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Performance Analysis of Solar Photovoltaic System with Fuzzy Based Variable Step Size MPPT Algorithm Using Matlab /Simulink

机译:使用MATLAB / Simulink的模糊基于模糊可变步长MPPT算法的太阳能光伏系统性能分析

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In the recent decades, Photovoltaic (PV) power generation has become one of the primary power source due to the advantages such as less maintenance and environmental benefits. Moreover, the generation source is ultimately free and abundant. However, the major barriers related to PV power generation are low power conversion efficiency, high cost of PV modules and nonlinearity in output power. Because of low power conversion efficiency, PV systems should work always at its Maximum Power Point (MPP). A power conditioning unit with Maximum Power Point Tracking (MPPT) technique is employed in the PV systems to harvest maximum power. The main function of MPPT is to detect the MPP for the given conditions and operate the system at that point. In this paper Fuzzy Logic Controller (FLC) based variable step size MPPT for a standalone solar PV system is presented. Solar PV system with Fuzzy based MPPT controller is built in Matlab /Simulink. The performance of proposed variable step size fuzzy MPPT algorithm is studied for different input conditions and analyzed in terms of performance parameters such as tracking speed, steady state oscillations, response under variations in irradiance and temparature, average output power and output power ripple. The results are compared with Variable Step Size Incremental Conductance (VSS InC) MPPT algorithm and conventional InC based PV system.
机译:在近几十年中,由于维护和环境效益等优点,光伏(PV)发电已成为主要电源之一。此外,生成源最终是自由和丰富的。然而,与光伏发电相关的主要屏障是低功率转换效率,高成本的PV模块和输出功率的非线性。由于功率转换效率低,PV系统应始终在其最大功率点(MPP)处工作。具有最大功率点跟踪(MPPT)技术的功率调节单元在PV系统中采用以收获最大功率。 MPPT的主要功能是检测给定条件的MPP并在该点操作系统。在本文的模糊逻辑控制器(FLC)中,介绍了独立太阳能光伏系统的可变步长MPPT。具有模糊基于MPPT控制器的Solar PV系统内置于Matlab / Simulink。所提出的可变步长模糊MPPT算法的性能研究了不同的输入条件,并根据性能参数进行分析,例如跟踪速度,稳态振荡,在辐照度的变化下的响应,平均输出功率和输出功率纹波。将结果与可变步长增量电导(VSS INC)MPPT算法和传统的INC基PV系统进行比较。

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