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Optimal Sizing for Stand-Alone Hybrid PV-WIND Power Supply System Using PSO

机译:使用PSO的独立混合PV风电源系统最优尺寸

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Limited fuel reserves and harmful effects of environmental pollution have brought about a lot of development in renewable energy sources. Among these renewable energy sources, solar and wind are found to be the most viable energy sources in the world. Due to their uncertainties in supply and the nonlinear characteristics of some of their components, the system becomes unreliable. But when applied as hybrid system, these sources are found to be more economical and efficient. In optimizing the sizing of such hybrid system parameters the evolutionary algorithms have been proved to give faster and more efficient results as compared to classical methods. This work concentrates in finding an optimal configuration of PV modules, Wind turbines and Battery numbers by minimizing the annualized cost considering the loss of power supply probability using Particle Swarm Optimization technique. The radiation and wind data of India obtained from the NASA meteorological website are considered for analysis.
机译:有限的燃油储备和环境污染的有害影响带来了可再生能源的大量发展。在这些可再生能源中,发现太阳能和风是世界上最可行的能源。由于它们的供应不确定性和一些组件的非线性特性,系统变得不可靠。但是当应用为混合动力系统时,发现这些来源更加经济和高效。在优化这种混合系统参数的尺寸时,与经典方法相比,已经证明了进化算法以提供更快,更有效的结果。通过最小化考虑粒子群优化技术的电源概率损失的年化成本,这项工作专注于找到PV模块,风力涡轮机和电池号的最佳配置。从美国宇航局气象网站获得的印度的辐射和风数据被认为是分析。

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