Physics-based propagation models for channels involving mixed paths

R. Luebbers, J. Schuster, S. Fast
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Abstract

Predicting the radio signal levels and coverage areas for information warfare system communication channels between base stations, vehicles and warfighters is a challenging problem. The channel may involve radio frequency interactions with hills, foliage, and buildings. The paths may involve long distances over hilly terrain or shorter distances involving interaction with urban building features. Many propagation paths may simultaneously involve hills, foliage, and urban areas. For example, a warfighter sheltered in a doorway in an urban area may need to communicate with a command station located in a rural forested area outside of the city. These mixed path links involving both urban (including indoor) features and rural (including foliage) terrain are beyond the capability of any existing physics-based propagation model. Currently available models are applicable to paths where both the transmitting and receiving antennas are located in an outdoor urban environment, or indoors, or in rural areas. Development of fast and reliable mixed-path models valid over a wide range of communication frequencies is important in order to provide channel characterizations for realistic situations. This development will by necessity bring together different types of models. Full wave models may be applied to predict the antenna pattern from an antenna on a vehicle or a warfighter crouched below a wall. Full wave models may also be used for propagation paths involving terrain or atmospheric effects. Parabolic equation models may also be applied for these situations. Ray-based models are needed for complex interactions with urban features and for indoor situations. All of these need to be combined in new ways in order to obtain accurate mixed-path radio propagation predictions.
涉及混合路径的信道的基于物理的传播模型
预测基站、车辆和作战人员之间的信息战系统通信信道的无线电信号电平和覆盖区域是一个具有挑战性的问题。该信道可能涉及与山丘、树叶和建筑物的无线电频率相互作用。这些路径可能涉及丘陵地形上的长距离或涉及与城市建筑特征相互作用的较短距离。许多繁殖路径可能同时涉及山丘、树叶和城市地区。例如,躲在城市地区门口的作战人员可能需要与位于城市外农村森林地区的指挥站通信。这些混合路径链接涉及城市(包括室内)特征和农村(包括树叶)地形,超出了任何现有的基于物理的传播模型的能力。目前可用的模型适用于发射和接收天线都位于室外城市环境、室内或农村地区的路径。为了提供实际情况下的信道特性,开发在广泛通信频率范围内有效的快速可靠的混合路径模型非常重要。这种发展必然会将不同类型的模型结合在一起。全波模型可用于从车辆上的天线或蹲在墙下的作战人员的天线预测天线方向图。全波模型也可用于涉及地形或大气影响的传播路径。抛物方程模型也可以应用于这些情况。基于光线的模型需要与城市特征和室内环境进行复杂的交互。所有这些都需要以新的方式组合起来,以获得准确的混合路径无线电传播预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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