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Optimal sizing of PV/wind/diesel hybrid microgrid system using multi-objective self-adaptive differential evolution algorithm

机译:利用多目标自适应差分进化算法优化光伏/风/柴油混合微电网系统的规模

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Microgrid systems, such as solar photovoltaic (PV) power and wind energy, integrated with diesel generators are promising energy supplies and are economically feasible for current and future use in relation to increased demands for energy and depletion of conventional sources. It is thus important to optimize the size of hybrid microgrid system (HMS) components, including storage, to determine system cost and reliability. In this paper, optimal sizing of a PV/wind/diesel HMS with battery storage is conducted using the Multi-Objective Self-Adaptive Differential Evolution (MOSaDE) algorithm for the city of Yanbu, Saudi Arabia. Using the multi-objective optimization approach, the objectives are treated simultaneously and independently, thereby leading to a reduction in computational time. One of the main criteria to consider when designing and optimizing the HMS is the energy management strategy, which is required to coordinate the different units comprising the HMS. The multi-objective optimization approach is then used to analyze the Loss of Power Supply Probability (LPSP), the Cost of Electricity (COE), and the Renewable Factor (RF) in relation to HMS cost and reliability and is tested using three case studies involving differing house numbers. Results verify its application in optimizing the HMS and in its practical implementation. In addition, optimization results using the proposed approach provided a set of design solutions for the HMS, which will assist researchers and practitioners in selecting the optimal HMS configuration. Moreover, it is important to select optimally sized HMS components to ensure that all load demands are met at the minimum energy cost and high reliability. (C) 2018 Elsevier Ltd. All rights reserved.
机译:与太阳能发电机相集成的微电网系统,例如太阳能光伏(PV)能源和风能,是有前途的能源供应,并且相对于对能源的日益增长的需求和传统能源的枯竭而言,对于当前和未来的使用在经济上都是可行的。因此,重要的是优化混合微电网系统(HMS)组件的大小,包括存储,以确定系统成本和可靠性。在本文中,使用多目标自适应差分进化(MOSaDE)算法对沙特阿拉伯延布市进行了带有电池存储的PV /风/柴油HMS的最佳尺寸确定。使用多目标优化方法,可以同时且独立地处理目标,从而减少了计算时间。设计和优化HMS时要考虑的主要标准之一是能源管理策略,这是协调组成HMS的不同单元所必需的。然后,将多目标优化方法用于与HMS成本和可靠性相关的电源概率损失(LPSP),电力成本(COE)和可再生因子(RF)的分析,并通过三个案例研究进行了测试涉及不同的门牌号码。结果证明了其在优化HMS和实际实施中的应用。此外,使用建议的方法获得的优化结果为HMS提供了一套设计解决方案,这将有助于研究人员和从业人员选择最佳的HMS配置。此外,重要的是选择最佳尺寸的HMS组件,以确保以最小的能源成本和高可靠性满足所有负载需求。 (C)2018 Elsevier Ltd.保留所有权利。

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