首页> 外文会议>EuCAP 2013;European Conference on Antennas and Propagation >TIME MODULATED SWITCHING AND REACTIVE LOADING TECHNIQUES APPLIED TO A CIRCULAR ARRAY ANTENNA USING GENETIC ALGORITHM OPTIMISATION
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TIME MODULATED SWITCHING AND REACTIVE LOADING TECHNIQUES APPLIED TO A CIRCULAR ARRAY ANTENNA USING GENETIC ALGORITHM OPTIMISATION

机译:使用遗传算法优化应用于圆形阵列天线的时间调制切换和反应加载技术

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Adaptive arrays have the capability to direct or steer the main beam in real time in a desired direction, or towards signal of interest (SOI), whilst suppressing interference or multipath signals. Reactive loading and time modulated switching techniques are applied to steer the beam of a uniform circular six element antenna array having a source element at its centre. Genetic algorithm (GA) optimization is used to calculate optimal values for the reactances loading the parasitic elements, from which the gain can be optimized in a desired direction. For temporal switching, the GA is also used to determine the optimal on and off times for the parasitic elements. This gives the difference in the induced currents, optimies the gain and steers the beam in a desired direction. These methods are demonstrated for a vertically polarised array configuration operating at 2.45GHz. Simulation results show that near optimal solutions for gain, sidelobe level reduction, with VSWR 3 over a 100MHz bandwidth, and beam steering is achievable by the GA optimisation.
机译:自适应阵列具有在期望的方向上实时直接或转向主光束,或者朝向感兴趣的信号(SOI),同时抑制干扰或多径信号。反应加载和时间调制的切换技术应用于操纵均匀圆形六个元件天线阵列的光束,其中心具有源元件。遗传算法(GA)优化用于计算加载寄生元件的抵抗的最佳值,可以从期望方向优化增益。对于时间切换,GA也用于确定寄生元件的最佳开启时间和关闭时间。这给出了诱导电流的差异,在所需方向上优化增益并使光束置于光束。这些方法被证明用于在2.45GHz的垂直偏振阵列配置。仿真结果表明,通过100MHz带宽的VSWR 3具有近的增益,侧链水平降低的最佳解决方案,并且通过GA优化可以实现光束转向。

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