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A method for optimal sizing of stand-alone hybrid PV/Wind/Battery system

机译:独立混合光伏/风电/电池系统的最佳尺寸确定方法

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Based on the distributed energy technology, MicroGrid has caused wide attention. It is of great significance to solve the problem of electricity generation in rural areas by establishing an independent MicroGrid system, which mainly consists of solar energy and wind energy. It becomes crucial to find a way to optimize the structure of MicroGrid according to various energy situations. Based on the analysis of the general structure and operation modes of MicroGrid, a hybrid power model, which containing photovoltaic power system (PV), wind power system (WT) and energy storage battery (BATT), has been established in this article. The optimization model and corresponding calculation method not only provide an innovative research method, but also contribute to the further research and application on design methods and operation modes of the distributed MicroGrid system. According to the model established in the article, a MicroGrid system of a village scale has been analysed as an example. With the help of MATLAB Software, the branch and bound algorithm is used in order to minimize the cost of MicroGrid. The optimal installed capacity of PV, WT and BATT is presented. The generating cost per kWh and power supply reliability are demonstrated in this article as well.
机译:基于分布式能源技术的MicroGrid引起了广泛关注。建立一个以太阳能和风能为主的独立的微电网系统,对于解决农村地区的发电问题具有重要意义。找到一种根据各种能源状况优化MicroGrid结构的方法变得至关重要。在分析微电网总体结构和运行方式的基础上,建立了包含光伏发电系统(PV),风力发电系统(WT)和储能电池(BATT)的混合动力模型。优化模型和相应的计算方法不仅提供了创新的研究方法,而且为分布式MicroGrid系统的设计方法和运行模式的进一步研究和应用做出了贡献。根据本文建立的模型,以乡村规模的MicroGrid系统为例进行了分析。在MATLAB软件的帮助下,使用了分支定界算法以最小化MicroGrid的成本。给出了PV,WT和BATT的最佳安装容量。本文还演示了每千瓦时的发电成本和电源可靠性。

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