BER performance maintenance at high data rates in cognitive radio

R. Raut, K. Kulat
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引用次数: 11

Abstract

Increased demand on the usable Spectrum and its current underutilization by the licensed users has given birth to dynamic spectrum allocation technology. This booming technology of dynamic spectrum allocation, popularly known as cognitive radio has setup new horizons in the field, to explore and to work on. Cognitive radio is envisioned as the ultimate system that can sense, adapt and learn from the environment in which it operates. Sensing the higher bandwidth an SDR (Software defined radio) in a Cognitive System, tunes the circuits in the System for transferring data at higher data rates. At such increased data rates the BER (Bit Error Rate) performance may degrade. So it is a must for the SDR to accordingly add processing circuits to maintain the BER. One such option has been explored and worked on. It is by using the FHSS (Frequency Hopping Spread Spectrum technique) that one can maintain the BER performance at increased data rates. Earlier work includes the use of higher bandwidth available for increasing the coding bits and thereby making the data more secure. In other words availability of higher bandwidth in Cognitive radio can be utilized either to increase the actual data rate (Yet maintain the BER) or to improve the BER performance & maintain the original data rate. Results of FHSS implementation by Matlab M-file programming and improved BER performance by adaptive coder both have been depicted in the paper. In fact present paper is an outcome of the doctoral research on Error Control Coding for performance improvement in BER.
认知无线电高数据速率下误码率性能维持
由于对可用频谱需求的增加,以及目前许可用户对可用频谱的利用不足,动态频谱分配技术应运而生。这种蓬勃发展的动态频谱分配技术,通常被称为认知无线电,为探索和工作开辟了新的领域。认知无线电被设想为能够感知、适应并从其工作环境中学习的终极系统。感知认知系统中更高带宽的SDR(软件定义无线电),调整系统中的电路以更高的数据速率传输数据。在如此高的数据速率下,误码率(BER)性能可能会下降。因此,必须在SDR中加入相应的处理电路来保持误码率。其中一种选择已经被探索和研究。通过使用FHSS(跳频扩频技术),可以在增加的数据速率下保持BER性能。早期的工作包括使用更高的可用带宽来增加编码位,从而使数据更安全。换句话说,认知无线电中更高带宽的可用性既可以用来提高实际数据速率(同时保持误码率),也可以用来提高误码率性能并保持原始数据速率。本文描述了用Matlab M-file编程实现FHSS的结果和用自适应编码器提高误码率的结果。实际上,本论文是针对误码率性能改进的错误控制编码博士研究的成果。
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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