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Multiple Solutions Starting from Real Shaped Beams in Equispaced Linear Arrays

机译:从实际线性阵列中的真实形状光束开始的多种解决方案

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摘要

In the present work, the theoretical basis of the multiplicity of solutions obtained from an initial real symmetric distribution is derived. This initial solution is devoted to generating an equivalent pure real shaped-beam pattern for a concrete synthesis scenario. However, these new solutions are not based on real symmetric distributions; hence, not based on the generation of pure real patterns. The bandwidth performances and tolerance to errors provided by the multiple solutions in the array design are analyzed by considering different architectures, also including mutual coupling models and element factor expressions due to accuracy purposes. In addition, a technique to obtain efficient linear arrays by designing resonant structures is addressed. Examples involving both standard linear arrays of half-wavelength cylindrical dipoles and resonant linear arrays generating flat-top beam patterns are reported and discussed. Additionally, an extension to planar arrays performed by means of a generalisation of the Baklanov transformation through collapsed distribution techniques inspired in the well-known method devised by Tseng and Cheng is performed. In such a way, an analysis of the quality of solutions for generating circular and elliptical footprints with controlled both SLL and ripple which are highly interesting in the framework of space vehicle applications.
机译:在本作工作中,推导出由初始实际对称分布获得的多种溶液的理论基础。该初始解决方案致力于为具体综合情景产生等效的纯真实形状光束图案。但是,这些新解决方案不是基于真实对称的分布;因此,不是基于纯真实模式的产生。通过考虑不同的架构,分析了阵列设计中的多个解决方案提供的带宽性能和对误差的差异,还包括由于精度目的而包括相互耦合模型和元素因子表达。另外,解决了通过设计谐振结构获得有效的线性阵列的技术。报告涉及半波长圆柱形偶极子的标准线性阵列和产生平顶光束图案的标准线性阵列的示例。另外,通过在由Tseng和Cheng的众所周知的方法中推动的倒塌的分布技术通过Baklanov变换的概括地进行平面阵列的延伸。以这种方式,分析用于产生圆形和椭圆形脚印的解决方案的质量,其在空间车辆应用框架中具有高度兴趣的SLL和纹波。

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