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A three-phase AC power source using multivariable repetitive robust model reference adaptive control

机译:使用多变量重复鲁棒模型参考自适应控制的三相交流电源

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This paper presents a computer-controlled three-phase AC power source for use in standard tests of electrical power devices. Developed with a multivariable repetitive robust model reference adaptive controller (MIMO RMRAC-RP), this scheme is able to generate sinusoidal waveforms with adjustable amplitudes and frequencies, as well as several arbitrary waveforms. Using /spl alpha//spl beta/0 transformation and balanced three-phase load, the plant has its interactor matrix completely known, and in this case the multivariable control law may have its parameters reduced in number, reducing the computational effort to adapt them. For this MIMO RMRAC-RP with a reduced number of parameters, the augmented error equation is written, and the adaptation algorithm convergence mathematical proofs are developed, as well as the proof of the overall closed-loop system stability, despite the presence of unmodeled dynamics and bounded disturbances. Simulation and experimental results confirm good performance for linear and nonlinear three-phase loads.
机译:本文提出了一种计算机控制的三相交流电源,用于电力设备的标准测试。该方案由多变量重复性鲁棒模型参考自适应控制器(MIMO RMRAC-RP)开发,能够生成振幅和频率可调的正弦波形,以及多个任意波形。使用/ spl alpha // spl beta / 0转换和平衡的三相负载,工厂具有完全已知的交互矩阵,在这种情况下,多变量控制定律的参数数量可能减少,从而减少了适应它们的计算量。对于此具有减少参数数量的MIMO RMRAC-RP,尽管存在未建模的动力学,但它会写出扩展的误差方程,并开发了自适应算法收敛数学证明,以及整个闭环系统稳定性的证明。和有限的干扰。仿真和实验结果证实了线性和非线性三相负载的良好性能。

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