微电网混合可再生能源系统研究进展

A. Bandara, K.T.M.U. Hemapala, Nalin C Ekanayake
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引用次数: 2

摘要

可再生能源的高度普及可以最大限度地减少一个国家的温室气体排放和对石油的依赖。为实现这一目标,需要优化可再生能源整合模式。混合可再生能源系统(HRES)是可再生能源发电与负荷的集成模型。因此,这种模式将取决于有关地理区域的可再生能源供应情况及其当地需求。将可再生能源整合到电网中有许多模式。其中,没有电网连接的孤岛模式由于其自成一体的性质而在农村地区得到发展。这些混合可再生能源系统通常以太阳能和风能作为主要能源,柴油发电机用作备用电源。要整合可再生能源,必须精确设计整合模式。本文从分布式发电和微电网的角度深入探讨了可再生能源并网模式。对不同的混合可再生能源系统进行了比较和评估,以评估其不足和局限性。讨论了未来的挑战和遗留问题。
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A Survey on Hybrid Renewable Energy Systems for Microgrid Application
High penetration of renewable energy could lead to minimizing the greenhouse gas emissions and petroleum dependency of a country. To achieve this, an optimized renewable energy integration model is required. Hybrid Renewable Energy System (HRES) is an integrated model of renewable energy generation and the load. Therefore, this model will depend on the renewable energy resource availability of a concerned geographical area and its local demand. There are many models to integrate renewable energy into an electrical grid. Among them islanded models without a grid connection are developed in rural areas due to their self-contained nature. These hybrid renewable energy systems usually have solar and wind energy as their primary energy source where a diesel generator is used as the backup supply. To integrate renewable energy, the integration model should be precisely designed. This paper discusses the renewable energy integration models in-depth from the view of distributed generation and micro grids. Different hybrid renewable energy systems were compared and assessed to evaluate their inadequacies and limitations. Future challenges and remaining issues are also discussed.
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