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首页> 外文期刊>International journal of power & energy systems >HYBRID ALGORITHM FOR TRACKING MAXIMUM POWER IN SOLAR PV ARRAY UNDER PARTIALLY SHADED CONDITION
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HYBRID ALGORITHM FOR TRACKING MAXIMUM POWER IN SOLAR PV ARRAY UNDER PARTIALLY SHADED CONDITION

机译:在部分阴影条件下跟踪太阳能光伏阵列中最大功率的混合算法

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摘要

In this work, a novel hybrid global maximum power point tracking algorithm for tracking global maximum power of solar photovoltaic (PV) system under partial shading and dynamic irradiation condition is proposed. The developed hybrid algorithm [whale optimization (WO) and perturb and observe (PO)] is a combination of the recently introduced WO algorithm and the classical PO algorithm. During partially shaded conditions, the single-peak nonlinear power voltage (P—V) characteristic curve of a PV panel is scattered into multiple peaks consisting of many local peaks and a unique global peak with maximum power. In the proposed algorithm the WO is utilized for finding the global peak and the PO algorithm is used for finding the exact maximum power available in the global peak. The advantages of the proposed algorithm are high tracking accuracy, faster convergence, easy to implement, and it can work efficiently under uniform and partially shaded condition. The performance of the algorithm has been compared with PO, particle swarm optimization (PSO) and hybrid PSOPO using MATLAB simulations. The steady state and dynamic performance of the proposed algorithm are verified by simulating it with a complex set of shading patterns, and the results show the efficiency greater than 99% and fast convergence towards maximum power.
机译:在这项工作中,提出了一种新的混合全局最大功率点跟踪算法,该算法可以在部分阴影和动态辐照条件下跟踪太阳能光伏(PV)系统的全局最大功率。所开发的混合算法[鲸鱼优化(WO)和扰动与观察(PO)]是最近推出的WO算法和经典PO算法的组合。在部分阴影条件下,PV面板的单峰非线性电源电压(PV)特性曲线分散为多个峰,这些峰包括许多局部峰和具有最大功率的唯一全局峰。在提出的算法中,WO用于查找全局峰值,而PO算法用于查找全局峰值中可用的确切最大功率。该算法的优点是跟踪精度高,收敛速度快,易于实现,并且可以在均匀且部分阴影的条件下高效工作。使用MATLAB仿真将算法的性能与PO,粒子群优化(PSO)和混合PSOPO进行了比较。通过用一组复杂的阴影模式对其进行仿真,验证了该算法的稳态和动态性能,结果表明该算法的效率大于99%,并且快速收敛至最大功率。

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