Photovoltaic systems often utilize when there are fluctuations in insolation and temperature, a maximum power point tracking (MPPT) control reliably delivers the highest power to the load. Due to its straightforward algorithm and straightforward implementation, the perturb and observe (P&O) technique has gained a lot of popularity and is the most frequently used in reality. However, this approach falls short in tracking the power in rapidly changing atmospheric circumstances. The major distinction between the proposed paper and the current MPPT technique is the elimination of Complexity of the I&C technique, which has the effect of simplifying the control circuit. The proposed paper uses PSO and I&C method to solve the issue of the P&O technique. The resulting system’s dynamic performance is satisfactory, and it can track MPPs quickly and precisely without experiencing steady state oscillation.

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Development in MPPT Techniques for PV Systems with Converters

  • C. Pearline Kamalini,
  • T. Tamilarasan,
  • M. V. Suganyadevi,
  • J. Vishnupriyan,
  • A. R. Danila Shirly,
  • P. Hari Krishnan

摘要

Photovoltaic systems often utilize when there are fluctuations in insolation and temperature, a maximum power point tracking (MPPT) control reliably delivers the highest power to the load. Due to its straightforward algorithm and straightforward implementation, the perturb and observe (P&O) technique has gained a lot of popularity and is the most frequently used in reality. However, this approach falls short in tracking the power in rapidly changing atmospheric circumstances. The major distinction between the proposed paper and the current MPPT technique is the elimination of Complexity of the I&C technique, which has the effect of simplifying the control circuit. The proposed paper uses PSO and I&C method to solve the issue of the P&O technique. The resulting system’s dynamic performance is satisfactory, and it can track MPPs quickly and precisely without experiencing steady state oscillation.