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Research on Three-Phase PWM Rectifier Based on Improved Model Predictive Direct Power Control

机译:基于改进模型预测直接功率控制的三相PWM整流器研究

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For the three-phase PWM rectifier under the conventional model predictive direct power control, the accuracy of the prediction objective function is not precise, and problems such as large fluctuations in the predicted power and DC side output voltage. This paper presents a novel optimization method, which uses lagrangian interpolation to optimize the model’s predicted power. At the same time, fuzzy adaptive control is used to adjust the active power reference value of the voltage outer loop. Finally, the SVPWM technology is applied to control the switching of the power tube. The simulation results show that the optimized system has a stellar performance and the strong robustness of the system in transient state.
机译:对于传统模型预测直接功率控制下的三相PWM整流器,预测物体函数的精度不准确,并且在预测功率和DC侧输出电压中的大波动等问题。 本文介绍了一种新颖的优化方法,它使用拉格朗日插值来优化模型的预测功率。 同时,模糊自适应控制用于调整电压外环的有功功率参考值。 最后,应用SVPWM技术来控制电源管的切换。 仿真结果表明,优化的系统具有恒星性能和系统的瞬态状态强大的鲁棒性。

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