Pretty boring to be honest
I ended up just taking notes, didn't feel like there'd be anything important to ask/clarify. But there were a few key announcements I was happy to hear about. Particularly, that we're going to receive our first Mk III for testing from Kingston within the next 30 days.
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On the above topics, I'm pretty sure the Mk IIs can do 100km/h and actually operate at that speed on the JFK AirTrain as it's stated in a few AirTrain related spec sheets (in my experience riding it a couple years back, it definitely seemed faster than our system). To run our E/M line at that speed, it's just a matter of ratifying our guideways to run trains faster - and of course, phasing out any cars (Mk Is?) that cannot do higher speeds. For sure, no progress will be made until the power rail upgrades are complete as it would take extra power on already stressed rails.
ProTrans runs the Rotem EMUs at 80km/h in normal operation but I do believe up to 90km/h is used in catch-up mode (when trains are late).
Newer CBTC systems use a transponder located at key segments in the track (I wouldn't necessarily think it's conventional consumer Wi-fi but they are wireless). Basically a train passing over the transponder can receive a command to change state (accelerating, braking, speed) and of course report its location to central command; it also helps trains stop at the proper location on platforms and not overshoot. The system was explained pretty well in a recent NHK documentary (in English) on Japanese train systems, which included segments on CBTC and the numeorus SkyTrain-like linear motor subways. CBTC signalling, although not necessarily for a fully driverless operation, is used basically country-wide in Japan now on everything from subways to intercity trains to urban express commuter lines.