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Transmitter network model and diversity experiments for a multiband Passive Radar System

机译:多频带无源雷达系统的发射机网络模型和分集实验

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Based on the advances in recent years, Passive Radar Systems can be considered as a supplement or even a possible alternative to active radar systems for airspace surveillance. In large parts of the world broadcast networks and third-party communication services are available which reliably provide a multistatic and multiband illumination of the airspace. To facilitate the operational use of Passive Radar for air surveillance or air traffic management systems, the coverage areas, operational reliability and detection performance of the Passive Radar sensors have to be optimized. Besides the particular hardware implementation and algorithm design of a Passive Radar sensor, the key to maximize the coverage area and detection performance is a diversity-based system approach, i.e. the efficient exploitation of multi-band, multi-transmitter and multi-site diversity effects. For the design of diversity-based PR systems it is necessary to rely on valid models for the existing transmitter network infrastructure. This paper presents an analysis of the broadcast network structure in Germany and derives a Tx network reference model for this area. Based on this model, design considerations and measurement results for a diversity-based long range PR system are presented.
机译:基于近年来的发展,无源雷达系统可以被视为对有源雷达系统进行空域监视的补充,甚至可能是其替代方案。在世界上的大部分地区,可以使用广播网络和第三方通信服务,它们可靠地提供了空域的多静态和多频带照明。为了便于将无源雷达运用于空中监视或空中交通管理系统,必须优化无源雷达传感器的覆盖范围,运行可靠性和检测性能。除了无源雷达传感器的特定硬件实现和算法设计之外,最大化覆盖范围和检测性能的关键是基于分集的系统方法,即有效利用多频带,多发射器和多站点分集效应。对于基于分集的PR系统的设计,对于现有的发射机网络基础架构,必须依赖有效的模型。本文对德国的广播网络结构进行了分析,并得出了该地区的Tx网络参考模型。基于此模型,提出了基于多样性的远程PR系统的设计注意事项和测量结果。

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