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Sensorless Synchronous Reluctance Motor Drives: A General Adaptive Projection Vector Approach for Position Estimation

机译:无传感器同步磁阻电动机驱动器:位置估计的通用自适应投影矢量方法

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摘要

This article presents a mathematical framework for the design and analysis of position observers for sensorless control of synchronous reluctance machines. The approach expresses the observer error via a generalized projection vector. Moreover, the proposed framework includes an improved inductance model to account for the position error-induced inductance variations. First, the instability regions of active flux-based position observer are analytically identified and validated. Then, a novel technique, adaptive projection vector for position error estimation, is introduced, immune to instability of active flux scheme. Furthermore, the proposed technique can be augmented with a second projection vector for independent estimation of speed error, referred to as adaptive projection vector matrix for position and speed error estimation. Sensitivity analysis to parameter errors is developed. Stability and performance of proposed technique is validated on a 1 kW synchronous reluctance motor test bench.
机译:本文为同步磁阻电机的无传感器控制的位置观测器的设计和分析提供了一个数学框架。该方法通过广义投影矢量表达观察者误差。此外,提出的框架包括改进的电感模型,以解决位置误差引起的电感变化。首先,对基于有源磁通的位置观测器的不稳定性区域进行分析识别和验证。然后,引入了一种新技术,即用于位置误差估计的自适应投影矢量,它不受有源通量方案的不稳定的影响。此外,所提出的技术可以通过用于速度误差的独立估计的第二投影向量来增强,称为用于位置和速度误差估计的自适应投影向量矩阵。开发了对参数误差的灵敏度分析。在1 kW同步磁阻电机测试台上验证了所提出技术的稳定性和性能。

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