Electrical and Biomedical Engineering Department, University of Nevada, Reno, 1664 N. Virginia Street, Reno, NV 89557, USA.
Sensors (Basel). 2022 Nov 19;22(22):8972. doi: 10.3390/s22228972.
This paper presents an optimization of reflectarray-based RF sensors for detecting UAV and human presence. Our previous human detection radar system adapted a center-fed reflectarray antenna to a commercially available radar system, successfully increasing the gains of the transmit (TX) and receive (RX) antennas by 21.18 dB and the range for detecting human targets 3.4 times. However, because the TX and RX antennas were placed in the focal point of the reflectarray, the TX signal reflected by the reflectarray was directly propagated into the RX antenna, causing desensitization or damage to the receiving circuit if high powers were used. To reduce this direct reflection, we propose a novel radar antenna configuration in which the TX and RX antennas are placed back-to-back with each other. In this configuration, the RX antenna does not directly face the reflectarray, thus direct path between the TX to RX through the reflectarray is removed. The results demonstrate that this approach achieves the optimum isolation level of 51.3 dB. With the reflectarray, the TX antenna gain increases to 30.6 dBi, but the RX antenna gain remains at 16 dBi since the RX antenna does not utilize the reflectarray. The TX and RX gain difference (14.6 dB) is a trade-off for good isolation and may be reduced by utilizing a high-gain receiver amplifier.
本文提出了一种优化的基于反射阵的射频传感器,用于检测无人机和人体的存在。我们之前的人体检测雷达系统采用中心馈电反射阵天线来适配商用雷达系统,成功地将发射(TX)和接收(RX)天线的增益提高了 21.18dB,并且将检测人体目标的范围扩大了 3.4 倍。然而,由于 TX 和 RX 天线被放置在反射阵的焦点处,因此反射阵反射的 TX 信号直接传播到 RX 天线,如果使用高功率,会导致接收电路的灵敏度降低或损坏。为了减少这种直接反射,我们提出了一种新的雷达天线配置,其中 TX 和 RX 天线彼此背靠背放置。在这种配置中,RX 天线不会直接面对反射阵,因此通过反射阵从 TX 到 RX 的直接路径被消除。结果表明,这种方法实现了最佳的隔离度 51.3dB。通过使用反射阵,TX 天线增益增加到 30.6dBi,但由于 RX 天线不利用反射阵,RX 天线增益仍保持在 16dBi。TX 和 RX 增益差(14.6dB)是良好隔离的折衷,可通过使用高增益接收器放大器来降低。