DFIG的MPC-PSO及其与PI控制器的比较

I. E. Kafazi, R. Bannari, Chaymae Boubii, Brahim El Bhiri, Hassan Rafia
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引用次数: 1

摘要

这项工作证明了由PSO算法优化的MPC控制策略比PI控制器等传统控制器更优。将这些控制策略获得的有功功率或转矩电磁与DFIG提供的有功功率参考值进行比较,发现该方案可以显著提高系统的生产率。通过不断调整调节,这些策略即使在不同的风力条件下也能保持最佳运行。这不仅保证了最大发电量,而且减少了干扰对系统的影响。总体而言,MPC-PSO等控制策略的使用已被证明在提高风能系统性能方面是有效的,使其成为未来可再生能源系统的一项有前途的技术。本文所使用的系统采用MATLAB/SIMULINK软件进行了仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MPC-PSO of a DFIG and comparison with PI controller
This work demonstrates that a control strategy like MPC optimized by the PSO algorithm is more optimal than traditional controllers like PI controllers. Comparing the active power or torque electromagnetic obtained through these control strategies to the active power reference provided by DFIG, it was observed that this plan can significantly enhance the system’s productivity. Through constant modification of the regulation, these strategies can maintain optimal operation even under varying wind conditions. This is not only ensuring maximum power generation but also reduces the impact of disturbances on the system. Overall, the use of control strategies like MPC-PSO has proven to be effective in enhancing the performance of wind energy systems, making them a promising technology for future renewable energy systems. The used system in this article is simulated by using MATLAB/SIMULINK software.
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