the vehicle’s speed and sound levels during dynamic actions such as acceleration.

2023 Lexus RZ 450e EV
New RZ 450e uses the e-TNGA platform specifically developed for BEVs.

Lexus Driving Signature
Regardless of the type of powertrain, the Lexus Driving Signature of impressive fundamental acceleration, steering and braking performance must be present. The electric powertrain system uses a front and rear e-axle, each equipped with a high-torque electric motor, transaxle and inverter in a compact unit. As each motor (front: 150 kW, rear: 80 kW) is directly connected to the wheels by a single driveshaft, power transmission is instantaneous.

The new DIRECT4 system takes the Lexus Driving Signature to an even higher level. It uses acceleration, cornering-speed and steering-angle information to automatically adjust front-rear torque delivery and braking force to all four wheels. The system uses a front-to-rear drive-force ratio between 60:40 and 40:60 for minimum vehicle pitch.

2023 Lexus RZ 450e EV

When the steering wheel is turned, drive force is biased to the front wheels between 50 and 75% for nimble response and excellent steering feel. When exiting a corner, torque distribution to the rear wheels is increased to between 50 and 80%, ensuring ample traction while controlling vehicle pitch.

Steer-by-wire
A Lexus-first steer-by-wire system contributes to enhanced vehicle manoeuvrability while blocking out unnecessary vibrations from the tyres and brakes. Optimum steering-gear ratios provide nimble and agile performance on winding roads and high-speed stability on highways.

Long experience in battery technology
Toyota’s experience in developing ever better hybrid electric technology has also included advancing battery technology. Some of the advanced technologies are the high-capacity 71.4 kWh lithium-ion battery packs, Lexus-first silicon carbide elements in the inverters and the incorporation of low-loss technologies to deliver an estimated single-charge cruising range of 450 kms.

2023 Lexus RZ 450e EV

Battery-control technology ensures a world-class battery capacity retention rate claimed to be at least 90% after 10 years. Contributing to the long life with even higher battery capacity is a timer charging function that avoids over-charging.

100% BEVs globally by 2035
Pricing has not been announced yet but exports of the RZ 450e, which will be made in Japan, will begin during the fourth quarter of 2022. In the years following till the end of the decade, Lexus will introduce entirely new BEVs covering every segment. By 2035, the brand expects to be selling only BEVs globally and fully contribute to the Toyota Group’s objective of carbon neutrality.

2023 Lexus RZ 450e EV

The third of Audi’s ‘sphere’ concept cars showing its idea of premium electric vehicles in future in three different segments has been unveiled today: the Audi urbansphere. Where the 2021 skysphere was a roadster GT concept and the grandsphere that followed was a luxury sedan, the urbansphere takes the form of an MPV.

2022 Audi urbansphere concept ev
urbansphere
2021 Audi Skysphere concept
skysphere
2021 Audi grandsphere concept
grandsphere

‘Co-created’ with Chinese customers
Designed by teams in China and Germany, the urbansphere has been conceived with Chinese customers involvement as well. For the first time, potential customers in China could also take part in the development process, contributing their own perspectives as part of a process known as ‘co-creation’. “In order to meet the demands of our Chinese customers, Audi’s design studios in Beijing and Ingolstadt worked together closely to jointly develop the Audi urbansphere concept car,” said Markus Duesmann, Chairman of the Audi Board of Management and responsible for the Chinese market.

It is the largest model in the sphere family and even of all Audi concept cars to date, measuring 5510 mm in length, 2010 mm in width and 1780 mm tall. The silhouette of the body features traditional Audi shapes and elements, combined to create a new composition featuring the signature Singleframe. The implied wedge shape of the vehicle body is emphasized by the large, flat windscreen.

2022 Audi urbansphere concept ev

At the front, the Audi Singleframe is shaped like a large octagon. Even though the grille has lost its original function as an air intake because this is an electric vehicle, it still remains prominent as an unmistakable signature of the brand. The digital light surface lies behind a slightly tinted, transparent visor that covers a large area of the front.

The 3-dimensional light structure itself is arranged in dynamically condensed pixel areas. The upper and lower edges of the Singleframe are still made of aluminium and the vertical connections are formed by LEDs as part of the light surface. The lighting units to the right and left of the Singleframe look narrow, like focused eyes.

2022 Audi urbansphere concept ev

These digital lighting units, known as ‘Audi Eyes’, echo the brand’s four rings as they enlarge and isolate the intersection of two rings to form a pupil – a new, unmistakable digital light signature. The illuminated surfaces – and therefore the expression of the ‘eyes’ – can be adapted to the traffic situation, environment, or even the mood of the passengers. As a daytime running light, the gaze can be focused or open, and the ‘iris’ can be narrow or wide. A digitally created ‘eyebrow’ also functions as a dynamic turn signal when required.

