southern442
Established Member
Was that really necessary?
As it happens I started on the southern before some people here were born, such experience brings naivety over time.
Apologies, I was very hot and bothered when I wrote that.
Was that really necessary?
As it happens I started on the southern before some people here were born, such experience brings naivety over time.
Apologies, I was very hot and bothered when I wrote that.I found your knolwedge of the Southern system quite accurate.
Does it mention obstacle recognition? I don't know how these trains use obstacle detection technology, but it could well just be in a dispatch context. The DLR, in it's relatively closed environment (the same as most or all of those grade 4 systems listed) zooms around happily all day with no way for an obstruction on the line to be detected automatically. Even if it weren't so, obstacle detection is a rather simpler business than obstacle recognition (which is why Network Rail are struggling with the former on level crossings - if the latter was sufficiently advanced, I'm sure they'd be considering it!).Incidentally, for this interested, Wikipedia does of course have a list:
https://en.wikipedia.org/wiki/List_of_driverless_trains
Seems there are actually *lots* of Grade 4 systems; pretty much all metro things, but it does show that the obstacle recognition is well on the way to being resolved. Still leaves the issue of obstacle removal for a larger line in no-train-captain systems.
Apparently there is a report in today's FT re a working group developing driverless trains. As its protected by a paywall does anyone have a link via another site? I do wonder if some completely new line e.g HS2 may go down this route.
People would not feel safe going 200mph with a robot, I wouldn't. The DLR is one thing but 100, 125, 140, 186, 200mph? No thanks. Plus it would cost a fortune to implement. It probably won't happen. I still doubt London Underground.
I don't know what you mean by "doubt London Underground", but a closed metro system with common stock is completely different to the intricacies of the National network. It's not viable, at least in the forseeable future. And we've had loads of threads about this already.
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They already exist, but it's not viable for the national network.
If the report was that significant, it would be more widely available, than just one paywall site. And if it was, a Google search would find it!![]()
At work I write quite a lot of applications for various tasks, and I know only too well that even the slightest error in the code can have some, well rather interesting effects. There will always be a time when you have a PICNIC (problem in chair, not in computer) moment & find yourself swearing at the screen as your code runs away with itself. So personally, I'd be quite nervous writing the software that would be responsible for carrying several hundred people long distances at speed, be it by train or plane. That's not to say the technology should just be dismissed out of hand, but driverless / pilot-less systems operating at speeds that can be dangerous need to be rigorously tested, and retested, and tested again....
Driverless trains outside of the sterile DLR wil not happen nor will pilotless planes. The technology already exists to fly completely autonomously. its call a drone. However when things go wrong and the data link is down, having a MK1 computer and eyeball on the job can save the day. Hudson river for example. Computers cant replicate what happened there with a successful outcome and undoubtedly it was a very experienced human that saved the day.
This is precisely the point. A Driver (or 'Train Operator' to use the LU term for someone who sits in the front cab but isn't a Driver) will always be required on an open railway network using heavy rail at normal operating speeds. A computer can never be totally relied upon to spot a fallen tree, an obstruction blown across the line, a pushbike dumped on a level crossing, a trespasser, or so on, there are just too many variables and possibilities.
Nor is it likely to slam on the brakes having just wiped out a jumper when passing through a platform, instead perhaps rolling into the next stop with a rather colourfully decorated nose cone....
I can just hear a Railway Boss now, having been convinced by Technical Boffins and Marketing people, "We're going to get rid of human train drivers. Every so often they want a pay rise, and some of them retire meaning new ones need training. It costs £millions.
So... Wouldn't it be good if we could replace them with computers. There'd be no strikes then. Except control staff and maintenance staff could still cripple the network of course, but let's gloss over that. The computers would need software updates which would need testing, and oh yes, the computers themselves would need upgrading periodically - a bit like those drivers retiring!
Anyway, it's only going to cost £x TRILLIONS , and will save us money!"
As I said, ERTMS will not be completed nationwide until 2044.
