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首页> 外文期刊>Journal of applied mathematics >Distributed Generation Integration in the Electric Grid: Energy Storage System for Frequency Control
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Distributed Generation Integration in the Electric Grid: Energy Storage System for Frequency Control

机译:电网中的分布式发电集成:用于频率控制的储能系统

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During the last few years generation from renewable energy sources (RESs) has grown considerably in European electrical networks. Transmission system operators are greatly concerned about the impact of RESs on the operational security and efficiency of their networks and more in general of the ENTSO-E interconnected system. Grid codes are to be revised in order to harmonise the rules regarding the connection of RES power plants. A main issue concerns frequency control: frequency is greatly affected by RESs intermittency and its deviations must be limited as much as possible in order to guarantee a suitable level of power quality. To improve frequency stability, in the future, Grid codes could extend frequency control requirements also to RES units, whereas today they are applied only to conventional power plants. Energy storage systems can be a possible solution to increase the flexibility and performance of RES power plants: they allow generators to modulate their power injections without wasting renewable energy. In this paper, the authors studied the suitability of extending frequency control to RES units integrating them with energy storage systems. In particular, the paper focuses on the impact of frequency control on the storage lifetime by analysing the power charge/discharge in response to real frequency oscillations.
机译:在过去的几年中,欧洲电网中可再生能源(RES)的发电量大大增加。传输系统运营商非常关注RES对他们网络以及整个ENTSO-E互连系统的运行安全性和效率的影响。电网规范将进行修订,以协调有关RES电厂连接的规则。一个主要问题与频率控制有关:频率受RES的间歇性影响很大,并且必须尽可能限制其偏差,以保证合适的电能质量。为了提高频率稳定性,将来,电网代码也可以将频率控制要求扩展到RES单元,而如今它们仅应用于常规发电厂。储能系统可能是提高RES发电厂的灵活性和性能的一种可能的解决方案:它们使发电机可以调节功率注入而不会浪费可再生能源。在本文中,作者研究了将频率控制扩展到RES单元并将其与储能系统集成的适用性。特别是,本文通过分析响应于实际频率振荡的电源充电/放电,着重研究了频率控制对存储寿命的影响。

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