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Bacteria Foraging Optimization in Antenna Engineering: An Application to Array Fault Finding

机译:天线工程中细菌觅食的优化:在阵列故障查找中的应用

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摘要

Finding fault elements in linear antenna arrays using bacteria foraging optimization (BFO) is presented. One of the better options of array diagnosis is to perform itudby measuring the radiated field, because in this case, removal of the array from its working site is not required and thereby not interrupting its normal operation. This task of fault finding from far-field data is designed as an optimization problem where the difference between the far-field power pattern obtained for a given configuration of failed element(s) and the measured one is minimized w. r. t. the excitations of the array elements. This set ofudexcitations on comparison with the excitations of the original array gives the idea of the fault position and their type, such as either complete fault or partial fault. BFO being relatively new to microwave community when compared with other soft-computing techniques, its performance was observed w. r. t. time of computation and convergence of the iterative process. Possibility of finding the faults from random sample points and use ofudminimum number of sample points for array fault finding are the novelties of the present work.
机译:介绍了使用细菌觅食优化(BFO)在线性天线阵列中查找故障元素的方法。阵列诊断的更好选择之一是通过测量辐射场来执行,因为在这种情况下,不需要将阵列从其工作位置移开,因此不会中断其正常运行。从远场数据中发现故障的任务被设计为一个优化问题,其中针对给定配置的失效元件而获得的远场功率模式与测得的功率模式之间的差异最小。河t。阵列元素的激发。与原始阵列的激励相比,这组 udexcitations给出了故障位置及其类型(例如完全故障或部分故障)的概念。与其他软计算技术相比,BFO在微波领域相对较新,可以观察到其性能。河t。计算时间和迭代过程的收敛时间。从随机样本点发现故障的可能性以及将样本点的数量减为阵列故障的发现是本工作的新颖之处。

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