Connect with us

Published

on

How do you make a long-haul diesel truck emit 50% less CO2 without changing a single thing about it? Sounds like a riddle, right? A new pilot solution embraced by BMW Group Logistik and supplied by partner firm Trailer Dynamics here in Germany, though, can do just that. I spoke with Mo Koellner from BMW and Michael Nimtsch from Trailer Dynamics about this tech on a call earlier in the week.

As to the answer to the above riddle: This is a semi-truck trailer that has a massive battery pack (up to 600 kWh) installed in its floor, and that battery powers an electrically driven axle underneath the trailer. The solution isn’t conceptually novel; e-trailers, or electrified trailers, have been on the market in various forms for a number of years now (though the technology is still in a relative stage of infancy). The basic principle is simple, too. By adding a battery-electric driven power source to a diesel tractor-trailer, you reduce the fuel consumption of the diesel portion of the system. In other words, you’ve created a plug-in hybrid-electric big rig. Pretty straightforward, yeah?

What makes Trailer Dynamics’ solution cool is just how “plug and play” it is. In fact, the company says that its electric trailers can work with any truck they are physically capable of hitching to. No trailer-to-truck connection is utilized; the e-trailer operates totally independently. Trailer Dynamics says this makes its product unique* in the space, as most other e-trailer solutions require active communication with the connected truck to enable the electric-assisted drive. BMW is currently testing TD’s solution on its BMW Group Logistik fleet. (*US-based Range Energy also claims to work with basically any truck, and their solution seems quite similar to Trailer Dynamics. We covered them back in May. The biggest distinction I’ve seen is that Trailer Dynamics offers far larger batteries and is designed for use with European tractor-trailer configurations. BMW’s fuel consumption figures also seem to indicate TD’s solution may be more efficient, but it’s hard to know how apples-to-apples these numbers are given the pack size differences.)

The way TD achieves this is down to a proprietary sensor pack that lives in the kingpin of the trailer. There, a computer control model takes input from the sensors (used to monitor various forces on the kingpin) and converts that data into a decision about when and how much power to apply to the electric motors in the axle. The logic of the system takes into account the sort of things you’d expect. For example, if the trailer knows the truck is currently stopped and is beginning a start — when large trucks tend to make use of their fuel most inefficiently — it will apply very substantial power to get the truck rolling. The result is a huge reduction in the amount of diesel used. Similarly, if the system detects the truck is going uphill, electric assist will be applied generously to minimize the effects of an otherwise high fuel consumption situation. According to TD’s website, factors like weather conditions, route topography, and traffic can also be considered, though it was less clear to me how these play in to when the trailer applies power. The system can also be configured to disable itself if the battery capacity reaches a predefined cutoff point (important, as fleet operators ideally want a minimum level of charge guaranteed at any moment).

The system itself is, by the standards of passenger electric vehicles, some very heavy-duty stuff. Battery packs of either 400 kWh or 600 kWh are employed (a 200 kWh unit is coming later), with the 600 kWh configuration being the most desirable among TD’s prospective customers. That’s because the economics of efficiency apparently pay off best for longer routes, where a larger battery is going to be necessary. The electric motor unit outputs up to 580 kW (777 hp), which is impressive, but it’s the insane 13,000 nm of torque that’s doing the heavy lifting (literally). Charging is also pretty damn quick, with the 800V architecture supporting 44 kW AC and up to 350 kW DC fast charging. The supersized figures here make sense when you consider the weights at play — BMW is testing TD’s trailers with a payload of 16 metric tonnes, or over 35,000 pounds. (Specifically, BMW has been using them to haul electric drive units for its passenger cars.)

As for the end efficiency, BMW is seeing fuel consumption lowered by nearly 50% on some of the long-haul routes it’s testing, meaning emissions on those routes are cut in half. Even on shorter routes, the figure is in excess of 45% fuel savings. Because BMW is using 100% carbon-neutral sources to recharge the trailer batteries, it estimates that each e-trailer could cut up to 120 tonnes of CO2 emissions from its fleet each year. For comparison, assuming a “typical” ICE car emits around 5 tonnes of CO2 annually, each trailer optimally utilized is like taking 60 cars off the road. All that is to say: It’s hard to overstate how much fuel a real big truck uses.

BMW has also been testing TD’s trailers with electric trucks, where the system effectively acts as a range extender. Depending on the specific truck, payload, and route, BMW says the range of an electric truck could be extended by a factor of 2-3x, opening up entirely new scenarios for the use of BEV tractor units. In one test, BMW used an unspecified Volvo e-truck in combination with a TD mega trailer to go over 600 km (373 miles) without recharging.

In a perfect world, diesel trucks would be replaced with electric ones wholesale. But in reality, the design principle of trucks as long-life assets means that ICE trucking will stick around a fair bit longer than combustion passenger cars. If we can reach a point where e-trailer systems like Trailer Dynamics’ are minimizing trucking fuel consumption at scale, though, we can still have a real net-positive impact on emissions while that transition occurs. And because this kind of system benefits both ICE and EV tractors (arguably, the latter even more so), this is a scenario where the hybrid step-transition makes much more sense. There’s nothing redundant being engineered here for the sake of ICE trucks; these trailers will retain their usefulness in the age of BEV trucking.

