2023
DOI: 10.3390/pr11051456
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Application of the MPPT Control Algorithm Based on Hybrid Quantum Particle Swarm Optimization in a Photovoltaic Power Generation System

Abstract: The Maximum Power Point Tracking method is a mainstream method for improving the operational efficiency of photovoltaic power generation, but it is difficult to adapt to the rapidly changing environment and lacks good steady-state and dynamic performance. To achieve fast and accurate tracking of the Maximum Power Point Tracking, the optimization of the contraction expansion coefficient of the Quantum Particle Swarm Optimization algorithm is studied, and then the Levy flight strategy is introduced to optimize t… Show more

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Cited by 3 publications
(1 citation statement)
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“…Parameter Complexity Convergence Time UIC Performance PSC Performance [12] Necessary Medium Medium High High [13] Necessary Medium Medium High High [14] Necessary High Fast High High [15] Necessary Medium Medium High Medium [16] Necessary Medium Medium High Medium [17] Necessary Medium Fast High High [18] Unnecessary Medium Fast High Medium Proposed CS Unnecessary Simple Fast High High Table 2. Comparison of characteristics and performance of several inverter control strategies.…”
Section: Mppt Algorithmmentioning
confidence: 99%
“…Parameter Complexity Convergence Time UIC Performance PSC Performance [12] Necessary Medium Medium High High [13] Necessary Medium Medium High High [14] Necessary High Fast High High [15] Necessary Medium Medium High Medium [16] Necessary Medium Medium High Medium [17] Necessary Medium Fast High High [18] Unnecessary Medium Fast High Medium Proposed CS Unnecessary Simple Fast High High Table 2. Comparison of characteristics and performance of several inverter control strategies.…”
Section: Mppt Algorithmmentioning
confidence: 99%