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Application of PI Current Controller in Single Phase Inverter System Connected to Non Linear Load

机译:PI电流控制器在单相逆变器系统中的应用连接到非线性负载

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This study is concerned with the problem of network power quality when inverter systems are connected to a nonlinear load. Nonlinear loads are well known as one of the biggest source of harmonics in the power system. Besides that, inverter systems also have their nonlinearity characteristic because of the electronic components. As the inverter system is connected to nonlinear load, it resulting in harmonic distortion-related problem and draw non-sinusoidal currents in the system, thus reducing the power quality in the system. The application of Proportional Integral controller in this system is the main interest of this study. This current controller capable of reducing total harmonic distortion and improve the state of current waveform. This paper focuses on application of simple manual trial and error tuning technique to produce the optimum value for the gains. The result of study verifies the trial and error manual tuning of PI current controller in compensating harmonic distortions. Simulation and modelling of the system are successfully developed using Matlab/Simulink.
机译:当逆变器系统连接到非线性负载时,本研究涉及网络电能质量问题。非线性负载是众所周知的电力系统中最大的谐波源之一。除此之外,由于电子元件,逆变器系统也具有它们的非线性特性。由于逆变器系统连接到非线性负载,因此它导致谐波失真相关的问题并在系统中汲取非正弦电流,从而降低了系统中的功率质量。在该系统中的比例积分控制器的应用是本研究的主要兴趣。该电流控制器能够降低总谐波失真并提高电流波形的状态。本文重点介绍了简单的手动试验和误诊技术的应用,为增益产生最佳值。研究结果验证了PI电流控制器的试验和错误手动调整在补偿谐波畸变中。使用Matlab / Simulink成功开发系统的仿真和建模。

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