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A reliability-constrained cost-effective model for optimal sizing of an autonomous hybrid solar/wind/diesel/battery energy system by a modified discrete bat search algorithm

机译:可靠性受约束的成本有效模型,通过改进的离散蝙蝠搜索算法优化自主混合太阳能/风/柴油/电池能源系统的规模

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摘要

During recent years, the optimal sizing of an autonomous hybrid energy system for microgrids operation management has been extensively explored. In this paper, with a new point of view, a reliability-constrained cost-effective model is developed to identify optimal sizing of an autonomous hybrid renewable system (AHRS). The significant aims of the proposed model are not only to address an exhaustive model for the AHRS by incorporating solar panel, wind turbine, diesel generator, and battery storage components, but also to implement practical considerations on the AHRS by considering its probabilistic characteristics. To do so, the proposed model takes into account total investment cost, the total fuel cost of the diesel generator, total maintenance cost and total expected load shedding cost in the optimization as four problem objectives subject to technical and operational constraints. A modified discrete bat search algorithm is widely employed to obtain the final optimal solution and followed by a Monte Carlo simulation method to handle non-deterministic characteristics pertaining to load demand, solar and wind generations. The obtained results of the proposed model are given and meticulously evaluated. These results show the feasibility and capabilities of the newly proposed model in the optimal sizing of an AHRS when compared with other approaches.
机译:近年来,已经广泛探索了用于微电网运行管理的自主混合能源系统的最佳尺寸。在本文中,以新的观点,开发了一种可靠性受约束的成本效益模型,以识别自主混合可再生系统(AHRS)的最佳规模。拟议模型的重要目标不仅在于通过结合太阳能电池板,风力涡轮机,柴油发电机和电池存储组件来解决AHRS的详尽模型,而且要通过考虑AHRS的概率特性对AHRS进行实际考虑。为此,建议的模型考虑了总投资成本,柴油发电机的总燃料成本,总维护成本和优化中的总预期减载成本,这是受技术和操作约束的四个问题目标。广泛使用改进的离散蝙蝠搜索算法来获得最终的最优解,然后是蒙特卡罗模拟方法来处理与负荷需求,太阳能和风力有关的不确定性特征。给出并仔细评估了所提出模型的结果。这些结果表明,与其他方法相比,新提出的模型在AHRS最佳尺寸方面的可行性和功能。

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