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Model Analysis and Sliding Mode Current Controller for Multilevel Railway Power Conditioner Under the V/v Traction System

机译:V / v牵引力系统的多级铁路电力调节器模型分析与滑模电流控制器

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摘要

To manage the power quality of a high-speed V/v traction system, a multilevel railway power conditioner (MRPC) is researched. According to the structure and equivalent models of the MRPC, basically the MRPC is a symmetrical system, and its four clusters can be divided into two cluster groups. According to the ac equivalent mathematical models of cluster groups, it can be considered as the relationships in theαβframe, but not completely symmetrical, so the positive- and negative-sequencedqmodels for cluster groups can be derived. As the fluctuation and randomness of the locomotive loads, a sliding mode control system based on the exponential reaching law in thedqframe is explored to control the cluster ac currents, which can improve the dynamic performance and keep a good tolerance against parameter mismatches. Finally, an experimental prototype is developed, and the results show the feasibility and the robustness of the system.
机译:为了管理高速V / v牵引系统的电能质量,研究了多层铁路电能调节器(MRPC)。根据MRPC的结构和等效模型,MRPC基本上是一个对称系统,它的四个群集可以分为两个群集组。根据群集组的交流等效数学模型,可以将其视为 n <斜体xmlns:mml = “ http://www.w3.org/1998/Math/MathML ” xmlns:xlink中的关系= “ http://www.w3.org/1999/xlink ”>αβ nframe,但不完全对称,因此正序和负序 n <斜体xmlns:mml = ”群集组的http://www.w3.org/1998/Math/MathML “ xmlns:xlink = ” http://www.w3.org/1999/xlink “> dq n模型可以被派生。随着机车负载的波动和随机性,基于指数到达律的滑模控制系统 n dq nframe来控制群集交流电流,这可以改善动态性能并保持良好的耐受性参数不匹配。最后,开发了一个实验原型,结果表明了该系统的可行性和鲁棒性。

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