Would you please provide a test description of what you are seeing, because there will be many users who can’t view the picture?
Given London Overground is currently reporting severe delays due to a freight train Spad, I suspect that you may have taken a picture of it.
They seem to have done so (on their website) - "due to a freight train" -if that’s what LO have reported they might want to get their facts straight before publicly stating it.
They seem to have done so (on their website) - "due to a freight train" -
To add to the OP's description, the signal appears to have the junction indicator (still) illuminated.
Trying not to divert the thread but just out of curiosity, what does the MOM do on site? And how do they assist with the set back?Stuffing the job up for the time being until a MOM arrives who can help with the set back.
They watch the end of the train and communicate with the driver (the better part of half a mile away) whether the route is clear or if he should stop, and how far they have left before an obstruction.Trying not to divert the thread but just out of curiosity, what does the MOM do on site? And how do they assist with the set back?
Signaller error would be more appropriate.
Imagine the train’s battery powered rear wagon red light included 2 small cameras that could be radio controlled from the loco to turn on & transmit left right images to a cab unit.
It would resolve the problem as soon the signaller gives permission to draw back.
No need for MOMmy to visit from 30 miles away plus the time needed to park.
The driver could sort it in three minutes.
What’s the betting that someone will say “it can’t possibly be done like that.” I can imagine the “not possible brigade already marshalling their arguments”
It reminds me of the senior manager who said “we won’t try for DOO on the Fenchurch St Tilbury Southend line because the east west nature means the sun will shine into the cameras”. I mentioned the adjacent east west District line plodding along happily with DOO & he found some other excuse. DOO was introduced two years later on all LTS services. He went to a more important job..
The camera device would also be useful for shunting.
Imagine the train’s battery powered rear wagon red light included 2 small cameras that could be radio controlled from the loco to turn on & transmit left right images to a cab unit.
It would resolve the problem as soon the signaller gives permission to draw back.
No need for MOMmy to visit from 30 miles away plus the time needed to park.
The driver could sort it in three minutes.
What’s the betting that someone will say “it can’t possibly be done like that.” I can imagine the “not possible brigade already marshalling their arguments”
It reminds me of the senior manager who said “we won’t try for DOO on the Fenchurch St Tilbury Southend line because the east west nature means the sun will shine into the cameras”. I mentioned the adjacent east west District line plodding along happily with DOO & he found some other excuse. DOO was introduced two years later on all LTS services. He went to a more important job..
And keep in mind that the MOM is employed by Network Rail. And in my area, cost cutting by reducing the number of MOMs and the locations they are (were) based at appears to be more important than train delay.If the need to reverse a train is frequent enough and disruptive enough that its worth spending money on making it quicker (I have my doubts) then I suspect it would be far more effective to just train (and authorise) people who are closer than 30 miles away.
A standard electrical connection could be designed and fitted, especially if it came with other upgrades like ECP brakes, for a price of course.Most freight trains don't have any sort of electrical connection from one end to the other, so it would need to be wireless.
Passenger units manage the door CCTV in the cab so 2 cameras shouldn't really be that big of a problem, you could even use the DMI from ETCS for one of the pictures if you wanted (Shunting would be on SR mode).Then you would need to consider issues like field of view (probably you'd want two cameras, one giving a wide angle overview and other a closeup of the area immediately behind the train), where in the cab you would mount the screen(s) such that the driver could have a view large enough and close enough to their eyeline to be useful while also not getting in the way when they aren't needed.
Testing and maintenance wouldn't be too problematic, but the funding is the killer.Once you have sorted all these you can then move on to how they will be tested and maintained. At this point you should be in a position to think about how to fund them...
