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Deadbeat Predictive Current Control for Permanent Magnet Synchronous Machines With Closed-Form Error Compensation

机译:具有闭式误差补偿的永磁同步电机的无差拍预测电流控制

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摘要

Deadbeat predictive current regulator features fast dynamic responses. However, it suffers from the steady-state current tracking error in a practical system due to the plant uncertainties, particularly the inductances. Instead of using observer-based disturbance voltage feedforward methods, this article proposes a new closed-form method to directly compensate the current tracking errors with a simple feedforward term added to the voltage commands. Zero steady-state error is achieved with negligible computation compared to the observer-based methods. The new method is first derived to tackle the inductance mismatch in the surface-mount permanent magnet synchronous motor, then the system close-loop transfer function is established to prove that the proposed method guarantees the zero steady-state error even with mismatches of the stator resistance and rotor flux linkage. Furthermore, based on the proposed compensation method, noise suppression schemes are added and designed to reduce high-frequency noise sensitivities in practical systems. Finally, the proposed method is extended to the interior permanent magnet synchronous motor (IPMSM). IPMSM system simulation and 68.5-kW experimental results are provided to validate the proposed method.
机译:无差拍预测电流调节器具有快速的动态响应。然而,由于工厂的不确定性,特别是电感,它在实际系统中遭受稳态电流跟踪误差的困扰。代替使用基于观察者的干扰电压前馈方法,本文提出了一种新的封闭形式方法,即通过在电压命令中添加一个简单的前馈项来直接补偿电流跟踪误差。与基于观察者的方法相比,通过可忽略的计算可以实现零稳态误差。首先推导了新方法,以解决表面贴装永磁同步电动机的电感失配问题,然后建立系统闭环传递函数,证明所提出的方法即使在定子失配时也能保证零稳态误差。电阻和转子磁链。此外,基于提出的补偿方法,添加并设计了噪声抑制方案,以降低实际系统中的高频噪声灵敏度。最后,将所提出的方法扩展到内部永磁同步电动机(IPMSM)。提供IPMSM系统仿真和68.5 kW的实验结果来验证该方法。

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