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Towards Implementation of Smart Grid: An Updated Review on Electrical Energy Storage Systems

机译:走向智能电网的实施:电能存储系统的最新回顾

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摘要

A smart grid will require, to greater or lesser degrees, advanced tools for planning and operation, broadly accepted communications platforms, smart sensors and controls, and real-time pricing. The smart grid has been described as something of an ecosystem with constantly communication, proactive, and virtually self-aware. The use of smart grid has a lot of economical and environmental advantages; however it has a downside of instability and unpredictability introduced by distributed generation (DG) from renewable energy into the public electric systems. Variable energies such as solar and wind power have a lack of stability and to avoid short-term fluctuations in power supplied to the grid, a local storage subsystem could be used to provide higher quality and stability in the fed energy. Energy storage systems (ESSs) would be a facilitator of smart grid deployment and a “small amount” of storage would have a “great impact” on the future power grid. The smart grid, with its various superior communications and control features, would make it possible to integrate the potential application of widely dispersed battery storage systems as well other ESSs. This work deals with a detailed updated review on available ESSs applications in future smart power grids. It also highlights latest projects carried out on different ESSs throughout all around the world.
机译:智能电网将或多或少地需要用于计划和运营的高级工具,广泛接受的通信平台,智能传感器和控件以及实时定价。智能电网已被描述为具有持续通信,主动和虚拟自我意识的生态系统。智能电网的使用具有很多经济和环境优势;但是,分布式发电(DG)将可再生能源引入公共电力系统存在不稳定和不可预测的缺点。诸如太阳能和风能之类的可变能源缺乏稳定性,并且为了避免向电网供电的短期波动,可以使用本地存储子系统来提高馈送能量的质量和稳定性。储能系统(ESS)将促进智能电网的部署,“少量”存储将对未来的电网产生“巨大影响”。具有各种高级通信和控制功能的智能电网将使集成广泛分散的电池存储系统以及其他ESS的潜在应用成为可能。这项工作将对未来智能电网中可用的ESSs应用程序进行详细的更新审查。它还重点介绍了在全球不同ESS上执行的最新项目。

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