UW engineers achieve Wi-Fi at 10,000 times lower power
washington.edu
UW engineers achieve Wi-Fi at 10,000 times lower power
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Re: UW engineers achieve Wi-Fi at 10,000 times lower power
#2Being named passive wifi. Quite neat and could be useful for IoT considering also approx 100 ft distance
Re: UW engineers achieve Wi-Fi at 10,000 times lower power
#310,000 times lower power, but achieving speeds up to 11Mbps Being named passive wifi. Quite neat and could be useful for IoT considering also approx 100 ft distance
That's two HD videos simultaneously, with some to spare.
Re: UW engineers achieve Wi-Fi at 10,000 times lower power
#410,000 times lower power, but achieving speeds up to 11Mbps Being named passive wifi. Quite neat and could be useful for IoT considering also approx 100 ft distance
You won't be downloading OS images very well, but it's still a lot. That's two HD videos simultaneously, with some to spare.
Still better than bluetooth, and very useful for the kinds of data that low-power sensors would send, but not the kind of performance you'd want for pushing media files or really high-detail sensor data.
(Hence the performance benefits for large greenfield networks of dropping support for low bitrates - both preventing old clients from hogging the channel, and obviating the need to send control traffic at the slower bitrates.)
Re: UW engineers achieve Wi-Fi at 10,000 times lower power
#5If you are using a "wifi" antenna then that antenna is going to be picking up all sorts of little things. Normally these aren't much of an issue, but at these sensitivities suddenly that phone down the hall, the one not running at a 10e-3 power setting, is a real issue.
Also, February 2016?
Re: UW engineers achieve Wi-Fi at 10,000 times lower power
#6Here is a 2 minute video showing an early prototype of their work from 2014:
Re: UW engineers achieve Wi-Fi at 10,000 times lower power
#710,000 times lower power is only for the "passive wifi" devices, but these passive wifi devices require a "heavy-lifting and power-consuming plugged-in device" nearby.
Assuming that device consumes no more than a traditional wifi device, then the overall system would consume:
[usual consumption of 1 wifi device] + [# of passive devices] * [usual consumption] / 10000
So, if we want to calculate per passive device it would consume around [usual consumption of 1 wifi device] / [# of passive devices]
In other words, the more of these devices, the better. Too few devices might not offset the plugged-in device energy cost.Re: UW engineers achieve Wi-Fi at 10,000 times lower power
#8This is great research! 10,000 times lower power is only for the "passive wifi" devices, but these passive wifi devices require a "heavy-lifting and power-consuming plugged-in device" nearby. Assuming that device consumes no more than a traditional wifi device, then the overall system would consume: [usual consumption of 1 wifi device] + [# of passive devices] * [usual consumption] / 10000 So, if we want to calculate…
Re: UW engineers achieve Wi-Fi at 10,000 times lower power
#9That's good for sensor nodes reporting status, but not so good for interactivity.