MPV of the future?
Though it may be considered an MPV by today’s definition, Audi feels that the urbansphere defies classification into conventional vehicle categories. The monolithic design shares commonalities with the other two concept cars, as do the sculpted, soft shape of the wheelarches. Despite the stately proportions, elegance, dynamism, and an organic design language should come to mind.

2022 Audi urbansphere concept ev

‘Third living space’
The 3.4-metre long wheelbase allows a spacious interior designed as a lounge on wheels, serving as a third living space during the time spent on the roads of densely populated cities like Beijing. It can also have a role as a mobile office in which occupants can have meetings or work while moving around. Four individual seats in two rows offer first-class comfort and the seating can also cater to passengers’ changing social needs in a variety of ways.

The interior of the urbansphere is not subject to the dimensional constraints nor limited by the physics of driving. The interior designers had what is the largest interior space in an Audi vehicle to date to prioritize occupant comfort. To this end, it can be a mobile interactive space that provides a gateway to a wider digital ecosystem.

2022 Audi urbansphere concept ev

“To make e-mobility even more attractive, we think about it holistically and from the customer’s needs,” said Duesmann. “More than ever before, it is not just the product that is decisive, but the entire ecosystem. That is why Audi is creating a comprehensive ecosystem with services for the entire car. The Audi urbansphere concept offers everyone onboard a wide range of options to use that freedom to provide a highly-personalized in-car experience: communication or relaxation, work or withdrawal into a private sphere as desired. As such, it transforms from being strictly an automobile into an ‘experience device’.“

Customized infotainment offerings are available, such as the seamless integration of onboard music and video streaming services. There is a large-format and transparent OLED screen that pivots vertically from the roof area into the zone between the rows of seats. Using this ‘cinema screen’, which occupies the entire width of the interior, the two passengers in the back row can take part in a video conference together or watch a movie.

2022 Audi urbansphere concept ev

Wellness zone, suggested by Chinese customers

The urbansphere also qualifies as a wellness zone, thanks to digital options that emerged in no small part through input from the co-creation process with Chinese customers. Stress detection is a prime example – this adaptive program uses facial scans and voice analysis to determine how passengers are feeling and offers personalized suggestions for relaxation, for example with a meditation app that can be used via the personal screen and the private sound zone in the headrests.

2022 Audi urbansphere concept ev

2022 Audi urbansphere concept ev

Many of the materials in the interior, such as the hornbeam veneers, come from sustainable sources. This choice of material makes it possible to use wood that has grown close to the site, and the entire trunk can be utilized. No chemicals are used during the manufacturing process.

Audi Light Umbrella
As a special tribute to China, the designers provide a luminous accessory that passengers can take with them when they leave the urbansphere – the Audi Light Umbrella. This self-illuminating umbrella inspired by traditional Chinese umbrellas acts as a protective companion and multifunctional light source. The inner skin is made of reflective material, so the entire surface acts as a glare-free lighting unit.

2022 Audi urbansphere concept ev

Because the urbansphere has level 4 autonomous technology which frees its occupants of the need to be directly involved in its operation, it can pick up passengers at their home or office and independently takes care of finding a parking space and charging the battery.

Premium Platform Electric
The urbansphere is a concept and design study so much of what it shows are proposals for the future. However, the Premium Platform Electric or PPE is something that is already in use by Audi and Porsche. It has been specifically designed for battery-electric drive systems and the is a battery module between the axles. Audi has succeeded in achieving a flat layout for the battery module by using almost the entire base of the vehicle between the axles.

The battery module can store around 120 kWh of energy to power 2 electric motors capable of delivering a total system output of 295 kW/690 Nm. There is one electric motor on each of the front and rear axles which, by means of electronic coordination, implements the permanently available all-wheel drive as required. The motor on the front axle can be deactivated as required in order to reduce friction and thus energy consumption when coasting.

The powertrain has 800V charging technology which will make it possible for recharging with up to 270 kW at fast-charging stations in the shortest possible time. This will enable charging times to approach those of a conventional stop to refuel a car powered by a combustion engine. Just 10 minutes would be enough to charge the battery to a level sufficient to cover more than 300 kms. Audi expects that a fully charge battery module would be able to provide a range of up to 750 kms, even when used for more energy-intensive city and short-distance trips.

“These concept vehicles embody our brand strategy. They show how we imagine the near future of premium mobility,” said Henrik Wenders, Senior Vice-President of the Audi brand. For him, the future is a design space to offer people new experiences in ‘spheres’ during their journey.

Over the next 10 years, Honda will allocate approximately 5 trillion yen in the area of electrification and software technologies to further accelerate its electrification, which is approximately 62% of the company’s overall R&D expenses budgeted for the same. This expenditure will enable it to have up to 30 EV models globally by 2030 with production volumes of more than 2 million units annually. This huge investment will help Honda achieve carbon neutrality for all products and corporate activities by 2050.

The strong focus on EVs – and presumably, Honda is referring to battery electric vehicles (BEVs) – may suggest that the carmaker will be decreasing development of internal combustion engines (ICE) and hybrid vehicles (HEVs). In fact, last year, it announced the intention to stop producing and selling new ICE vehicles, including hybrids, worldwide by 2040.

