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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Radiation pattern synthesis for arrays of conformal antennas mounted on arbitrarily-shaped three-dimensional platforms using genetic algorithms
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Radiation pattern synthesis for arrays of conformal antennas mounted on arbitrarily-shaped three-dimensional platforms using genetic algorithms

机译:使用遗传算法合成安装在任意形状三维平台上的共形天线阵列的辐射方向图

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摘要

A domain-decomposition/reciprocity procedure is presented which allows the radiation patterns of microstrip patch antennas mounted on arbitrarily-shaped three-dimensional perfectly electric conducting (PEC) platforms to be computed accurately as well as efficiently. The utility of this technique is demonstrated by considering an example consisting of a nine-element conformal array of microstrip patch antennas mounted axially along a finite-length PEC circular cylinder. It is shown that the elements close to the ends of the cylinder have significantly different patterns than those close to the center of the cylinder. The results from this example suggest that the common practice where all the individual element patterns are assumed identical is not always valid and, in fact, can lead to significant performance degradation in the design of conformal phased arrays. This observation is supported by the fact that an attempt to steer the main beam of the nine-element conformal array to an angle θ0=60° using a standard uniform progressive phase shifting technique proves unsuccessful. Next a genetic algorithm (GA) synthesis procedure is introduced that is capable of determining the optimal set of element excitation phases required to yield a desired or specified far-field radiation pattern. The results of this GA phase-only optimization are shown to yield the desired main beam steered to the correct angle for this nine-element linear array mounted on a circularly cylindrical platform. The GA radiation pattern synthesis procedure introduced appears to be a highly effective means of correcting for platform effects on the individual element patterns of a conformal phased array.
机译:提出了一种域分解/互易性程序,该程序允许准确而有效地计算安装在任意形状的三维完美导电(PEC)平台上的微带贴片天线的辐射方向图。通过考虑一个示例,该示例由一个沿有限长度PEC圆柱轴向安装的九元素共形微带贴片天线阵列组成,可以证明该技术的实用性。结果表明,靠近圆柱体端部的元件与靠近圆柱体中心的元件具有明显不同的图案。该示例的结果表明,假定所有单个元素模式都相同的通用做法并不总是有效的,实际上,它可能导致共形相控阵设计中的性能显着下降。事实证明,使用标准的均匀渐进移相技术将九元共形阵列的主光束转向角度θ0= 60°的事实证明是不成功的。接下来,引入了遗传算法(GA)合成程序,该程序能够确定产生期望或指定的远场辐射图所需的元素激发相的最佳集合。该仅GA相优化的结果显示出,对于安装在圆柱平台上的这个九元素线性阵列,可以将所需的主光束转向到正确的角度。引入的GA辐射方向图合成程序似乎是纠正平台效应对共形相控阵的各个元素方向图的高效手段。

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