Bandwidth Extending Approach for Sensorless Control of Synchronous Reluctance Machines Using an HF Square-Wave-Shaped-Voltage-Injection-Based Method for Low Speed Range

Martha Bugsch, B. Piepenbreier
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引用次数: 4

Abstract

For many industrial applications, sensorless control of synchronous reluctance machines (SynRMs) is beneficial. Additional sinusoidal high-frequency (HF) test signals are often injected for sensorless control at standstill and in the low speed range. However, they have a number of drawbacks for SynRMs combined with a standard industrial inverter and without current oversampling. Hence, this paper presents an approach tailored to SynRMs using square-wave-shaped voltage test signals. They simultaneously increase the bandwidth, because they enable a higher HF frequency. The paper takes into account the highly nonlinear machine behaviour by using adaptive HF voltage levels. It compensates for the electrical angle error caused by cross-coupling effects and for that caused by load steps or dynamic behaviour during demodulation of the HF current amplitude. Only a special regular-update current sampling method is sufficient. A two-degree-of-freedom (2DoF) current and speed control is implemented. The theoretical background of the method is explained, and the control concept is validated on the basis of experimental results.
基于低频方波电压注入的同步磁阻电机无传感器控制带宽扩展方法
对于许多工业应用,同步磁阻电机(synrm)的无传感器控制是有益的。在静止和低速范围内,通常注入额外的正弦高频(HF)测试信号进行无传感器控制。然而,对于与标准工业逆变器相结合且没有电流过采样的synrm,它们有许多缺点。因此,本文提出了一种针对使用方波形电压测试信号的synrm量身定制的方法。它们同时增加了带宽,因为它们使高频频率更高。本文采用自适应高频电压电平来考虑机器的高度非线性行为。它补偿了由交叉耦合效应引起的电角误差,以及在高频电流振幅解调期间由负载阶跃或动态行为引起的电角误差。只有一种特殊的定期更新电流采样方法才足够。实现了二自由度(2DoF)电流和速度控制。阐述了该方法的理论背景,并在实验结果的基础上对控制思想进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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