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Fault Tolerant Permanent Magnet Motor 's SVPWM control and analysis of fault-tolerant performance under fault conditions

机译:容错永磁电机的SVPWM控制与故障条件下容错性能分析

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A study is made about the structure and its mathematical model of FT-PMM. The design of the vector control system (SVPWM) based on the id = 0 control strategy is proposed, which realizes the closed-loop vector control with feedback of speed, current, and position. This method is proved right by Matlab simulation. From a hardware level, the dsPIC30f4011 is used as the core of the system. With the help of the design of the bootstrap power supply of IR2110, the number of power is reduced and the cost is saved. The inverter circuit consists of 3 independent H bridges was used to control each wingding independently in order to enhance the ability of fault tolerance. Through hardware test, the result indicates that this vector control system could satisfy the demands of speed control and stable operation. After Man-made fault is set, the fault-tolerant performance is analyzed and the system is proved to have fault-tolerant capability to a certain extent.
机译:关于FT-PMM的结构及其数学模型进行了研究。提出了基于ID = 0控制策略的矢量控制系统(SVPWM)的设计,从而实现了速度,电流和位置反馈的闭环矢量控制。通过Matlab模拟证明了该方法。来自a硬件级别,DSPIC30F4011用作系统的核心。借助于IR2110的自举电源的设计,减少了电量次数,节省了成本。逆变器电路由3个独立的H桥组成用于独立控制每个翼展,以提高容错能力的能力。通过硬件测试,结果表明该矢量控制系统可以满足速度控制和稳定运行的需求。设置了人工故障后,故障 - 分析耐受性能,并证明该系统在一定程度上具有容错能力。

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