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Analytical modeling of inter-turn short circuit for multiphase fault-tolerant PM machines with fractional-slot concentrated windings

机译:分数槽集中绕组的多相容错永磁电机匝间短路的解析模型

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Inter-turn short-circuit faults that occur inside stator coils are difficult to cope with compared to terminal short-circuit faults. A general analytical model for inter-turn short-circuit faults is developed that employs a novel T-type equivalent circuit. When this model is used to investigate the impact of inter-turn short-circuit faults in PM machines with fractional-slot concentrated windings (FSCW), the model delivers fault response predictions that agree very well with results from finite element (FE) analysis. The model is used to show that the 24-slot/14-pole FSCW PM machine is vulnerable to very high inter-turn fault currents even when the remaining turns are shorted, offsetting its advantage of low magnetic coupling between phases.
机译:与端子短路故障相比,定子线圈内部发生的匝间短路故障很难解决。建立了匝间短路故障的通用分析模型,该模型采用了新颖的T型等效电路。当使用此模型调查带有小槽集中绕组(FSCW)的PM电机中匝间短路故障的影响时,该模型提供的故障响应预测与有限元(FE)分析的结果非常吻合。该模型用于显示24槽/ 14极FSCW永磁电机即使在剩余匝数短路的情况下也容易遭受很高的匝间故障电流,从而抵消了其相间低磁耦合的优势。

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