Enhancing Power Quality with PDO-FOPID Controller in Unified Power Quality Conditioner for Grid-Connected Hybrid Renewables

S. Nagaraju, B. Chandramouli
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Abstract

Addressing the pressing research problem of power fluctuations and grid harmonics in the integration of renewable energy, our  proposed control strategy utilizes the Prairie Dog Optimization Fractional Order Proportional Integral Derivative (PDO-FOPID) controller  within a Unified Power Quality Conditioner (UPQC) system. This innovative approach is tailored to mitigate harmonics and meet load  requirements in grid-connected hybrid renewables. The UPQC system is instrumental in regulating coupling point voltage, countering  voltage and current harmonics to enhance overall power quality. The PDO-FOPID controller dynamically adapts control parameters to system dynamics and load changes, ensuring a stable power supply despite the variability of renewable sources. Simulations in MATLAB/ Simulink confirm its superiority over traditional control strategies, such as PI, sliding mode, and fuzzy control, in harmonics mitigation,  load fulfilment, and power stability. By effectively addressing these challenges, our proposed solution not only contributes to resolving a  critical research problem but also advances the seamless integration of Hybrid Renewable Energy Sources (HRES) into power systems,  thereby enhancing overall grid performance and the efficacy of renewable energy integration. 
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利用并网混合可再生能源统一电能质量调节器中的 PDO-FOPID 控制器提高电能质量
为了解决可再生能源并网中电力波动和电网谐波这一紧迫的研究问题,我们提出的控制策略利用了统一电能质量调节器(UPQC)系统中的草原犬优化分数阶比例积分微分(PDO-FOPID)控制器。这种创新方法专为减轻谐波和满足并网混合可再生能源的负载要求而量身定制。UPQC 系统有助于调节耦合点电压,消除电压和电流谐波,从而提高整体电能质量。PDO-FOPID 控制器可根据系统动态和负载变化动态调整控制参数,确保在可再生能源变化的情况下仍能稳定供电。在 MATLAB/ Simulink 中进行的仿真证实,与 PI、滑动模式和模糊控制等传统控制策略相比,PDO-FOPID 控制器在谐波缓解、负荷满足和电力稳定性方面更具优势。通过有效应对这些挑战,我们提出的解决方案不仅有助于解决一个关键的研究问题,还能推进混合可再生能源(HRES)与电力系统的无缝集成,从而提高整体电网性能和可再生能源集成的效率。
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来源期刊
Nigerian Journal of Technological Development
Nigerian Journal of Technological Development Engineering-Engineering (miscellaneous)
CiteScore
1.00
自引率
0.00%
发文量
40
审稿时长
24 weeks
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