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Direct Torque Control of Five-leg Dual-PMSM Drive Systems for Fault-tolerant Purposes

机译:用于容错目的的五臂双PMSM驱动系统的直接转矩控制

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摘要

To enhance the reliability of two-motor drive systems, this paper proposes an improved direct torque control (DTC) scheme (P-DTC) for five-leg dual-PMSM drive systems. First, the topology of a five-leg dual-PMSM drive system is illustrated. To clarify the analysis of the P-DTC, the standard DTC scheme for three-phase drive systems is presented. The operation of a five-leg dual-PMSM drive system is classified into three situations according to the definitions of the switching-vector unions. Compared with the existing DTC scheme (R-DTC), the P-DTC can minimize the replacement of active switching-vectors to zero switching-vectors. When this replacement cannot be avoided, the P-DTC uses a proposed master-slave selection principle to minimize the system error. Comparing with the R-DTC, the P-DTC has lower torque ripples, a wider speed range and a faster torque increasing response. Experiments have been carried out in the coupling and independent modes, and the effectiveness of the P-DTC is verified by the obtained results
机译:为了提高两电机驱动系统的可靠性,本文提出了一种改进的五臂双PMSM驱动系统直接转矩控制(DTC)方案(P-DTC)。首先,说明了五臂双PMSM驱动系统的拓扑。为了阐明P-DTC的分析,提出了用于三相驱动系统的标准DTC方案。根据开关矢量并集的定义,五臂双PMSM驱动系统的操作分为三种情况。与现有的DTC方案(R-DTC)相比,P-DTC可以最大程度地减少有源开关矢量到零开关矢量的替换。当无法避免这种替换时,P-DTC使用建议的主从选择原理来最小化系统错误。与R-DTC相比,P-DTC具有更低的转矩波动,更宽的速度范围和更快的转矩增加响应。已在耦合和独立模式下进行了实验,并通过所得结果验证了P-DTC的有效性

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