Microgrid Integration

Mulualem T. Yeshalem, B. Khan
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引用次数: 7

Abstract

Hybrid energy systems are becoming attractive to supply electricity to rural areas in all aspects like reliability, sustainability, and environmental concerns, and advances in renewable energy technology; especially for communities living far in areas where grid extension is difficult so generation of renewable energy resources like solar and wind energy to provide reliable power supply with improved system efficiency and signifi - cant cost reduction is best way. Besides this, the demand for renewable energy source in large urban cities is increasing, and their integration to the existing conventional grid has become more fascinating challenges. So the future requires stable and reliable inte gration of renewable distributed generators to the grid, and the local loads are close to distributed generators. Most existing power plants have centralized control system and remote power generation site while most renewable power generations are distributed and connected to lower or medium voltage networks near the customer. When the power demand increases, power failure and energy shortage also increase so the renewable energy can be used to provide constant and sustainable power. The chapter will provide a complete overview of microgrid system with its complete operation and control.
微型智能电网"集成
混合能源系统在可靠性、可持续性和环境问题以及可再生能源技术的进步等各个方面对农村地区供电越来越有吸引力;特别是对于居住在电网扩展困难的偏远地区的社区,因此,太阳能和风能等可再生能源的产生提供可靠的电力供应,提高系统效率并显著降低成本是最好的方法。此外,大城市对可再生能源的需求也在不断增加,其与现有常规电网的融合也成为了更具吸引力的挑战。因此,未来需要稳定可靠的可再生分布式发电机组并网,且局部负荷靠近分布式发电机组。大多数现有的发电厂都有集中控制系统和远程发电站点,而大多数可再生能源发电是分布式的,并连接到客户附近的低压或中压电网。当电力需求增加时,停电和能源短缺也会增加,因此可再生能源可以用来提供持续和可持续的电力。本章将提供一个完整的概述微电网系统及其完整的运行和控制。
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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