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Design methodologies for sizing a battery bank devoted to a stand-alone and electronically passive wind turbine system

机译:用于确定专用于独立式和电子被动式风力涡轮机系统的电池组的设计方法

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摘要

In this paper, the authors investigate four original methodologies for sizing a battery bank inside a passive wind turbine system. This device interacts with wind and load cycles, especially for a stand-alone application. Generally, actual wind speed measurements are of long duration which leads to extensive processing time in a global optimization context requiring a wide number of system simulations. The first part of this article outlines two sizing methodologies based on a statistical approach for the sizing of the electrochemical storage device of a stand-alone passive wind turbine system. Two other efficient methodologies based on the synthesis of compact wind speed profiles by means of evolutionary algorithms are described in the second part of this paper. The results are finally discussed with regard to the relevance of the battery bank sizing and in terms of computation cost, this later issue being crucial to an Integrated Optimal Design (IOD) process.
机译:在本文中,作者研究了四种用于确定无源风力涡轮机系统内部电池组尺寸的原始方法。该设备与风和负荷循环相互作用,特别是对于独立应用。通常,实际风速测量的持续时间较长,这会导致需要进行大量系统仿真的全局优化环境中的处理时间延长。本文的第一部分概述了基于统计方法的两种选型方法,用于独立无源风力涡轮机系统的电化学存储设备的选型。在本文的第二部分中,介绍了另外两种基于紧凑风速分布的有效方法,这些方法是通过进化算法进行综合的。最后就电池组尺寸的相关性和计算成本对结果进行了讨论,之后的问题对于集成优化设计(IOD)流程至关重要。

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