Power quality enhancement by using Z-DVR based series voltage compensation with black widow optimization technique

Ch Srivardhan Kumar, Z. Livinsa
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Abstract

In distribution system, voltage quality issues are the most concerning disturbances influencing the power quality (PQ). As a result, to alleviate this PQ concerns such as sag, swell, fluctuation, interruption, and harmonics on the sensitive load, the series voltage compensator dynamic voltage restorer (DVR) is utilized. Furthermore, a Z-source inverter (ZSI) based DVR is proposed in this paper to improve the power system's voltage restoration properties. To compensate the voltage concerns which is occurs in passive and transmission components, the 3-φ Z-DVR inverter with proportional integral derivative (PID) controller tuned by black widow optimization (BWO). By short circuiting the legs of inverter in the ZSI, prepare the possibility of buck and boost in voltage and utilize the LC impedance grid which incorporated power source to inverter circuit. In addition, to obtain the injecting voltage, PID control scheme for ZSI based DVR is proposed in this paper. The proposed modelling and simulation of DVR is implemented in MATLAB/Simulink tool and the outcomes are analyzed. Furthermore, reduction in voltage concerns, and total harmonics distribution (THD) with BWO tuned PID controller is superior which is 1.01% when compared with existing methods such as Harris Hawks optimization (HHO) based PID, genetic algorithm (GA) based PID controller.
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基于Z-DVR的串联电压补偿黑寡妇优化技术提高电能质量
在配电系统中,电压质量问题是最受关注的影响电能质量的扰动。因此,为了缓解敏感负载的凹陷、膨胀、波动、中断和谐波等PQ问题,采用了串联电压补偿器动态电压恢复器(DVR)。此外,本文还提出了一种基于z源逆变器(ZSI)的DVR,以提高电力系统的电压恢复性能。为了补偿无源元件和传输元件中的电压问题,采用黑寡妇优化(BWO)调谐比例积分导数(PID)控制器的3-φ Z-DVR逆变器。通过在ZSI中短路逆变器的支腿,准备电压降压和升压的可能性,并利用集成电源的LC阻抗网格来实现逆变电路。此外,为了获得注入电压,本文提出了基于ZSI的DVR的PID控制方案。在MATLAB/Simulink中实现了DVR的建模与仿真,并对仿真结果进行了分析。此外,与现有的基于Harris Hawks优化(HHO)和遗传算法(GA)的PID控制器相比,BWO调谐PID控制器在电压问题和总谐波分布(THD)方面的降低效果要好1.01%。
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