For BMW, the EV trucking side of the equation has an added bonus — the low-liner “mega trailer” configuration it uses for a large amount of its transport fleet greatly limits the range of available EV truck options. Using TD’s mega trailer solution as a range extender is thus an excellent way to work around that challenge. (Mega trailers are a high-capacity trailer class specifically developed for use in the EU, where they remain extremely popular. These space-maximized trailers require a particular class of truck chassis with a very low deck floor for towing, and that leaves very little room for a battery.)

As for the challenges of stuffing a massive battery in the bottom of an already super-heavy-laden trailer? They’re not nonexistent. According to BMW, TD’s solutions are best for shipping in “cubed out” configurations — that is, utilizing the maximum volume of a container, not its maximum weight. And sure, the battery cannibalizes some of the available space for cargo. But, over time and with the evolution and refinement of the system (weight reduction is one of TD’s immediate goals), greater and greater payloads will become feasible. Human behavior is another big factor to consider. Suppose a tractor operator is still driving like a leadfoot. In that case, it’s possible to mitigate a fair bit of the system’s fuel savings (BMW saw fuel consumption variability of up to 20% during testing based on driver). On the economics, BMW believes that e-trailers will significantly lower fleet operating costs, offsetting initially higher acquisition costs for the equipment.

Down the road, TD suggests it could also start using its tech to assist in the on-road safety of tractor-trailers, applying power or engine braking force for stability management (for example, if a truck is in danger of jackknifing). Right now, the company is just getting started, and currently has seven trailers in operation (an eighth was just delivered).

While cleaning up our passenger cars will have a real effect on global CO2 emissions, the impact of trucking transport is something we should all be considering, too. According to data from the IEA, road freight accounts for 30% of all global transportation emissions, making it the second-largest contributor behind passenger vehicles — and by a wide margin. (For comparison, all air and sea transit contribute just above 10% of global emissions each. Rail sits at a measly 1%.)

FTC: We use income earning auto affiliate links. More.

Continue Reading

Environment

Tesla tops 36 car Autopilot test, affordable Model Y spied, and a $5,000 EV

Published

on

By

Tesla tops 36 car Autopilot test, affordable Model Y spied, and a ,000 EV

Credit where credit is due: in a massive, 32-car multinational independent test, Tesla’s Autopilot ADAS came out on top, the new affordable Tesla turns out to be a corner-cutting Model Y, and one of the company’s original founders compares the Cybertruck to a dumpster. All this and more on today’s episode of Quick Charge!

Today’s episode is brought to you by Retrospec – the makers of sleek, powerful e-bikes and outdoor gear built for everyday adventure! To that end, we’ve got a pair of Retrospec e-bike reviews followed up by a super cute, super affordable new EV from China with nearly 150 miles of range for less than $5,000 USD.

PLUS: listeners can get an extra 10% off by using code ELECTREK10 at retrospec.com!

Prefer listening to your podcasts? Audio-only versions of Quick Charge are now available on Apple PodcastsSpotifyTuneIn, and our RSS feed for Overcast and other podcast players.

Advertisement – scroll for more content

New episodes of Quick Charge are recorded, usually, Monday through Thursday (most weeks, anyway). We’ll be posting bonus audio content from time to time as well, so be sure to follow and subscribe so you don’t miss a minute of Electrek’s high-voltage daily news.

Got news? Let us know!
Drop us a line at tips@electrek.co. You can also rate us on Apple Podcasts and Spotify, or recommend us in Overcast to help more people discover the show.


If you’re considering going solar, it’s always a good idea to get quotes from a few installers. To make sure you find a trusted, reliable solar installer near you that offers competitive pricing, check out EnergySage, a free service that makes it easy for you to go solar. It has hundreds of pre-vetted solar installers competing for your business, ensuring you get high-quality solutions and save 20-30% compared to going it alone. Plus, it’s free to use, and you won’t get sales calls until you select an installer and share your phone number with them. 

Your personalized solar quotes are easy to compare online and you’ll get access to unbiased Energy Advisors to help you every step of the way. Get started here.

FTC: We use income earning auto affiliate links. More.

Continue Reading

Environment

Tesla teases new Roadster as ‘the last best driver’s car’

Published

on

By

Tesla teases new Roadster as 'the last best driver's car'

Tesla is again teasing the new Roadster, which is now five years late, as “the last driver’s car” before self-driving takes over.

The chicken or the egg. Is Tesla delaying the Roadster to match the development of self-driving technology, or is it delaying the development of self-driving technology to match the delayed release of the Roadster?

The prototype for the next-generation Tesla Roadster was first unveiled in 2017, and it was initially scheduled to enter production in 2020; however, it has been delayed every year since then.

It was supposed to achieve a range of 620 miles (1,000 km) and accelerate from 0 to 60 mph in 1.9 seconds.

