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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Optimal sizing of a grid independent hybrid renewable energy system incorporating resource uncertainty, and load uncertainty
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Optimal sizing of a grid independent hybrid renewable energy system incorporating resource uncertainty, and load uncertainty

机译:包含资源不确定性和负载不确定性的与电网无关的混合可再生能源系统的最佳尺寸

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摘要

Wind speed (WS) and solar radiation (SR) are innately uncertain and bring about more uncertainties in the power system. Therefore, due to the nonlinear nature of photovoltaic cells and wind turbines, the mean values of solar radiation and wind speed cannot be assuredly measured and a small change in these values alters the results of the study. Furthermore the mean values of WS and SR occur with a low degree of probability, that is, if the mean values one utilized in system design, it will mean that not all possible states have been considered. Therefore, in hybrid system analysis, it has been suggested that the degree of uncertainty be taken into calculation in order for all possibilities to be covered. For this purpose, the Monte Carlo Simulation Method and Particle Swarm Optimization Algorithm have been used in this article. The proposed methodology is applied to a real case study and the results are discussed. In this regard, an off-grid hybrid multisource system (photovoltaic-wind-battery) is considered, modeled, optimally sized, and compared of different seasons in terms of the total annual cost and uncertainty in WS, SR, and electricity demand. (C) 2016 Elsevier Ltd. All rights reserved.
机译:风速(WS)和太阳辐射(SR)天生具有不确定性,并给电力系统带来更多不确定性。因此,由于光伏电池和风力涡轮机的非线性特性,无法确定地测量太阳辐射和风速的平均值,并且这些值的微小变化会改变研究结果。此外,WS和SR的平均值出现的可能性很小,也就是说,如果在系统设计中使用平均值,则意味着未考虑所有可能的状态。因此,在混合系统分析中,建议将不确定程度纳入计算,以便涵盖所有可能性。为此,本文使用了蒙特卡罗模拟方法和粒子群优化算法。所提出的方法应用于实际案例研究并讨论了结果。在这方面,考虑了离网混合多源系统(光伏-风能电池),对其进行了建模,确定了其大小,并比较了不同季节的总年度成本以及WS,SR和电力需求的不确定性。 (C)2016 Elsevier Ltd.保留所有权利。

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