However, like what a number of major carmakers are saying, hurried adoption of BEVs is not a practical approach. Due to regional differences such as the level of customer acceptance, affordability, readiness of infrastructure and economic conditions, a singular approach to switching to BEVs globally is not going to work.

Honda will therefore be working on rapid transitioning to BEVs in markets and regions such as the USA, Europe, China and Japan while continuing with a more realistic solution for other areas. In those major markets for electrification, the ratio of BEVs and fuel cell electric vehicles (FCEVs) will be increased at a faster rate. In relation to overall unit sales, these zero emission vehicles will account for 40% of volume by 2030, 80% by 2035, and 100% by 2040.

In some markets like Malaysia, Honda also refers to its hybrid technology as e:HEV technology.

And even though North America is one of the regions that is part of the main electrification plan, Honda has still allocated R&D resources to develop new hybrid models for the near-term. This is to increase HEV volume of core models such as the CR-V, Accord and Civic which are produced there. Honda currently sells 4 HEV models in North America. However, Insight production will end in June to start production of the new CR-V Hybrid this year, followed by the Accord Hybrid, which will eventually make up 50% of the sales mix of each model.

2021 Honda CR-V Hybrid

“We need to take into account multiple factors, such as the living environment and the penetration rate of renewable energy, rather than simply switching to electric vehicles,” said Toshihiro Mibe, Honda’s CEO. “We are ending conventional engines but we will still focus on hybrids, and it will be our strength in 2030 or even in 2035.”

Honda, along with Toyota, were the first brands to introduce HEVs and while the Prius was the first into the market, Honda’s first generation of Insight arrived in the USA 7 months before the Toyota HEV. Following the futuristic looking Insight was the Civic Hybrid in 2002 and then the Accord Hybrid.

Honda’s first model with hybrid electric technology was the Insight, which made its debut in Japan in 1999.
The CR-Z hybrid sportscar was sold between 2010 and 2016 but due to diminishing sales of coupes, Honda didn’t follow up with a second generation.

Honda continued to improve its hybrid technology (which it also refers to as e:HEV technology in some markets) as well as try to bring costs down and developed better hybrid powertrains for the next generations of the models. It also came out with a HEV sportscar, the CR-Z, in 2010 but as sales of coupes slowed down, the model line did not continue into a second generation.

So HEVs still have a future, more so now that they have moved from being of interest to early adopters to become more mainstream in the marketplace. While most HEV buyers would be aware that their car is powered by a petrol engine as well as an electric motor, the fact that a HEV needs no recharging (a plug-in hybrid or PHEV does) makes the technology ‘invisible’. It’s like turbochargers; in the 1970s, they were distinct features in high-performance engines but today, their presence is taken for granted in the new generation of downsized engines.

In Malaysia, Honda has been selling hybrid models since 2004 and assembling some models locally since 2012, starting with the Jazz Hybrid.

Honda’s continued attention to HEVs will also be beneficial in other markets where BEV adoption may be slow. HEVs can still help in a small way on the climate change issue as they generate lower carbon dioxide gases which have been identified as a major cause of global warming.

America has always had an attractive car market which was once the largest in the world. Though overtaken by China in 2009, the US market is still huge and has averaged 17 million units annually over the past few years. Many brands are present in the market and competition is tough, besides the fact that emission and safety regulations are also stringent.

Nevertheless, Vietnam’s Vinfast intends to enter the market and its ambitious plans are not only to sell SUVs there but also make them in the country. After looking at incentives offered by various states, it settled on North Carolina to build its factory with an initial investment of US$2 billion. It is the state’s first vehicle manufacturing plant and the largest economic development announcement in North Carolina’s history. VinFast’s project is estimated to grow the state’s economy by at least US$71.59 billion over the next 32 years,

The factory, on an 800-hectare site, will have an annual capacity of 150,000 vehicles and start rolling them out from the second half of 2024. Besides SUVs, the factory will also make EV battery packs and electric buses.

Vinfast’s first factory in Haiphong, Hanoi.

“Having a production facility right in the market will help VinFast to proactively manage its supply chain, maintain stabilized prices and shorten product supply time, making VinFast’s EVs more accessible to customers, contributing to the realization of local environmental improvement goals,” said Le Thi Thu Thuy, VinFast Global CEO and Vice Chair of the Vingroup. The Vingroup was founded by Pham Nhat Vuong, Vietnam’s first billionaire and its richest person.

The US factory will be Vinfast’s third production site following the first one in Haiphong, Vietnam. It also acquired a GM factory in Hanoi as well as GM’s proving grounds in Australia. However, it decided to later sell off the proving grounds.

For its US business, Vinfast plans to spend $200+ million for a headquarters in Los Angeles and set up a network of more than 60 outlets with aftersales centres this year.

