孤岛式太阳能光伏和风力系统控制的优化增益

IF 0.5 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Sravya Kedari, Rajagopal Veramalla, Amritha Kodakkal
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引用次数: 0

摘要

本文讨论了一个由风能和太阳能组合组成的系统。风力发电机组是供给负荷的主要能源,由icos Φ算法控制。在正常运行和负荷某一相断开的情况下,对算法的效率进行了测试。该算法在这些条件下有效地保持了电压和频率。太阳能单元直接与电池储能系统连接,用于给电池充电。它使用扰动和观察(P&O)方法实现了MPPT。在MATLAB/SIMULINK中对混合动力系统进行了仿真。在正常运行和变负荷条件下,它能执行和维持负荷侧和共联轴点的频率和电势。cos Φ算法,控制开关信号,需要简单的计算来产生参考源电流。该算法不需要从一帧转换到另一帧,使系统具有快速的动态响应和改善的电能质量。实验证明,扰动观测法可以保证太阳能板的最大功率提取。因此,这两种技术的结合使系统能够有效地处理负载扰动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimized Gains for the Control of Islanded Solar Photovoltaic and Wind System
This paper deals with a system that consists of a combination of wind and solar sources. The wind energy unit is the primary energy source that feeds the load and is controlled by the I cos Φ algorithm. The algorithm’s efficiency is tested under normal operation and when one of the phases in the load is disconnected. This algorithm efficiently maintains the voltage and frequency during these conditions. The solar unit is directly connected with the battery energy storage system and is used to charge the battery. It implements MPPT using Perturb and Observe (P&O) method. The hybrid system is simulated in MATLAB/SIMULINK. It is found to perform and maintain the frequency and the potential at the load side and the point of common coupling under normal operation and varying load conditions. I cos Φ algorithm, which controls the switching signals, requires simple calculations for generating reference source currents. This algorithm does not need conversion from one frame to another, making the system respond for quick dynamics and improved power quality. The perturb and observe method is proven to ensure the maximum power extraction from the solar panel. Thus, the combination of these two techniques makes the system act efficiently and handle load disturbances.
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来源期刊
Advances in Electrical and Electronic Engineering
Advances in Electrical and Electronic Engineering ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
1.30
自引率
33.30%
发文量
30
审稿时长
25 weeks
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