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Fault-tolerant Speed Synchronous Control of Multi-motor System against Inverter Faults

机译:逆变器故障的多电机系统容错速度同步控制

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摘要

Considering the servo DC motor subject to possible power inverter or drive faults, a simple fault-tolerant speed synchronous control scheme is proposed for the multi-motor system with ring-coupling structure. By virtue of the advantages of the ring-coupling based synchronization control technique, only the fault detector for testing the faults of each motor subsystem and the fault-tolerant control (FTC) decision logic unit are attached to the multi-motor system in order to modify the reference input of each subsystem. Such strategy does not interfere with the regular system operation and reduces the FTC design complexity. The separation between the tracking controllers design and the synchronization compensators design also reduces the complexity of the control law development, so as to guarantee the expected synchronization precision even in the fault case. Simulations on the speed synchronous control of a triple brushless DC-motor system show the effectiveness of the developed FTC strategy.
机译:考虑到伺服直流电动机可能出现功率逆变器或驱动器故障的情况,针对具有环联结构的多电动机系统,提出了一种简单的容错速度同步控制方案。凭借基于环耦合的同步控制技术的优势,只有用于测试每个电机子系统故障的故障检测器和容错控制(FTC)决策逻辑单元才连接到多电机系统,以便修改每个子系统的参考输入。这种策略不会干扰正常的系统运行,并降低了FTC设计的复杂性。跟踪控制器设计与同步补偿器设计之间的分离还降低了控制律开发的复杂性,从而即使在出现故障的情况下也能保证预期的同步精度。对三重无刷直流电动机系统的速度同步控制进行的仿真证明了开发的FTC策略的有效性。

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