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Grid synchronisation framework for partially shaded solar PV-based microgrid using intelligent control strategy

机译:使用智能控制策略的部分阴影太阳能光伏微电网的网格同步框架

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摘要

This work introduces a novel damped fifth-order generalized integrator (DFOGI) based control algorithm for grid-integrated solar photovoltaic (PV) system. Moreover, for GMPPT (Global Maximum Power Point Tracking), HPO (Human Psychology Optimisation) algorithm is used. Here, a three-phase three wire, single-stage topology of grid-integrated partially shaded PV array is implemented. Global maximum power peak searching behavior of HPO algorithm is very rapid and accurate, which gives a satisfactory steady-state and dynamic performances, even in rapid solar irradiance change condition. The prime objective of proposed DFOGI control is to accurately transfer the solar power to the grid at unity power factor, even when grid suffers from abnormal and adverse conditions. During these conditions, on the grid side, the power quality is maintained, where the proposed control technique provides power factor correction, and harmonics mitigation. The proposed techniques are modeled, and their performances are verified experimentally on a developed prototype, in solar insolation variation conditions, as well as in different grid disturbances such as over and under-voltage, phase imbalance, harmonics distortion in the grid voltage etc. Test results have met the objectives of the proposed work and parameters are under the permissible limit, according to the IEEE-519 standard.
机译:这项工作介绍了一种新颖的基于阻尼五阶广义积分器(DFOGI)的电网集成太阳能光伏(PV)系统控制算法。此外,对于GMPPT(全球最大功率点跟踪),使用了HPO(人类心理优化)算法。在此,实现了由电网集成的部分阴影光伏阵列的三相三线单级拓扑。 HPO算法的全局最大功率峰值搜索行为非常快速且准确,即使在日照强度快速变化的情况下,也能提供令人满意的稳态和动态性能。提出的DFOGI控制的主要目的是即使在电网遭受异常和不利条件的情况下,也能以单位功率因数准确地将太阳能传输到电网。在这些情况下,在电网侧,可以保持电能质量,其中所提出的控制技术可以提供功率因数校正和谐波抑制功能。对提出的技术进行建模,并在已开发的原型上,在日照变化条件下以及在不同的电网干扰(例如过压和欠压,相位不平衡,电网电压中的谐波畸变)中通过实验验证其性能。测试根据IEEE-519标准,结果已达到拟议工作的目标,参数在允许的范围内。

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