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Optimal Sizing of Energy Storage for Regenerative Braking in Electric Railway Systems

机译:电力铁路系统再生制动储能的最佳尺寸

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The problem of optimally sizing hybrid energy storage systems (HESS) installed in electric railway systems, considering the effect of regenerative braking is studied in this paper. HESSs combine traditional batteries and newly developed ultracapacitors, taking advantage of the high energy capacity of batteries and of the flexibility and ability to capture high power density of ultracapacitors. A novel mixed integer linear programming formulation that includes the counting of battery cycles is presented. Some particularities of battery operation are included in the model, like the dependence of its performance on the number of cycles and the depth of discharge (DOD). Results are reported first for a illustrative case study, allowing us to perform sensitivity studies for several parameters; results are also reported and for a larger case, closely resembling the problem faced by railway energy systems planners and operators.
机译:本文考虑了再生制动的影响,研究了安装在电力铁路系统中的混合储能系统(HESS)的最佳尺寸问题。 HESS结合了传统电池和新开发的超级电容器,充分利用了电池的高能量容量以及捕获超级电容器高功率密度的灵活性和能力。提出了一种新颖的混合整数线性规划公式,其中包括电池周期的计数。该模型包括电池操作的某些特殊性,例如其性能对循环次数和放电深度(DOD)的依赖性。首先报告结果用于说明性案例研究,使我们能够对几个参数进行敏感性研究;还报告了结果,并且在更大的情况下,结果与铁路能源系统规划人员和运营商所面临的问题非常相似。

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