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Image Credit: Ruth Milligan

I was excited to read today’s NYTimes piece on mainstreaming of electric vehicles. The story with two separate author bylines could theoretically convince middle America that it was OK to consider buying an EV, even if there were places like “North Dakota, for example, [where] there are just 19 fast chargers.” But I found myself cringing because of incomplete reporting and a strong desire to set the record straight.

The NYTimes story started out innocuous enough:

The first wave of people who bought electric cars tended to be affluent, environmentally aware technology enthusiasts who lived in California. The second wave may be people like Russell Grooms, a librarian in Virginia. Mr. Grooms last year bought a battery-powered Nissan Leaf, spending about $20,000 after government incentives, as a way to save money on gasoline.

But you always need a counterpoint. And they found it with a woman from Columbus, Ohio, who had a bad experience driving her daughter to school in Michigan.

Ruth Milligan, a resident of Columbus, Ohio, tried taking her daughter, Maggie Daiber, to Michigan State University in August. Ms. Milligan calculated where she would need to charge her ID.4 during the four-hour trip.

“I did my homework on the charging network,” said Ms. Milligan, an executive speech coach, “or so I thought.”

But she hadn’t considered that the battery would drain faster when the car was weighed down with her daughter’s possessions and her husband, Dave Daiber, who is 6 feet 4 inches tall.

Less than two hours into the trip, Ms. Milligan realized that the car was not going to make it to Toledo, Ohio, where she had planned to charge. Instead, they got off the highway in Findlay. Of the four chargers in town, one was behind a locked gate; another was at a Toyota dealership that would not let a Volkswagen use its charger; a third would charge only Teslas; and the fourth had been installed recently and was not yet working.

The family wound up spending the night at a hotel and making the rest of the trip in a rented van.

Still, Ms. Milligan says she likes the ID.4, which she bought after waiting 10 months for delivery. “In general I’m happy with the car but I’m going to be cautious as I push its bounds,” she said.

That sounds like a horrible experience and one without a solution. And, with the 250 mile range in a Volkswagen ID.4, you’d think it would be pretty easy to make the trip. This situation will scare a lot of potential EV buyers who are being told they can make road trips.

Details, details

I’m from Ohio, not too far from where she stopped in Findlay, Ohio, so I know those roads are mostly over flat farmland – no big hills to climb. So, even with bad weather, it isn’t that far for a modern 250-mile EV like the VW ID.4. Doing a little Google Maps research, it is 96 miles between Columbus and Findlay, Ohio, where she stopped and, at most, 150 miles between Columbus and Toledo where she planned to fast charge, according to the story.

That said, northwestern Ohio is a bit of a car-charging desert, so ending up with a tow truck situation isn’t uncommon.

Weigh-in

Also, the story mentioned that she had a lot of cargo and people in the car and said that was a major factor in the range problem.

It turns out that weight isn’t a huge factor in EV range calculations for highway driving. I learned a lot about this on my Ford trip in the F-150 last month. It comes down to Newton’s first law of inertia: An object in motion stays in motion. A car on cruise control at 60mph on flat land is going to take the same energy to propel it forward as the same car with 500 more pounds inside it. None of the forces on the car (drag, rolling resistance, etc) are directly related to the weight. Aerodynamics is the biggest force by far. So it turns out there was a lot more to this story. City driving with stops and starts is a somewhat different story.

Fact-checking the journey

So I decided to reach out to Ms. Milligan on LinkedIn to get some clarification on the journey. She noted that the Times put out a call for stories from EV drivers on their experiences and picked hers.

The discussion was illuminating. Here’s an incredibly intelligent woman who clearly has done her homework and also really loves her VW ID.4.

From what she says, the NYTimes authors neglected to mention some important information and, for whatever reason, included the information about the weight of the people and cargo in the car as the reason for uncertain mileage.

The NYTimes writers weren’t interested in the aerodynamics of the bike rack, which play a much bigger role in range.

