Ibrahim Nagwa F, Alkuhayli Abdulaziz, Beroual Abderrahmane, Khaled Usama, Mahmoud Mohamed Metwally
Electrical Department, Faculty of Technology and Education, Suez University, Suez 43533, Egypt.
Electrical Engineering Department, College of Engineering, King Saud University, Riyadh 11421, Saudi Arabia.
Sensors (Basel). 2023 Aug 13;23(16):7146. doi: 10.3390/s23167146.
Photovoltaic (PV) systems are crucial to the production of electricity for a newly established community in Egypt, especially in grid-tied systems. Power quality (PQ) issues appear as a result of PV connection with the power grid (PG). PQ problems cause the PG to experience faults and harmonics, which affect consumers. A series compensator dynamic voltage restorer (DVR) is the most affordable option for resolving the abovementioned PQ problems. To address PQ difficulties, this paper describes a grid-tied PV combined with a DVR that uses a rotating dq reference frame (dqRF) controller. The main goal of this study is to apply and construct an effective PI controller for a DVR to mitigate PQ problems. The artificial rabbits optimization (ARO) is used to obtain the best tune of the PI controller. The obtained results are compared with five optimization techniques (L-SHADE, CMAES, WOA, PSO, and GWO) to show its impact and effectiveness. Additionally, Lyapunov's function is used to analyze and evaluate the proposed controller stability. Also, a mathematical analysis of the investigated PV, boost converter, and rotating dqRF control is performed. Two fault test scenarios are examined to confirm the efficacy of the suggested control approach. The parameters' (voltage, current, and power) waveforms for the suggested system are improved, and the system is kept running continuously under fault periods, which improves the performance of the system. Moreover, the findings demonstrate that the presented design successfully keeps the voltage at the required level with low THD% values at the load side according to the IEEE standards and displays a clear enhancement in voltage waveforms. The MATLAB/SIMULINK software is used to confirm the proposed system's performance.
光伏(PV)系统对于埃及一个新建社区的电力生产至关重要,尤其是在并网系统中。光伏系统与电网(PG)连接会导致电能质量(PQ)问题。电能质量问题会使电网出现故障和谐波,进而影响用户。串联补偿器动态电压恢复器(DVR)是解决上述电能质量问题最经济实惠的选择。为解决电能质量难题,本文描述了一种结合DVR的并网光伏系统,该DVR采用旋转dq参考坐标系(dqRF)控制器。本研究的主要目标是为DVR应用并构建一个有效的PI控制器,以减轻电能质量问题。采用人工兔优化算法(ARO)来获得PI控制器的最佳调谐。将所得结果与五种优化技术(L-SHADE、CMAES、WOA、PSO和GWO)进行比较,以展示其影响和有效性。此外,利用李雅普诺夫函数分析和评估所提出控制器的稳定性。还对所研究的光伏系统、升压转换器和旋转dqRF控制进行了数学分析。研究了两种故障测试场景,以确认所建议控制方法的有效性。所建议系统的参数(电压、电流和功率)波形得到改善,并且在故障期间系统能持续运行,从而提高了系统性能。此外,研究结果表明,根据IEEE标准,所提出的设计成功地将负载侧电压保持在所需水平,且总谐波失真(THD)%值较低,并且电压波形有明显改善。使用MATLAB/SIMULINK软件来确认所提出系统的性能。