带电池的光电系统,采用并行转换器,在异常电网中为充电站和分布式负载供电

Kripa Tiwari, Bhim Singh
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引用次数: 0

摘要

在这项工作中,基于太阳能光伏阵列的发电装置被连接到非理想配电网络,为插电式电动汽车(PEV)充电基础设施和其他连接到交流公共总线的本地负载供电,同时确保并联电压源转换器在动态条件下可靠运行。光伏阵列通过电压源逆变器连接,向负载和电池馈电,充当电源管理实体,并通过变流器提供无功功率和谐波功率支持。在 PEV 和可再生能源(RES)广泛并入电网的背景下,固有的间歇性和动态行为对建立弹性和灵活的控制框架提出了巨大挑战。因此,我们提出了一种解决方案,采用双低通滤波器与自适应噪声消除滤波算法集成,作为主要处理阶段。此外,还结合实施了基于积分器的频率锁定环路控制策略,以缓解电能质量问题、调节电压水平并纠正功率因数差异。此外,系统还能确保连续运行,即使在波动条件下也能为本地负载提供不间断的电力,同时还能作为一个无缝的 PEV 充电站发挥作用。此外,还以表格形式总结了控制器性能的比较分析以及电能质量评估。分析包括评估电网电流和电网电压的总谐波失真(THD),测量值分别为 2.36 % 和 3.60 %。这些值完全符合 IEEE 519 标准规定的限值,表明符合所需的电能质量标准。这种基于可再生能源的充电结构拓扑使用硬件原型进行了动态测试,并通过所获得的结果观察到其性能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photo-voltaic system with battery employing parallel converters operation for charging stations and distributed loads amidst anomalous grid
In this work, solar photovoltaic array-based generation unit is connected to non-ideal distribution network and powering plug-in electric vehicle (PEV) charging infrastructure and other local loads connected to AC common bus while ensuring reliable operation of parallel connected voltage source converters under dynamics. A photovoltaic array connected via voltage source inverter, which feeds power to loads and battery is used to act as power management entity and provides reactive power and harmonic power support via converter. In context of widespread incorporation of PEVs and renewable energy sources (RES) into grid, inherent intermittency and dynamic behavior pose significant challenges in establishing a resilient and flexible control framework. Consequently, a solution is proposed that employs dual low pass filter integrated along an adaptive noise elimination filtering algorithm, serving as a primary processing stage. Additionally, integrator-based frequency locked loop control strategy is implemented in conjunction to mitigate power quality concerns, regulate voltage levels, and correct power factor discrepancies. Furthermore, system ensures continuous operation, providing uninterrupted power to local loads even during fluctuating conditions while simultaneously functioning as a seamless PEV charging station. Additionally, a comparative analysis of controller performance is summarized in a tabular format, alongside a power quality assessment. The analysis includes the evaluation of total harmonic distortion (THD) for both grid currents and grid voltages, which are measured at 2.36 % and 3.60 %, respectively. These values are well within the limits established by IEEE 519 standard, demonstrating compliance with the required power quality criteria. This RES based charging structure topology is tested using a hardware prototype under dynamics and impactful performance is observed through obtained results.
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