Buck升压变换器的MPPT建模、仿真及电池充电控制应用

Israr Hussain, M. Zohaib, E. Babaei
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引用次数: 1

摘要

本文介绍了直流-直流变换器的建模、仿真以及MOSFET开关过程中电池充电应用的小振荡控制。为提高光伏发电系统的能量转换效率,提出了一种实时最大功率点跟踪(MPPT)的实现和设计方法。由于光伏系统具有非线性行为,其i-v特性曲线又因太阳辐照度和温度的变化与最大功率点成正比。因此,为了获得太阳能阵列的最大功率,采用Buck Boost变换器实现了P&O摄动与观测MPPT算法。模拟了不同辐照度和温度下光伏阵列的魅力特性。
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Modeling, Simulation of Buck Boost Converter with MPPT and Control of Battery Charging Application
Presented paper depicts the modeling, simulation of Dc-Dc converter and control of battery charging application with less oscillation during switching of MOSFET. Proposed paper deals with the implementation and design of an actual time maximum power point tracking (MPPT) for (PV) system aimed to increase efficiency of energy conversion. As the photovoltaic system has a non-linear behavior of i-v characteristic curve and because of solar irradiance and temperature changes is directly proportional to the maximum power point. Therefore, to obtain maximum power from Solar array the (P&O) Perturbation and Observation MPPT algorithm is implemented using Buck Boost converter. The charismatic characteristics of PV array at different irradiance and temperature is simulated.
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