Earlier quoted context omitted.
> The fact of the matter is that there are no technological barriers to making aircraft completely autonomous, but pilots want the world to remain in denial about this for as long as possible for the sake of their job security. Two words: anomalous conditions. As we both know, pilots aren't needed in the vast majority of commercial flights. The plane is perfectly capable of taking off, navigating, avoiding collisions…
That's true, but 1) anomalous conditions are very rare and 2) as often as not the pilot is the anomalous condition. Pilot error is the most common cause of aviation accidents. EDIT: Notice that you had to go back 30 years to find your third example of a human pilot saving the day. And automation technology has improved a lot since then.
Armchair air crash investigator
101–110 of 154 posts
Re: Armchair air crash investigator
#102Earlier quoted context omitted.
Devil's-advocate: fine, OK, we still need pilots, for the time being. But do they actually need to be on the planes? In the case of two recent crashes (AF447 and this one, assuming pilot error turns out to be the cause as seems likely), it's safe to say that a computer would've easily done a better job than the pilots. Would be interesting to hear Capt. Sullenberger's take on the question.
If you're going to use remote pilots to deal with anomalous conditions, you'd better have an emergency electrical supply that'll keep your remote control running for however long it'll take to glide at the plane's maximum range. You'll also need a communication system that'll work over the ocean, in poor weather conditions, while the plane is having difficulty maintaining a stable attitude (good luck maintaining the…
(Shrug) Sorry, but given the complexity of the rest of the aircraft's systems, none of these engineering tasks sound impossible. 40 years ago we did this stuff on the freakin' Moon.
Although yes, I tend to agree that any move in this direction amounts to fixing something that isn't broken. (In the "freakin' Moon" example, the human pilot still had to handle the tricky part.)
Re: Armchair air crash investigator
#103Earlier quoted context omitted.
Neither can humans, but humans can handle a lot more situations. We can take into account a lot of information and come up with creative solutions, while current computers will need a set of humans to come up with and program potential scenarios beforehand. I think we'll have computer level AI that will perform better in accidents eventually (AI is improving and our brains are not) but it a long way into the future,…
Actually, it is extremely rare for a human pilot to come up with a "creative solution" to an emergency. The vast majority of emergency responses are established procedures for which pilots train. Most of the time they're following a check list. I can only think of a single example of a "creative" response to an in-flight emergency that actually helped, and that was UA232 in 1989.
Re: Armchair air crash investigator
#104It looks like this was an unstabilized approach right down to the ground. It would be interesting to see what the company SOP is. Any safe airline has a no-fault go-around policy for unstabilized approaches, and you'll actually get in trouble if you continue with an unstabilized approach and you don't go around. From what pilots are saying on the message boards it seems that a lot of Asian airlines have pretty much t…
Re: Armchair air crash investigator
#105Earlier quoted context omitted.
Actually, it is extremely rare for a human pilot to come up with a "creative solution" to an emergency. The vast majority of emergency responses are established procedures for which pilots train. Most of the time they're following a check list. I can only think of a single example of a "creative" response to an in-flight emergency that actually helped, and that was UA232 in 1989.
Aircraft accidents are extremely rare in the first place, so that's a given. The question should rather be whether computers would do a better job than pilots in the same situation, and currently the answer is no. The actual flying of the airplane which autopilots do today is just a small part of the pilots job, and automating the rest of the tasks a pilot performs is non-trivial.
Re: Armchair air crash investigator
#106Re: Armchair air crash investigator
#107Here is graphical comparison of safe landing and Asiana crash: https://pbs.twimg.com/media/BOhIDCWCUAApHFV.jpg:large . Also it appears that runway was modified: http://metabunk.org/sk/HL7742_777_Crash%2C_Korean_Asiana_Air...
This is comparing one single safe landing to a crash landing. Does that gain us new insights? Not really. For that, we'd need the crash landing compared to the average landing, and also to other (safe and unsafe) extreme landings of the past. And to get all Tufte of the graphics: Most of this is chart junk. The 3d view only serveres to hide information, and overlaying the paths (in 2d) would actually let us compare m…
Re: Armchair air crash investigator
#108Earlier quoted context omitted.
If you're going to use remote pilots to deal with anomalous conditions, you'd better have an emergency electrical supply that'll keep your remote control running for however long it'll take to glide at the plane's maximum range. You'll also need a communication system that'll work over the ocean, in poor weather conditions, while the plane is having difficulty maintaining a stable attitude (good luck maintaining the…
If you're going to use remote pilots to deal with anomalous conditions, you'd better have an emergency electrical supply that'll keep your remote control running for however long it'll take to glide at the plane's maximum range. You'll also need a communication system that'll work over the ocean, in poor weather conditions, while the plane is having difficulty maintaining a stable attitude (good luck maintaining the…
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> In the "freakin' Moon" example, the human pilot still had to handle the tricky part.
Since you're apparently well aware that the Apollo missions were conducted with manual docking and landing, why bring it up?
Especially given the relative simplicity of "final approach" on the moon, given the lower gravity, zero wind speed, and slower pace, I don't understand what your point is.
Re: Armchair air crash investigator
#109Earlier quoted context omitted.
Neither can humans, but humans can handle a lot more situations. We can take into account a lot of information and come up with creative solutions, while current computers will need a set of humans to come up with and program potential scenarios beforehand. I think we'll have computer level AI that will perform better in accidents eventually (AI is improving and our brains are not) but it a long way into the future,…
Actually, it is extremely rare for a human pilot to come up with a "creative solution" to an emergency. The vast majority of emergency responses are established procedures for which pilots train. Most of the time they're following a check list. I can only think of a single example of a "creative" response to an in-flight emergency that actually helped, and that was UA232 in 1989.
Do pilots typically glide unpowered 767s to landings at abandoned military airfields? (A result, incidentally, that could not be reproduced by other crews in simulators; are you sure it's the crews, and not inadequate programming? Still trust the computer?)
Are you willing to bet your life that the computer on a 737 that looked like this[1] could find its way to a safe landing?
As programmers, we should know better.
[1] http://en.wikipedia.org/wiki/File:Aloha_Airlines_Flight_243_...
Re: Armchair air crash investigator
#110Earlier quoted context omitted.
If you're going to use remote pilots to deal with anomalous conditions, you'd better have an emergency electrical supply that'll keep your remote control running for however long it'll take to glide at the plane's maximum range. You'll also need a communication system that'll work over the ocean, in poor weather conditions, while the plane is having difficulty maintaining a stable attitude (good luck maintaining the…
> 40 years ago we did this stuff on the freakin' Moon. ... > In the "freakin' Moon" example, the human pilot still had to handle the tricky part. Since you're apparently well aware that the Apollo missions were conducted with manual docking and landing, why bring it up? Especially given the relative simplicity of "final approach" on the moon, given the lower gravity, zero wind speed, and slower pace, I don't understa…