Assessing Spectral Compatibility Between Radar and Communication Systems on Measured Data

V. Carotenuto, A. Aubry, A. De Maio, N. Pasquino, A. Farina
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引用次数: 2

Abstract

Radar operation in a spectrally dense environment is nowadays a very challenging problem due to the increasing demand of spectral resources for defense/surveillance applications, remote sensing capabilities, and civilian wireless services. This paper explores the technical feasibility of radar waveforms capable of ensuring spectral coexistence with overlaid radiators via a modern digital Arbitrary Waveform Generator (AWG). To this end, a specific hardware-in-the-Ioop test bed is designed to mimic the perception-action cycle necessary for the agile management of the available radio spectrum. Then the AWG synthesized waveform is measured with a Spectrum Analyzer (SA) in order to demonstrate its compliance with the spectral constraints forced by the design algorithm as well as its fidelity with the computer simulated theoretical counterpart.
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基于测量数据评估雷达和通信系统之间的频谱兼容性
由于国防/监视应用、遥感能力和民用无线服务对频谱资源的需求不断增加,雷达在频谱密集环境中运行是一个非常具有挑战性的问题。本文通过现代数字任意波形发生器(AWG)探讨了能够确保与叠加辐射体频谱共存的雷达波形的技术可行性。为此,设计了一个特定的硬件在环测试平台,以模拟敏捷管理可用无线电频谱所需的感知-行动周期。然后用频谱分析仪(SA)测量了AWG合成波形,以证明其符合设计算法强制的频谱约束,并与计算机模拟的理论对应物具有保真度。
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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