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A New Control Strategy of 5-Phase PM Motor under Open-Circuited Phase Based on High Order Sliding Mode and Current References Real-Time Generation

机译:基于高阶滑模和电流参考实时生成的五相永磁电动机开路控制新策略

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摘要

The high quality of electrical power in high power and high reliability applications is a crucial necessity even under fault mode function. However, in these conditions, the quality of the torque is a key feature. To overcome this problem, the multiphase permanent magnet (PM) motors seems to be a very attractive choice. In order to highlight the robustness and reliability of this technology, this paper investigates the control of a five-phase PM motor under an open circuited phase fault conditions. Moreover, a High Order Sliding Mode (HOSM) controller combined to an optimal reference current generation is tested and compared to a PID controller under fault mode conditions. This original control strategy is proposed for faulted conditions. Compared to classical fault tolerant control, this strategy allows a better dynamic tracking of the non-sinusoidal reference currents and leads to a smooth torque with minimal losses even in severe fault conditions. To validate the proposed control strategy, simulation, and experimental results are presented and discussed.
机译:即使在故障模式下,高功率和高可靠性应用中的高质量电能也是至关重要的。但是,在这些情况下,扭矩的质量是关键特征。为了克服这个问题,多相永磁(PM)电动机似乎是一个非常有吸引力的选择。为了突出该技术的鲁棒性和可靠性,本文研究了开路断相条件下的五相永磁电动机的控制。此外,测试了结合有最佳参考电流生成的高阶滑模(HOSM)控制器,并将其与故障模式条件下的PID控制器进行了比较。针对故障条件提出了这种原始控制策略。与传统的容错控制相比,该策略可以更好地动态跟踪非正弦参考电流,即使在严重的故障条件下,也能以最小的损耗实现平稳的转矩。为了验证所提出的控制策略,提出并讨论了仿真和实验结果。

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