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Chaos control in solar fed DC-DC boost converter by optimal parameters using nelder-mead algorithm powered enhanced BFOA

机译:使用Nelder-Mead算法供电增强BFOA的最优参数,在太阳能馈电DC-DC升压转换器中进行混沌控制

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The boost converter is the most desirable DC-DC power converter for renewable energy applications for its favorable continuous input current characteristics. In other hand, these DC-DC converters known as practical nonlinear systems are prone to several types of nonlinear phenomena including bifurcation, quasiperiodicity, intermittency and chaos. These undesirable effects has to be controlled for maintaining normal periodic operation of the converter and to ensure the stability. This paper presents an effective solution to control the chaos in solar fed DC-DC boost converter since the converter experiences wide range of input power variation which leads to chaotic phenomena. Controlling of chaos is significantly achieved using optimal circuit parameters obtained through Nelder-Mead Enhanced Bacterial Foraging Optimization Algorithm. The optimization renders the suitable parameters in minimum computational time. The results are compared with the traditional methods. The obtained results of the proposed system ensures the operation of the converter within the controllable region.
机译:升压转换器是最理想的DC-DC功率转换器,用于可再生能源应用,用于其有利的连续输入电流特性。另一方面,所谓的实用非线性系统的DC-DC转换器容易出现几种类型的非线性现象,包括分叉,QuaSiodicicity,间歇性和混沌。必须控制这些不良影响,以保持转换器的正常定期操作并确保稳定性。本文提出了一种有效的解决方案,以控制太阳能馈电DC-DC升压转换器中的混沌,因为转换器经历了广泛的输入功率变化,这导致混沌现象。使用通过Nelder-Mead增强的细菌觅食优化算法获得的最佳电路参数,显着实现了混沌的控制。优化在最小计算时间内使合适的参数呈现。结果与传统方法进行比较。所获得的系统的结果确保了可控区域内转换器的操作。

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