That is the intention, but many people report discomfort due to the non-ideal adjustments, at least for the tilting trains in germany.
That is the intention, but many people report discomfort due to the non-ideal adjustments, at least for the tilting trains in germany.
I commute 50 mins each way on a Pendolino in the UK (into and out of London) and find that if I'm doing work on my laptop, or responding to emails on my phone as the train tilts I feel uncomfortable and dizzy.
The "slow" Desiro trains that don't tilt take 2 minutes longer to get into London, because whilst their top speed is 15Mph lower they accelerate faster.
Interestingly, I don't get motion sickness in VR, which is the opposite problem (movement visually, none in reality).
Thought to be so, because there's a mismatch been visual and inner ear inputs. That is: you can see you're going around a corner, but you don't feel it. Resulting in motion sickness. Since all people have different tolerances of motion sickness, it's impossible to have a "correct" amount.
Almost all systems compromise between zero and full compensation, but passenger comfort is just one of many factors, and not the most significant. The discomfort on German tilting trains is probably because they are too close to "ideal".
One of the issues with the German tilting trains is that they try to compensate up to 8° without track knowledge (BR 612) thus the first carriage (the one after that less so) swinging abruptly to compensate when entering or exiting a curve. Not sure how the class 390s solve that problem.
I would love to see some data - I assumed this was a solved problem, but I wouldn't be too surprised if the tolerances were revised to fit the problem.
I forgot to mention the 'interesting' part of this problem: that the effects are measured cumulatively. That is, against passenger journey length. Drivers and other staff are not considered as far as I know!