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Performance evaluation of a fault-tolerant decoupled dual-channel switched reluctance motor drive under open-circuits

机译:开路下的容错解耦双通道开关磁阻电机驱动器的性能评估

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摘要

This study presents a new configuration for dual-channel switched reluctance motor (DCSRM) called as decoupled DCSRM (DDCSRM), which can be proposed as a suitable candidate for high-reliability applications. In this new DDCSRM, the two channels could be considered as two synchronously independent 6/4 three-phase SRMs with no mutual coupling when they are excited simultaneously. The machine topology and magnetic characteristics of flux distribution, static flux linkage and torque by using finite-element analysis are presented. Then, the mathematic models of the DDCSRM drive under normal and open-circuit fault operations are proposed. To achieve fault-tolerant operation, a control strategy of open-circuit faults for the DDCSRM drive is presented. The key of the fault-tolerant control strategy is to maintain the rotor speed as the normal motoring operation. The dynamic performances of the DDCSRM drive under normal and open-circuit fault conditions are analysed by using the control strategy. Finally, an experimental setup for a 12/8 DDCSRM drive system is built for verification. The experimental results at normal and various open-circuit fault conditions are presented to verify the control strategy of the DDCSRM drive system and the analytical and simulation results.
机译:这项研究提出了一种称为双通道开关磁阻电机(DCSRM)的新配置,称为解耦DCSRM(DDCSRM),可以提出该配置,作为高可靠性应用的合适候选者。在这个新的DDCSRM中,当两个通道同时被激励时,它们可以被视为两个同步独立的6/4三相SRM,并且没有相互耦合。通过有限元分析,给出了磁通分布,静磁链和转矩的机械拓扑和磁特性。然后,提出了正常和开路故障操作下DDCSRM驱动器的数学模型。为了实现容错操作,提出了DDCSRM驱动器开路故障的控制策略。容错控制策略的关键是将转子速度保持为正常的电动操作。利用控制策略分析了DDCSRM驱动器在正常和开路故障条件下的动态性能。最后,构建了一个用于12/8 DDCSRM驱动器系统的实验设置以进行验证。给出了正常和各种开路故障条件下的实验结果,以验证DDCSRM驱动系统的控制策略以及分析和仿真结果。

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