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- 23 Mar 2011
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Without wishing to look like a complete idiot, I didn't think that AHB crossings had protecting signals. Indeed, I thought that was the point. 
If you'd be able to explain that further, I'd be grateful! I'd always understood that the barriers would remain down in that case, as opposed to a locally monitored crossing where the white light would cease flashing after a certain period, and shortly after the barriers would raise and the road traffic signal extinguish. In the case of an AHB where a treadle or TC on the approach has failed (without a train being present), what would stop the cycle timing out and the barriers raising in front of an approaching train? I appreciate that the failure alarm would sound in such a case, but with a train already in a long-ish section, that might not be much help.Track circuits and treadles have a time release which is based upon the longest occupation time, following which the equipment will auto-raise the barriers even though the crossing cycle has not been completed. This is to get around the old problem of people operating the strike-in treadle, and any failure that may occur to the track circuit.
Each Controlling (maybe Supervising would be a better term) signalbox has as I remember six failure/fault indicationsIf you'd be able to explain that further, I'd be grateful! I'd always understood that the barriers would remain down in that case, as opposed to a locally monitored crossing where the white light would cease flashing after a certain period, and shortly after the barriers would raise and the road traffic signal extinguish. In the case of an AHB where a treadle or TC on the approach has failed (without a train being present), what would stop the cycle timing out and the barriers raising in front of an approaching train? I appreciate that the failure alarm would sound in such a case, but with a train already in a long-ish section, that might not be much help.
... I came across this video where they silence after the barriers come down.
...
I must admit, I was under the impression that the audible signal sounded on half barriers all the while that the barriers are down as has been my usual experience. But while looking actually for videos of LED traffic signals, I came across this video where they silence after the barriers come down.
Is there a standard or is it a site by site assessment?
(PS on the first video, would you beleive that the track heading toward Barnetby has been down for ooh 20 years or so - the track on the right towards Grimsby has been down maybe 7 years... look which one is the more level - amplified of course by the zoom on the camera, but it is noticeable to the eye as well on that crossing)
Bow Brickhill is a manually controlled (CCTV) crossing (supervised from Marston Vale SCC??), not automatic - as such, the crossing needs to be proved clear before the protecting signal can clear. To avoid delaying the approaching train, that needs to be done before the train reaches the first adverse signal aspect in rear of the crossing - hence the much longer delay.What a short delay! (assuming that the video hasn't been edited.)
The full width automatic LC barrier at Bow Brickhill on the Bedford-Bletchley line has a 2 min 20 secs. timing from barriers fully closed to front of train arriving at the crossing.