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首页> 外文期刊>International journal of green energy >Design and analysis of artificial bee-colony-based MPPT algorithm for DFIG-based wind energy conversion systems
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Design and analysis of artificial bee-colony-based MPPT algorithm for DFIG-based wind energy conversion systems

机译:基于DFIG的风能转换系统中基于人工蜂群的MPPT算法的设计与分析

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摘要

In this article, the proposed maximum power point tracking (MPPT) method is designed by taking rotor speed as an optimization problem, which is solved by artificial bee colony (ABC) algorithm to generate the maximum power output. The main advantage of this algorithm is that its optimal solution is independent of the initial positions and requirement of lesser number of control parameters, which leads to simple and robust MPPT algorithm than other algorithm. Furthermore, the hill climb search and particle swarm optimization-based MPPT algorithm are also discussed and the results obtained by these are compared to verify the effectiveness of proposed algorithm. Simulations for MPPT control along with doubly fed induction-generator-based wind energy conversion systemis carried out in MATLAB/Simulink environment. Three statistical methods are used to evaluate the accuracy of each MPPT algorithm. All results are analyzed and compared under randomly selected wind as well as real wind speed configuration. Comparison of both numerical and simulation results under two different varying wind speed conditions strongly suggest that the proposed ABC-based MPPT algorithm is superior than other two MPPT algorithms.
机译:本文以转子转速为优化问题,设计了提出的最大功率点跟踪(MPPT)方法,并通过人工蜂群算法(ABC)解决了该问题,以产生最大功率输出。该算法的主要优点是其最佳解决方案与初始位置无关,并且不需要较少的控制参数,这使得MPPT算法比其他算法更简单,更强大。此外,还讨论了基于爬山搜索和粒子群优化的MPPT算法,并比较了所得结果以验证所提算法的有效性。在MATLAB / Simulink环境中对MPPT控制以及基于双馈感应发电机的风能转换系统进行了仿真。三种统计方法用于评估每种MPPT算法的准确性。在随机选择的风以及实际风速配置下,将对所有结果进行分析和比较。在两种不同风速条件下的数值和仿真结果的比较强烈表明,所提出的基于ABC的MPPT算法优于其他两种MPPT算法。

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