She told me (and the NYT, though they didn’t report it) the following:

  • She started out the journey with only 80% charge (already down to 200 mile range) because of a settings issue.
  • She had a bike rack and bike on the back.
  • She had a 3×3 foot soft roof rack on the top – multiple backpacks tied down.
  • She was driving 65-70mph on the trip and stopped with about a 20% charge in Findlay, Ohio, to look for chargers. At that point, she was SOL because all four level 2 chargers in town were unusable. The closest usable charger was outside of her current range.

So now the range problem makes a lot more sense now. In my experience, adding a bike rack will reduce range by 15-20%. A roof rack will do the same. So starting with her 80% of 250 miles = 200 miles, she really left the house with about 150 miles of range at best. We also know that slowing down will really help when there is a higher coefficient of drag, and she was going close to 70mph.

Why am I calling this out?

I’m not here to shame the NYTimes or its writers on the omissions in their article. I do think the story needs a correction to note that aerodynamics – not weight – is the major factor in range because I think EV and potential EV drivers need to know this information. I think they chose this story because of the harrowing outcome, but that’s speculation.

I’m also not here to fault Ms. Milligan, who obviously is an EV advocate who wasn’t told about the significance of potential range hits when adding bikes and roof rack. A bigger issue, however, is that she trusted the VW ID.4’s internal EVCharger finding map, which told her about potential charging backups but not the reliability of each of these stations. There are still a lot of calculations to make when driving EVs on trips that typical drivers just don’t have to consider. I think her tale can and should be a cautionary one.

However, instead of the POV of the story where there is uncertainty on why the EV didn’t get the expected range, we can have some faith in the numbers that are shown. “Range anxiety” is about uncertainty. Now we know why she couldn’t make the trip.

How to make this trip with a bike rack and roof rack

And heavy passengers and cargo.

In this case, I would have made sure the car was close to the full 250 mile range before embarking on the trip. Driving at normal highway speeds is going to cut off about a third of the range with the bike and roof rack. So at best, you are starting off with about 150 miles of range with a fully charged vehicle. You can get to Toledo from Columbus fairly easily that way with about 25 miles of extra range. If I was running close, I would have slowed down considerably to 55mph.

But I don’t love the idea of stopping at the Chevrolet dealer that shows up as the only fast charger in Toledo on her route. Instead, I would have mapped to the Electrify America station on the I-80 turnpike just outside of Toledo as a first stop. Being in a VW, that’s going to be the fastest and most reliable charging station and, if updated recently, should also do Plug and Charge instant charging. It requires traveling on some smaller roads before entering the turnpike and adds about 15 driving minutes to the trip.

That’s 120 miles from Columbus and takes 2 hours and 20 minutes. She could have charged there to 80% in a matter of minutes, eaten some food and been on her way again. She’s now 138 miles from her destination in Lansing, Michigan (where there is another EA charger), which she might have been able to make on one charge. There’s also an EA station in Ann Arbor where she could have topped off to make that trip.

Electrek’s Take

It turns out Ms. Milligan has already figured all of this out (also missing from the NYTimes piece). Since she took her daughter to school in August, she’s been back to Michigan State with her ID.4. She’s tried my method above with success, though it adds driving time. On the way back, she made it from Ann Arbor to Columbus in one leg (about 190 miles) without bikes or roof racks but with her 6’4″ husband. That’s the route they will go in the future, and they don’t expect to add any extra driving time. Just one stop and no diversion off the Interstates.

More importantly, Ms. Milligan has learned not to trust every EV charger out there. She says she’ll first look for Electrify America stations to make a trip, then look at the less reliable options if she needs to. If she does have to find other charging stations, she’ll look at recent check-ins and won’t trust anything that hasn’t been visited successfully by an EV driver within the most recent 24 hours. Finally, she says that the VW ID.4 EV charging station finder “is dead to her,” and they really need to work on this if they want her to trust this functionality again.

So my point here is to help people who might feel some anxiety from the NYTimes piece or EVs in general. So, some final road trip tips:

  • Weight doesn’t matter much unless you are climbing mountains (and you’ll often make most of that up regenerating electricity on the way down).
  • Aerodynamics matters a lot. Bike and roof racks may cost 10-20% of your range – each.
  • Slowing down, particularly with added drag, really makes a big difference.
  • Also deduct 10-20% for very cold weather, mitigate some by preconditioning the vehicle.
  • You can go just about anywhere in the US (yes, even North Dakota) in an EV if planned and executed correctly.

