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Modified Current Injection Method for Power Flow Analysis in Heavy-Meshed DC Railway Networks With Nonreversible Substations

机译:带有不可逆变电站的重型直流铁路网潮流分析的改进电流注入方法

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摘要

This paper proposes a Modified Current Injection method for power flow analysis, bespoke for the specific features of dc traction networks. It introduces major contributions when compared with the state-of the-art solution. In addition to simulating the nonlinear and nonsmooth behavior of the trains, the proposed algorithm can simulate reversible IGBT-based and nonreversible diode-based substations present in the system. These latter substations are the most common type and they supply unidirectional power flow from the ac distribution network to the dc traction subsystem. Depending on the voltage level at the dc side, the substations will be either blocked or conducting. This nonlinear behavior increases significantly the system complexity. Another key aspect of the proposed method is that it is also valid for heavily meshed networks. Even when the dc systems are usually radial or weakly meshed, the connections between the dc and the ac systems create multiple meshes, increasing the network topological complexity. In order to validate the performance of the proposed solution, the behavior of the algorithm is compared with the conventional derivative-based Trust Region Dogleg and the backward/forward sweep algorithm. This comparison shows convergence and speed improvements in the performance of the proposed algorithm.
机译:本文针对直流牵引网络的具体特点,提出了一种用于潮流分析的改进型电流注入方法。与最先进的解决方案相比,它带来了重大贡献。除了模拟列车的非线性和非平稳行为外,该算法还可以模拟系统中存在的基于可逆IGBT和基于不可逆二极管的变电站。后一种变电站是最常见的类型,它们提供从交流配电网络到直流牵引子系统的单向潮流。根据直流侧的电压水平,变电站将被阻塞或导通。这种非线性行为大大增加了系统的复杂性。所提出的方法的另一个关键方面是它对于重网格网络也有效。即使当直流系统通常是放射状或弱网格时,直流系统与交流系统之间的连接也会创建多个网格,从而增加了网络拓扑的复杂性。为了验证所提出解决方案的性能,将算法的行为与常规基于导数的Trust Region Dogleg和后向/前向扫描算法进行了比较。这种比较显示了所提出算法的收敛性和速度改进。

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