【24h】

Path Loss and Antenna Gain Considerations for Unattended Ground Sensor (UGS) Systems

机译:路径损耗和天线对无人参与地面传感器(UGS)系统的考虑

获取原文

摘要

Unatttended Ground Sensor (UGS) systems are adversely affected by the physics of RF propagation at low elevations. Units are often located at or below ground level in an effort to reduce the visual signature. Two key elements of the link budget work are compromised by the ground level antenna height: path loss and antenna gain. A two-ray reflected path model predicts that path loss increases by R4 with distance separating units and is inversely related to the height of the antennas. Strict adherence to this model indicates that infinite path loss is incurred by antennas located at the ground (height = 0). Ground wave propagation allows for a minimum effective antenna height to be assigned thereby eliminating this theoretical anomaly. Regardless, ground reflections for low elevation RF propagation result in up to 40 dB or more of extra path losses when compared to the free space model. Antenna modeling programs used to predict antenna patterns also paint a grim picture for UGS units. Monopole antennas have a null at the horizon and can be predicted to have antenna gains less than -20 dBi at low takeoff angles. Combining path loss and antenna gain to obtain an overall picture of the decrease in signal level is not straightforward. Simply combining the two sources of signal loss results in predicted performance that is much less than what is measured with real hardware. This paper examines the interaction of path loss and antenna gain and presents a reasonable approach for accounting for both in the link budget. Experimental results are presented to support the models.
机译:通过低升高处的RF传播物理受到射频的不利影响,无效地接地传感器(UGS)系统受到不利影响。单位通常位于地面或低于地面,以减少视觉签名。链路预算工作的两个关键要素受到地面天线高度的损害:路径损耗和天线增益。双光反射路径模型预测路径损耗随距离分离单元的R4增加并且与天线的高度相反。严格遵守该模型表明,无限路径损耗由位于地面的天线(高度= 0)产生。接地波传播允许分配最小有效天线高度,从而消除了这种理论异常。无论如何,与自由空间模型相比,低升高RF传播的地面反射导致高达40dB或更多的额外路径损耗。用于预测天线图案的天线建模程序也为UGS单元绘制了Grim图片。单极天线在地平线上具有零点,并且可以预测在低起降角处具有小于-20 dBi的天线增益。结合路径损耗和天线增益以获得信号电平降低的整体图像并不简单。只需结合两个信号损失来源导致预测性能远低于用真实硬件测量的性能。本文介绍了路径损耗和天线增益的相互作用,并提出了合理的方法,以便在链接预算中占总人数。提出了实验结果以支持模型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号