利用 FCS-MPC 优化占空比和开关状态抑制 BLDCM 的扭矩纹波

IF 5 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE open journal of power electronics Pub Date : 2024-02-21 DOI:10.1109/OJPEL.2024.3368221
Zicheng Li;Xiuwei Fan;Qingyao Kong;Jiang Liu;Sai Zhang
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引用次数: 0

摘要

无刷直流电机(BLDCM)中传统的六步换向控制方法通常会产生明显的转矩纹波,从而限制了其在高精度领域的应用。本文提出了一种结合有限控制集模型预测控制(FCS-MPC)来抑制换向转矩纹波的方案。该方案利用最优占空比和最优开关补偿状态。通过分析无刷直流电机的数学模型,确定了产生换向转矩纹波的原因。为了保持非换向电流的斜率不变,使用了一个离散模型来预测下一时刻的非换向电流。然后利用预测的电流来计算最佳占空比。为解决 PWM 调节性能在高速运行时的缺陷,提出了一种开关插入补偿策略。该策略根据成本函数选择最佳开关插入补偿状态,以抵消非换向电流的变化。此外,还加入了反馈补偿,以增强参数失配时的稳健性。实验和模拟结果证明了这一方法的有效性。
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Torque Ripple Suppression of BLDCM With Optimal Duty Cycle and Switch State by FCS-MPC
The traditional six-step commutation control method in brushless DC motors (BLDCM) often results in significant torque ripple, which limits its application in high-precision fields. This paper proposes a scheme that combines finite control set model predictive control (FCS-MPC) to suppress commutation torque ripple. The scheme utilizes an optimal duty cycle and optimal switch compensation state. By analyzing the mathematical model of BLDC motors, the causes of commutation torque ripple were identified. To maintain the slope of the non-commutation current unchanged, a discrete model was used to predict the non-commutation current at the next moment. The predicted current was then used to calculate the optimal duty cycle. To address the shortcomings of PWM regulation performance at high speeds, a switch insertion compensation strategy was proposed. The strategy selects the optimal switch insertion compensation state based on a cost function to offset the changes in non-commutation current. Furthermore, feedback compensation was incorporated to enhance robustness in the event of parameter mismatch. The effectiveness of this method was demonstrated through experimental and simulation results.
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审稿时长
8 weeks
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