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Microcomputer Implementation of a Finite Error Convergence Time Controller for Voltage Source Inverters

机译:电压源逆变器有限误差收敛时间控制器的微机实现

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In this paper, a voltage source inverter (VSI) with a finite error convergence time controller is presented. A Sliding Mode Control (SMC) has used in many applications due to their robustness, but the convergence of the system states to the equilibrium point is normally asymptotic in infinite time. Recently, terminal sliding mode control (TSMC) not only guarantees the finite error convergence to the manifold from any initial states and the finite error convergence reaching time to the equilibrium point but also reserved the merits of the SMC. With this proposed TSMC parameters design, the inverter output voltage will track the sinusoidal reference voltage within very short time. Thus, the performance of the inverter can be improved. Experimental results are given to verify the theoretical analysis. For comparison purposes, a classic sliding mode controlled VSI is also tested on the same experimental system.
机译:本文提出了一种具有有限误差收敛时间控制器的电压源逆变器(VSI)。滑模控制(SMC)由于其鲁棒性而已在许多应用中使用,但是系统状态到平衡点的收敛通常在无限时间内渐近。近来,终端滑模控制(TSMC)不仅保证了从任何初始状态到流形的有限误差收敛,而且保证了到达平衡点的有限误差收敛时间,而且保留了SMC的优点。利用该建议的TSMC参数设计,逆变器的输出电压将在很短的时间内跟踪正弦参考电压。因此,可以提高逆变器的性能。实验结果证明了理论分析的正确性。为了进行比较,还在同一实验系统上测试了经典的滑模控制VSI。

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