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HF Test Current Injection-Based Self-Sensing Control of PMSM for Low- and Zero-Speed Range Using Two-Degree-of-Freedom Current Control

机译:基于二自由度电流控制的低速和零速范围内基于HF测试电流注入的PMSM自感控制

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摘要

This paper deals with an innovative self-sensing control scheme based on test current instead of voltage injection. Using two-degree-of-freedom current control, one can overcome the bandwidth limitations that made test current injection unattractive during the last 20 years. The two-degree-of-freedom control scheme consists of a model-based dynamic feedforward control to set the reference response and model reference tracking controllers providing disturbance rejection and position error signals for self-sensing control. Since two-degree-of-freedom control is a model-based control scheme, the compensation for secondary saliencies is inherently included in the precontrol. It is analytically shown that, in the case of alternating test current instead of voltage injection, just the precise knowledge, in general, of the current- and position-dependent secondary diagonal element of the inductance matrix is needed in the case of inductance saliency-based self-sensing control. The effectiveness of the proposed method is proven by experimental results.
机译:本文提出了一种基于测试电流而非电压注入的创新型自感应控制方案。使用两自由度电流控制,可以克服带宽限制,该带宽限制在过去20年中没有吸引测试电流。两自由度控制方案由基于模型的动态前馈控制(用于设置参考响应)和模型参考跟踪控制器(用于提供自感应控制的干扰抑制和位置误差信号)组成。由于两自由度控制是基于模型的控制方案,因此二次显着性补偿固有地包含在预控制中。分析表明,在交流测试电流而不是电压注入的情况下,在电感显着性的情况下,通常只需要精确了解电感矩阵中与电流和位置相关的次级对角线元素即可,基于自感应控制。实验结果证明了该方法的有效性。

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