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Automatic train regulation with energy saving using dual heuristic programming

机译:通过双重启发式编程实现节能的自动列车调节

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Issues regarding environment sustainability and energy saving have been receiving much concern in worldwide railway society. Energy saving via train operation and regulation is a cost-effective way and has become an issue to be considered while performing train operation and regulation. Automatic train regulation (ATR) plays an important role in maintaining metro service quality; however, designing ATR is an optimisation problem with large scale, high non-linearity, heavy constraints and stochastic characteristics. Considering issues regarding energy saving in the ATR design would further complicate the optimisation problem. A model describing traffic environment associated with energy consumption was investigated and developed; and then the dual heuristic programming was employed for designing ATR with energy saving via coasting and station dwell control. A simulation test of the ATR design was conducted with field data. The simulation shows better traffic regulation with less energy consumption is attainable with the ATR design.
机译:关于环境可持续性和节能的问题已经在全球铁路社会中引起了很多关注。通过火车运行和调节来节能是一种经济有效的方式,并且已经成为进行火车运行和调节时要考虑的问题。列车自动调节(ATR)在维持地铁服务质量方面起着重要作用;然而,设计ATR是一个具有大规模,高非线性,严格约束和随机特性的优化问题。在ATR设计中考虑与节能有关的问题会使优化问题进一步复杂化。研究和开发了描述与能源消耗相关的交通环境的模型;然后采用双重启发式编程来设计ATR,并通过惯性停车和站点停留控制实现节能。利用现场数据对ATR设计进行了仿真测试。仿真表明,使用ATR设计可实现更好的交通管制,并降低能耗。

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