列车控制系统安全计算机通信实时优化分析与设计

Yifan Du, Lian-chuan Ma, Yuan Cao
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引用次数: 0

摘要

目前,安全计算机采用先到先得(FCFS)的方式传输数据流,但这种方式不区分数据流类型,可能造成安全临界数据流传输超时。为了满足未来安全计算机的通信需求,通过分析通信数据的特点和影响安全计算机实时性的主要因素,提出了约束多级优先级调度策略。该策略考虑了待传输数据在满足多优先级的条件下数据帧之间的约束关系。通过网络计算方法,分析了两种模式下不同数据流的通信时延。改进的调度策略在提高非安全关键数据流有限延迟的情况下,使当前安全计算机的应急安全关键数据流最大延迟缩短了22.5%,因此该策略可以有效提高应急安全关键数据流的通信实时性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-time optimization analysis and design of communication on the safety computer of train control system
At present, the safety computer use the first come first served (FCFS) approach to transmit data stream, but this method does not distinguish the data stream types, which may cause safety critical data stream transmission timeout. In order to meet the communication requirements of the future safety computer, by analyzing the characteristics of communication data and the main factors influencing real-time performance in the safety computer, the constrained multilevel priority scheduling strategy is proposed. This strategy consider the constraint relation between data frames under the conditions of meeting the multi-priority when the data to be transmitted. Through the network calculation method, the communication delay of different data stream in the two modes is analyzed. The improved scheduling strategy shortens the maximum delay of emergency safety critical data stream by 22.5% in the current safety computer under the condition of increasing the limited delay of non-safety critical data stream, so the strategy can effectively improve communication real-time performance of emergency safety critical data stream.
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