Ashraf K. Abdelaal , Abdullah M. Shaheen , Attia A. El-Fergany , Mohammed H. Alqahtani
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It details the construction, operation, and control methods of DVRs, comparing the conventional PI-controller with SMC. The arctic puffin optimizer is utilized to get the optimum gains of the PI regulator, and at the same time, it is used to specify the optimal sliding surface required for SMC. A distribution system contains DVR is suggested and implemented utilizing Simulink/MATLAB. The simulation results of the DVR employing SMC and the conventional PI-controller demonstrate a marked improvement in voltage regulation and power quality. Specifically, the SMC-based DVR exhibited a reduction in voltage sag duration and magnitude by approximately 30 % compared to the PI-controller. Additionally, the total harmonic distortion (THD) in the load voltage was reduced by 25 %, indicating a significant enhancement in power quality. 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The arctic puffin optimizer is utilized to get the optimum gains of the PI regulator, and at the same time, it is used to specify the optimal sliding surface required for SMC. A distribution system contains DVR is suggested and implemented utilizing Simulink/MATLAB. The simulation results of the DVR employing SMC and the conventional PI-controller demonstrate a marked improvement in voltage regulation and power quality. Specifically, the SMC-based DVR exhibited a reduction in voltage sag duration and magnitude by approximately 30 % compared to the PI-controller. Additionally, the total harmonic distortion (THD) in the load voltage was reduced by 25 %, indicating a significant enhancement in power quality. 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引用次数: 0
摘要
电力系统的可靠性和效率对于越来越依赖电动机械和设备的现代工业至关重要。然而,电力电子变流器给配电系统(EPDS)增加了非线性需求,可能导致电能质量(PQ)问题,从而损害电气设备。因此,配电系统需要最有效、最经济的技术来提高电能质量。因此,现代 EPDS 采用动态电压恢复器 (DVR) 来维持电压稳定。本研究的重点是在 DVR 中应用滑动模式控制(SMC)来防止电压骤降,从而提高电力系统的可持续性。它详细介绍了 DVR 的构造、运行和控制方法,并将传统的 PI 控制器与 SMC 进行了比较。利用北极海鹦优化器获得 PI 调节器的最佳增益,同时利用它指定 SMC 所需的最佳滑动面。建议使用 Simulink/MATLAB 实现包含 DVR 的配电系统。采用 SMC 和传统 PI 控制器的 DVR 的仿真结果表明,电压调节和电能质量都有明显改善。具体而言,与 PI 控制器相比,基于 SMC 的 DVR 在电压骤降的持续时间和幅度上减少了约 30%。此外,负载电压的总谐波失真(THD)降低了 25%,表明电能质量显著提高。基于 SMC 的 DVR 性能增强后,可支持可再生能源的无缝集成,而可再生能源通常会给电网带来变化。
Sliding mode control based dynamic voltage restorer for voltage sag compensation
The reliability and efficiency of electrical power systems are critical for modern industries, which increasingly rely on electric machines and devices. However, power electronic converters add non-linear demands to the electric power distribution systems (EPDS), that can cause power quality (PQ) problems, which could harm electric devices. As a result, EPDS are pointed for the most effective and economical techniques to enhance PQ. Therefore, Dynamic Voltage Restorer (DVR) is employed to maintain voltage stability in modern EPDS. This study focuses on the application of Sliding Mode Control (SMC) in DVRs to protect against voltage dips, enhancing power system sustainability. It details the construction, operation, and control methods of DVRs, comparing the conventional PI-controller with SMC. The arctic puffin optimizer is utilized to get the optimum gains of the PI regulator, and at the same time, it is used to specify the optimal sliding surface required for SMC. A distribution system contains DVR is suggested and implemented utilizing Simulink/MATLAB. The simulation results of the DVR employing SMC and the conventional PI-controller demonstrate a marked improvement in voltage regulation and power quality. Specifically, the SMC-based DVR exhibited a reduction in voltage sag duration and magnitude by approximately 30 % compared to the PI-controller. Additionally, the total harmonic distortion (THD) in the load voltage was reduced by 25 %, indicating a significant enhancement in power quality. These improvements of the enhanced performance of the SMC-based DVR supports the seamless integration of renewable energy sources, which often introduce variability into the power grid.