Reversible Substation in DC Traction

Priya Sharma
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引用次数: 2

Abstract

In order to improve the green foot prints and also reduce the operational costs, it is currently standard practice to fit the Rolling stock of Metros railway units with regenerative dynamic braking systems. Thus, energy generated by a braking train can be reused by other accelerating trains. The excess energy is inverted back to the system for use in auxiliary power requirement like lighting lifts, escalator ect in stations. To capture the regenerative energy the popular technology in use are Energy Storage Systems (Batteries, Super capacitors and Fly wheel) and Inverters. For the urban metro rail using DC traction recently a new technology has been used which is known as the “Reversible Electric Sub Stations”. This improves the line receptivity of the DC systems by transferring the excess energy to the AC side. This new technology will make it possible to send that part of the braking energy that is usually burnt in resistors, back into the grid. That is by making the electric substation “reversible”, meaning that they can also operate in the reverse, feeding energy from the braking trains back to the grid. The main benefit is 99% of the regenerated energy is used and the braking resisters in the Rolling stock can be removed, which will in turn reduce the train mass and heat generated.
直流牵引可逆变电站
为了提高绿色足迹并降低运营成本,目前的标准做法是为地铁车辆配备再生动力制动系统。因此,制动列车产生的能量可以被其他加速列车再利用。多余的能量被倒转回系统,用于辅助电力需求,如车站的电梯、自动扶梯等照明。为了捕获可再生能源,目前使用的流行技术是能量存储系统(电池、超级电容器和飞轮)和逆变器。近年来,在城市地铁直流牵引轨道上采用了一种新的技术,即“可逆变电站”。这通过将多余的能量转移到交流侧来提高直流系统的线路接受度。这项新技术将有可能把通常在电阻器中燃烧的那部分制动能量送回电网。这是通过使变电站“可逆”来实现的,这意味着它们也可以反向运行,将制动列车产生的能量反馈给电网。主要的好处是99%的再生能量被利用,并且可以去除机车车辆中的制动电阻,这反过来又会减少列车质量和产生的热量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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