Raptor robot runs at 28.58 mph, faster than any human [video]
kurzweilai.net
kurzweilai.net
Right now, this is like running a Tesla with a very long extension cable and claiming absurd 0-60 times. Instead, tell me how well it operates with a battery or an engine and all the extra weight and engineering accouterments that requires.
It's not just a mechanical engineering problem, the dynamic of the system is way too complex to be modeled with a simple formula. There's a lot of AI/machine learning involved in robotics. That's hard with or without external power supply.
I don't think it's fair to criticize this project harshly because the robot has external power and a supporting arm to keep it from damaging itself. The research and development was clearly about the design and actuation of the legs, and the researches have clearly done well on that front. To require them to provide onboard power for a system that they don't even know the requirements for is a little much, in my opinion.
OK, but then is it really fair for them to publicize how fast it can run? I mean, I guess if the challenge is just to be able to move the legs fast enough, then maybe it is. But then why not publicize the number of steps it can take per unit of time instead of its speed? Speed is kind of misleading anyway unless you know how big it is.
One aspect is how far research has gone - it's gone a long ways and achieved a lot, yes.
The other aspect is how there is to go - there's a long to go before you get anything useful here.
The thing you have to consider with these criticisms is that many technologies have gone a long, long way in their research but still hit a wall before they wound-up being practical. Walking robots seem like they're just very hard. Compared to wheeled vehicules, "walkers" touch on a very large number of "frames" (in the sense of Minsky etc). There's no reason for a walker if they just use to the safe, level zone of a road and if a walker moves in less structured areas, they need a lot of intelligence to move in a way that's useful for people (I've seen a video of BigDog moving through the woods with one soldier guiding via joy but the useful of thing that needs constant attention but can't be ridden would be strictly less than that of a horse and that's being optimistic it can guided effectively, etc).
I think it won't be long (<5y) before someone does this with Usain Bolt or whoever else is the fastest human at the time. Shades of John Henry.
development was clearly about the design and actuation of the legs, and the researches have clearly
..failed by investing time in blind alley. This mechanism is unable to:-move legs out of sequence
-support turning or balancing in Z axis
its like one of those "running" robots that pretend they arent wheels
https://www.kickstarter.com/projects/138364285/outrunner-the...
But yes, I get your point. It'd be nice if they ALSO showed it carrying its own power source. I believe that would just lead us to questions of "how far can it go with a given power source, at a given rate?"
More importantly an ostrich can do 45 MPH which is far faster than this.
It's also much larger. I imagine once they scale this up, it'll go even faster.
Can you imagine how frightening it would be to be chased by one of these things?
Terrifying.
(edit: just to be clear - i can't run anywhere near as fast as usain bolt, so it wouldn't have to be ostrich or car sized to catch me)
The complete package is important for a finished product, but this isn't one.
The projekt is on kickstarter right now: https://www.kickstarter.com/projects/138364285/outrunner-the...
"Hey look, I designed a CPU and created a basic computer and wrote an OS...it's basic I know but..."
"Can it run Call of Duty? Xbox is better"
"That's not the...point...nm"
That's what this thread feels like. Except I would have expected HN commenters to have enough insight to know that they don't understand enough to be commenting.
http://www.youtube.com/embed/lPEg83vF_Tw
I'm a little disappointed that its tethered... Then again, having little robots that run faster than any human be tethered is probably a good precaution just in case we ever achieve singularity.... ;)
It's not a big shock that things built for speed can run faster than humans can. Horses can also run faster than humans. So can cheetahs. Ostriches, if you want something bipedal.
It's not as if humans are the pinnacle of power efficiency. We're versatile, but inefficient. So if you're going to compare a machine to human movement, it should be on the basis of versatility. A car is way more efficient than a human at moving on a flat track.
I guess I would have used effective where you said efficient.
(If you add in the energy used by modern agriculture to produce the food the human ate, the car probably wins: http://ideas.4brad.com/holy-cow-walking-consumes-more-gasoli...)
The best outcome is that the onset of robots doing much of the work is that it frees enough of the world from economic strife to end the need for warfare.
While this sounds good, I'm not sure this would happen for two reasons:
- we'd have to completely change the system of work / salaries / resource allocation - the way we're going right now we'll end up with smaller number of companies providing services / resources to huge society that is much larger than needed to support those companies
- I don't believe people have a need for warefare... they may actually be more interested in it, assuming their other daily needs are satisfied in an easier way
Why do you think automating much more work would make life better for people in general?
So, to really answer the 'what's your point' question I think the point is that bipedal could be more energy efficient than wheels and that feet can go where wheels can not.
The second one, absolutely. As for the former, I don't think you can get any more efficient than a wheel on a flat track - certainly biped movement is a lot less efficient since you need to work against gravity.
Also consider that even the fastest bipedal runners tend to go much slower than any motorised vehicle, and even quadruped animals rarely reach into what is considered standard with cars.
[0] The guideline daily amounts for a human are roughly 10 MJ, from personal experience, cycling a bit during the day only increases that marginally (e.g. 10-20%). It seems reasonable to claim 1 MJ per 100 km cycled, whereas one kg of gasoline (~1L) is at ~42 MJ. Given the usual 1-10L/100 km, 1 MJ appear to correspond to a few kilometres.
Another way to model it is I can quite easily maintain 10 MPH without much if any sweating on a bike trail, but on a calm hike with the kids on the same trail I struggle to achieve 3 MPH average.
Edit: *not factoring wind resistance, which is present regardless of mode of locomotion.
Nonetheless, I was really hoping to see what happens whet it falls down while running at high speed on the treadmill.
[0] http://www.wolframalpha.com/input/?i=28.58+mph+in+kilometers...
But in robotics everything is about 1000x harder than one would naively assume, it seems. (Judging by how my vacuum robot with a friggin' laser scanner can't find its docking station from 1 meter away.)