Today’s Solutions: December 17, 2025

If airplanes can refuel each other mid-air, then why not electric cars? A weird and wonderful, if probably impractical, idea out of the University of Florida would see vehicles in high-speed convoys sharing energy in a peer-to-peer model.

To understand how it works, let’s first read a passage from Loz Blain, a writer for New Atlas and a self-proclaimed foolish motorcyclist. “I can tell you it’s amazing how little resistance you feel, and how far you can make a small amount of fuel last when you foolishly snuggle yourself into the cocoon of low-pressure air dangerously close to the back of a truck. Don’t try it, you can’t see a damn thing…But the feeling is extraordinary, the headwind disappears and you’re wrapped in a little bubble of warm, still air.”

One of the great benefits of self-driving cars will be their ability to drive nose-to-tail like this at speed without taking any safety risks. Their drive computers will synchronize to act as a single vehicle and the aerodynamic efficiency benefits will be huge for the vehicles behind the front one. But why should that front vehicle pay a higher energy price to push through the air while everyone else is enjoying the benefits of its wake?

Maybe it won’t have to if a proposed energy sharing system takes off. The Peer to Peer Car Charging (P2C2) system proposes that robotic charging arms could reach out to connect autonomous vehicles as they convoy along the freeway, using one vehicle’s battery to charge the other up.

“We envision a safe, insulated, and firm telescopic arm carrying the charging cable,” reads a paper by the Florida team. “After two EVs lock speed and are in range for charge sharing, they will extend their charging arms… The arms’ heads will contain the charging ports, and they will latch together using either magnetic pads or other means.”

A mechanical connection is one way of transferring charge, but wireless inductive charging might also be possible. For individual EV owners, who rarely use up their whole battery in daily use, this could totally eliminate the need to pull over and fast charge at a charging station. A credit system could ensure nobody’s taking advantage of energy somebody else has paid for, and then the entire traffic ecosystem suddenly becomes one giant, shared battery and nobody ever needs to stop their journey to refuel.

Although the new battery technologies down the line could kill the economic incentive for this concept, it’s nice to think about how things might work in a more energy-efficient way that might get better usage out of each car on the grid and use the entire traffic system as a single enormous battery dedicated to getting every vehicle where it needs to go rather than as a series of separate machines that each only look after themselves.

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