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首页> 外文期刊>Applied Computational Electromagnetics Society journal >Optimization Design of Electromagnetic Devices Using an Enhanced Salp Swarm Algorithm
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Optimization Design of Electromagnetic Devices Using an Enhanced Salp Swarm Algorithm

机译:利用增强SALP群算法的电磁器件优化设计

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An Enhanced version of the Salp Swarm Algorithm (SSA) referred to as (ESSA) is proposed in this paper for the optimization design of electromagnetic devices. The ESSA has the same structure as of the SSA with some modifications in order to enhance its performance for the optimization design of EMDs. In the ESSA, the leader salp does not move around the best position with a fraction of the distance between the lower and upper bounds as in the SAA; rather, a modified mechanism is used. The performance of the proposed algorithm is tested on the widely used Loney's solenoid and TEAM Workshop Problem 22 design problems. The obtained results show that the proposed algorithm is much better than the initial one. Furthermore, a comparison with other well-known algorithms revealed that the proposed algorithm is very competitive for the optimization design of electromagnetic devices.
机译:本文提出了一种增强版的SALP群算法(SSA)的算法(SSA),用于电磁器件的优化设计。 ESSA具有与SSA相同的结构,具有一些修改,以提高其对EMDS优化设计的性能。在ESSA中,领导者SALP不会在SAA中的下限和上限之间的距离部分围绕最佳位置移动;相反,使用修改的机制。在广泛使用的Loney的电磁阀和团队车间问题22设计问题上测试了所提出的算法的性能。获得的结果表明,所提出的算法远优于初始算法。此外,与其他众所周知的算法的比较显示,该算法对于电磁装置的优化设计非常有竞争力。

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