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首页> 外文期刊>SN Applied Sciences >Optimal design of an off‑grid hybrid renewable energy system considering generation and load uncertainty: the case of Zanjan city, Iran
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Optimal design of an off‑grid hybrid renewable energy system considering generation and load uncertainty: the case of Zanjan city, Iran

机译:考虑和负荷不确定性的离网混合可再生能源系统的优化设计:伊朗Zanjan City的情况

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In this paper, designing a hybrid stand-alone photovoltaic/wind energy system with battery storage (PV/WT/Batt) is presented to minimize the total cost of the hybrid system and considering reliability constraints for Zanjan city in Iran country considering generation and load uncertainties. The total cost includes the cost of the system components and load losses cost and also deficit power probability-hourly interruption probability index, which is defined as the reliability constraint. The optimal size of the system components is found using an improved crow search algorithm based on mutation and crossover operators of the genetic algorithm to prevent premature convergence. The optimal designing of the hybrid system is implemented considering the uncertainty of photovoltaic and wind resources as well as the load demand of the system based on the probability distribution functions of uncertain parameters using Monte Carlo simulation. The simulations are implemented in two deterministic and probabilistic scenarios. In the deterministic scenario, the optimal design of various combinations of the hybrid system is investigated in view of the system cost and deficit power probability probability-hourly interruption probability index based on the improved crow search algorithm with and without the cost of load loss. The results of the deterministic scenario showed that the system cost is increased considering the cost of load loss, but the system load is supplied with higher reliability. Also, the deterministic results cleared the superiority of the improved crow search algorithm compared with conventional crow search algorithm and particle swarm optimization methods. Moreover, the results of the system designing showed that considering the uncertainty, the system cost increases, and the reliability is significantly improved. The results cleared that the system cost in deterministic and probabilistic designing is obtained 1.0108 M$ and 1.210 M$, respectively for load supply equal to 153.87 MWh. So, due to the inherent nature of the uncertainty in the renewable resources power generation as well as continuous load changes, a probabilistic approach of the hybrid system designing is necessary to know the accurate cost and reliability.Article highlights Effective performance of the proposed method in system designing with lowest cost and higher reliability.Achieving to a more reliable hybrid energy system with considering cost of load losses in designing.Increasing the system the cost and improving the reliability considering uncertainties of generation and load.
机译:在本文中,提出了一种具有电池储存(PV / WT / BATT)的混合立独独立的光伏/风能系统,以最大限度地降低混合系统的总成本,并考虑考虑伊朗国家的可靠性约束,考虑到一代和负荷不确定因素。总成本包括系统组件的成本和负载损耗成本以及缺陷功率概率 - 小时中断概率索引,其被定义为可靠性约束。使用基于遗传算法的突变和交叉运算符的改进的乌鸦搜索算法找到系统组件的最佳大小,以防止过早收敛。考虑到光伏和风力资源的不确定性,实现了混合系统的最佳设计,以及使用Monte Carlo仿真的不确定参数的概率分布函数的系统的负载需求。模拟是以两个确定性和概率主义情景实现的。在确定性方案中,考虑到基于改进的乌鸦搜索算法的系统成本和缺陷功率概率概率概率索引来研究混合动力系统的各种组合的最佳设计。确定性方案的结果表明,考虑到负载损耗的成本,系统成本增加,但系统负载提供更高的可靠性。此外,确定性结果清除了与传统的乌鸦搜索算法和粒子群优化方法相比改进的乌鸦搜索算法的优越性。此外,系统设计的结果表明,考虑不确定性,系统成本增加,可靠性显着提高。结果清楚地确定了确定性和概率设计中的系统成本分别获得1.0108 M $ 1.210 M $,用于负载电源等于153.87兆瓦。因此,由于可再生资源发电的不确定性的固有性以及连续负载变化,混合动力系统设计的概率方法是了解准确的成本和可靠性。前突出了所提出的方法的有效性能系统设计,具有最低的成本和更高的可靠性。考虑到设计中负载损失成本,以更可靠的混合能量系统设计。在考虑发电和负荷的不确定性的情况下,提高系统的成本和提高可靠性。

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