The 5-year old carmaker currently has 2 fully electric SUVs, the VF8 and VF9 (previously known as VF e35 and VF e36), which were styled by Pininfarina. The smaller VF8 has 2-wheel drive and all-wheel drive with one or two electric motors and a 90 kWh battery claimed to give 500 kms of range. The larger VF9 has three rows of seats and dual motors for all wheel drive. The battery pack has a capacity of 106 kWh which is claimed to be good for around 482 kms of cruising range.

Like other Asian brands that entered the US market, it’s a gamble that Vinfast is taking, especially as it is so new. However, its lack of reputation may also work as people will not have preconceived notions about the brand and may assume that being Asian, it will have the sort of quality and reliability for which Japanese products have long been known. Being ‘Made-in-America’ may also be helpful in gaining acceptance but ultimately, Vinfast will still have to fight for its place in the market against other established brands.

With electric vehicles (EVs) constantly in the news these days, you will by now be familiar with the main selling points: zero emissions and lower maintenance costs. Apart from governmental pressures, the industry is doing its best to persuade motorists to switch from vehicles with internal combustion engines (ICE) to EVs as quickly as possible to build up the numbers and reach economies of scale that can bring production costs down.

Understanding that driving range and price are key factors in consumers’ minds when considering an EV, they are working hard on those factors which will require greater manufacturing innovation and efficiencies across the sector. But the angle of zero emissions from EVs being able to address climate change and preserve the environment is not applicable everywhere. In the more economically advanced countries, ‘saving the planet’ may be something people can also think about (and do something about) but for much of the world, saving themselves first is a higher priority than changing to a more expensive EV in place of their still-functioning ICE vehicle.

“The reality is that, despite EVs eliminating tailpipe emissions, they also produce a ‘long tailpipe’ of increased demand for electricity and energy-intensive materials,” notes a report by global technology company Hexagon. The report, based on original research conducted by Wards Intelligence, says that many of today’s EVs have been designed for short-term well-to-wheel benefits without considering their ‘whole-lifecycle’ environmental footprint.

For motorists, the perspective is only from tank (the fuel tank or battery pack) to wheel whereas a true examination of the benefits of EVs must consider the much bigger picture. While EVs can certainly give the benefits which we are being told about, the cost of making them and running them is a side of the story which consumers don’t ask or know about. But it is one which is generating debate and which suggests that EVs are not necessarily the best solution to addressing climate change.

Bigger picture than just well-to-wheel
An EV can certainly beat an ICE vehicle on emissions while in use but what about over its entire life-cycle – starting with making it and also the resources to give it power? While the ‘well-to-wheel’ analysis typically looks at all emissions related to fuel production, processing, distribution, and use when comparing EVs to ICE vehicles, it is also necessary to cover an even wider scope which includes manufacturing of EVs and end of life.

This is where things start to look different and while studies have found that the amount of carbon dioxide (CO2) in the production and distribution of ICE vehicles and EVs is not significantly different, the battery packs needed in EVs tip the scales.

EVs may have less parts than ICE vehicles but the numerous electronic systems are made from rare earth elements. Making each battery pack (below) also generates a lot of carbon dioxide.

Apart from requiring depletable rare metals, it is estimated that up to 150 kgs of CO2 are released for every 1 kiloWatt hour (kWh) of battery capacity. To provide an EV with 500 kms of range would require a battery that currently has at least 60 kWh of storage capacity. To make such a battery pack would mean that another 9 tonnes of CO2 would be added to manufacturing the vehicle and this is a negative impact from the perspective of environment-friendliness (compared to making an ICE vehicle).

‘Sustainability’ is also touted as another selling point of EVs but if so many of the electricity-generating plants are coal-powered, would it not then be a case of shifting demand of one depleting fossil fuel (oil) to another (coal)? After all, both fuels are the product of dead plants and dinosaurs and other organic stuff that was buried up to a billion years ago. According to a group at Stanford University, the world’s coal reserves will last only till 2090, oil reserves will run out by 2052, and  natural gas by 2060. And this is based on current consumption; if demand for electricity starts to rise rapidly with more EVS in use, then the depletion will naturally accelerate.

Half of the planet’s coal-powered electricity plants are in China but in other countries, there are also other types of environment-friendly power generators like wind turbines (below).

Of course, not all sources of electricity use coal or oil. Studies show that 36.7% of global electricity production comes from nuclear or renewable energy (solar, wind, hydropower, wind and tidal and some biomass), with the remaining two-thirds from fossil fuels. But of these two-thirds, 54% of the electricity generators are in China alone where the world’s biggest car market is.

Less parts, less complexity but…
EVs are also described as being ‘less complex’ as they have less parts than ICE vehicles. They are essentially computers with electric motors and wheels. But a closer examination will show that all those electronic parts – which are in greater numbers than in ICE vehicles – are composed of more ‘high-end’ materials – lithium, cobalt and rare earth elements which need to be mined. The rare earth elements have to be extracted and waste from the processing methods can be radioactive water, toxic fluorine, and acids.

