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NUMERICAL ANAYSIS OF A NOVEL TAPERED CHAMBER FEED ANTENNA DESIGN

机译:一种新型锥形腔馈送天线设计的数值分析

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Tapered chambers have long been used for far-field antenna and RCS measurements. Conventional taper chambers used commercial antennas such as horns or log-period dipoles as wave launchers. One problem of this approach is the movement of the phase center associated with the antenna design. The positioning of the antenna inside the chamber is also critical. Undesired target-zone amplitude and phase distortion are caused by the scattering from the absorber walls. A novel feed antenna design for a tapered chamber is proposed here to provide broadband and dual polarization capabilities. This design integrates the absorber and the conducting walls behind the absorbers into to ensure a stationary phase center over a wider frequency range. In such a design, the dielectric constant of the absorber is utilized to maintain a clean phase front and a single incident wave at high frequencies. The conductivity of the absorber is also utilized to shape the field distribution at low frequencies. As a result, a wider frequency range can achievable for a given chamber size. One trade-off of this design is its reduced efficiency could be associated with the absorber absorption. Some simulation results from a 3-D FDTD model of a prototype design will be presented.
机译:锥形腔室长期用于远场天线和RCS测量。传统的锥形腔室使用了商业天线,例如喇叭或记录周期偶极子作为波浪发射器。这种方法的一个问题是与天线设计相关的相位中心的移动。天线在腔室内的定位也是关键的。不希望的目标区振幅和相位失真是由吸收壁的散射引起的。提出了一种用于锥形室的新型馈电天线设计,以提供宽带和双极化能力。该设计将吸收器和导电壁与吸收器后面的聚合成用于确保在更宽的频率范围内的固定相位中心。在这种设计中,吸收器的介电常数用于在高频下维持清洁相位和单个入射波。吸收器的电导率也用于在低频下塑造现场分布。结果,对于给定的腔室尺寸可以实现更宽的频率范围。这种设计的一个权衡是其降低的效率可能与吸收吸收有关。将介绍来自三维FDTD模型的一些模拟结果。

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