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首页> 外文期刊>IEEE Antennas and Wireless Propagation Letters >On array failure mitigation with respect to probability of failure, using constant excitation coefficients and a genetic algorithm
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On array failure mitigation with respect to probability of failure, using constant excitation coefficients and a genetic algorithm

机译:使用恒定激励系数和遗传算法,针对阵列的故障概率进行缓解措施

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Switched-beam antenna arrays (SBAs) are widely used in communications systems in order to increase system capacity and spectral efficiency. If an element fails during operation, a significant degradation of the array's performance is observed, even after redistribution of the array's excitation coefficients. Furthermore, redistribution of the excitation coefficients is not always possible. In this letter, a study on the effect of an element failure to an array's radiation patterns, with respect to the probability of failure, is performed. It is shown that mitigation of failure effects is possible if the possibility of failure is taken into account during early design stages. This is accomplished by using a modified genetic algorithm (GA). With the proposed methodology, mitigation is achieved even without the need to redistribute the array's excitation coefficients.
机译:开关波束天线阵列(SBA)广泛用于通信系统中,以提高系统容量和频谱效率。如果一个元件在运行过程中发生故障,即使重新分配了阵列的激励系数,也会观察到阵列性能的显着下降。此外,并不总是可能重新分配激励系数。在这封信中,针对失效概率对元件失效对阵列辐射方向图的影响进行了研究。结果表明,如果在设计的早期阶段就考虑了失效的可能性,则可以减轻失效的影响。这可以通过使用改进的遗传算法(GA)来实现。利用所提出的方法,即使不需要重新分配阵列的激励系数也可以实现缓解。

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