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Wideband Monostatic Simultaneous Transmit and Receive (STAR) Antenna

机译:宽带单基地同时发射和接收(STAR)天线

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A monostatic ultra-wideband simultaneous transmit and receive (STAR) antenna subsystem is introduced. An inherent geometrical symmetry of a four-arm spiral antenna and feeding rearrangement are exploited to achieve the simultaneous transmit (TX) and receive (RX) functionalities without any time, polarization, or frequency multiplexing. The antenna is configured such that one arm-pair is used for TX and the other for RX. Thus, even though the two antennas are spatially separated by 90°, they still share the same aperture and the system is considered monostatic. Theoretical and computational studies are conducted to demonstrate the feasibility of the proposed approach under ideal conditions as well as in the presence of feed network non-idealities. The experimental data indicate that isolation levels greater than 39.6–50 dB over multiple octaves are achievable with realistic components. To improve the TX and RX far-field patterns, the planar four-arm spiral aperture is grounded via resistor-loaded quadrifilar helix with the two-arm TX/two-arm RX feed arrangement preserved. Furthermore, to simplify the feed network and reduce the impact of hybrid imbalances, an impedance-transforming microstrip feed is integrated with each arm pair. Isolation and similar with high-quality measured and simulated TX/RX radiation patterns are obtained over the operating bandwidth.
机译:引入了单静态超宽带同时发送和接收(STAR)天线子系统。利用四臂螺旋天线的固有几何对称性和馈电重排来实现同时发射(TX)和接收(RX)功能,而无需任何时间,极化或频率复用。天线配置为,一个臂对用于TX,另一个臂对用于RX。因此,即使两个天线在空间上隔开90°,它们仍然共享相同的孔径,并且该系统被认为是单基地的。进行了理论和计算研究,以证明所提出的方法在理想条件下以及在馈电网络不理想的情况下的可行性。实验数据表明,使用实际分量可以在多个倍频程上实现大于39.6–50 dB的隔离级别。为了改善TX和RX远场图形,通过保留电阻的四臂螺旋/四臂螺旋进给装置将平面四臂螺旋孔接地。此外,为了简化馈电网络并减少混合不平衡的影响,每个臂对都集成了阻抗转换微带馈电。在工作带宽上可获得具有高质量的测量和仿真TX / RX辐射方向图的隔离等。

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