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Optimal Sizing Of A Stand-alone Wind/photovoltaic Generation Unit Using Particle Swarm Optimization

机译:使用粒子群算法的独立风力/光伏发电装置的最佳尺寸

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A hybrid wind/photovoltaic generation system is designed to supply power demand. The aim of this design is minimization of the overall cost of the generation scheme over 20 years of operation. Full demand supply is modeled as constraint for optimization problem. Characteristic equations of the system components and solar radiation and wind speed datasets are assumed to be deterministic, i.e. uncertainties are ignored. The system's costs include investment, replacement, and operation and maintenance costs during 20 years of system lifetime. All system components are commercially available, and actual prices are used. Wind and radiation datasets are for the North West region of Iran (Ardebil province). A Particle Swarm Optimization (PSO) algorithm is used to solve the optimization problem. Results indicate superiority of the PSO algorithm, in terms of speed and convergence to global optimum solution, over a Genetic Algorithm that is conventionally exploited in literature.
机译:风力/光伏混合发电系统旨在满足电力需求。该设计的目的是在运行20年的过程中将发电方案的总成本降至最低。完全需求供应被建模为优化问题的约束。假定系统组件以及太阳辐射和风速数据集的特征方程是确定性的,即忽略不确定性。系统的成本包括系统寿命20年内的投资,更换以及运行和维护成本。所有系统组件都可以通过商业途径获得,并使用实际价格。风和辐射数据集是针对伊朗西北地区(阿尔德比尔省)的。粒子群优化算法(PSO)用于解决优化问题。结果表明,在速度和收敛到全局最优解方面,PSO算法优于传统上在文献中使用的遗传算法。

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