I'm not sure, tbh. The ongoing cost of such a system would be lower than the ongoing cost of staff, even if the initial cost is higher. It depends on whether you're fitting only a handful of trains or all c.600 Class 66s. If it's only for specific trains then yes, staff are probably easier. But if it's every train then there's a lot of different operational moves that may become available and could change rolling stock strategies.If the need to reverse a train is frequent enough and disruptive enough that its worth spending money on making it quicker (I have my doubts) then I suspect it would be far more effective to just train (and authorise) people who are closer than 30 miles away.
Trying not to divert the thread but just out of curiosity, what does the MOM do on site? And how do they assist with the set back?
They watch the end of the train and communicate with the driver (the better part of half a mile away) whether the route is clear or if he should stop, and how far they have left before an obstruction.
I’ve never been comfortable with NR MOMs being sent to this sort of job. They’re not trained and competent to undertake shunting, they don’t have suitable back to back radios (with the continuous confidence tone) and they are having to walk close to a moving train on the main line with all the hazards that presents, without any sort of planned safe system of work or suitably risk assessed walking route like groundstaff at a siding, yard or terminal would have. All it would take is one trip over a raised troughing lid or a bit of scrap rail and there could be a serious accident. See the RAIB reports for Dagenham Dock in 2006, Harlow Mill in 2007 and Dollands Moor in 2019 for examples of hpw badly wrong shunting can go in a yard, let alone on the main line.And keep in mind that the MOM is employed by Network Rail. And in my area, cost cutting by reducing the number of MOMs and the locations they are (were) based at appears to be more important than train delay.
Sometimes (on nights for example), they could be 130 miles away, never mind 30 miles…
In the USA, where freight trains are very much longer than here, radio signals are routinely used to control locos at mid-train or on the rear, which may be up to three miles from the lead loco controlling them. There are also end-of-train devices which receive braking signals that operate an air valve, allowing the air to be dumped from the rear as well as front of the train. However I don't know of any which include cameras, back up moves are always done with a member of staff riding on the end wagon, talking to the engineer (driver) using a hand held radio.I expect that getting a video signal from one end of the train to the other reliably in all circumstances would be tricky. Most freight trains don't have any sort of electrical connection from one end to the other, so it would need to be wireless. It's much to far for wifi or bluetooth, 3G/4G/5G are not reliable enough in the open let alone in cuttings and tunnels, and AFIAK GSM-R wouldn't have nearly enough bandwidth (remember its safety critical, so you can't have any lag). Containers and tank wagons at least are also liable to get in the way of signals.
I expect that getting a video signal from one end of the train to the other reliably in all circumstances would be tricky. Most freight trains don't have any sort of electrical connection from one end to the other, so it would need to be wireless. It's much to far for wifi or bluetooth, 3G/4G/5G are not reliable enough in the open let alone in cuttings and tunnels, and AFIAK GSM-R wouldn't have nearly enough bandwidth (remember its safety critical, so you can't have any lag). Containers and tank wagons at least are also liable to get in the way of signals.
The limitations of a radio link depend on a number of factors. Certainly it’s possible to transmit high quality, high definition pictures over ten miles or more, as that’s what happens with TV transmission.In the USA, where freight trains are very much longer than here, radio signals are routinely used to control locos at mid-train or on the rear, which may be up to three miles from the lead loco controlling them. There are also end-of-train devices which receive braking signals that operate an air valve, allowing the air to be dumped from the rear as well as front of the train. However I don't know of any which include cameras, back up moves are always done with a member of staff riding on the end wagon, talking to the engineer (driver) using a hand held radio.
Portable tail lamps flash for a reason - it conserves the battery. How much energy would be drained trying to transmit clear images over half a mile? Are you going to equip every single locomotive and every single tail lamp for the sake of a pretty rare bit of disruption? Who is paying for all this?Imagine the train’s battery powered rear wagon red light included 2 small cameras that could be radio controlled from the loco to turn on & transmit left right images to a cab unit.
And equip every single wagon (just one not equipped in the train would render the whole system useless)?A standard electrical connection could be designed and fitted
Can you please clarify for someone like me.Except it wasn't.