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Step-size fuzzy control to maximum power point tracking algorithms for PV microgrid arrays

机译:PV MicroGrid阵列的最大功率点跟踪算法的梯级模糊控制

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Photo Voltaic (PV) power generation presents a high potential solution to the emerging energy needs and the pollution levels crisis around the world. PV cells have associated current-voltage nonlinear characteristics which vary according to irradiance levels, load impedance and temperature mainly. Maximum Power Point Tracking (MPPT) algorithms are relevant elements in economically viable PV systems. They seek to obtain all the available power from PV modules under every environmental condition. Perturb and Observe (P&O) and Incremental Conductance (IC) are well known MPPT algorithms that are commonly used. This paper proposes an improvement to these methods based on the adaptability under nonlinear conditions, and simplicity of Fuzzy Logic Control (FLC). The detailed design and the applicability in smart microgrids and distributed generation are presented. Comparison simulation results show a faster and adaptable behaviour of the fuzzy controlled algorithms developed.
机译:照片Voltaic(PV)发电为新兴能源需求和世界各地的污染水平危机提供了高潜力的解决方案。光伏电池具有相关的电流 - 电压非线性特性,其根据辐照度水平而变化,主要是负载阻抗和温度。最大功率点跟踪(MPPT)算法是经济上可行的PV系统中的相关元素。他们寻求在每个环境条件下从光伏模块获得所有可用电力。扰动和观察(P&O)和增量电导(IC)是众所周知的MPPT算法,其通常使用。本文提出了基于非线性条件下的适应性和模糊逻辑控制(FLC)的适应性对这些方法的改进。介绍了智能微电网和分布式发电中的详细设计和适用性。比较仿真结果显示了模糊控制算法的更快和适应性的行为。

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