Advertisement – scroll for more content

It has become a sort of running joke, and there are doubts that it will ever come to market despite Tesla’s promise of dozens of free new Roadsters to Tesla owners who participated in its referral program years ago.

Tesla used the promise of free Roadsters to help generate billions of dollars worth of sales, which Tesla owners delivered; however, the automaker never delivered on its part of the agreement.

Furthermore, many people placed deposits ranging from $50,000 to $250,000 to reserve the vehicle, which was initially scheduled to hit the market five years ago.

When unveiling the vehicle, CEO Elon Musk described it as a “halo car” that would deliver a “smack down” to gasoline vehicles.

That was almost eight years ago, and many electric hypercars have since launched and delivered this smackdown.

Tesla has partly blamed the delays on improving the next-gen Roadsters and added features like the “SpaceX package,” which is supposed to include cold air thrusters to enable the vehicle to fly – Musk has hinted.

Many people don’t believe any of it, as Tesla has said that it would launch the new Roadster every year for the last 5 years and never did.

Now, Lars Moravy, Tesla’s head of vehicle engineering, made a rare new comment about the next-generation Roadster during an interview at the X Takeover event, an annual gathering of Elon Musk cultists, last weekend.

He referred to Tesla’s next-gen Roadster as the “last best driver’s car” and said that the automaker did “some cool demos” for Musk last week:

We spent a lot of time in the last few years rethinking what we did, and why we did it, and what would make an awesome and exciting last best driver’s car. We’ve been making it better and better, and it is even a little bit more than a car. We showed Elon some cool demos last week and tech we’ve been working on, and he got a little excited.

The timing matches Musk’s recent claim that Tesla is going to have ‘the most epic demo ever, ’ but we heard that one before.

We suspected that the comment might be about the Tesla Roadster, as the CEO made the exact same comment about Roadster demos in 2019 and 2024. You will not be shocked to hear that these demos never happen.

Electrek’s Take

The “last best driver’s car” before computers are going to drive us everywhere. It’s a self-fulfilling prophecy if you continue to delay the car. It might literally be the last car ever made that way. How would we ever know?

The truth is that the Roadster was cool when it was unveiled in 2017, but that was a long time ago. Tesla would need to update the car quite a bit to make it cool in 2025, and I don’t know that cold air clusters are it. You will have extreme limitations using those.

The Roadster is almost entirely in the “put up or shut up” category for me at Tesla. They need to stop talking about it and make it happen; otherwise, I can’t believe a word.

FTC: We use income earning auto affiliate links. More.

Continue Reading

Environment

Kia’s electric van spotted in the US again, but will it ever launch?

Published

on

By

Kia's electric van spotted in the US again, but will it ever launch?

The PV5 is already available in several markets, but will Kia launch it in the US? After Kia’s electric van was spotted testing in the US again, a US debut could be in the works.

Is Kia’s electric van coming to the US?

Kia launched the PV5, the first dedicated electric van from its new Platform Beyond vehicle (PBV) business, in South Korea and Europe earlier this year, promising it will roll out in “other global markets” in 2026.

Will that include the US? Earlier this year, Kia’s electric van was caught charging at a station in Indiana. Photos and a video sent to Electrek by Alex Nguyen confirmed it was, in fact, the PV5.

Kia has yet to say if it will sell the PV5 in the US, likely due to the Trump Administration’s new auto tariffs. All electric vans, or PBVs, including the PV5, will be built at Kia’s Hwaseong plant in South Korea, which means they will face a stiff 25% tariff as imports.

Advertisement – scroll for more content

Following another sighting, a US debut cannot be ruled out. The PV5 Passenger model was spotted by Automotive Validation Engineer Chris Higa (@Chrisediting) while testing in Arizona.

There’s no denying that’s Kia’s electric van, but it doesn’t necessarily confirm it will launch in the US. But it could make sense.

Despite record first-half sales in the US, Kia’s EV sales have fallen significantly. Sales of the EV9 and EV6 are nearly 50% less than in the first half of 2024.

To be fair, part of it is due to the new model year changeover, but Kia is also doubling down on the US market by boosting local production. Earlier this year, Kia said the EV6 and EV9 are now in full-scale production at its West Point, GA, facility.

The PV5 Passenger (shown above) is available in Europe with two battery pack options: 51.5 kWh or 71.2 kWh, rated with WLTP ranges of 179 miles and 249 miles, respectively. The Cargo variant has the same battery options but offers a WLTP range of either 181 miles or 247 miles.

During its PV5 Tech Day event last week, Kia revealed plans for seven PV5 body types, including an Open Bed (similar to a pickup), a Light Camper, and even a luxury “Prime” passenger model.

Kia's-electric-van-US
Kia PV5 tech day (Source: Kia)

Kia is set to begin deliveries of the PV5 Passenger and Cargo Long variants in South Korea next month, followed by Europe and other global markets, starting in Q4 2025. As for a US launch, we will have to wait for the official word from Kia.

Do you want Kia to bring its electric van to the US? Drop us a comment below and let us know your thoughts.

Source: Chris Higa, TheKoreanCarBlog

FTC: We use income earning auto affiliate links. More.

Continue Reading

Trending