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Suppression strategy for rail transit ground current in transformer neutral points

机译:变压器中性点轨道交通接地电流的抑制策略

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The ground current of rail transit contains direct and harmonic components, which will lead to many undesirable effects on substation transformer neutral points. The traditional suppression strategy can only suppress the direct current in the ground current. At the same time, the traditional switching strategy does not consider the dynamic changes of the direct ground current and may cause the direct ground current at the surrounding neutral point to passively exceed the limit. Firstly, in this paper, the change of the direct and harmonic ground current and the influence of the rail transit passenger load on ground current were analyzed based on the measurement data. Then, considering the harmonic ground current of rail transit, a suppression strategy of harmonic ground current was designed. Besides, a calculation model for neutral point direct ground current distribution was established. Finally, an optimal switching strategy of the blocking device was presented to minimize the global direct ground current and maximize the economy of overall devices. Using the test case of 220kV substations surrounding an actual metro line, the ability of suppressing the harmonic ground current was verified. Compared with conventional switching strategy, the effectiveness and correctness of the optimal strategy for the direct ground current based on blocking devices were verified.
机译:轨道交通的接地电流含有直接和谐波分量,这将导致对变电站变压器中性点的许多不期望的影响。传统的抑制策略只能抑制地电流的直流电。与此同时,传统的切换策略不考虑直接接地电流的动态变化,并且可能导致周围中性点的直接接地电流被动地超过极限。首先,在本文中,基于测量数据分析了直接和谐波接地电流的变化以及轨道交通乘客负荷对接地电流的影响。然后,考虑到轨道交通的谐波接地电流,设计了谐波地电流的抑制策略。此外,建立了中性点直接地电流分布的计算模型。最后,提出了一种阻挡装置的最佳切换策略,以最小化全局直接接地电流并最大化整体设备的经济性。使用围绕实际地铁线围绕220kV变电站的测试用例,验证了抑制谐波接地电流的能力。与传统的交换策略相比,验证了基于阻塞装置的直接接地电流的最佳策略的有效性和正确性。

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