认知无线电的频率捷变波形自适应

Z. Tian, G. Leus, V. Lottici
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引用次数: 6

摘要

在认知无线电(CR)网络的背景下,研究了一种频率敏捷的波形自适应技术,该技术可以动态调整传输波形的频谱形状、功率和频率,以实现网络频谱的有效利用。提出了一种基于广义发送端和接收端基函数的通用框架,该框架允许将传统上单独进行的动态资源分配和波形自适应联合进行。针对CR应用,提出了新的目标函数和认知光谱掩模约束。联合DRA和波形自适应方法允许在多接入网中进行分布式博弈,参与的CR用户通过在允许的基函数参数定义的动作空间中采取动作来优化各自的本地效用函数。它不仅通过联合优化提高了无线电频谱资源的效率,而且由于采用了分布式博弈方法,在网络规模中具有可承受的可扩展复杂性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Frequency agile waveform adaptation for cognitive radios
In the context of cognitive radio (CR) networks, this paper develops a frequency-agile waveform adaptation technique that dynamically adjusts the spectral shape, power and frequency of transmission waveforms for efficient network spectrum utilization. A general framework is presented based on generalized transmitter and receiver basis functions, which allow to jointly carry out dynamic resource allocation (DRA) and waveform adaptation, two procedures that are traditionally carried out separately. New objective function and cognitive spectral mask constraints are formulated for DRA optimization tailored to CR applications. The joint DRA and waveform adaptation approach permits distributed games in multiple access networks, in which participating CR users optimize their respective local utility functions by taking actions from the action space defined by allowable basis function parameters. It results in not only enhanced radio spectrum resource efficiency due to joint optimization, but also affordable complexity scalable in the network size, by virtue of the distributed game approach adopted.
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