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Optimal Capacity Estimation Method of the Energy Storage Mounted on a Wireless Railway Train for Energy-Sustainable Transportation

机译:无线铁路列车储能储存的最优容量估计方法,用于能源可持续运输

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摘要

Although electric railway systems have gone through many technological innovations in their electrical, mechanical and structural engineering since the energy paradigm conversion to electrical energy, the conventional feeding system based on the catenary contact is still being applied. In order to solve the problems of the contact-based feeding system that arise and to build up the energy-sustainable electric railway system simultaneously, this paper considers the wireless railway train (WRT), which is fed by storages mounted on the board without catenary contact during driving and charged at a platform during a stop. In order to maximize the energy improvement of WRTs’ operation, the optimal power and storage capacity estimation method considering the increased weight of the additional storage devices is proposed. Through case studies of the electrical and topographical conditions of the actual operating railway route, compared with the electrical performance of the existing railway trains, it is verified that the application of WRTs leads to facility capacity margin enlargement through the peak power reduction, and cost-effectiveness improvement through the reduction of catenary loss and driving energy.
机译:虽然电气铁路系统经历了许多技术创新,但由于能源范式转换到电能的电力,机械和结构工程,仍然施加基于凸起接触的传统馈电系统。为了解决基于接触的馈电系统的问题,并同时建立能量 - 可持续的电气铁路系统,本文认为无线铁路列车(WRT),由安装在电路板上的存储器馈送在驾驶期间接触并在停止期间在平台上充电。为了最大化WRTS操作的能量改进,提出了考虑额外存储装置的增加的提高功率和存储容量估计方法。通过对实际操作铁路路线的电气和地形条件的案例研究,与现有铁路列车的电气性能相比,验证了WRTS的应用导致设施容量边缘扩大通过峰值功率降低,以及成本 - 通过减少围网损失和驱动能量来改善效果。

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