Estimates of lifetime emissions from EVs depend not just on mileage travelled in the vehicle’s lifetime but must also take into account whether the battery pack will last equally long. Current lithium-ion technology for battery packs has degradation over time, and after hundreds of charge/use cycles, become less effective. Like the battery in mobilephones, the lifespan will vary but studies have found that it takes at least 1,000 full cycles before the battery pack starts to show any degradation.

Nissan is one of the carmakers that has started a project to recycle end-of-life battery packs which can still serve as energy storage units in other applications.

Eventually, it will probably be that entire EVs – including their battery packs – will have a specific lifecycle so a new battery pack is unnecessary. Everything can be recycled and the batteries might even serve a further purpose for other equipment. The latter process already exists in some places through projects initiated by manufacturers.

The true test of success for electric vehicles is therefore to deliver on their broader promise and create a commercially successful automotive industry that can also be environmentally sustainable. The Hexagon survey demonstrates that manufacturers are aware of the need to go beyond eliminating end-user emissions and improve the ‘whole-lifecycle’ sustainability of EVs. Carmakers and suppliers also increasingly recognize the need to think beyond the vehicles and instead build car parts for a second life and a circular economy.

This will require the industry to compress and connect manufacturing processes together so that sustainability is ‘baked in’ to a vehicle’s DNA at design stage and every part is conceived and created to support both a sustainable car and economy.

EV assembly at the Polestar factory in China.

The automotive industry is therefore caught between bottom-up consumer expectations and top-down political pressure for more sustainable EVs. “Living up to the lofty vision of an ethical and environmentally-friendly automotive industry means moving beyond simply eliminating tailpipe emissions to creating lighter, more sustainable materials and manufacturing methods. Emerging smart manufacturing approaches are vital to bring these innovations to market within demanding deadlines, while remaining profitable,” said Paolo Guglielmini, President of Hexagon’s Manufacturing Intelligence division.

So should you buy an EV?
The ‘dark side’ of EVs aside, the change will come about and even if you presently have the choice of staying with an ICE vehicle, your children probably won’t. EVs are the future and ICE vehicles will either be banned from use in some countries or their sale will be stopped so that they eventually diminish in numbers (which could take decades in places like Malaysia). Right now, for Malaysians, it would be a good time to buy an EV if you can afford one because of the duty-exemption. This exemption won’t be around forever although there may be other incentives in future though not as great as this one.

There are definitely advantages to owning and using an EV compared to an ICE vehicle. Running and maintenance costs are less but you will incur an extra initial expenditure setting up a charging point at home (if you can do so). The earlier disincentives like limited range are steadily being erased as battery technology improves and the same goes for recharging facilities. The network is steadily growing and with increasing numbers of EVs on the roads, there will be more justification to invest in expanding the network.

Like computers and mobilephones, the technology keeps advancing each year. As we said earlier, there is a race on by the industry to improve range and reduce costs and so performance will get better and as volumes rise, production costs can go down so EVs will become cheaper. In this case then, perhaps it may be a better idea to consider the subscription approach instead of the outright purchase and ownership model that has been the norm for decades. This will help you to remain current with the latest technologies by changing cars regularly without concerns about depreciation and disposal.

‘Range anxiety’ was something which concerned many who were considering a battery electric vehicle (BEV). The earlier models could go just a 100+ kms on a fully charged battery pack but the distance gradually increased as battery technology advanced. As battery packs were made more energy-dense to store more electricity, the vehicle could go further and further before recharging was needed. Today, the average is around 350 kms but just as with the consumption of fuel by combustion engines, range is affected by driving conditions and driving style.

Mercedes-Benz VISION EQXX

But range anxiety is now less concerning not only as cruising distances increase but the network of recharging stations is also growing. So it is possible to ‘refill’ along the way on a long journey and now, it is more a matter of how long that takes – and manufacturers are also reducing the time.

Battery technology has come a long way in the past decade and if we take the Nissan LEAF as an example, the range with the first generation launched in 2010 was under 200 kms; today, the latest generation is claimed to be able to go up to 385 kms.

Mercedes-Benz VISION EQXX

Breaking through technological barriers
In future, the distance will be even greater and Mercedes-Benz has proven that it is possible to go up to 1,000 kms on a single charge. This was achieved with the VISION EQXX technology demonstrator which the company is using to test technologies under development. This software-defined research prototype is part of a far-reaching technology programme that combines the latest digital technology with the brand’s pioneering spirit, the agility of a start-up and the speed of Formula 1. The mission in developing the VISION EQXX was to break through technological barriers across the board.

“The VISION EQXX is the result of a comprehensive programme that provides a blueprint for the future of automotive engineering. Many of the innovative developments are already being integrated into production, some of them in the next generation of modular architecture for compact and midsize Mercedes‑Benz vehicles. And the journey continues. With the VISION EQXX, we will keep testing the limits of what’s possible,” said Markus Schafer, Member of the Board of Management of Mercedes-Benz Group AG, Chief Technology Officer responsible for Development and Purchasing.

