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Energy saving in metro systems: Simultaneous optimization of stationary energy storage systems and speed profiles

机译:地铁系统的节能:固定式储能系统和速度曲线的同时优化

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摘要

High electric energy consumption is one of the main challenges of metro systems, which the operators deal with. Among several energy saving methods, this paper focuses on the simultaneous application of speed profile optimization and energy storage systems, to efficiently utilize regenerative braking energy. With this approach, a substantial reduction in energy was achieved for the case study of Mashhad LRT Line 1. In addition, because of the simultaneous utilization of the schemes, the required capacity of stationary energy storage systems was decreased in comparison with the case of normal (not optimized) speed profile. To demonstrate the validity of the proposed method, two procedures were done. First, the optimization of stationary supercapacitor energy storage systems was performed by using experimental results (real world, not optimized speed profiles) so that the total input energy would be minimized. In the second procedure, the optimal speed profiles were determined and optimum energy storage was recomputed. The results show a significant reduction of energy in the latter procedure, as well as lower energy storage system costs.
机译:高电能消耗是运营商应对的地铁系统的主要挑战之一。在几种节能方法中,本文着重于速度曲线优化和能量存储系统的同步应用,以有效地利用再生制动能量。通过这种方法,对于Mashhad LRT 1号线的案例研究,能源消耗大大减少。此外,由于这些方案的同时利用,与常规情况相比,固定式储能系统所需的容量减少了(未优化)速度配置文件。为了证明所提出方法的有效性,完成了两个程序。首先,通过使用实验结果(现实世界,而不是优化的速度曲线)对固定式超级电容器储能系统进行优化,以便将总输入能量降至最低。在第二个步骤中,确定了最佳速度曲线并重新计算了最佳能量存储。结果表明,在后一过程中,能源显着减少,并且储能系统成本降低。

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