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2024 Cadillac LYRIQ buyers could score $10,500 in discounts

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2024 Cadillac LYRIQ buyers could score ,500 in discounts

The all-electric Cadillac LYRIQ was an Electrek favorite when it first made its debut two years ago. Now, LYRIQ buyers who have been waiting for a deal can score more than $10,500 in discounts on the Ultium-based Caddy.

Our own Seth Weintraub said that GM had come in, “a year early and dollar long at $60K” when he first drove the Ultium-based Cadillac LYRIQ back in 2022. He called the SUV “a stunner,” too, heaping praise on the LYRIQ’s styling inside and out before adding that the EV’s ride quality really impressed on long journeys.

Well, if the first mainstream electric Cadillac was a winner at its original, $57,195 starting price (rounded up to $60K for easy math), what could we call it at $10,500 less?

That’s a question that’s suddenly worth asking, thanks to huge GM discounts on the LYRIQ that prompted the automotive pricing analysts at CarsDirect to name the 2024 LYRIQ one of the industry’s “Best New Car Deals” this month:

A slew of incentives can enable you to save big on a 2024 Cadillac LYRIQ. First, EVs eligible for the federal tax credit qualify for $7,500 in Ultium Promise Bonus Cash from GM. Additionally, competing EV owners can score $3,000 in conquest cash.

Meghan Carbary | CarsDirect

With more than 100 kWh of battery capacity and 300-plus miles of real-world driving range (plus available 190 kW charging capability) the Cadillac LYRIQ ticks all the boxes – but you don’t have to take just my word for that.

You can check out Electrek‘s original First Drive video, below, and click here to find Cadillac LYRIQ deals near you.

First Drive: Cadillac LYRIQ | Luxury E-CUV

SOURCE | IMAGES: CarsDirect.

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Volvo CE rolls out autonomous equipment at Volvo Days 2024 [part 2]

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Volvo CE rolls out autonomous equipment at Volvo Days 2024 [part 2]

Volvo Days 2024 packed a lot of innovative new products into a few short days, but the company’s autonomous construction robots still managed to stand out.

A global shortage of qualified operators is impacting job sites everywhere, precisely at a time when demand for housing, mineral mining, and renewable energy construction is going from peak to peak. That’s why companies from Caterpillar to Tesla to Einride are pushing to advance autonomy the way they are.

And, like they’ve done with semi truck electrification, Volvo Group’s vision for the future has them firmly in a leadership role as the construction industry automates.

CX01 autonomous hybrid compactor

Volvo CE Unveils CX01 Single-Drum Asphalt Compactor Concept
Volvo CX01 autonomous compactor; photo by the author.

First revealed as a concept in 2021, Volvo CE’s CX01 autonomous “single drum” asphalt roller concept has seen continuous development in the years since. Making its Volvo Days debut, the CX01 has shed the original single drum design for a “split drum,” with each half being controlled by an internalized, independent electric motor.

The CX01’s electric motors not only help to propel and steer the roller, they also vibrate the drums individually, using some trick software calibration to effectively “cancel each other out,” delivering all the benefits of vibrating drum rollers without the noise.

It’s so smart, you guys

It’s also worth noting that the CX01 is something of an “extended range” EV, instead of a “pure” BEV. That’s because it uses a small, 1.4L diesel engine to spin a generator that powers not batteries, but capacitors (those blue things, above right). Those capacitors can be charged on grid power (or from an accompanying TC13 trench compactor), but they’re much better than batteries at releasing energy really quickly, enabling the diesel to operate at its maximum efficiency while maintaining extremely precise, high-torque movement from the motors.

Volvo CE engineers envision a team CX01 rollers units deployed on larger job sites that could work together and communicate with other pieces of equipment on the site. The connected equipment could help survey the job site, report on the conditions of the mat (density, temperature, and passes), and leverage AI to determine when and where to compact without the need for human operators.

All of which is great, sure – but they had me at “giant OneWheel.”

Volvo TA15 autonomous electric haul truck

Volvo TA15 autonomous haul truck; photo by the author.

