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Integrated optimal design and sensitivity analysis of a stand alone wind turbine system with storage for rural electrification

机译:具有农村电气化存储功能的独立风力发电机系统的集成优化设计和灵敏度分析

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摘要

In this paper, the authors investigate a robust Integrated Optimal Design (IOD) devoted to a passive wind turbine system with electrochemical storage bank: this stand alone system is dedicated to rural electrification. The aim of the IOD is to find the optimal combination and sizing among a set of system components that fulfils system requirements with the lowest system Total Cost of Ownership (TCO). The passive wind system associated with the storage bank interacts with wind speed and load cycles. A set of passive wind turbines spread on a convenient power range (2 – 16 kW) are obtained through an IOD process at the device level detailed in previous papers. The system cost model is based on data sheets for the wind turbines and related to battery cycles for the storage bank. From the range of wind turbines, a “system level” optimization problem is stated and solved using an exhaustive search. The optimization results are finally exposed and discussed through a sensitivity analysis in order to extract the most robust solution versus environmental data variations among a set of good solutions.
机译:在本文中,作者研究了一种稳健的集成优化设计(IOD),该设计专门用于带有电化学存储库的无源风力涡轮机系统:该独立系统专用于农村电气化。 IOD的目的是在满足最低系统总拥有成本(TCO)的系统要求的一组系统组件之间找到最佳的组合和规模。与存储库关联的被动风系统与风速和负载周期相互作用。一组被动风力涡轮机散布在方便的功率范围(2 – 16 kW)上,这是通过在先前论文中详细介绍的设备级别的IOD过程获得的。系统成本模型基于风力发电机的数据表,并与存储库的电池周期有关。在风力涡轮机的范围内,提出了“系统级”优化问题,并通过详尽搜索进行了解决。最后,通过敏感性分析来公开和讨论优化结果,以便从一组好的解决方案中提取最鲁棒的解决方案与环境数据的差异。

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