Is that based on a thorough knowledge of the driver's duties and responsibilities? At least HSTEd, as much as I don't think much of whatever goes on in this wonderful theoretical world would stand up to the realities of the railway environment, can back up his thoughts and proposals with a thorough and reasoned (even if some of the big words are made up) argument!
On those realities - I think we're some way away from being able to examine the line remotely. The driver's presence and thorough route knowledge counts for a great deal - a good number of broken rails, for example, are detected by a driver, before it deteriorates too badly, reporting a rough ride (and distinguishing that from the various bits of track that are known to always produce a bit of a kick). Defects on passing trains - would an on-board computer be able to (within a reasonable budget) detect a shifted or otherwise unsafe load? Assuming that there won't be a sudden influx of hi-tech freight stock, would a computer even be able to 'drive' a heavy freight train on a challenging route - still a task requiring a fair amount of skill, I understand.
As an aside, isolating the power supply isn't (currently - no pun intended - at least) an effective way of getting a train stopped quickly - reference to stories of electric trains coasting twenty miles or more into Euston proves that!
So you are going to replace all the old trains as well!![]()
Can you provide a source for this, please?Yes, this is currently at an early stage of development. It is an essential development to provide additional capacity on the busy routes, and has been, in part, brought forward due to persistent militancy amongst railway workers.
What sort of timescale would you expect these rather ambitious ideas come to fruition?
Yes indeed. A computer can make the wrong decision in a fraction of the time it takes the human brain!
Consider the Automatic Route Setting (ARS) introduced with the new East Midlands Signalling. Since it was switched on i've never known so many services wrong routed. Good job our Drivers were on the ball to spot them.
I will say again that ECTS does not envisage a driverless train in the open environment.
No one sensible is advocating wholly unstaffed trains, but that train drivers are replaced with DLR style train captains. wholly unstaffed trains is just a straw man.
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I agree that at present the technology is not advanced enougth to operate in the "open" environment. Perhaps in the future it will be (likely to be?) but i cant see that day being within the next few years!
I'm sorry, but image recognition only goes so far. The train isn't filling in an I-Spy book so there's no point it simply knowing the difference between a horse and a car. It's got to make an assessment of risk and formulate a plan of action based on what it can "see", and that level of decision making requires far greater levels of intelligence than has yet been attained.
Of ATO on a couple of short sections of Network Rail infrastructure (no surprises there) or fully driverless trains? No plans for the latter that I'm aware of at this stageStudies and evaluations are under way now; implementation targeted to start in CP6.
Either way, if we can't get that right, or ERTMS (which still hasn't really proven itself), or obstacle detection on level crossings - what chance is there with something that supposedly removes the need for human intervention altogether?Was that the system or the data at the route cause?
Either way, sloppy system design and implementation is unacceptable.
Is it? A product that will be able to cope with the realities of our railway system as opposed to the sterile environment of the underground lines that have been converted to driverless operation so far?Heavy rail product is already on the market, with a five to seven year lead time from inception to product, the required product technology is already in the pipeline.
Why is experience not important? Evolution might change the way that things are done, but it doesn't usually change the underlying issues and challenges that need to be understood. This fantasy world is clearly brilliant in theory, but the 'experts' in this thread seem unable to answer - meaningfully - some of the questions being posed by those of us who have to deal with these things every day. I'm sure we've all seen inexperienced outsiders - in any industry - come in with a fantastic idea of how things should work, but absolutely no experience of the realities - and, inevitably, their radical proposals prove completely impractical. So yes, I think that there'll always be a place for experience.When an industry evolves those with existing experience are not necessarily relevant to the future. There are plenty of examples of this. It does not mean that those in the industry are not relevant, rather that they can be reliant on the assumptions that their knowledge is wholly relevant going forward.
obstacle detection is a rather simpler business than obstacle recognition (which is why Network Rail are struggling with the former on level crossings - if the latter was sufficiently advanced, I'm sure they'd be considering it!).
