Performance evaluation and load demand management of grid connected hybrid wind-solar-battery system

K. Venkatachalam, V. Saravanan
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引用次数: 2

Abstract

In this paper, Performance of the grid connected hybrid wind-solar energy system and load demand response of the battery integrated single phase voltage source inverter is presented. The wind energy conversion system is generating AC power and the solar PV system is generating DC power and both are integrating with battery in the commo n DC bus. The output voltage of the wind and solar system are controlling using dc-dc converters and it achieved more than the battery voltage. P&O algorithm used MPPT based voltage controller is driving the dc-dc converter with a reference voltage value of the battery. The single -phase full-bridge converter is converting DC to AC power and feeding into the standalone AC loads and distribution grid with IEEE 519 standard. The bi-directional converter is controlling the directions of power flow and it operates two modes namely inverter mode and rectifier mode based on a voltage level of the battery. In this bi-directional converter is controlling by the PI controller with the reference value of the DC bus voltage and load current. The power quality and demand response of the inverter is observing at various types of load conditions in standalone mode and grid-connected mode using experimental results.
并网风能-太阳能-电池混合系统性能评估与负荷需求管理
本文介绍了并网混合风光-太阳能系统的性能和电池集成单相电压源逆变器的负荷需求响应。风能转换系统产生交流电源,太阳能光伏系统产生直流电源,两者在共直流母线上与电池集成。风能和太阳能系统的输出电压采用dc-dc变换器进行控制,实现了比电池电压更高的控制。采用P&O算法的基于MPPT的电压控制器以电池的参考电压值驱动dc-dc变换器。单相全桥变换器将直流电源转换为交流电源,并按照IEEE 519标准馈送到独立的交流负载和配电网。双向变流器是控制潮流的方向,它运行两种模式,即逆变模式和整流模式,基于电池的电压水平。该双向变换器由PI控制器以直流母线电压和负载电流为参考值进行控制。利用实验结果观察了单机模式和并网模式下逆变器在各种负载条件下的电能质量和需求响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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