基于模糊MPPT控制技术的光伏能量收集系统耦合电感有源网络变换器性能分析

R. Ranjani, S. Rajan, R. Vengatesh
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引用次数: 1

摘要

研究了光伏能量收集系统中耦合电感有源网络变换器(ANC)的性能分析。该变换器在单个磁芯中集成了两个耦合电感,减小了磁性元件的尺寸,并提供了高升压增益(Gv),而不需要极端占空比(D)。由于功率开关的低电压和电流应力,ANC的电压转换比高,并且具有低开关损耗。研究了该变换器电路在不同匝数比(n)下的电压增益特性曲线。该变换器的效率约为98.73%。此外,该转换器与用于收集太阳能的光伏板集成在一起。太阳能系统提取最大功率的性能取决于太阳辐照度(G)、电池温度(T)和工作条件下MPP(最大功率点)的工作点。本文采用增量电导(I&C)算法和模糊逻辑控制(FLC)方法求解不同工况下的MPP。增量电导法克服了传统P&O算法的缺点。在MATLAB-SIMULINK环境下进行了仿真工作。本文对FLC技术在寻找MPP中的有效性进行了评价,并将仿真结果与IC方法进行了比较。仿真结果表明,FLC方法比I&C方法在MPP跟踪方面有更好的改善。
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Performance analysis of coupled inductor active network converter for photovoltaic energy harvesting system using fuzzy based MPPT control techniques
This paper investigates the performance analysis of coupled inductor Active Network Converter (ANC) for photovoltaic energy harvesting system. The proposed converter has an integrated with two coupled inductors in a single magnetic core which reduces the size of magnetic components and provides high step-up Voltage gain (Gv) without requiring an extreme Duty ratio (D). The voltage conversion ratio of ANC is high and has low switching losses due to the low voltage and current stress of power switches. The Voltage gain characteristic curve of this converter circuit with different turn's ratio (n) has been studied for various duty cycle. The efficiency of this converter is about to 98.73%. Further, this proposed converter is integrated with the Photovoltaic panel for the harvesting of solar energy. The performance of the solar system for extracting the maximum power depends on the solar irradiance (G), cell temperature (T) and the operating point of MPP (Maximum Power Point) with respect to working conditions. Here, the Incremental Conductance (I&C) algorithm and Fuzzy Logic Control (FLC) method are incorporated for finding the MPP under different operating conditions. The Incremental conductance method overcomes the drawbacks of conventional P&O algorithm. The simulation works have been studied under MATLAB-SIMULINK environment. The effectiveness of the FLC technique adopted in this work for finding MPP has been evaluated and the simulation results are compared with IC method. The simulation results show that the FLC method gives a better improvement in the tracking of MPP than I&C method.
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