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New Computing Method for Techno-Economic Analysis of the Photovoltaic Water Pumping System Using Fuzzy based NSGAII Optimization Approach

机译:基于模糊的NSGAII优化方法的光伏抽水系统技术经济分析的新方法。

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This paper presents an optimization of photovoltaic water pumping system (PWPS) considering the reliability criteria and economic aspects. In this way loss of load probability (LLP) as reliability criteria and life cycle cost (LCC) as economic criteria are used to simulate the performance of the PWPS. The sizing of a photovoltaic pumping system means the sizing of the photovoltaic module numbers and water tank storage capacity in terms of storage days. In the proposed algorithm, an external archive of non-dominated solution is kept which is updated during iteration. In addition, for preserving the diversity in the archive of Pareto solutions, the crowding distance operator is used. This attribute gives more flexibility to the planner for choosing the best final scheme among the obtained solutions. Of course in order to decision making, a fuzzy based NSGAII method is applied in this paper to select the favored solution among non-dominated solutions.
机译:考虑到可靠性标准和经济方面,本文提出了一种优化的光伏水泵系统(PWPS)。以这种方式,使用损失概率(LLP)作为可靠性标准,并使用生命周期成本(LCC)作为经济标准来模拟PWPS的性能。光伏泵系统的尺寸是指按照存储天数来确定光伏模块数量和水箱存储容量的尺寸。在提出的算法中,保留了非支配解决方案的外部存档,该存档在迭代过程中进行了更新。另外,为了保留Pareto解决方案的存档中的多样性,使用了拥挤距离算子。此属性为计划者提供了更大的灵活性,以便在获得的解决方案中选择最佳的最终方案。当然,为了决策,本文采用了基于模糊的NSGAII方法在非支配解中选择偏好的解。

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