However when things go wrong and the data link is down, having a MK1 computer and eyeball on the job can save the day. Hudson river for example. Computers cant replicate what happened there with a successful outcome and undoubtedly it was a very experienced human that saved the day.
Why is experience not important?
This fantasy world is clearly brilliant in theory, but the 'experts' in this thread seem unable to answer - meaningfully - some of the questions being posed by those of us who have to deal with these things every day. I'm sure we've all seen inexperienced outsiders - in any industry - come in with a fantastic idea of how things should work, but absolutely no experience of the realities - and, inevitably, their radical proposals prove completely impractical.
Yes, I agree that it might work! Others have gleefully leapt on the opportunity to point out that drivers' wages and status could be cut as a result, and that's the part that I object to - there'll still be a need for a fully competent (rules, traction and route) driver in that model. There's also the potential problem of the obstacle detection equipment regularly detecting obstacles that aren't a problem, and causing spurious brake applications as a result. After all, if it can't identify obstacles, how does it know whether an object is foul of the line or is actually well clear but directly ahead because the train is on a curve? Not impossible to overcome, I'm sure, but also not as simple as it might seem.Let's assume you're right, and obstacle recognition is impractical to implement, isn't obstacle detection enough for the train captain model proposed earlier? Most of the time the train captain could have customer service duties, but when an obstacle is detected on the track, the train would notify the captain and stop just short of the obstacle. The train captain would then be able to decide how to deal with it, which may include slowly proceeding past the obstacle then returning to automated operation.
I can't disagree with that. The difference is that you're suggesting building the existing experience into the machine, rather than an entirely theory-based design that completely ignores the realities of the job!Experience is important, but that experience can be built into a machine and the useful experience becomes how you operate, maintain and upgrade that machine. How useful are hand weaving skills in modern fabric production?
I'm not, and I don't claim that computers will never be able to do what you suggest. I do think that it's a long way off though, and that there'll be a need for a fully competent driver, even if not restricted to the cab in normal operation, for a long time even beyond that.So are you an expert in machine learning or artificial intelligence? I've yet to see any rail expert explain why a computer is incapable of recognising whether the track is clear or not, or indeed any problem that can't be solved with suitably sophisticated software and a member of staff on board (but not necessarily looking out of the front window at all times).
I agree that the first implementations of ATO on the mainline would need human supervision.Yes, I agree that it might work! Others have gleefully leapt on the opportunity to point out that drivers' wages and status could be cut as a result, and that's the part that I object to - there'll still be a need for a fully competent (rules, traction and route) driver in that model.
This would be much simpler than you think, I can think of two methods which would be quite useful.There's also the potential problem of the obstacle detection equipment regularly detecting obstacles that aren't a problem, and causing spurious brake applications as a result. After all, if it can't identify obstacles, how does it know whether an object is foul of the line or is actually well clear but directly ahead because the train is on a curve? Not impossible to overcome, I'm sure, but also not as simple as it might seem.
This would be much simpler than you think, I can think of two methods which would be quite useful.
Cruise missiles were navigating themselves using terrain contour matching back in the late 1960s. Recycle that concept (which western military services have now left behind in favour of GPS) and you'd instantly have a useful system for recognising what obstacles are in the train's path. The fact that the rails are steel and therefore the best possible radar reflectors will be a great help!
Crying out loud. Surprise surprise with this forum, the same suspects spouting the same rubbish.
No one has said it can't be done chip, we all know the technology is capable of moving and stopping a train.
I won't lead this down the road of the DOO debate, but the other aspects sound fair. That said, if the driver's got to be there anyway, I'm sure that there's a lot to be said for him retaining driving duties (unless capacity constraints really do require ATO, as per Thameslink), supervised by the computer, and thus being more alert, and ready to respond in an emergency, than if the computer's doing all the work.I agree that the first implementations of ATO on the mainline would need human supervision.
