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A feasibility and load sensitivity analysis of photovoltaic water pumping system with battery and diesel generator

机译:带有电池和柴油发电机的光伏水泵系统的可行性和负荷敏感性分析

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In this paper, a feasibility and load sensitivity analysis is conducted for photovoltaic water pumping systems with storage device (battery) or diesel generator so as to obtain an optimal configuration that achieves a reliable system. The analysis is conducted based on techno-economic aspects, where the loss of load probability and life cycle cost are represented as technical and economic criteria, respectively. Various photovoltaic water pumping systems scenarios with initially full storage tank; battery and hybrid DG-PV energy source are proposed to analyze the feasibility of system. The result shows that the configuration of the PV array and the initial status of the storage tank are important variables to be considered. Moreover, the sensitivity of cost of unit for various PVPS components is studied. It is found that the cost of unit is more sensitive to the initial capital cost of photovoltaic array than other components. In this paper a standalone PV based pumping system with a PV array capacity of 2.4 kWp and a storage tank with a capacity of 80 m(3) was proposed an a optimum system. The system with the aforementioned configuration pumps an average hourly water volume of approximately 3.297 m(3) over one year with a unit of 0.05158 USD/m(3). Moreover, according to results, increasing the maximum capacity of water storage tank is technically and economically better than supporting a photovoltaic water pumping systems with another energy source or extra storage device. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本文中,对具有存储装置(电池)或柴油发电机的光伏水泵系统进行了可行性和负荷敏感性分析,以获得获得可靠系统的最佳配置。基于技术经济方面进行分析,其中负载概率的损失和生命周期成本分别表示为技术和经济标准。最初充满储水箱的各种光伏水泵系统场景;提出了电池和DG-PV混合能源来分析系统的可行性。结果表明,光伏阵列的配置和储罐的初始状态是需要考虑的重要变量。此外,还研究了各种PVPS组件的单位成本敏感性。发现与其他组件相比,单位成本对光伏阵列的初始投资成本更为敏感。在本文中,提出了一个独立的基于PV的抽水系统,该系统具有2.4 kWp的PV阵列容量和80 m(3)的储罐容量,是一个最佳系统。具有上述配置的系统在一年中平均每小时抽取约3.297 m(3)的每小时水量,单位为0.05158 USD / m(3)。而且,根据结果,增加储水箱的最大容量在技术上和经济上要比用另一种能源或额外的存储设备来支持光伏水泵系统更好。 (C)2017 Elsevier Ltd.保留所有权利。

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