Extended State Observer Based Control of an UPQC to assure Power Quality in Electric Distribution Grids

Holman Bueno-Contreras, G. Ramos
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Abstract

The growing use of new technologies as electric vehicles and renewable energy sources (loads and generators with high nonlinear content), cause a deterioration in the voltage and current signals in the grid. The sensitive loads are significantly affected by these problems. So, an Unified Power Quality Conditioner (UPQC) with an Extended State Observer (ESO) tuned with Linear Quadratic Regulator algorithm is proposed with the incorporation of an internal model of sinusoidal signals. The objective is to compensate harmonic distortion and to guarantee correct RMS amplitude values for the load voltage and the grid current, and at the same time, to provide Power Factor Correction. The proposed system attenuates the harmonic distortion of both signals with a THD lower than 5% on nonlinear loads with high power consumption. Additionally, the system reaches a effective compensation of sags and swells of long and short duration.
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基于扩展状态观测器的UPQC控制以保证配电网的电能质量
越来越多地使用新技术,如电动汽车和可再生能源(具有高非线性内容的负载和发电机),导致电网中电压和电流信号的恶化。这些问题对敏感负载的影响很大。为此,提出了一种统一的电能质量调节器(UPQC),其扩展状态观测器(ESO)采用线性二次型调节器算法进行调谐,并结合正弦信号的内部模型。其目的是补偿谐波失真,保证负载电压和电网电流的均方根幅值正确,同时提供功率因数校正。该系统在高功耗的非线性负载下,以低于5%的THD衰减两个信号的谐波畸变。此外,该系统可以有效补偿长时间和短时间的凹陷和肿胀。
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