Part of Volvo CE’ “TARA” line of autonomous products, the “production ready” TA15 autonomous electric haul trucks are already part of a number of pilot programs on Volvo customer job sites. Being autonomous, they’re ideally suited to performing repetitive routes, dozens of times per day, without exposing human operators to fatigue or injury.

Big robot dumper

The Volvo TA15 is a fully automated electric dumper designed to operate on busy job sites with tight tolerances. With the TA15, Volvo says customers will be able to replace larger, diesel-powered vehicles with a fleet of smaller, “right sized” Volvo TA15s. The electric haul bots offer cleaner, quieter operation and increase efficiency.

“TARA enables you to downsize and replace larger diesel-powered vehicles with a fleet of autonomous electric Volvo TA15s capable of running 24/7,” reads the official TARA release. “This not only helps you cut emissions and increase productivity, it will also help you rightsize your machinery and optimize your hauling routes.”

And that brings us to the real topic at hand: sustainability.

Electrek’s Take

Volvo SD110 single drum roller, via Volvo CE.

As we’ve often discussed on The Heavy Equipment Podcast, there are two types of sustainability, and both are important. The first is the “classic” version of sustainability, in that our choices need to sustain the planet and environment we live in. The second is sustainability of the business – the ability to keep doing business in a way that ensures the survival of the business, itself.

Looking at the conventional Volvo SD110 conventional roller, above, you can see the incredible amount of materials – of steel, rubber, plastic, glass, etc. – that simply isn’t needed to produce the CX01 roller we started this article with.

All that added mass has a massive hidden carbon cost. The cost of getting those materials out of the ground, the need for bigger, heavier roads to support the weight of the machine, and the bigger, burlier trucks and trailers needed to transport it. Heck, even the operator’s commute to and from the job site adds to the carbon cost of the SD110, over and above the harmful emissions from its diesel engine’s exhaust stack.

The CX01? It’s objectively more sustainable than the SD110 roller in every way, and does pretty much the same job.

The Volvo TA15, too, is lighter and more compact than a conventional rigid haul truck. That reduced mass enables job sites and mining operations to maintain narrower haul routs that are less expensive to build and easier/cheaper to maintain, all while contributing to carbon reductions all across even the broadest scope of job site operations.

That’s both sustainable, and sustainable – and just another reason why forward-thinking fleet buyers will be watching this space closely.

ORIGINAL CONTENT FROM ELECTREK.

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JB Hunt launches first electric aftermarket semi truck route in Arizona

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JB Hunt launches first electric aftermarket semi truck route in Arizona

Following successful inbound implementations in the Pacific Northwest, North Carolina, and Mexico, Daimler Trucks North America (DTNA) is expanding the reach of its electric semi fleet into Arizona with long-time associate JB Hunt.

JB Hunt will add the new Freightliner eCascadia electric semi to its Arizona fleet immediately, and put it to work delivering aftermarket truck parts from DTNA’s parts distribution center (PDC) in Phoenix to multiple DTNA dealers along a dedicated route.

The electric Freightliner truck is expected to cover approximately 100 miles in a given day before heading “home” to a Detroit eFill charger installed at Daimler’s Phoenix facility.

This milestone marks the first all-electric route in the DTNA aftermarket parts distribution network, significantly reducing carbon emissions and setting a precedent for future sustainable outbound logistics operations.

“This solution with DTNA is a great example of our commitment to supporting customers’ efforts to reduce their carbon footprint and work towards energy transition,” explains Greer Woodruff, executive vice president of safety, sustainability and maintenance at JB Hunt. “JB Hunt owns and operates several eCascadias on behalf of customers, and our drivers have really enjoyed their in-cab experience. As customer interest continues to grow, we are here to enable their pursuit for a more sustainable supply chain in the most economic means possible.”

Daimler is analyzing future expansion opportunities throughout its internal parts distribution and logistics with an eye on electrifing additional routes and further reducing the carbon footprint of its logistics operations.

JB Hunt will evaluate its utilization of the charging station for other customers in the area, eventually enabling fully integrated zero-emission vehicle solutions into its 3PL fleets.

SOURCE | IMAGES: Daimler Trucks North America.

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