电网电压畸变和不平衡条件下太阳能-光伏-风能微电网的电网交互弹性控制

IF 4.3 2区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Vijayakumar Gali;Prashant Kumar Jamwal;Nitin Gupta;B. Chitti Babu;Mohammad Jawid Ahmadi;Meghraj Sudhakar Morey
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引用次数: 0

摘要

将太阳能光伏(PV)、风能和电池存储(BS)系统集成到电网中会带来重大的电能质量(PQ)挑战。特别是,太阳能光伏和风能系统(WES)的间歇性,加上非线性负荷,可能导致电网不稳定。因此,为消费者保持可靠和高质量的电力供应成为一项重大挑战。本文提出了两种新的解决方案:抗缠绕混合阶广义积分器(AWMOGI)和自适应延迟运算周期滤波器(ADOPF)。AWMOGI有效地从扭曲的电网电压中提取基元分量,最大限度地减少直流偏置,减少稳态振荡。同时,通过在d-q坐标系中引入两个采样间隔的延迟,ADOPF快速捕获正序电压分量。分层环路控制器参数使用定制的Harris Hawks Optimization (HHO)算法进行优化,从而增强了误差减小,并便于快速建立直流链路电压环路控制的参考值。自适应动态电源管理方案还使微电网(MG)能够管理来自MG源的剩余电力,减少对BS的压力并确保直流链路电压稳定。实验结果表明,该方法在处理公用电网异常、动态负荷和间歇性微电网源运行方面有显著改善。实验结果表明,该方法的直流关断和稳态误差为零,计算时间为35e-5s,栅极电流的THD为3.16%,符合IEEE 519标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Grid-Interactive Novel Resilient Control of Solar PV-Wind-Battery Storage Microgrid Under Distorted and Unbalanced Grid Voltages
Integrating solar photovoltaic (PV), wind, and battery storage (BS) systems into the grid introduces significant power quality (PQ) challenges. In particular, the intermittent nature of solar PV and wind energy systems (WES), combined with nonlinear loads, can lead to grid instability. As a result, maintaining a reliable and high-quality power supply to consumers becomes a substantial challenge. This article presents two novel solutions to address these challenges: the anti-windup mixed-order generalized integrator (AWMOGI) and the adaptive delay operation period filter (ADOPF). The AWMOGI effectively extracts fundamental components from distorted utility grid voltages, minimizing DC offset and reducing steady-state oscillations. Meanwhile, the ADOPF swiftly captures positive sequence voltage components by introducing a two-sampling-interval delay in the d-q coordinate system. The hierarchical-loop controller parameters are optimized using a customized Harris Hawks Optimization (HHO) algorithm, which enhances error reduction and facilitates rapid establishment of reference values for DC-link voltage loop control. An adaptive dynamic power management scheme also enables the microgrid (MG) to manage surplus power from MG sources, reducing stress on the BS and ensuring DC-link voltage stability. The experimental results demonstrate significant improvements in handling utility grid abnormalities, dynamic loads, and intermittent microgrid source operation. The experimental results show a zero DC-off set and steady-state errors, a fast computational time of 35e-5s, and the THD of grid currents of 3.16%, which complies with the IEEE 519 standards.
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来源期刊
CiteScore
7.70
自引率
9.30%
发文量
59
审稿时长
3.3 months
期刊介绍: The main focus for the IEEE Transactions on Consumer Electronics is the engineering and research aspects of the theory, design, construction, manufacture or end use of mass market electronics, systems, software and services for consumers.
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