首页> 外国专利> One-phase short-circuit fault-tolerant direct torque control method for five-phase permanent-magnet motor

One-phase short-circuit fault-tolerant direct torque control method for five-phase permanent-magnet motor

机译:五相永磁电动机的一相短路容错直接扭矩控制方法

摘要

Disclosed is a one-phase short-circuit fault-tolerant direct torque control method for a five-phase permanent-magnet motor. When phase A experiences an open-circuit fault, a non-faulty phase open-circuit fault-tolerant current, a fault-tolerant transformation matrix T4/2, and an inverse matrix T2/4 for a fault-tolerant operation of the motor are deduced on the basis of the constraints of the flux vector of a stator remaining unchanged before and after a fault, the sum of the currents of non-faulty phases being zero, and minimal copper consumption; when phase A experiences a short-circuit fault, a remaining non-faulty phase compensation flux linkage is deduced on the basis of the constraints of the flux vector of a stator remaining unchanged before and after a fault, the principle of minimal copper consumption or non-faulty phase compensation currents being equivalent in terms of amplitude, and the sum of remaining non-faulty phase compensation currents being zero; and a stator phase voltage instruction is derived by combining a stator flux linkage with a torque observer, a rated torque and a stator flux linkage amplitude, and a coordinate transformation. The voltage combines a pulse width modulation technique based on zero-sequence voltage injection to implement consistent steady-state performance and dynamic performance before and after a motor short-circuit fau moreover, the frequency of an inverter switch is constant, and the overhead for a CPU is low.
机译:公开了一种用于五相永磁电动机的单相短路容错直接扭矩控制方法。当阶段经历开路故障时,非故障相位开路容错电流,容错变换矩阵T4 / 2,以及用于电动机容错操作的逆矩阵T2 / 4基于故障前后保持不变的定子的磁通载体的约束来推导,非故障阶段的电流的总和为零,铜消耗量最小;当阶段经历短路故障时,基于故障之前和之后保持不变的定子的通量矢量的约束,推导出剩余的非故障相位补偿磁通连杆,最小铜消耗或非铜消耗或非原则 - 在幅度方面具有等同的相位补偿电流,并且剩余的非故障相位补偿电流为零;通过将定子通量连杆与扭矩观测器,额定转矩和定子通量连杆幅度组合,以及坐标变换来导出定子相电压指令。电压相结合了基于零序电压注入的脉冲宽度调制技术,在电机短路故障之前和之后实现一致的稳态性能和动态性能;此外,逆变器开关的频率是恒定的,并且CPU的开销是低的。

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