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High Order Sliding mode optimal current control of five phase permanent magnet motor under open circuited phase fault conditions

机译:开放式相位故障条件下五相永磁电机的高阶滑动模式最优控制

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摘要

Electrical marine propulsion systems arecharacterized by very high level requirements in terms of compactness, acoustic behavior and reliability. In this particular context, the use of multiphase PM machines associated with VSI drives appears to be a very efficient solution. Presented work focus on the use of such a system in open circuited phase fault conditions. With this kind of system it is possible to determine optimal current references which maximize the torque density of the system when one or two phases are open circuited. Classical linear controllers (as PID for example) cannot provide a correcttracking of these optimal current references because they have a highly dynamical behavior. We propose in this paper to combinethis optimal current reference generation with High Order Sliding Mode (HOSM) control. This kind of solution allows a good tracking of these unconventional current references with afixed switching frequency for the VSI. This method is validated experimentally using a low power experimental set-up whichassociates a 5-phase PM machine with a DSP controlled IGBT 5-leg VSI drive.
机译:在紧凑性,声学行为和可靠性方面,通过非常高的水平要求,通过非常高的级别提出的电气船用推进系统。在这个特定的背景下,使用与VSI驱动器相关联的多相PM机器似乎是一个非常有效的解决方案。呈现的工作重点是在开放式相位故障条件下使用这种系统。利用这种系统,可以确定最佳电流参考,当一个或两个阶段开放时,最大化系统的扭矩密度。古典线性控制器(例如PID)不能提供这些最佳电流参考的正确特征,因为它们具有高度动态的行为。我们提出本文以高阶滑动模式(HOSM)控制来组合最佳电流参考生成。这种解决方案允许良好地跟踪这些非传统的电流参考,用于VSI的另一个开关频率。使用低功耗实验装置进行实验验证该方法,其中分配了具有DSP控制IGBT 5腿VSI驱动器的5相PM机。

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