Waveform generation and signal processing for a multifunction radar system

M. Conn, F. Koenig, G. Goldman, E. Adler
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引用次数: 9

Abstract

A multifunction, single platform RF sensor capable of performing target acquisition and tracking, combat identification, high data rate communications, and active protection is of interest to the USA army. The sensor ultimately must tie affordable and the size minimized to meet the demands of a rapidly deployable force. To address these needs, the Army Research Laboratory has built and tested a multifunction radar test bed capable of performing multiple tasks simultaneously at K/sub a/-band. The system has integrated high-end RF components together with commercial-off-the-shelf (COTS) signal processing technology. Key elements of the test bed are a commercial direct digital synthesizer (DDS) for adaptable waveform generation, multiple COTS field programmable gate array (FPGA) processors for real-time data acquisition and signal processing, a COTS FPGA based multi-port input/output (I/O) board programmed for radar timing and control, and an electronically scanned antenna (ESA) based upon a Rotman lens beam-former with active elements for multi-beam generation. The radar is capable of transmitting and receiving two simultaneous and independent beams in azimuth with up to 3 GHz of bandwidth and up to 8 watts of average power. The current configuration uses one beam for a radar target acquisition function and the other for a high data rate communication channel. The emphasis of this paper is on the radar's waveform generation and signal processing capability.
多功能雷达系统的波形生成与信号处理
一种多功能、单平台射频传感器,能够执行目标捕获和跟踪、战斗识别、高数据速率通信和主动保护,是美国陆军感兴趣的。传感器最终必须价格合理,尺寸最小,以满足快速部署部队的需求。为了满足这些需求,陆军研究实验室已经建立并测试了一个多功能雷达试验台,能够在K/sub / a波段同时执行多个任务。该系统集成了高端射频组件和商用现货(COTS)信号处理技术。试验台的关键元件是用于自适应波形生成的商用直接数字合成器(DDS),用于实时数据采集和信号处理的多个COTS现场可编程门阵列(FPGA)处理器,用于雷达定时和控制的基于COTS FPGA的多端口输入/输出(I/O)板,以及用于多波束生成的基于罗特曼透镜波束形成器的电子扫描天线(ESA)。该雷达能够在方位角上同时发射和接收两束独立波束,带宽高达3 GHz,平均功率高达8瓦。目前的配置使用一个波束用于雷达目标捕获功能,另一个用于高数据速率通信信道。本文重点研究了雷达的波形产生和信号处理能力。
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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