So it wouldn't really be a case of a connection to residential/small commercial distribution supplies, - instead it would need a dedicated 400V connection to an 11kV substation connection immediately adjacent to the railway boundary at each feed point. Are most railways routed adjacent to substations or are we back to providing an 11kV feed from wherever just to allow lots of 400V feed
As a side effect of the tendency of railways to run where people live, many railways are surprisingly close to 11kV circuits throughout their length, and in either case the cost of wood-pole 11kV circuit is surprisingly low, and is often considered to be something of the order of £50-100/m.
This should be compared to the price of OLE electrification equipment of something like £5000/m for a twin track railway, in addition even if a parallel feeder has to be provided it can be shorter than the railway since it can go between substations in any pattern that is convenient and can go over over obstructions that a railway cannot.
They would be dedicated unit substations yes, however such units are already routinely provided to industrial customers and the DNO will operate hundreds or thousands (or even tens of thousands!) of such units throughout it's service area - this allows for impressive economies of scale thanks to the permitted specialisation of labour and materials.
. If say 8-car trains were run, thats a likely load of 2-3MW so these 500kW feeds would need to be evry 500metres at least near any gradients and stations. There'll be substations needed every km, each with their own 11kV feed.
My working estimate is for 1000kW train units (essentially a single Class 319, as not many unelectrified railways would expect several eight car trains per hour), but I assume substations every kilometre anyway.
Mmmm, doesn't look cheaper than a single 25kV feed every 20-30miles (or a 50kV AT feed every 40-50miles).
Bespoke installations and 400kV circuits (and AT systems apparently almost certainly require 400kV feeds) are enormously expensive!
And since they constitute points of failure you have to provide for redundancy, so any new significant 25kV scheme is likely to require a new feeder station unless it is pure infill or is sufficiently short that the risk of it being taken out is judged acceptable.
The advantage of 400V substations is that they become purely low voltage installations, which means that earthing and control system requirements and such are drastically less onerous, it could literally be a location cabinet sized device beside the track, and produced on a production line by the hundred at surprisingly low cost.
And of course it would have a permanently energised 750VDC conductor throughout at ankle height, so would fall foul of modern safety rules for new installations. No chance!
Who said anything about it having to be permanently energised?
Aluminium is cheap.
Could provide modern low cost semiconductor switches to the conductor rails if you like [as described above], and run the along-line bus inside a concrete trunking beside the track, like those used for signal equipment.
The capital cost would still be so much less than a 25kV installation that I believe a test installation is justified.