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Development of Hybrid MPPT Algorithm for Maximum Power Harvesting under Partial Shading Conditions

机译:局部阴影条件下最大功率收集的混合MPPT算法的开发

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In this paper, a Hybrid MPPT algorithm is proposed to improve the?efficiency of photovoltaic (PV) systems under partial shading conditions.?Partial shading occurs due to clouds, trees, dirt and dust?in PV systems. In partial shading, multiple peaks arise in the PV characteristic curve. The Maximum power point tracking (MPPT) algorithm adjusts the duty cycle of the switch in DC-DC converter for regulating the input voltage at the Maximum power point (MPP) and to provide impedance matching?i.e. input resistance of converter equal to equivalent solar resistance of PV system at MPP for the maximum power transfer. The Cuk converters have low switching losses and?the highest efficiency. Therefore Cuk converter is chosen as power conditioning circuit to trackmaximum power using Hybrid MPPT technique.?The influence of algorithm parameters on system?behaviour is investigated and the various advantages and drawbacks of the technique are?identified for different weather conditions. Practical results obtained using Solartech SPMO85P PV modules connected to a RL load through Hybrid MPPT controller validates the simulated results.
机译:本文提出了一种混合MPPT算法,以提高部分遮阳条件下光伏(PV)系统的效率.PV系统中由于云,树,尘土和灰尘而出现部分阴影。在部分阴影下,PV特性曲线中会出现多个峰。最大功率点跟踪(MPPT)算法可调节DC-DC转换器中开关的占空比,以调节最大功率点(MPP)处的输入电压并提供阻抗匹配-即转换器的输入电阻等于MPP在最大功率传输时的光伏系统的等效太阳电阻。 Cuk转换器具有低开关损耗和最高效率。因此,使用混合MPPT技术选择Cuk转换器作为功率调节电路,以跟踪最大功率。研究了算法参数对系统性能的影响,并确定了该技术在不同天气条件下的各种优缺点。使用通过Hybrid MPPT控制器连接到RL负载的Solartech SPMO85P PV模块获得的实际结果验证了仿真结果。

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