In that case, the ideal way to run it would be keeping the driver and keeping them in the cab but also giving them the safety-related duties of the guard, particularly with respect to self-dispatching when the train handling the driving aspect would allow the driver/captain/guard to observe the platform-train interface safety with their hand on an emergency stop button. All customer-facing duties (ticket inspections, enquiries etc) would then be handled by dedicated customer service staff on inter-regional and inter-city trains, or by remote intercom to the operator's call centre on commuter routes.
I'm sure that neither would be impossible, but I'm not convinced that it'd be as easy as it sounds! How would it cope with diverging routes, for example? Cruise missiles have the advantage of being able to navigate themselves, rather than following a path that they can't change - in time, perhaps the technology will be able to relate the layout that it sees ahead of it to the route set by the signalling system. In the meantime, how does it differentiate between an obstacle on a diverging route that it's going to take through a complex junction and between a train approaching safely from that diverging route when it's going the other way? What would it do about a large bull within the boundary fence, well clear of the running line at the moment but posing a potentially significant danger to trains (see Polmont) that needs to be reported quickly (worthy of the red button and/or emergency protection) in accordance with the Rule Book?This would be much simpler than you think, I can think of two methods which would be quite useful.
Cruise missiles were navigating themselves using terrain contour matching back in the late 1960s. Recycle that concept (which western military services have now left behind in favour of GPS) and you'd instantly have a useful system for recognising what obstacles are in the train's path. The fact that the rails are steel and therefore the best possible radar reflectors will be a great help!
The second method would essentially be a rehashing of the road surface reflectors which allow a driver to detect a kangaroo crossing the road at night by just seeing that the retro-reflecting light got interrupted. Reflectors attached to electrification masts, station platforms, lineside fences, other trains and so on would allow a UV emitter to determine whether any detected objects are nearer to the train than objects with proper reflectors on them.
The airline world (which has a safety culture far superior to the rail world) would suggest you're wrong, and that it would be better for the driver to be relaxed and monitoring things than stressfully occupied with the fatiguing actions of manually driving.That said, if the driver's got to be there anyway, I'm sure that there's a lot to be said for him retaining driving duties (unless capacity constraints really do require ATO, as per Thameslink), supervised by the computer, and thus being more alert, and ready to respond in an emergency, than if the computer's doing all the work.
Same way it does for a curve. Knowing with precision the path it is scheduled to take, and checking it is clear of obstructions. Hot spots for obstructions could have fixed object detection units placed there until the cause of the obstructions is eradicated.I'm sure that neither would be impossible, but I'm not convinced that it'd be as easy as it sounds! How would it cope with diverging routes, for example?
Because "we pay them to do the job" has been totally discredited as a safety strategy, many times over.What's the point, really, though if you still need a fully competent (and fully paid) driver?
The airline world (which has a safety culture far superior to the rail world)
I don't really disagree with the majority of your post, but I think it's clear that we're a very long way from much of it becoming a reality! I don't know if some of the signalling technology in use elsewhere in the world differs, but nothing - current or, as far as I'm aware, proposed - in this country tells the train which route it's being signalled over, only (in the case of ATP and ERTMS?) how far it's allowed to go and the speed 'profile'. Please correct me if I'm wrong!The driving competency of a train captain would not need to be the same as a "proper" driver. The rule knowledge required would be appropriately lower as they would only need the knowledge appropriate to incident responses and to handling low-speed limping home to the next station, and the driving skills required would be similarly simplified.
You'd also get improvements to customer service. With the operational tasks of the guard shifted to the train captain, customer service personnel could focus on their jobs completely instead of being hampered by multitasking.
I don't fancy travelling on a 140mph train with a computer driving it, especially in this day and age of computer viruses, Trojans and hackers.
Again, not impossible in the longer term, but not a realistic prospect in the near future either! Even if the current technology was up to the job, it'd take a lot of work and time to prove that it was safe.
I still maintain that it'd take a fair amount of further development to get it even to that stage though, for the specific railway application where it's trying to establish that the path that it must follow is clear as opposed to other applications where it can choose its own path to negotiate the obstacles that it identifies.
It'd still need someone competent to drive it manually too!