I honestly can't understand how this was allowed to happen. Surely testing should ensure that the aspect displayed is correct, at the very least?
Yes, any signalling equipment that has been disconnected and then reconnected should be tested to the SMTH document.
If two wires were crossed, two different tests/checks that should have been done should have picked up this mistake.
If the SMTH handbook (Signal Maintenance Testing Handbook) is followed this shouldn't happen. This is why its a RAIB digest nothing significantly new to learn.
Agreed. It could well be a failure to correctly follow existing procedures for some reason or reasons rather than an equipment fault or an omission in the existing procedures.
Each investigation will be different. Each incident will be different. Whilst there should be some industry level learning, the human error factors are hard to remove. Miss-communication, out of date documents, lack of training, fatigue, etc. are all potential factors. The learning part is easy. Implementing change is very different.
Network Rail is already aware of many problems. Consultation with the unions on changing the competence system took place before COVID19. The cause here may or may not be a new problem. We will have to wait to see what the investigation finds/has found.
Did the first train stop because of a TPWS triggering?
Ultimately the only way to avoid this sort of thing is to remove the signal heads from the equation.
The fewer components there are in the signalling chain to go wrong the better.
Unlikely TPWS was fitted. This is one of the weaknesses of the majority of signals not being provided with TPWS. TPWS is a mitigation against the worst case scenario of a collision at a junction or a level crossing.
Seems a rather similar scenario to Clapham, where the driver noted an irregular aspect and stopped at the next signal to report it. The first signal then gave a false proceed aspect to the following train.
It may appear similar, but the cause looks to be different. Clapham was caused by a track circuit relay contact having been bypassed by a wire that should have been removed or properly insulated. The part of the circuitry concerned was the interlocking and control circuit for the signal.
Here, from the sparse information available, it appears to be the wiring or cable from the control system to the signal head itself. So after the interlocking and control circuit.
If only the Lamp outputs had been swapped then would the Signaller's Workstation be displaying the Red correctly? And if so, would they receive a SPAD alarm when the 2nd train passed what they saw to be a legitimate Yellow signal?
Or was the fault slightly deeper into the interlocking?
If the signaller actually has indications (unlikely if this is a relay interlocking automatic signal), the signallers aspect indications are driven off the control relay or the module in the relevant equipment location case or interlocking relay room or equivalent. So if there is a wiring fault between the equipment location case and the signal head, this would not affect the indications provided to the signaller.
For the same reason, there would be no SPAD alarm even if one was provided (which is unlikely if this is an automatic signal in a relay interlocking area).
Given that the signal was disconnected and reconnected due to planned track maintenance work, that implies that the multicore cable from the equipment location case to the signal head was disconnected and pulled clear of the track. This is done so that track work does not damage the cable. As I say above, this is after all the interlocking and control circuitry.
On the subject of removing physical signal heads, or fewer components in the signalling system, that does not really change the risk by any significant amount. There were far fewer complex signalling systems in the past and the accident/incident rate was higher. Signalling and interlocking systems have become more complex to try to prevent human error at all points of the system. The number of actual unprotected wrong side failures where the signalling equipment was found to be at fault (regardless of the how/when/who) is extremely small. Compared to the number of items of signalling equipment (including, but not limited to signal heads, equipment location case, connection boxes/junction boxes, track circuits, axle counters, point operating equipment, interlocking equipment and wiring, relays, lever/switch electrical connections etc.) and the number of trains run each day, the percentage is astonishing small.
Human factors and human error vastly outweigh unprotected wrong side failures of signalling equipment.
Hence why I’ve always been of the opinion that ATP should have been introduced rather than the “quick win” of TPWS. But that’s a debate that has already been had and is now irrelevant. Or rather if ERTMS had been introduced to a time line as originally intended, it should have been.
If this signal had been fitted with the GWML ATP system or TPWS, because this equipment would have been controlled from the equipment location case, the train would have received a brake application
IF the signal was supposed to be red. This would not have made any difference to the first train in this incident. But it would likely have applied the brakes for the second train.