B61L2201/02

VEHICLE BRAKE CONTROL SYSTEM AND METHOD
20230007902 · 2023-01-12 ·

A vehicle control system includes a controller disposed onboard a first vehicle system and comprising one or more processors. The controller is operably connected to a propulsion and braking subsystem of the first vehicle system. The controller is configured to analyze a notification message received from an off-board source as the first vehicle system travels on a route. The notification message identifies an unplanned brake application made by a second vehicle system. In response to the notification message, the controller is configured to control the propulsion and braking subsystem to modify movement of the first vehicle system based at least in part on a location of the second vehicle system to avoid the second vehicle system.

Speed control and track change detection device suitable for railways

A speed control and track change detection device for railways is characterised in that it comprises three high-frequency radar sensors located at the vertices of an imaginary triangle and a digital processing device for processing the signals detected by the radars, wherein in the case of the speed control system, both sensors are located at 1 m distance from each other along the axis of the path of the railway and inspect the ground of the infrastructure 2 cm away from the outside of each rail, and according to the temporal offset of the signals obtained the digital processing device estimates the exact speed of the train.

SPEED CONTROL AND TRACK CHANGE DETECTION DEVICE SUITABLE FOR RAILWAYS

A speed control and track change detection device for railways is characterised in that it comprises three high-frequency radar sensors located at the vertices of an imaginary triangle and a digital processing device for processing the signals detected by the radars, wherein in the case of the speed control system, both sensors are located at 1 m distance from each other along the axis of the path of the railway and inspect the ground of the infrastructure 2 cm away from the outside of each rail, and according to the temporal offset of the signals obtained the digital processing device estimates the exact speed of the train.

Vehicle brake control system and method

A vehicle control system includes a controller disposed onboard a first vehicle system and comprising one or more processors. The controller is operably connected to a propulsion and braking subsystem of the first vehicle system. The controller is configured to analyze a notification message received from an off-board source as the first vehicle system travels on a route. The notification message identifies an unplanned brake application made by a second vehicle system. In response to the notification message, the controller is configured to control the propulsion and braking subsystem to modify movement of the first vehicle system based at least in part on a location of the second vehicle system to avoid the second vehicle system.

Methods and Systems for Energy Efficient Route Planning and Control Strategies for Self-Propelled Railway Vehicles
20260042473 · 2026-02-12 ·

Techniques and systems for planning and controlling self-propelled railway vehicles along energy-efficient routes are disclosed. A computing system may receive input parameters for at least one railway vehicle that indicate a current location of the railway vehicle, a target destination, and one or more physical attributes corresponding to the railway vehicle. The system may determine, based on the input parameters and railway map data, a route for the railway vehicle to navigate and a control strategy for the railway vehicle to use during navigation of the route. The control strategy associates a speed range with one or more portions of the route. The computing system may then provide the control strategy and the route to a control system of the railway vehicle. The control system is configured to control the at railway vehicle according to the control strategy during navigation of the route.