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Impact of distributed generation penetration on grid current harmonics considering non-linear loads

机译:考虑非线性负载的分布式发电渗透对电网电流谐波的影响

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In this paper, the impact of large-scale penetration of distributed generation (DG) system in the presence of non-linear loads is addressed. The effect of different DG penetration levels on the grid side current harmonics is examined. It is found that current harmonics generated by downstream non-linear loads with a TDD (total demand distortion) that is compliant with IEEE Standards can lead to significantly high THD (total harmonic distortion) values at the grid side under certain loading scenarios. These low magnitude highly distorted currents may cause protection circuitry and grid-synchronizing circuitry malfunctioning, and may even cause a resonance condition with power factor correction capacitor on the network. This paper further presents a control application of Photovoltaic (PV) solar plant based DG inverter o mitigate the above harmonics problem. The increased harmonic level issue and the application of PV solar plant to mitigate such problem have been demonstrated both by MATLAB/ SIMULINK simulation studies and laboratory experimental results.
机译:在本文中,解决了在非线性负载下大规模渗透分布式发电(DG)系统的影响。检查了不同的DG渗透水平对电网侧电流谐波的影响。发现在某些负载情况下,由下游非线性负载产生的电流谐波具有符合IEEE标准的TDD(总需求失真),会导致电网侧的THD(总谐波失真)值非常高。这些低幅度的高度失真电流可能导致保护电路和电网同步电路发生故障,甚至可能导致网络上的功率因数校正电容器出现谐振状态。本文进一步介绍了基于光伏发电站的DG逆变器的控制应用,以缓解上述谐波问题。 MATLAB / SIMULINK仿真研究和实验室实验结果都证明了增加的谐波水平问题以及光伏太阳能电站在缓解此类问题方面的应用。

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