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首页> 外文期刊>Journal of Electromagnetic Waves and Applications >Genetic design of dual-band, switched-beam dipole arrays, with elements failure correction, retaining constant excitation coefficients
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Genetic design of dual-band, switched-beam dipole arrays, with elements failure correction, retaining constant excitation coefficients

机译:双波段开关波束偶极子阵列的遗传设计,具有元件失效校正功能,保持恒定的激励系数

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摘要

Switched-beam dipole arrays (SBAs) are widely used in order to increase system performance in wireless communications. They represent an attractive alternative to fully adaptive arrays, due to lower deployment and maintenance costs. Dual-band operation and elements failure correction are dealt with in this paper, since they are considered to be key characteristics in modern systems, like WiFi/WiMAX, and remote base stations maintenance respectively. The focus of the presented work is on the preservation of constant excitation coefficients during dual-band operation (coefficients will change after a possible elements failure), but the possibility of retaining universal, constant excitations, even after element failures, is also examined (the term universal means that excitations are kept constant, regardless of element failure or frequency of operation). This is accomplished using a genetic algorithm (GA), and numerical results are presented which demonstrate the eligibility of the proposed technique.
机译:开关束偶极子阵列(SBA)广泛用于提高无线通信中的系统性能。由于降低了部署和维护成本,它们代表了完全自适应阵列的有吸引力的替代方案。本文讨论了双频操作和元件故障校正,因为它们分别被视为现代系统中的关键特性,例如WiFi / WiMAX和远程基站维护。本文工作的重点是在双频工作期间保持恒定的励磁系数(在可能的元件失效后系数将改变),但是即使在元件失效之后,也可以检查保持通用的恒定励磁的可能性( “通用”一词意味着无论元件故障或工作频率如何,激励都保持恒定。这是使用遗传算法(GA)完成的,并给出了数值结果,证明了所提出技术的适用性。

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