On making the current military radios cognitive without hardware or firmware modifications

A. Mody, M. Sherman, Alan Trojan, K. Yau, J. Farkas, Sharon Sputz, Thomas P. Mcelwain, R. Bauer, J. Boksiner, Antonio Fiuza
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引用次数: 7

Abstract

Cognitive Radio (CR) using Dynamic Spectrum Access (DSA) provides the military radios, an ability to operate in un-predictable interference environments. CRs are capable of sensing their environment and autonomously changing the radio parameters such as frequency, bandwidth and power, to avoid interference. Large amount of resources have been invested by the Department of Defense (DoD) on building these radio systems which are currently not DSA enabled. This paper provides a way to make current military radios DSA capable without making any hardware or firmware modifications to them. Radios are made DSA capable by using an external sensor as compared to an embedded sensor containing advanced feature based sensing algorithms, application level messaging and a cognitive engine, which is written in a high level language that resides outside the radios. A real-time over-the-air demonstration for such a cognitive radio test-bed using a network of three Warfighter Information Network – Tactical (WIN-T) Local Area Waveform (LAW) nodes in friendly and un-friendly interference was carried out at the Ft. Dix facility of US Army CERDEC. This paper provides a brief overview of the system, operation of this test-bed and some field demonstration results.
在不修改硬件或固件的情况下使当前军用无线电具有认知能力
使用动态频谱接入(DSA)的认知无线电(CR)为军用无线电提供了在不可预测的干扰环境下工作的能力。CRs能够感知周围环境,并自主改变无线电参数,如频率、带宽和功率,以避免干扰。美国国防部(DoD)已经投入了大量的资源来建造这些目前不支持DSA的无线电系统。本文提供了一种无需对现有军用无线电进行任何硬件或固件修改即可使其具备DSA功能的方法。与嵌入式传感器相比,使用外部传感器可以使无线电具备DSA能力,嵌入式传感器包含基于高级特征的传感算法、应用级消息传递和用无线电外部的高级语言编写的认知引擎。在美国陆军CERDEC的迪克斯堡设施中,使用三个作战人员信息网络战术(WIN-T)局部波形(LAW)节点的网络,对这种认知无线电试验台进行了实时空中演示,以应对友好和非友好干扰。本文简要介绍了该系统的概况、试验台的运行情况和一些现场演示结果。
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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