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PMSM Rotor Position Detection Based on Hybrid Optical Encoder and R-Signal Zero-Setting Scheme

机译:基于混合光学编码器和R信号零设定方案的PMSM转子位置检测

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摘要

Rotor position detection is a prerequisite for achieving good control performance of PMSM. For a PMSM control system based on an optical encoder, it is a difficulty to detect rotor position and achieve R-Signal zero-setting. To solve the problem, a hybrid optical encoder is used in the paper by which a scheme for rotor position detection and R-Signal zero-setting is proposed. This encoder can do absolute and incremental rotor position detection simultaneously; here, the former is used for acquiring imprecise rotor position and the latter is for precise rotor position. Firstly, two detection methods of the encoder are analyzed, and a scheme for rotor position detection is proposed: absolute rotor position is used for motor starting before achieving R-Signal zero-setting; once achieving R-Signal zero-setting, incremental rotor position detection that has high precision is adopted. Then a novel scheme for R-Signal zero-setting is emphatically proposed. Finally, the simulation is conducted. Results show that rotor position detection and R-Signal zero-setting can be achieved by the proposed scheme.
机译:转子位置检测是实现PMSM良好控制性能的先决条件。对于基于光学编码器的PMSM控制系统,难以检测转子位置并实现R信号零设置。为了解决该问题,在纸质中使用混合光学编码器,提出了用于转子位置检测和R信号零设置的方案。该编码器可以同时进行绝对和增量转子位置检测;这里,前者用于获取不精确的转子位置,并且后者用于精确转子位置。首先,分析编码器的两种检测方法,提出了一种转子位置检测的方案:在实现R信号零度之前,绝对转子位置用于电动机。一旦实现R信号零设定,采用具有高精度的增量转子位置检测。然后,强调提出了一种用于R信号零设置的新方案。最后,进行了模拟。结果表明,通过所提出的方案可以实现转子位置检测和R信号零设置。

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