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Review of flexible AC transmission systems; enabling technologies for future smart grids

机译:审查灵活的交流输电系统;未来智能电网的支持技术

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Since the Kyoto agreement on global greenhouse-gas emissions has been ratified by nearly all nations, individual countries pledged to reduce conventional fossil fuel-based generation and integrating more renewable energy sources within the electricity grids. With such enthusiasm, researchers have identified several challenges in achieving this goal. These challenges include extensive mix of utility, individual investors and residential generation, employing cost effective energy storage technology, adopting intelligent on line monitoring and self-healing systems, secured communication protocols and smart control technologies. In developing the architecture for future smart grids comprising distributed renewable energy sources, the international renewable energy agency has identified remarkable points in this ambitious transformation journey these are: enabling bi-directional energy flow, proposing improved grid interconnection, adopting improved technologies and increasing energy storage capacity. As some of the renewable energy sources are of intermittent characteristic, it is expected that flexible ac transmission systems (FACTS) playing a significant role within the next generation of electricity grids. This paper is aimed at providing a brief review for the most popular FACTS devices, their applications and various proposed controllers.
机译:自从几乎所有国家批准了关于全球温室气体排放的京都协议以来,各个国家都承诺减少传统的基于化石燃料的发电,并在电网中整合更多的可再生能源。有了这样的热情,研究人员已经确定了实现这一目标的若干挑战。这些挑战包括公用事业,个人投资者和住宅发电的广泛组合,采用具有成本效益的储能技术,采用智能在线监测和自我修复系统,安全的通信协议和智能控制技术。在为包含分布式可再生能源的未来智能电网开发架构时,国际可再生​​能源机构已经确定了这一雄心勃勃的转型过程中的显着点,这些显着点是:实现双向能量流,提出改进的电网互联,采用改进的技术并增加储能容量。由于某些可再生能源具有间歇性特征,因此,预计柔性交流输电系统(FACTS)在下一代电网中将发挥重要作用。本文旨在简要介绍最流行的FACTS设备,其应用和各种建议的控制器。

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