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A Simple Steady-State Error Compensation Method of Deadbeat Predictive Control for Permanent Magnet Synchronous Machine

机译:永磁同步电机无差拍预测控制的简单稳态误差补偿方法

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Deadbeat predictive control features fast dynamic responses, compared to the proportional integral (PI) and proportional resonant (PR) control, etc. However, it's quite sensitive to plant uncertainties, such as the system inductance, hence the steady state error between the command and the feedback is inevitable in a practical system. Based on the relationship between parameter mismatch and current tracking error, a new compensation algorithm for the deadbeat predictive control as used for the permanent magnet synchronous motor (PMSM) is proposed. The new method is derived for surface mounted permanent magnet synchronous motor(SMPMSM) first, and then extended to interior permanent magnet synchronous motor (IPMSM). The proposed method does not need a paralleled integral controller or parameter estimator to achieve the zero steady state error, and is simple and easy to implement in the micro-processor. IPMSM drive system simulation and experiment results verify the performance of the proposed new method.
机译:与比例积分(PI)和比例谐振(PR)控制等相比,无差拍预测控制具有快速的动态响应。但是,它对设备不确定性(例如系统电感)非常敏感,因此命令和输入之间的稳态误差非常大。在实际系统中,反馈是不可避免的。基于参数失配与电流跟踪误差之间的关系,提出了一种用于永磁同步电动机(PMSM)的无差拍预测控制补偿算法。该方法首先针对表面贴装式永磁同步电动机(SMPMSM)推导,然后扩展到内部永磁同步电动机(IPMSM)。所提出的方法不需要并行积分控制器或参数估计器即可实现零稳态误差,并且在微处理器中简单易行。 IPMSM驱动系统的仿真和实验结果验证了所提出新方法的性能。

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