I'd expect an emphasis on the prevention and detection of trespass and other accidental ingress. Stations are one area where this is a risk, as are level crossings. Improvements and maintenance of fencing could be looked at generally. At higher risk potential ingress locations, some additional sensors might be incorporated, activating alarms and perhaps automatic power shutoff. Some finer-grained quick-switching facilities might also be made available for maintenance staff protection on the lineside. As to the switching itself, this need not be ruinously complex or expensive in an all-new installation, with additional switchgear incorporated in the original design. I still think a modest-sized battery onboard is best, with platform areas then able to be devoid of conductors completely for most through stations, and 3rd rail present only at termini or other locations with long layovers, and then only briefly switched on when required for stationary charging and pull away. The battery option also permits longer gaps through junctions and either side of any remaining level crossings. While in this scenario the majority of the simple plain line between stations would be equipped with 3rd rail, the battery option could also help address the parallel running risks between Eridge station and Birchden Junction, where the Spa Valley Railway runs closely alongside the national rail single line for about a mile. With batteries onboard, the Southern Uckfield subfleet could cope with a long gap from just south of Eridge station to just north of Birchden Junction. How the new 3rd rail is supplied from the electrical grid is an area where some innovation might allow the feeders to be connected to local the local DNO network in a number of places rather than requiring an extension of the railway's own high voltage distribution system in a traditional Southern Region configuration. The single line limits peak loading and the new feeder locations might themselves incorporate some peak-levelling storage capability.