Sensorless V/f control with MRAS speed estimator for a five-phase induction machine under open-circuit phase faults

A. Morsy, A. Abdel-Khalik, Shehab Ahmed, A. Massoud
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引用次数: 9

Abstract

This paper introduces a sensorless scalar controller with MRAS speed estimator based on simple Proportional Resonant PR controllers to provide a disturbance-free operation to a five-phase induction machine under phase open and based on optimal current control. The machine speed is estimated using MRAS observer based on rotor flux (RF-MRAS). Under open phase, the torque-producing fundamental sequence current is used to estimate the required third sequence current components to ensure equal remaining healthy currents. Two PR controllers are then used to determine the corresponding third sequence voltage components. The used optimization criterion ensures maximum fundamental torque, minimum torque ripples, and equal line currents. The proposed controller is verified using a 1.5hp prototype machine for both dynamic and steady-state cases.
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基于MRAS速度估计的五相感应电机开路相位故障无传感器V/f控制
本文介绍了一种基于简单比例谐振PR控制器的带MRAS速度估计器的无传感器标量控制器,以实现五相感应电机在缺相状态下基于最优电流控制的无扰动运行。采用基于转子磁链的MRAS观测器(RF-MRAS)估计电机转速。在开相情况下,用产生转矩的基序电流来估计所需的第三序电流分量,以确保剩余的健康电流相等。然后使用两个PR控制器来确定相应的第三序列电压分量。所使用的优化准则确保最大基本转矩、最小转矩波动和相等的线路电流。所提出的控制器在动态和稳态情况下使用1.5马力的样机进行了验证。
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