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首页> 外文期刊>Energies >Control Strategies with Dynamic Threshold Adjustment for Supercapacitor Energy Storage System Considering the Train and Substation Characteristics in Urban Rail Transit
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Control Strategies with Dynamic Threshold Adjustment for Supercapacitor Energy Storage System Considering the Train and Substation Characteristics in Urban Rail Transit

机译:考虑城市轨道交通列车和变电站特性的超级电容器储能系统动态阈值调节控制策略

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Recuperation of braking energy offers great potential for reducing energy consumption in urban rail transit systems. The present paper develops a new control strategy with variable threshold for wayside energy storage systems (ESSs), which uses the supercapacitor as the energy storage device. First, the paper analyzes the braking curve of the train and the V - I characteristics of the substation. Then, the current-voltage dual-loop control method is used for ESSs. Next, in order to achieve the best energy-saving effect, the paper discusses the selection principle of the charge and discharge threshold. This paper proposes a control strategy for wayside supercapacitors integrated with dynamic threshold adjustment control on the basis of avoiding the onboard braking chopper’s operation. The proposed control strategy is very useful for obtaining good performance, while not wasting any energy in the braking resistor. Therefore, the control strategy has been verified through simulations, and experimental tests, have been implemented on the Batong Line of Beijing subway using the 200 kW wayside supercapacitor energy storage prototype. The experimental results show that the proposed control is capable of saving energy and considerably reducing energy consumption in the braking resistor during train braking.
机译:制动能量的回收在降低城市轨道交通系统的能耗方面具有巨大潜力。本文针对路边储能系统(ESS)开发了一种具有可变阈值的新控制策略,该策略使用超级电容器作为储能设备。首先,本文分析了火车的制动曲线和变电站的V-I特性。然后,电流-电压双环控制方法用于ESS。接下来,为了达到最佳的节能效果,本文讨论了充放电阈值的选择原则。在避免车载制动斩波器工作的基础上,提出了一种结合动态阈值调节控制的路边超级电容器的控制策略。所提出的控制策略对于获得良好的性能非常有用,同时又不会浪费制动电阻中的任何能量。因此,通过仿真验证了该控制策略,并使用200 kW路旁超级电容器储能原型在北京地铁八通线实施了实验测试。实验结果表明,所提出的控制方法能够节能,并在列车制动过程中大大降低了制动电阻的能耗。

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