New Design Methodologies for Sizing Electrochemical Storage in Renewable Energy Systems (Case Study: Wind Turbine System)

M. Belouda
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Abstract

This chapter presents four original methodologies for sizing electrochemical storage devices in renewable energy systems. The case study is taken to apply these methodologies on an electrochemical storage device (a battery bank) inside a wind turbine system. The storage device acts together with wind cycles and consumption profile, particularly for a remote application. In general, in a context of optimal design for such systems, the optimization process time (long processing time) is hampered by the wide number of system simulations caused by the long duration of the actual wind speed measurements used as input data for the problem. Two sizing methodologies are based on a statistical approach, and the two other methodologies are based on the synthesis of compact wind speed profiles by means of evolutionary algorithms. The results are discussed from the point of view of the relevance of the battery bank sizing and in terms of computation cost, this later issue being crucial in view of an integrated optimal design (IOD) process.
可再生能源系统中电化学存储的新设计方法(以风力发电系统为例)
本章介绍了可再生能源系统中电化学存储装置尺寸的四种原始方法。案例研究将这些方法应用于风力涡轮机系统内的电化学存储装置(电池组)。存储设备与风周期和消耗曲线一起工作,特别是用于远程应用。一般来说,在这类系统的优化设计中,优化过程时间(长处理时间)受到大量系统模拟的阻碍,这些模拟是由实际风速测量值作为问题输入数据的长时间持续造成的。两种分级方法是基于统计方法,另外两种方法是基于用进化算法综合紧凑风速剖面。从电池组尺寸的相关性和计算成本的角度讨论了结果,考虑到集成优化设计(IOD)过程,后一个问题至关重要。
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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