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Current Controller for Low-Frequency Signal Injection and Rotor Flux Position Tracking at Low Speeds

机译:电流控制器,用于低频信号注入和低速下的转子磁通位置跟踪

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摘要

Rotor flux spatial position can be tracked in an ac machine even at low or zero stator frequency if a low-frequency harmonic current signal is injected into its stator. The harmonic current injection is source of the rotor speed perturbations which induce voltage oscillations in the stator winding at the injected frequency. By analyzing the stator winding voltage response, it is possible to detect the rotor flux position regardless of the stator frequency. This paper presents a stator current controller that is suitable for imposing rotating or pulsating harmonic current injection and a method for tracking the rotor flux position in either induction machines (IMs) or permanent-magnet synchronous machines (PMSMs). The controller contains, in addition to the standard fundamental-frequency-based synchronous reference frame (SRF) current controller, two sets of harmonic current integral controllers placed in respective harmonic SRFs. Such an extended current controller simultaneously performs two important tasks: controlled harmonic current injection with zero steady-state error and separation of particular spectral components in the stator voltage (spectral/sequence decomposition) which contain the rotor flux position information. The theoretical analysis presented, based on perturbation theory and averaging techniques, gives general expressions which link the rotor flux position error in IM and PMSM to the harmonic current controller outputs. Two special cases with the rotational and pulsating harmonic current injections are considered in more detail. The validity of the theoretical analysis and the feasibility of the sensorless rotor flux position detection are experimentally verified.
机译:如果将低频谐波电流信号注入其定子,则即使在定子频率低或为零的情况下,也可以在交流电机中跟踪转子磁通量的空间位置。谐波电流注入是转子速度扰动的来源,转子速度扰动在注入频率下在定子绕组中引起电压振荡。通过分析定子绕组电压响应,可以检测出转子磁通位置,而与定子频率无关。本文提出了一种适用于施加旋转或脉冲谐波电流注入的定子电流控制器,以及一种用于跟踪感应电机(IM)或永磁同步电机(PMSM)中转子磁通位置的方法。除标准的基于基频的同步参考框架(SRF)电流控制器外,该控制器还包含两组放置在各个谐波SRF中的谐波电流积分控制器。这种扩展的电流控制器同时执行两项重要任务:具有零稳态误差的受控谐波电流注入以及包含转子磁通位置信息的定子电压中特定频谱分量的分离(频谱/序列分解)。提出的理论分析基于微扰理论和平均技术,给出了将IM和PMSM中的转子磁通位置误差与谐波电流控制器输出相关联的一般表达式。旋转和脉冲谐波电流注入的两种特殊情况将被更详细地考虑。实验验证了理论分析的有效性和无传感器转子磁通位置检测的可行性。

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