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Sizing of an inverted current conveyors by an enhanced ant colony optimization technique

机译:通过增强的蚁群优化技术施加倒流电流输送机

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Ant Colony Optimization (ACO) technique is more and more used by engineers and designers in order to optimally size their circuits/systems' performances. Despite the fact that ACO is robust and has a good intrinsic intensive research strategy, it suffers from its greedy requirement in computation time. In order to overcome this drawback, the BAcktracking Ant Colony Optimization (BA-ACO) has been successfully introduced to provide an adequate improvement to the ACO technique by integrating in this algorithm a backtracking search technique, thus reducing the computation time and substantially enhancing the convergence. Details of the BA-ACO algorithm are given in the following. An application to the optimal sizing of CMOS inverted second generation current conveyors (ICCII) is presented, and comparison results with published works are highlighted. SPICE simulation results are given to show the viability of the proposed algorithm.
机译:蚁群优化(ACO)技术越来越多地由工程师和设计师使用,以便最佳地尺寸它们的电路/系统的性能。尽管ACO具有稳健性并且具有良好的内在密集型研究策略,但它遭受了其在计算时的贪婪要求。为了克服这一缺点,通过在该算法中集成了回溯搜索技术,成功地引入了回溯蚁群优化(BA-ACO)以提供足够的改进,从而减少计算时间并大大提高了收敛性。 BA-ACO算法的细节如下所示。提出了在CMOS反转的第二代电流输送器(ICCII)的最佳尺寸的应用,并且突出显示了与已发布的作品的比较结果。给出了Spice仿真结果表明所提出的算法的可行性。

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