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Design of turnout points interlocking control system in switchback station for Shanghai Metro Line 16 based on fail-safe principle

机译:基于故障安全原理的上海地铁16号线转乘站道岔点联锁控制系统设计

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In switchback station of the on-building Shanghai Metro Line 16, different kinds of trains such as part-stop and regular ones are designed to finish their switchback work there. As the operation time cycles for each train mode are different, certain kind of train should obey last in first out (LIFO) order when it uses switchback lane, this makes the train dispatching in such station more complex than urban metro lines. As for the turnout points which are essential for train dispatching in switchback station, more rigorous software algorithm and more reliable fault tolerance hardware mechanism must be employed in its interlocking control system so as to ensure the reliability. In this paper, according to the optimal lane use graph acquired by Train Plan Maker (TPM) simulation and the actual needs of Shanghai Metro Line 16, a design of turnout points interlocking control system based on fail-safe principle with multiple software and hardware redundancy designs integrated has been proposed.
机译:在建设中的上海地铁16号线的折返站中,设计了各种列车,例如部分停止列车和常规列车,以在那里完成其折返工作。由于每种列车模式的运行时间周期都不同,因此某些类型的列车在使用折返车道时应遵循先进先出(LIFO)的顺序,这使得此类车站的列车调度比城市地铁线路更为复杂。对于换乘站列车调度必不可少的岔道点,其联锁控制系统必须采用更严格的软件算法和更可靠的容错硬件机制,以确保可靠性。根据火车计划制造商(TPM)模拟获得的最佳车道使用图,以及上海地铁16号线的实际需求,基于故障安全原理,多软件和硬件冗余的道岔点联锁控制系统设计已经提出了集成设计。

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