Semi automatics had a similar plate to an automatic, but with the word SEMI underneath the bar. As you say, they were provided for colour-light signals protecting ground-frames in otherwise plain line areas. Also where a signal box could switch out, and the signal worked automatically while the box was switched out.
Some very early signalling schemes had long stretches of plain line where the signals all worked automatically, with the signaller having no control over them, or any indication. However, by the 1970s, BR required that certain signals should have a signaller replacement facility, eg those protecting tunnels, and that at least one in every five autos should have a replacement facility. These were still plated and called auto signals. Later on (it may have been following the Clapham disaster), it was changed to require ALL automatic signals on new schemes should have a signaller replacement. Again, they were still plated and called auto signals.
There were two types of replacement. Signals with what was termed an emergency replacement (E button) would have a red indication on the panel, that would light when the replacement had been operated, but didn't actually prove the signal at red and alight. Signals with an R button I think proved that the signal was actually at red. I seem to recall that the later type were used for auto signals protecting level crossings, so that the signaller could be sure the crossing was protected before allowing an abnormal load over the crossing.
With relay interlockings, automatic signals saved money in not having to provide control and indication circuits to and from the signal. Likewise they saved having to provide buttons and indications on the panel. However, with CBI, all signals are controlled by the central interlocking, so there is no saving. Likewise with VDU based control systems, there is no saving. Which is why automatic signals have fallen out of favour. It is better to just provide a standard controlled signal with an automatic-working A "button".
If a signal has electrical controls, if it is a colour light, it's normal practice for the interlocking controls to return it to its most restrictive aspect where track circuits or axle counters are provided once a train has passed it. This may apply to some semaphore signals that have an electric motor.
When it changes aspect due to track circuit or axle counter controls depends on where these are. Some overlaps are over 300 yards. And the distance between the signal and the T/C or A/C for a distant signal may be even greater.
This does not apply to certain shunting signals. It does not apply to purely mechanical signals.
Main aspect colour light signals generally fall into one of these classifications:
- Colour light repeater/distant signal (including associated with a mechanical signal box)
- Controlled signal
- Automatic signal - are fitted with an automatic sign/plate
- Semi-automatic signal - are fitted with a semi-automatic sign/plate.
Notice that the word manual is not used.
A controlled signal will only clear if, either the signaller operates the control or an automatic route setting system is in operation. This control is a one shot control. Once a train passes the signal and it returns to red, the signal cannot reclear on its own. The signaller has to cancel the route/return the control to the normal position and then re -operate it to get the signal to clear again.
Some controlled signals may have an automatic switch/control. When this is operated, the signal will work automatically with no further input required from the signaller. This function may only be available for one route (e.g. the main line route). To an observer on the ground, it will look similar but not exactly the same as an automatic signal.
During a failure of the main remote control system, a back-up system, when used, may cause some controlled signals to operate in an automatic mode.
An automatic signal works completely automatically and the displayed aspect is only dependent on the Interlocking controls (signal ahead proved lit, state of track circuits/axle counters etc.). Some may have additional controls (may have a direction control if on a bi-directional line, may need a controlled signal routed up to it before it will clear, or the route set for the controlled signal that forms the exit from the bi-directional section and a track circuit or axle counter detecting a train approaching it).
If there are no signaller emergency controls, the signaller cannot put it to red/danger.
As described above, there are various emergency controls that were provided in the past.
- Signal post replacement switch - disadvantage being someone had to go to the signal to operate this. But providing it was cheap.
- Emergency replacement control operated by the signaller, non-proved type. Because no circuitry or indication was provided, the signaller had no way of knowing if the signal was lit or what aspect it was showing. Hence it could not be relied on.
- Emergency replacement control operated by the signaller, proved type. With this type, circuitry and an indication was provided. When the indication showed red, the signaller could rely on the signal being lit, being red and being commanded to be red (as opposed to just happening to be red).
Semi-automatic signal - a signal that operates like an automatic signal when the GF points that it protects are proved to be in the normal position and the GF is closed (not in use).
There are some oddities.
Signals that are not block post signals / don't form part of the aspect sequence. These either show green all the time (no matter where trains are) or only operate as a colour light distant (but may show double yellow as well as single yellow and green). They only show red when operated by the individual emergency switch/control available to the signaller, when a special group emergency switch/control is operated or when some other special emergency system is operated.
Former automatic signals but which have had their automatic sign (plate) removed. Done for operating reasons before the rule that allowed a driver to proceed under their own authority was changed. They still operate as automatic signals.
I only visited Worcester briefly, but I know they do have some semaphore signals that have electric motor control.