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Simulation and analysis of an intelligent fuzzy logic controller model for low power photovoltaic energy utilization system

机译:低功率光伏能源利用系统智能模糊逻辑控制器模型的仿真与分析

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Remote areas in India are still not connected to the power grid. But they have mobile network connectivity. The people face problems in charging their cell phones. They are forced to travel a long distances to get access to electrical outlets. The use of new efficient photovoltaic solar cells (PVSCs) has emerged as an alternative measure of renewable green power, energy conservation and demand-side management. The manufacturing of solar cells and photovoltaic arrays has advanced dramatically in recent years. But they have two inherent major problems the first is low conversion efficiency (10to16%for commercially available amorphous silicon solar cells), second is high capital cost [1]. Solar powered systems consist of different parts to be controlled separately. Since the generated power is a function of uncontrollable environmental conditions, it requires extra caution to design controllers that handle unpredictable events and maintain efficient load matching power. In this study, a photovoltaic (PV) solar array model was developed and analyzed using Matlab/Simulink. The model includes converter circuits, a controller using fuzzy logic control (FLC), and a maximum Power point (MPP) tracking control which is used to operate the PVA at its maximum power. The MPP point is tracked using four algorithms perturbation & Observation, Incremental conductance method, Constant Voltage method and Constant current method. Later a comparative performance analysis of the model for MPP algorithms is done.
机译:印度的偏远地区仍未连接到电网。但是它们具有移动网络连接。人们在给手机充电时面临问题。他们被迫走很长一段距离才能进入电源插座。新型高效光伏太阳能电池(PVSC)的使用已成为可再生绿色能源,节能和需求方管理的替代措施。近年来,太阳能电池和光伏阵列的制造取得了巨大的进步。但是它们有两个固有的主要问题,第一个是转换效率低(对于市场上可买到的非晶硅太阳能电池,转换效率为10%至16%),第二个是较高的投资成本[1]。太阳能系统由不同的部分组成,需要分别控制。由于产生的功率是不可控制的环境条件的函数,因此在设计控制器时要格外小心,这些控制器应处理不可预测的事件并保持有效的负载匹配功率。在这项研究中,使用Matlab / Simulink开发并分析了光伏(PV)太阳能电池阵列模型。该模型包括转换器电路,使用模糊逻辑控制(FLC)的控制器以及最大功率点(MPP)跟踪控制,该跟踪控制用于以最大功率运行PVA。使用摄动和观察,增量电导法,恒压法和恒流法四种算法跟踪MPP点。随后,对MPP算法模型进行了比较性能分析。

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