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Analysis and simulation of a novel Load-Commutated Inverter drive based on a symmetrical five-phase synchronous motor

机译:基于对称的五相同步电动机的新型负载换向逆变器驱动的分析与仿真

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In today's electrical drives, the use of more than three-phases to implement the electrical machine stator winding is a frequently adopted provision to enhance system power rating and fault tolerance. In VSI-fed electrical machines, multi-phase windings are adopted in both their symmetrical structures (with n equally distributed phases, supplied by a single n-phase inverter) and in their multiple three-phase arrangements (with two or more displaced three-phase windings, each supplied by an inverter). On the other hand, in CSI drives, based on synchronous motors and Load Commutated Inverters (LCIs), the only multi-phase topology practically used consists of two three-phase windings, displaced by 30 electrical degrees, each fed by an LCI. This paper investigates an alternative, symmetrical multiphase LCI drive topology based on a five-phase motor supplied by a five-phase inverter. Both the motor and the inverter are accurately modeled in the Matlab/Simulink environment to study their combined behavior through numeric simulations, both in normal and faulty operating conditions. Simulation results are presented in order to highlight the pros and contras of the proposed topology with respect to the existing ones, taking performance and fault-tolerance features into account.
机译:在当今的电气驱动器中,使用多个三相实现电机定子绕组是一种经常采用的提供,以增强系统功率额定值和容错。在VSI馈电电机中,它们的对称结构中采用多相绕组(具有由单相逆变器提供的N等分布的相位),并在其多个三相布置(具有两个或更多个移位三)中相绕组,每个逆变器供应)。另一方面,在CSI驱动器中,基于同步电动机和负载换向逆变器(LCIS),实际使用的唯一多相拓扑由两个三相绕组组成,由30个电视量移位,每个电力由LCI馈送。本文根据五相逆变器提供的五相电动机研究了替代,对称的多相LCI驱动拓扑。电机和逆变器都是在Matlab / Simulink环境中精确建模的,以通过数字模拟来研究它们在正常和故障的操作条件下的数值模拟。提出了仿真结果,以突出拓扑对现有拓扑的优缺点,考虑表现性能和容错功能。

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