Mercedes-Benz VISION EQXX

From Germany to the south of France
To show what is electrically ‘feasible’, the research vehicle completed a 1-day road trip across several European borders: from Germany across the Swiss Alps to Switzerland, on to Italy, past Milan and finally to its destination, the port town of Cassis in the south of France. The journey started in cold and rainy conditions and proceeded at regular road speeds, including prolonged fast-lane cruising at up to 140 km/h on the German autobahn and near the speed limits elsewhere.

The route profile set and the weather conditions presented the VISION EQXX with a wide variety of challenges. Different various sections of the route helped document the effect of the many efficiency measures. These measures include tyres specially developed by Bridgestone with extremely low rolling-resistance.

Mercedes-Benz VISION EQXX

Throughout the journey of 11 hours and 32 minutes, it was not recharged and covered 1,008 kms in everyday traffic – with the battery’s state of charge on arrival shown as being around 15%. That was estimated to be good for another 140 kms or so, and the average consumption was a record-breaking low of 8.7 kWh per 100 kms.

Power from sunshine
However, Mercedes-Benz reveals that although it did not receive conventional recharging, it still received electricity from an external source – the sun. On its roof are 117 solar cells to collect sunshine which is converted to electricity and fed to the 12V battery. This battery does not power the electric motors but supplies power to auxiliary areas such as the navigation system. This this removes the demand from the high-voltage battery pack. The solar panel feature is said to increase  the range by more than 2%, which adds up to 25 kms on a journey of over 1,000 kms.

Mercedes-Benz VISION EQXX

Like most other BEVs, the VISION EQXX also uses recuperation – the recovery of braking energy – to provide some energy to the battery pack while on the move. The recuperation effect occurs on any type of gradient and during every braking manoeuvre.

The VISION EQXX was driven in real-life conditions and to have independent proof, the charging socket was sealed, and the car accompanied by a representative from TUV Sud, the independent German certification body.

Mercedes-Benz VISION EQXX

Technological advancements accelerating
In the early era of the PC (personal computer) in the 1980s, the processing power doubled every two years, but this has accelerated as time passed. It might be the same for battery and EV technology which is continuously advancing each year so from the 500 kms possible in some models today, the increases might be greater and who knows, by the next decade, the 1000-km range which is amazing today might be possible in BEVs for sale to the public.

Mercedes-Benz VISION EQXX

Continuing its collection of awards, the Hyundai IONIQ 5 has been voted as the 2022 World Car of the Year, besides also winning the 2022 World Electric Vehicle of the Year and the 2022 World Car Design of the Year awards in the same event. The battery electric vehicle (BEV), which entered the market last year, was chosen from an initial list of 28 candidates, and then from 3 finalists. This is the second consecutive year an EV has won the title and the fourth EV in the event’s history.

To be eligible for the overall title, vehicles must be produced in a volume of least 10,000 units per year, priced below the luxury level in their primary markets, and on sale in at least 2 major markets on at least 2 continents at some time between January 1, 2021 and March 30, 2022.

The jury of consisted of 102 automotive journalists from 33 countries who began assessing candidates from August 19, 2021. The preliminary assessments ended with 3 finalists being selected which reflected the industry trend towards electric vehicles: besides the Hyundai, were the Ford Mustang Mach-E and Kia EV6.

The Ford Mustang Mach-E and Kia EV 6 were the other two finalists from 28 candidates.

For the World Car Design of the Year award, a design panel consisting of 6 highly respected design experts was asked to first review each candidate, and they then established a shortlist of recommendations for the jurors’ final vote in February.

The IONIQ 5 received a total of 815 points covering Occupant Environment, Performance, Value, Safety, Environment, Market Significance, Emotional Appeal and Innovation. The EV6, which is the Kia version of the same car, scored 808 points, while the Mustang received 773 points. A closer look at the scores shows that the winner could have been either one as the Kia also scored higher points in some areas such as market significance and performance. But whichever won, it was still a victory for the Hyundai Motor Group which both brands are in. In addition, the 2022 World Car Person of the Year was Luc Donckerwolke, Executive Vice-President, Chief Creative Officer, Hyundai Motor Group.

An additional award for the Hyundai Motor Group’s – Luc Donckerwolke was also chosen as the 2022 World Car Person of the Year.

“We are truly honoured to receive these prestigious awards, which recognize the talent and hard work of all our people and business partners at Hyundai Motor Company. Our vision is to enable Progress for Humanity, and this endorsement of our approach will serve to embolden our commitment to make this vision a reality,” said Jaehoon Chang, President & CEO of Hyundai Motor Company.

“IONIQ 5 represents a pivotal achievement for us as we pioneer a new generation of smart mobility solutions with its innovative E-GMP platform technologies, exceptional performance, and disruptive approach to design and space. Our game-changing EV has made a strong impact on increasingly eco-conscious and demanding consumers around the world, and its success supports the acceleration of electrification of the automotive industry. The pace of change at Hyundai will continue unabated through the rest of 2022 as we will soon be adding to our award-winning IONIQ range,” he added.

