用于电力系统的NAS储能系统建模

A. Sarasua, M. Molina, D. Pontoriero, P. Mercado
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引用次数: 27

摘要

目前,电池系统中的新材料和开发方法旨在取代铅酸电池,不仅是市场上常见的铅酸电池,而且在某些情况下,由于其更好的整体性能,也可以作为大型储能系统的设备。在这些新的电池类型中,钠硫电池是一种新的实用和经济的有竞争力的解决方案,可以储存大量的能量。它们具有许多优点,如使用无污染组件和更长的使用寿命。利用电力电子技术,这些新型电池可用于峰值节约(PS)或电能质量(PQ)目的。在任何一种情况下,都有必要通过一个有代表性的模型来研究它们的动力行为。本文首先介绍了钠电池的主要特点。然后,在MATLAB/Simulink中开发了一个新的模型,并在测试电源系统中实现。分析和结论包括在最后的部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling of NAS energy storage system for power system applications
At present new materials and development approaches in battery systems are aimed at replacing Lead Acid batteries, not only their common market-available forms but also, in some cases, as devices for large energy storage systems due to their better overall performance. Among these new battery types, sodium-sulphur batteries are a new practical and economical competitive solution to store large amounts of energy. They have many advantages such us the use of non-polluting components and longer life. Using power electronics, these new batteries can be used for peak saving (PS) or power quality (PQ) purposes. In either case, it is necessary to study their dynamic behaviour through a representative model. This work firstly describes the main features of sodium batteries. Then, it presents a new model developed in MATLAB/Simulink and implemented in a testing power system. Analysis and conclusions are included in the final sections.
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