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LQR Based SMC for Three-Phase-Inverter with LC Filter in Renewable Energy Conversion Systems

机译:基于LQR的可再生能源转换系统中带LC滤波器的三相逆变器SMC

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摘要

The 3-phase inverter is major part of the photovoltaic panels, wind energy conversion systems (WECSs) and motors which cannot be controlled without it. To dissipate uncontrolled properties as THD, reactive power and supply to the grid stable voltage it is important to control inverter in renewable energy conversion system. Usually to suppress noises in the output signal LC-filter is used in the circuit. In this paper, Sliding Mode Control (SMC) has been proposed as effective nonlinear control method. It is quite not new to synthesize SMC and LQR control methods to control the 3-phase inverter, however, the use of SMC control coupled with LQR in the inverter with LC-filter with linear and nonlinear load seems to be unique. Proposed control method is simple, robust to the disturbances and shows good performance in sense of quality of output voltage. Also, the designed load current observer which estimates load current uses only information from the inverter. Doing so, load current sensors were eliminated which makes the system cheaper and more reliable than opposite ones.
机译:三相逆变器是光伏面板,风能转换系统(WECS)和电动机的重要组成部分,如果没有这些逆变器,则无法对其进行控制。为了消除诸如THD,无功功率和向电网提供稳定电压的不受控制的特性,控制可再生能源转换系统中的逆变器很重要。通常,为了抑制输出信号中的噪声,电路中使用LC滤波器。在本文中,滑模控制(SMC)已经被提出作为有效的非线性控制方法。综合使用SMC和LQR控制方法来控制三相逆变器并不是什么新鲜事,但是,在带有线性和非线性负载的LC滤波器的逆变器中,SMC控制与LQR结合使用似乎很独特。所提出的控制方法简单,对干扰具有鲁棒性,并且在输出电压的质量方面表现出良好的性能。此外,设计的负载电流观测器仅估算逆变器的信息,该负载电流观测器估算负载电流。这样做,消除了负载电流传感器,从而使系统比相对的传感器更便宜,更可靠。

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