有源阵列雷达系统在空中交通管制中的应用

T. Brukiewa
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引用次数: 11

摘要

交通流量、机动性、安全性的增加以及T/R模块成本的降低,将引领未来空中交通管制(ATC)雷达系统基于GaAs有源阵列雷达(AAR)技术的发展。本文描述了民用ATC雷达和移动军用ATC雷达的系统权衡和潜在架构。目前的发展提供了收发(T/R)模块的技术状态,使能技术。讨论内容包括在机场终端安装单个或多个阵列的大型aar的潜力,以同时承担目前由机场监视雷达(ASR)、精确进近雷达(PAR)、终端多普勒天气雷达(TDWR)和机场表面探测设备(ASDE)雷达执行的功能,以更低的成本提高性能。这些特性是通过波束敏捷性、宽带宽、多模自适应波形和功率编程特性来实现的,只有AAR才能实现这些特性。
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Active array radar systems applied to air traffic control
Increased traffic flow, mobility, safety, and decreasing T/R module costs, will lead the way for future air traffic control (ATC) radar systems to be based on GaAs active array radar (AAR) technology. In this paper, system tradeoffs and potential architectures are described for civil ATC radars and mobile military ATC radars. Current developments are provided in transmit-receive (T/R) module state of the art, the enabling technology. Discussions include the potential for large AARs with single or multiple arrays located at airport terminals to simultaneously undertake functions presently performed by the airport surveillance radar (ASR), the precision approach radar (PAR), the terminal Doppler weather radar (TDWR), and the airport surface detection equipment (ASDE) radars for increased performance at lower cost. These features are accomplished through the beam agility, wide bandwidth, multimode adaptive waveforms and power programming features only possible with the AAR.<>
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