The winners of the other categories were as follow:
World Luxury Car: Mercedes-Benz EQS
World Performance Car: Audi e-tron GT
World Urban Car: Toyota Yaris Cross
World Car Design of the Year: Hyundai IONIQ 5
World Electric Vehicle of the Year: Hyundai IONIQ 5

PREVIOUS OVERALL AWARD WINNERS
2021 – Volkswagen ID.4
2020 – Kia Telluride
2019 – Jaguar I-PACE
2018 – Volvo XC60
2017 – Jaguar F-PACE
2016 – Mazda MX-5
2015 – Mercedes-Benz C-Class
2014 – Audi A3
2013 – Volkswagen Golf
2012 – Volkswagen UP!
2011 – Nissan LEAF
2010 – Volkswagen Polo
2009 – Volkswagen Golf 7
2008 – Mazda2
2007 – Lexus LS460
2006 – BMW 3-Series
2005 – Audi A6

Every major global carmaker, especially those in Europe, have announced electrification plans that will see their brand going fully electric or having a mix of hybrid electric and battery electric (BEV) models. This is an industry-wide move to address climate change and environmental issues, and the auto industry is responding by switching to vehicles with electrified powertrains that generate very low or zero emissions. There is an urgency so the end of this decade is set as the target for completing the changes.

Maserati will be the first among the Italian luxury car brands to produce full-electric models, with the first one to be launched in 2023 and an aim to be the first to complete its electric line-up by 2025. All the fully electric models will be developed, engineered and entirely produced in Italy and form the new Folgore range (‘folgore‘ is Italian for ‘lightning’).

A prototype of the Gran Turismo Folgore was shown at the recent Formula e-Prix in Rome, Italy. It was driven by Carlos Tavares, CEO of Stellantis, which Maserati is part of.

The first model will be the Gran Turismo Folgore, a coupe which the company says will have ‘cutting-edge technical solutions, superb performance, comfort and elegance’. Technical details are not revealed yet although it is believed that the powertrain will have 3 motors and a total output of up to 1,200 ps.

Maserati has given assurance that while exhaust emissions will fall to zero, one iconic element of the cars with the Trident will still be present: the distinctive growl. Of course, the equivalent for electric motors would usually be a high-pitched whine so it will be interesting to see how the engineers incorporate that familiar adrenalin-pulsing roar.

The Grecale Folgore.

Following the Gran Turismo Folgore will be the Grecale Folgore, which is a fully electric variant of the second Maserati SUV model. It will have a 105-kW/h battery pack using 400V technology and two motors which will generate a total of up to 800 Nm of torque. This is also scheduled for launch towards the end of 2023 so it might go on sale only in 2024.

For 2025 or 2026, the next generation of the Quattroporte sedan and Levante SUV will make their debut and are likely to be only available with electric powertrains. By then, as mentioned earlier, Maserati will have every model in its range electrified. The other target for the end of the decade would be when it no longer has a combustion engine powertrain in any of its models.

Next year, Maserati will partner the ROKIT Venturi team to participate in the Formula E World Championship for all-electric single-seaters.

As part of its journey onwards to electrification, Maserati will also make its debut in the next season of Formula E (season 9) next year. It will be the first Italian brand to enter Formula E and its partner will be the ROKiT Venturi Racing team, already successfully running in the series. Season 9 will see a new generation of racing cars that have a range of innovations in terms of design, production and technology.

It wasn’t surprising when Nissan was the first Japanese carmaker to become involved in Formula E which is now a world championship. The carmaker became dominant in the electric vehicle (EV) segment after introducing the world’s first mass-produced EV, the LEAF in 2010, so it was natural for it to participate in the all-electric series.

That was back in 2018 when the company partnered the e.dams team and started off in the fifth season of the series. It drew on its experience developing EVs to develop a new powertrain package for its Formula E car, including a new electric motor, inverter, gearbox and software.

The Nissan e.dams all-electric racing car in its first season of Formula E.

Following its entry in the fifth season, the team has been among the regulars each season and in March 2021, Nissan confirmed further commitment to Formula E. Now, the company is going on step further by acquiring the French-based e.dams team which will finish off this season with the Gen2 car and then start the next season with the new Gen3 racing car. Nissan will be present until the end of Season 12 (2025/26).

“It’s taken years of planning and months of intense preparation, but we’re now ready to hit the track for our Formula E race debut,” said Michael Carcamo, Nissan’s Global Motorsports Director. “We’ve drawn on our experience as a global leader in electric vehicles for the road to help develop our Formula E powertrain – and what we now learn on the track will go back the other way, benefiting Nissan’s electric-car customers.”

