Train control device, train control method and computer program product
According to an embodiment, a train control device includes an acceleration detection unit and a train control unit. The acceleration detection unit detects acceleration of a train along a rotation radius direction, when the train is turning and passing a curved section of a rail line with a cant. The train control unit sets a passing speed of the train passing through the curved section so that a state of the train is placed in a balanced cant, based on a direction of the detected acceleration.
1. A train control method that is executed by a train control device mounted on a train, the train control method comprising:
detecting acceleration of the train along a rotation radius direction, when the train is turning and passing a curved section of a rail line with a cant; and
setting a passing speed of the train passing through the curved section so that the state of the train is placed in a balanced cant, based on a direction of the detected acceleration.
2. The method according to claim 1 , further comprising:
detecting load compensation of the train; and
correcting the passing speed based on vehicle occupancy corresponding to the load compensation.
3. The method according to claim 1 , further comprising:
correcting the passing speed to a faster speed, when the vehicle occupancy is determined to be higher than the vehicle occupancy corresponding to load compensation information that is used to set the passing speed of the train so that the state of the train is placed in the balanced cant; and
correcting the passing speed to a slower speed, when the vehicle occupancy is determined to be lower than the vehicle occupancy corresponding to load compensation information that is used to set the passing speed of the train so that the state of the train is placed in the balanced cant.
4. The method according to claim 1 , further comprising:
detecting acceleration of the train in a vertical direction, a horizontal direction, and a front-to-rear direction;
associating a direction of acceleration, amplitude, a passing speed, a location where vibration has occurred, and date and time of occurrence with one another as vibration detection information; and
storing the vibration detection information, when the acceleration of the train in the vertical direction or the horizontal direction becomes equal to or more than a certain value.
5. The method according to claim 1 , further comprising:
detecting acceleration of the train in a vertical direction, a horizontal direction, and a front-to-rear direction;
associating a direction of acceleration, amplitude, a passing speed, a location where vibration has occurred, and date and time of occurrence with one another, as vibration detection information; and
communicating with and notifying a ground side of the vibration detection information through communication, when the acceleration of the train in the vertical direction or the horizontal direction becomes equal to or more than a certain value.
6. A computer program product including programmed instructions embodied in and stored on a non-transitory computer readable medium, wherein the instructions, when executed by a computer, cause the computer to perform:
detecting acceleration of the train along a rotation radius direction, when the train is turning and passing a curved section of a rail line with a cant; and
setting a passing speed of the train passing through the curved section so that the state of the train is placed in a balanced cant, based on a direction of the detected acceleration.