The Oshkosh-built Striker Volterra electric ARFF vehicle (Aircraft Rescue and Fire Fighter) packs advanced battery technology and multiple power options to deliver consistent emergency response performance no matter how long it needs to be in action.
Oshkosh has been manufacturing ARFF vehicles since it first launched the MB-5 for use by the US Navy back in 1968, and they’ve been pushing the envelope of disaster response performance ever since. The company’s latest ARFF, the electric-drive Striker Volterra shown here, features a slanted body with front bumper designed for maneuvering through the ditches and rough terrain they might encounter on a damaged runway. It’s also big — but it’s big for a purpose. Because ARFF vehicles don’t have to navigate the confines of city streets, they can be built bigger, carry more water, more rescue equipment, and more personnel than conventional fire trucks.
But that’s not why you’re reading about this on Electrek. You’re here to read about the Striker Volterra’s advanced battery tech, electric drive motors, and duty cycle-extending genset that effectively makes it a big EREV. More sympathetic I could not be, but — alas! — OshKosh hasn’t officially revealed those specs.
That said, it’s probably safe to assume they’re pretty similar to those used on the big Pierce fire fighting chassis developed for the Gilbert, Arizona fire department, which uses (you guessed it) an OshKosh-developed battery pack, electric drive system, and onboard diesel generator that can provide power to the electric system. That vehicle packs a 244 kWh battery pack good for up to six hours of operation on battery power alone.
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The OshKosk electric Striker Volterra ARFF shown here is a Class 5 6×6 “rapid response” model capable of hauling up to 4,000 gallons of water (over 16 and a half tons, if you’re curious) and “firefighting foam” across an airport at speeds of up to 50 mph, which is positively moving for a machine this size. Plus, it supports zero-emission pumping, surpassing the NFPA required 2-hour continuous pump operation without using diesel.
Again, OshKosh hasn’t shared power and performance specs, but has confirmed that its electric drive Striker Volterra is 28% quicker to 50 mph than its Scania diesel-powered siblings, and that truck packs 550 hp and more than 1,750 ft‑lb torque. So — yeah. It’s got some juice.
Other key benefits, according to OshKosh, include a 75% reduction in total carbon footprint when compared to a conventional internal combustion engine ARFF vehicle based on the manufacturer’s estimated duty cycle, the eliminated need for long diesel idling times, and the ability to run on full-electric when entering, leaving and idling in the fire station, significantly reducing firefighter’s exposure to harmful emissions.
With the relatively short distances driven and extreme loads involved, airports present a nearly ideal use case for battery-electric vehicles in general, and their immediate off-the-line torque, improved efficiency, and ability to operate much more quietly than diesels (facilitating communications) could make all the difference in an emergency situation where lives are quite literally on the line.
Or, as OshKosk puts it: As airports continue to prioritize sustainability and operational efficiency, the Striker Volterra electric ARFF stands out as a forward-thinking solution that meets today’s demands while preparing for tomorrow’s challenges.
It’s a bit pitchy, but I couldn’t agree more.
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Get ready, children. There’s a new electric bike licensing scheme that will soon be tested as one of several methods designed to help educate young riders on responsible road use and combat the growing concern of dangerous e-bike riding among youths around the world.
Known as the Student Bicycle License Scheme (SBLS), the proposal in New South Wales, Australia, will operate as a trial of a new licensing program for electric bike riders. The program targets school-aged e-bike riders in response to a growing number of accidents and misuse cases involving young riders.
The pilot program will require students to complete an online training course and pass a knowledge test before being issued a digital license to ride an e-bike or e-scooter. The scheme is expected to launch later this year in select schools, and if successful, could pave the way for a broader rollout.
Schools in Sutherland and Newcastle have reportedly expressed interest in joining the program, which leaves it up to individual schools to decide how they wish to use the new license program. For example, they can make it mandatory for students who want to ride to school or use secured bicycle parking facilities at the school.