Nissan’s participation in Formula E supports the company’s long-term commitment to electrification and sustainability laid out in Nissan’s ‘Ambition 2030’ plan. “These are exciting times for all of us at Nissan, our fans and customers everywhere,” said Ashwani Gupta, Nissan’s Chief Operating Officer. “We have been on the grid for over 85 years, and our desire to win continuously accelerates us forward. We learn as we race, and the relentless pace of technological progression that drives the Formula E championship will provide us with many opportunities to inform and develop even better cars for customers.

As part of its goal to achieve carbon neutrality across its operations and the life cycle of its products by 2050, Nissan intends to electrify all its new vehicles by the early 2030s in key markets. The Japanese carmaker aims to bring its expertise in transferring knowledge and technology between the Formula E racetrack and road for better electric vehicles for customers.

“I am delighted that Nissan is taking over e.dams and today we are thinking of Jean-Paul Driot who, together with Nissan, had the vision for the team and helped to develop our partnership,” said Tommaso Volpe, who will become the Managing Director of the Nissan Formula E team. “Since his passing in 2019, Olivier and Gregory Driot took over and made sure the legacy of their father’s success would continue. It has been a pleasure working together and I would like to thank them for their commitment and support.

“We are very proud to hand over the e.dams team to such a committed and innovative company as Nissan. We’ve had several open discussions in recent months with Nissan and we decided that it was the right time for them to take the reins and continue the legacy of our family and secure the long-term future of the employees,” said the Driot brothers.

 

Jaguar TCS Racing’s Mitch Evans claimed back-to-back victories in the Formula E Rome E-Prix double-header of races with a dramatic win in Round 5 after a first place finish in Round 4 the day before. The Kiwi driver led Poleman Jean-Eric Vergne (DS TECHEETAH) in second and Envision Racing’s Robin Frijns.

DS TECHEETAH’s Vergne had pulled away from pole position while his former teammate and TAG Heuer Porsche Formula E Team driver Andre Lotterer passed Avalanche Andretti’s Jake Dennis into second. By the top of the hill and Turn 7, Dennis had reclaimed second, dropping Lotterer back down to third.

With a collision between Mahindra Racing’s Alex Sims and Nissan e.dams’ Max Gunther, the German driver retired to the pits, ending his race in the first 5 minutes. Despite setting the fastest lap in Qualifying earlier in the day, Dennis started losing ground after Lotterer attacked at Turn 7, reclaiming second. Shortly after, Evans managed to slip past into third.

Squeezing into Turn 4 side by side, standings leader and ROKiT Venturi Racing driver Edoardo Mortara tried to pass DS TECHEETAH’s Antonio Felix da Costa, with the Portuguese racer closing the door on the Swiss, damaging the front wing of his car. Mortara then clipped the wall on Turn 19 and coasted to safety, retiring from the race with a suspected driveshaft failure.

Italian driver Antionio Giovinazzi had lots of support from the crowd but the DRAGON/PENSKE AUTOSPORT drivers’ car came to a stop on the track between Turn 8 and 9, which brought out the Porsche Taycan Safety Car. When the Safety Car was brought in and the racing recommenced, 24 minutes remained. Vergne led Evans for less than a lap before the opportunist Evans overtook into Turn 4 to take the lead.

Dennis continued to slip down the order to seventh as the race passed the halfway mark. At the front, Evans continued to lead Vergne, with Porsche’s Lotterer in second and Frijns in third. Enjoying the benefit of the extra power gained through his 8-minute ATTACK MODE, Frijns made his way up the order and took race leader Evans up the hill on Turn 7.

Paying the price for closing the door earlier on Mortara, da Costa received a 5-minute time penalty while back at the front, Lotterer was looking to take the lead with extra power gained through ATTACK MODE. Now in second, the German driver was close on the tail of Frijns who was desperately trying to hold on to the lead.

With seconds of his ATTACK MODE power left, Lotterer made his move on Frijns to take the lead into Turn 4. Now setting the pace, the German driver was closing in on his first victory in the Formula E World Championship with 10 minutes left on the clock.

After a short Safety Car outing while Sims’ Mahindra racing car was recovered when it spun on Turn 14, racing was back underway. Added Time provided an extension of the race.

Saving his ATTACK MODE until the end of the race, Evans took the boost with less than 8 minutes of the race remaining. With extra power, Evans went after Lotterer, hunting the German driver before taking the lead on the hill up to Turn 7. With Evans holding firm, Vergne slipped past his former teammate Lotterer, jumping to second, before Frijns made a move on the German to knock him off the podium and into fourth.

With Envision Racing’s Nick Cassidy in the wall at the top of Turn 7, the Taycan Safety Car again made a brief appearance before coming in to leave a last lap dash for the finish. Evans was out in front and Vergne close behind, with the Frenchman was on the attack to regain his lead. However, he was unable to catch Evans and the Jaguar driver made it across the finish line first. Close behind, Vergne to join on the podium in Rome was Frijns.

The championship next moves to Monaco for a single round on April 30. This is a much-anticipated event as the Gen3 cars for the next season will be unveiled for viewing.

Archive

Follow us on Facebook

Follow us on YouTube