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Improved Rotor Position Estimation Accuracy by Rotating Carrier Signal Injection Utilizing Zero-Sequence Carrier Voltage for Dual Three-Phase PMSM

机译:双三相永磁同步电机通过零序载波电压旋转载波信号注入提高了转子位置估计精度

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摘要

In this paper, the rotor position estimation accuracy of rotating carrier signal injection utilizing zero-sequence carrier voltage method for dual three-phase (DTP) permanent-magnet synchronous machines (PMSMs) is investigated. When utilizing the zero-sequence carrier voltage, the system bandwidth and rotor position estimation accuracy can be significantly enhanced. However, undesirable sixth harmonic estimation error occurs for single three-phase PMSM with rotating signal injection due to multiple saliency components in the zero-sequence carrier voltage. To solve such a problem, the existing methods require time-consuming offline measurements and complex structures. Fortunately, for the case of DTP-PMSM drives, thanks to the existence of additional degrees of freedom, two high-frequency signals can be injected independently for two winding sets. Therefore, by applying the optimum phase shift angle between the injected signals, a modified rotating carrier signal injection using zero-sequence voltage-based sensorless control strategy is proposed to suppress the sixth harmonic position errors. In addition, a new simple measurement method of zero-sequence carrier voltage is proposed where one voltage sensor is placed between the two isolated neutral points. The proposed method can achieve improved rotor position estimation accuracy with low computational burden. The experimental results verify the effectiveness of the proposed strategy.
机译:本文研究了使用零序载波电压方法对双三相永磁同步电机(PMSM)进行旋转载波信号注入的转子位置估计精度。当利用零序载波电压时,可以显着提高系统带宽和转子位置估计精度。然而,由于零序载波电压中的多个显着分量,对于具有旋转信号注入的单个三相PMSM,会发生不希望的六次谐波估计误差。为了解决这个问题,现有方法需要耗时的离线测量和复杂的结构。幸运的是,对于DTP-PMSM驱动器,由于存在额外的自由度,因此可以为两个绕组组独立注入两个高频信号。因此,通过在注入信号之间应用最佳相移角,提出了使用基于零序电压的无传感器控制策略的改进旋转载波信号注入,以抑制第六谐波位置误差。此外,提出了一种新的简单的零序载波电压测量方法,其中在两个隔离的中性点之间放置一个电压传感器。所提出的方法能够以较低的计算负担实现改进的转子位置估计精度。实验结果验证了所提策略的有效性。

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