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首页> 外文期刊>Journal of Computational Electronics >An improved gravitational search algorithm for solving an electromagnetic design problem
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An improved gravitational search algorithm for solving an electromagnetic design problem

机译:一种改进的重力搜索算法来解决电磁设计问题

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The gravitational search algorithm (GSA) is a novel optimization technique that relies upon the law of motion and law of gravity of masses to describe the interaction between the agents. The GSA has shown outstanding performance but suffers from the drawback of a slow process due to the dependence of the fitness function on the masses of the agents. As a result, after each iteration, the masses get heavier, restricting their movement. Due to this effect, the masses cancel out the gravitational forces on each other, preventing them from finding the optimum quickly. To overcome this limitation, an improved GSA based on a modified exploitation strategy is proposed herein. The primary aim of this modification is to enhance the performance of the algorithm in terms of faster convergence and avoidance of premature convergence. An electromagnetic optimization problem is used to validate the performance of the presented method. The simulation results confirm that the proposed method provides outstanding results in solving Loney's solenoid design problem and that the stability of the solution is much better compared with those obtained using the standard gravitational search algorithm or various other state-of-the-art techniques that have previously been applied to solve this problem.
机译:引力搜索算法(GSA)是一种新颖的优化技术,依赖于群众的运动规律和群众的重力定律来描述药剂之间的相互作用。由于适应性功能对代理质量的依赖性,GSA表现出出色的性能,但遭受了缓慢过程的缺点。结果,在每次迭代之后,群众越来越重,限制了他们的运动。由于这种效果,群众互相抵消引力力,防止它们快速地找到最佳。为了克服这种限制,本文提出了一种基于改进的剥削策略的改进的GSA。这种修改的主要目的是在更快的收敛方面提高算法的性能和避免早产的趋同。电磁优化问题用于验证所提出的方法的性能。仿真结果证实,该方法在解决Loney的螺线管设计问题方面提供出色的结果,并且与使用标准引力搜索算法或具有各种最先进技术获得的那些,解决方案的稳定性要好得多以前应用于解决这个问题。

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