基于频谱消耗模型的COSMOS试验台DSA实验框架

Dragoslav Stojadinovic, P. Netalkar, Carlos E. Caicedo Bastidas, I. Kadota, G. Zussman, I. Seskar, D. Raychaudhuri
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引用次数: 4

摘要

本文描述了一个用于研究动态频谱接入机制的无线实验框架和一个展示其功能的实验。该框架建立在COSMOS上,COSMOS是一种先进的无线测试平台,旨在支持下一代无线技术和应用的实际实验。我们部署的框架支持在大量无线网络上进行实验,采用基于PUB-SUB的网络交互结构,基于DARPA为频谱协作挑战(SC2)开发的协作智能无线网络(CIRN)交互语言(CIL)。因此,它可以在网络之间进行交互和消息交换,以协调频谱使用。对于我们的实验,消息交换主要针对频谱消费模型(SCM)消息,但不限于此。射频设备/系统使用SCM消息,其中包含有关其无线传输特性(即频谱掩码、频率、带宽、功率和位置)的详细信息,以确定其与先前的发射器和接收器的操作兼容性(不干扰),并动态确定其自身传输的频谱使用特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Spectrum Consumption Model-based Framework for DSA Experimentation on the COSMOS Testbed
This paper describes a wireless experimentation framework for studying dynamic spectrum access mechanisms and an experiment that showcases its capabilities. The framework was built on COSMOS, an advanced wireless testbed designed to support real-world experimentation of next generation wireless technologies and applications. Our deployed framework supports experimentation over a large number of wireless networks, with a PUB-SUB based network interaction structure, based on the Collaborative Intelligent Radio Networks (CIRN) Interaction Language (CIL) developed by DARPA for the Spectrum Collaboration Challenge (SC2). As such, it enables interaction and message exchanges between the networks for the purposes of coordinating spectrum use. For our experiment, the message exchanges are aimed primarily for, but not limited to, Spectrum Consumption Model (SCM) messages. RF devices/systems use SCM messages which contain detailed information about their wireless transmission characteristics (i.e., spectrum mask, frequency, bandwidth, power and location) to determine their operational compatibility (non-interference) with prior transmitters and receivers, and to dynamically determine spectrum use characteristics for their own transmissions.
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