雷达作为无线频谱共存的用户技术

J. Guerci, R. Guerci
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引用次数: 6

摘要

描述了一种允许雷达和采用多用户波形的无线通信系统无干扰频谱共存的新方法。为了同时实现兼容性和必要的雷达性能,雷达“订阅”网络并利用K个独立订阅。在蜂窝网络的情况下,这将对应于同时运行的K个独立的蜂窝订阅。为了实现必要的雷达性能,机载雷达控制器对K个同步波形进行自适应线性组合优化,以获得比简单使用本地不变通信网络波形更优越的有用雷达特性(更大的功率,多普勒容差等)的传输复合波形。叠加的线性保证了复合雷达波形表现为K普通用户,因此不需要通信网络的任何特殊处理,也不会导致任何不当干扰。虽然将通信波形用于雷达并不新鲜,但使用多个同步波形形成具有更好雷达性能且保持网络兼容性的新复合波形是全新的。
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RAST: Radar as a subscriber technology for wireless spectrum cohabitation
A new method is described that allows for the non-interfering spectrum coexistence of radar and a wireless communication system employing multiuser subscriber waveforms. To simultaneously achieve compatibility and requisite radar performance, the radar “subscribes” to the network and utilizes K independent subscriptions. In the case of a cellular network, this would correspond to K independent cell subscriptions operating simultaneously. To achieve requisite radar performance, the onboard radar controller performs an adaptive linear combiner optimization of the K simultaneous waveforms to obtain a transmitted composite waveform with far superior useful radar properties (greater power, Doppler tolerance, etc.) than would be achieved by simply using the indigenous unaltered communications network waveforms. The linearity of the superposition ensures that the composite radar waveform behaves as K ordinary users, and thus does not require any special handling by the communications network nor will result in any undue interference. While utilizing communication waveforms for radar is not new, using a plurality of simultaneous waveforms to form a new composite waveform with better radar properties yet preserving network compatibility is entirely new.
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