混合可再生能源系统最大限度地提高电力产量

Kamal Anoune, M. Bouya, Mokhtar Ghazouani, Abdelali Astito, A. Abdellah
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引用次数: 30

摘要

本文的重点是光伏(PV)和风能(WE)系统的集成,以维持在充分日照或/和充足的风能储存期间部分满足电力需求的发电。单独的光伏系统或WE系统不能完全满足直流负荷需求。该系统结合了各发电系统的优点,并提供满足剩余负荷的电力。目前的研究和发展趋势集中在混合可再生能源系统(HRES),允许混合和优化发电。当涉及到控制系统时,其目标是最大限度地发电,并将每个可再生能源系统的输出电压稳定在48伏。PV和WT都需要特殊处理,与其他经典发电系统不同,功率控制系统不易保持,并且需要两个电子处理阶段,一个阶段使用最大功率点跟踪(MPPT)算法优化收集的功率,另一个阶段将输出电压升压并稳定在48伏。本文的重点是提出数学和电气模型,其中包括一个独立的HRES和接口功率转换器,用于将电源(PV, WT)连接到直流总线,这些模型在MATLAB和Simulink中开发和应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid renewable energy system to maximize the electrical power production
This paper focuses on an integration of photovoltaic (PV) and wind energy (WE) systems for sustained the electrical generation for partially cover the electrical power demand during adequate insolation, or/and adequate deposit of wind energy. Alone PV system or WE system cannot completely meet DC load demands. The proposed system combines the advantages of each generation system and provides electrical power to meet the remaining load. The current trend of research and development are focused in hybrid renewable energy systems (HRES) that allowing hybridization and optimization of the electrical generation. When it comes to the control system, whom aiming to maximize electrical generation and stabilize the output voltage of each renewable energy systems RES at 48 Volt. Both PV and WT require a special treatment, unlike other classic generation system, the power control system remain not easily, and requires two electronic processing stage, a stage for optimizing the power collected using an algorithm of Maximum power point tracking (MPPT), and another stage to boost and stabilize the output voltage at 48 volts. The priority of this paper remains in the proposal of mathematical and electrical models who include a standalone HRES with the interfacing power converters for connecting sources (PV, WT) to the DC Bus, these models are developed and applied in the MATLAB & Simulink.
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