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Crowded plant height optimisation algorithm tuned maximum power point tracking for grid integrated solar power conditioning system

机译:电网集成太阳能调节系统拥挤高度优化算法的最大功率点跟踪

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Solar energy is the base for both photovoltaic (PV) power generation and plant growth. Inspired by this biological phenomenon, a novel crowded plant height optimisation (CPHO) algorithm was developed for solar PV maximum power point tracking (MPPT). This CPHO-tuned MPPT algorithm was developed with the aim of obtaining the optimal duty cycle (d) for DC-DC boost converter for maximum solar power extraction from PV panels with the help of a proportional-integral controller. Crowded plants regulate the growth of their stem height in relation to neighbouring plants, also known as height convergence. Using this CPHO-algorithm, the stable height of the plant found in a numerical value is taken as the optimal height of the plant. This optimal numerical value was converted into (d) for the converter. Under dynamic weather conditions, the (d) was optimally adjusted by the proposed algorithm to regulate the DC output of the converter. On the utility side, d-q vector control-based voltage source inverter was used for PV power integration into the grid. The performance of the converter control strategy of the proposed CPHO algorithm was compared with perturb and observe algorithm-based MPPT control, which was analysed on MATLAB/Simulink platform.
机译:太阳能是光伏(PV)发电和工厂发展的基础。受此生物学现象的启发,开发了一种新颖的拥挤植物高度优化(CPHO)算法,用于太阳能光伏最大功率点跟踪(MPPT)。开发此CPHO调谐的MPPT算法的目的是在比例积分控制器的帮助下获得DC-DC升压转换器的最佳占空比(d),以最大程度地从PV面板中提取太阳能。拥挤的植物调节其茎高相对于邻近植物的生长,也称为高度趋同。使用该CPHO算法,将以数值找到的植物的稳定高度作为植物的最佳高度。对于转换器,将该最佳数值转换为(d)。在动态天气条件下,所提出的算法可对(d)进行最佳调整,以调节转换器的直流输出。在公用事业方面,基于d-q矢量控制的电压源逆变器用于将PV功率集​​成到电网中。将CPHO算法的变换器控制策略的性能与扰动进行了比较,并观察了基于算法的MPPT控制,并在MATLAB / Simulink平台上进行了分析。

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