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http://dx.doi.org/10.7836/kses.2019.39.2.001

MPPT Strategy to Improve Photovoltaic Power Generation Efficiency in Partial Shadows  

Heo, Cheol-Young (Kwangwoon University)
Kim, Yong-Rae (Kwangwoon University)
Lee, Young-Kwoun (Keumbee Electronics)
Lee, Dong-Yun (Korea Polytechnic Colleges)
Choy, Ick (Kwangwoon University)
Choi, Ju-Yeop (Kwangwoon University)
Publication Information
Journal of the Korean Solar Energy Society / v.39, no.2, 2019 , pp. 1-9 More about this Journal
Abstract
In order to increase the power generation efficiency of the photovoltaic system, a new algorithm that can follow the maximum power point of the photovoltaic power generation system having nonlinear output characteristics is proposed. Conventional maximum power point tracking (MPPT) algorithms such as Perturbation and Observation (P&O) and InCond (Increment and Conductance) schemes can not find the global maximum power point at a plurality of pole points in the unmatched state of unbalanced PV modules. However, even if the global maximum power point is found at a plurality of pole points, the global maximum power that can not be the real maximum power by the photovoltaic generation system. In order to solve this problem, a few PV companies propose installing several small PV inverters instead of if big one. However, since this will require additional costs, we herein propose a Multi-MPPT system using individual 3-point MPPT to track true MPPT at a plurality of pole points in the unmatched state of unbalanced PV modules.
Keywords
PV inverter; Partial shadow; 3-point MPPT; Local MPPT; Multi-MPPT;
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