Reduction of Total Harmonic Distortion in Distribution System with PV Penetration Utilizing D-STATCOM

Norsyazana Binti Yusoff, T. J. Hashim, Leong Shu Xuan
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Abstract

Over the years, the photovoltaic (PV) energy penetration and the presence of non-linear loads in the distribution system have both risen and will continue to increase rapidly. One of the implications is the harmonic distortion which results in the degradation of electrical components that are connected at the load end. Few custom power devices including Distribution Static Compensator (D-STATCOM) have been determined to enhance the power quality of the supply. The objective of this paper is to evaluate the effect of harmonics in the distribution system and to minimize the percentage of total harmonic distortion (THD) of the source current to be less than 5% for 1 kV systems or below according to the IEEE STD 519-2014 standard limit. This paper employs the D-STATCOM device as the primary component, which demands the use of a specific controller, the Synchronous Reference Frame Theory (SRFT) technique to significantly remove the harmonic contents of the source current. The simulation was modelled utilizing software MATLAB/Simulink R2019a and the percentage of THD was calculated with the Fast Fourier Transform (FFT) analysis window. The findings from simulations indicated that the overall harmonic distortion of supply current has been lowered effectively and are within the allowable range. The source current waveform was enhanced through its sinusoidal waveform manners after the connection of the D-STATCOM device to the system. Regardless of the changes in PV irradiation levels, the outcomes have been achieved with all THD percentage values obtained falls below the required limit for each phase.
利用D-STATCOM降低光伏渗透配电系统总谐波畸变
近年来,光伏能源的渗透率和配电系统中非线性负荷的存在都在上升,并将继续快速增长。其中一个影响是谐波失真,导致在负载端连接的电气元件的退化。为了提高供电质量,已经确定了包括配电静态补偿器(D-STATCOM)在内的一些定制电源器件。本文的目的是评估谐波对配电系统的影响,并根据IEEE STD 519-2014标准限值,将1 kV或以下系统的源电流总谐波失真(THD)的百分比最小化到小于5%。本文采用D-STATCOM器件作为主要器件,需要使用特定的控制器,即同步参考系理论(SRFT)技术来显著去除源电流中的谐波含量。利用MATLAB/Simulink R2019a对仿真进行建模,并利用快速傅里叶变换(FFT)分析窗口计算THD的百分比。仿真结果表明,该方法有效地降低了供电电流的整体谐波失真,并在允许范围内。D-STATCOM设备与系统连接后,源电流波形通过正弦波形方式得到增强。无论PV辐照水平如何变化,所获得的所有THD百分比值都低于每个阶段的要求限值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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