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Integrated Antenna Architecture for High Frequency Multifunction Naval Systems

机译:高频多功能海军系统的集成天线架构

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摘要

We present an integrated topside approach to the design of a multifunction naval high frequency (HF) system. Following this approach two high-level designs for systems capable of simultaneously providing radar, communications, and electronic support measures are generated. The solutions employ a system of shared antennas to offer enhanced capabilities such as over-the-horizon detection while minimizing the radar cross section (RCS) of the ship.The performances of the proposed systems are assessed using a suite of software simulations and found to be feasible. Detection of low-level air targets is expected at 4-5 times the conventional microwave radar horizon. Reliable communication performance, well within current modem capabilities, is predicted for three geographical locations. Meteorological monitoring could take place at ranges up to about 350 km. Phased array operation of the shared antennas provides a high level of directivity that is expected to make the system highly effective at direction finding compared to conventional ESM systems and also provide high jamming performance.
机译:我们提出了一种集成的顶层方法来设计多功能海军高频(HF)系统。按照这种方法,针对能够同时提供雷达,通信和电子支持措施的系统,生成了两个高级设计。这些解决方案采用共享天线系统来提供增强的功能,例如超视距检测,同时最大程度地减小了舰船的雷达横截面(RCS)。通过一套软件仿真评估了所提议系统的性能,并发现可行。预计低空目标的探测速度是传统微波雷达视距的4-5倍。可以预测在三个地理位置上可靠的通信性能,这些性能完全在当前的调制解调器能力范围内。气象监测可在约350公里的范围内进行。共享天线的相控阵操作提供了高水平的方向性,与常规的ESM系统相比,有望使该系统在测向方面非常有效,并且还具有很高的干扰性能。

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