This seems like one of those “reality has a surprising amount of detail” situations.
Surely getting something to autonomously without fail extend an arm and plug in for the lifespan of these vehicles vs just park in this allocated spot you would park in anyway is an obvious tradeoff.
It’s definitely a trade off but both options have a lot of real world concerns. If safeguards on the wireless pad fail you could easily cook an animal or start a fire. The bottom of the car now needs to be metal free to allow this to work. Distance matters which means if it charges your Porsche it might not be able to charge a Rivian and certainly not with the same efficiency.
I also frankly do not believe the 90% efficiency claim because it seems so much higher than any other wireless charging I’ve heard of.
This seems like one of those things that seems cool but is not generally practical. As a convenience for wealthy Porsche EV owners, sure. As a general purpose charging solution? I doubt it.
Starting a fire, maybe, cooking an animal, extremely not likely.
Turn on an induction stove to max. Put your hand on it. Did it burn your hand? No. Put a ferrous pan on it. Suddenly, really hot.
Same concept happening here. A 36" induction stove top is likely putting out about the same inductive power. If the risk of being over the pad while it operated was enough to burn someone, so would cooking food on an induction stove.
Maybe? I’m definitely not an expert in inductive charging. I would think a cat laying between the charging pad and the receiver would be getting a big hit of radio waves. Maybe not.
Inductive current generation isn't utilizing radio waves. This isn't like a microwave oven.
If you put a chicken breast in a microwave oven and turn it on, it will rapidly cook. If you stand next to a radio antenna emitting hundreds of watts you can potentially get burns. These things use electromagnetic radio fields (E + H) to blast energy out, and those fields can stably radiate out on their own.
Inductive cooking and charging is radically different. If you put a chicken breast directly on an induction cooktop and turn the cooktop on, nothing happens. The unit doesn't even really increase its energy usage, because there is no load. This is because this energy transfer is relying on just the magnetic fields (H). It relies a lot on the target being harmonically in tune, and the other side needs to actually be conductive and at least somewhat magnetic. Non-magnetic materials don't couple with these magnetic fields. This is why some pans (like aluminum and copper) "don't work" with induction cooktops.
So if a cat did climb on the charging pad, maybe some parts of the collar would energize and heat up.
If animals were significantly affected by things like wireless charging pads or inductive cooktops we wouldn't be able to survive MRIs.
I did not mean that the inductive pad was blasting microwaves but that the transfer is via electromagnetic waves.
Regardless, your MRI comparison is very apt. MRIs use similar amounts of energy for scanning and do sometimes cause burns. But no one seems to be getting cooked.
My MRI one isn't really that apt, and you're showing the reasons why. An MRI does bombard the imaging target with RF and watches those waves using inductive fields. My point was that if you were reactive to pulsing magnetic waves you'd instantly be cooked in an active MRI. The magnetic fields are intensely powerful, but they don't affect your body at all.
> that the transfer is via electromagnetic waves.
An induction charger doesn't transmit its energy through electromagnetic waves. That's what I'm saying. It's inducing a current through magnetic fields. Its a very different process. If the material isn't magnetic it doesn't react. Which is why a steel pan heats up very rapidly while your hand is cool, why an induction stove doesn't use much electricity at all when there isn't a pan on it to heat. If it worked by emitting RF, it would have the same power output regardless of the pan type. Which is like your microwave, if the magnetron is energized it's putting out 1,000W regardless of what you have in there.
A radio is emitting its power regardless of if there's an antenna on the other side tuned to receive it. If there's nothing on the other side of the inductive charger, there's no load, there's no power usage. You need something able to receive the power to actually transmit the power. With that something being how well it reacts to magnetic fields.
Surely getting something to autonomously without fail extend an arm and plug in for the lifespan of these vehicles vs just park in this allocated spot you would park in anyway is an obvious tradeoff.