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Police in Sydney stop an electric bike rider (image via: Reddit)
The trial will initially focus on education rather than enforcement. Students who complete the course will receive a digital “ride-ready” credential, but there are currently no plans to introduce fines or penalties for unlicensed riders during the pilot phase. The government is partnering with road safety experts and schools to develop the training materials, which will cover speed limits, helmet use, sidewalk etiquette, and proper intersection behavior.
Australia’s National Transport Research Organisation is also reviewing current electric micromobility laws, with a report expected by the end of the year. The Queensland trial is seen as a possible blueprint for other regions facing similar safety concerns.
The announcement comes as electric bikes become increasingly popular among Australian youth, not just as toys, but as practical transportation to and from school, work, and social events. With that growth has come scrutiny – several high-profile crashes, some involving modified or overpowered e-bikes, have pushed lawmakers to act.
The same phenomenon is playing out around the world, including in Europe and the US, where young riders have increasingly taken to electric bikes as an alternative form of transportation, though one that has raised concerns around road safety among a young populace who has yet to learn the rules of the road.
Electrek’s Take
This is one of several school-level educational outreach programs we’ve seen pop up lately, and I think these are great ideas.
While the idea of requiring a license to ride an e-bike might sound extreme in some places, Australia’s approach here is education-first, and it could actually be a smart move. It also seems like the license is designed to be effective without being a burden. If you can grasp the knowledge, you can pass the test. And since many of the issues surrounding young e-bike riders arise from a general ignorance of road rules, this could be an effective solution. Teaching young riders the rules of the road before they hit the pavement might help reduce injuries and improve public perception of micromobility. Plus, the fact that it is a digital license means that there would presumably be fewer costs involved, which will hopefully allow the program to be free of charge and further reduce the burden of the licensing process.
Of course this won’t do anything for the “hooligan” riders who know the rules and simply don’t care, but that’s where enforcement has to step in as the heavy-handed partner to education.
I think this is a great example of balanced e-bike regulation. A measured mix of education and enforcement is key to ensuring e-bikes remain safe while taking advantage of their myriad benefits to the public. And hey, it sure makes a lot more sense than NYC trying to cut the speed of all electric bikes in half overnight.
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The State of California is moving to ban the sale of Tesla cars amid claims that the company and its CEO, Elon Musk, have misled buyers about the self-driving capabilities of their cars. We’ve also got market-leading news out of Vietnam and a pricey, pricey lesson for one VW ID.Buzz buyer on today’s lesson-learning episode of Quick Charge!
We also ask what this might mean for the recent Uber/Lucid autonomous taxi tie-up and go through a full rundown of the fastest depreciating EVs on the market (and yes, there are four Tesla models in the top 10 … because the Cybertruck was too new to qualify).
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.
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Sunrun is putting tens of thousands of home batteries to work in Puerto Rico as the island’s electric grid faces a summer of high temperatures and energy shortfalls.
The company says it’s now dispatching energy from over 37,000 residential batteries to help grid operator LUMA keep the lights on. That stored power is being used to prevent rolling blackouts when demand spikes and centralized power plants can’t keep up.
Sunrun’s emergency power contribution has grown more than tenfold since last summer. LUMA expects more than 75 energy shortfall events between now and October, with each dispatch sending electricity to the grid for four consecutive hours. During several recent evenings, Sunrun and other virtual power plant (VPP) operators provided enough energy to offset a 50-megawatt generation gap, LUMA said.
Sunrun CEO Mary Powell said Puerto Rico’s aging infrastructure and intense weather patterns make home battery support increasingly critical:
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It’s going to be a very difficult summer, which is why Sunrun has ramped up our dispatch capabilities, using tens of thousands of home batteries to support the grid and people of Puerto Rico.
She added that distributed power plants like Sunrun’s serve the same role as natural gas peaker plants – offering fast, reliable power during high-demand moments – but with clean energy.
Sunrun customers enrolled in the VPP will get paid too. Each participating battery earns about $200 minimum for the season, and customers who allow more of their stored energy to go to the grid earn even more. Sunrun also earns revenue for operating the VPP.
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