标题: 压缩感知技术使用调变宽频转换器应用于宽频频谱扫描之研究
A Study on Compressive Sensing With Modulated Wideband Converter and Its Application for Wideband Spectrum Sensing
作者: 颜基峯
Yen, Chi-Feng
王忠炫
Wang, Chung-Hsuan
电信工程研究所
关键字: 宽频频谱扫描;调变宽频转换器;压缩感知;次奈奎斯特取样率;wideband spectrum sensing;modulated wideband converter;compressive sensing;sub-Nyquist rate
公开日期: 2015
摘要: 随着频谱需求日益增加而已规划的频谱却未被充分利用,提升频谱使用率对于下世代无线通讯是重要的课题之一。频谱扫描能够快速且准确地找到可利用的空闲频带,但是当搜寻的频率范围很宽广时,会因为宽频讯号的奈奎斯特取样率很高以致难以实现。文献里,调变宽频转换器在讯号取样前先乘上一周期函数使得频谱的每一部分以窄频讯号的形式叠加到基频,再对基频取样。若可从基频讯号判别叠加的频谱来自哪一频段,则完成以次奈奎斯特取样率的取样。压缩感知是一种寻找欠定线性系统的稀疏解的技术,用于获取和重构稀疏或可压缩的讯号。压缩感知利用讯号的稀疏性,可以从相对较少的估计值来还原讯号。若讯号频谱具稀疏性,则可使用压缩感知技术知道调变宽频转换器输出的基频讯号是由频宽中那些频段的讯号组成。然而,未被充分利用的频谱正好在频谱上具有稀疏性,若能透过调变宽频转换器将无法以奈奎斯特取样率取样的宽频讯号以基频频宽的取样率取样,再以压缩感知技术判别组成基频的频段有哪些,即完成宽频频谱扫描。压缩感知技术的回复稳定性会受回复演算法与调变宽频转换器的周期函数波形选择影响。本文提出以压缩感知理论结合Lloyd-Max量化器与向量量化的演算法设计周期函数波形,配合调变宽频转换器的高速电路可以有±1、定点实数或复数震幅的设计。除此之外,因为频谱上的一个讯号源经调变宽频转换器可能变成两个相邻窄频讯号叠加在基频,使回复演算法忽略含能量较小的那个频段。本文提出以相邻成对相加方法修改回复演算法,透过修改调变宽频转换器周期函数的周期为基频频宽倒数的两倍,使两相邻窄频讯号能量差变小,再以相邻成对相加方法修改的回复演算法判断讯号源出现的频段。模拟结果证实提出之周期函数波形设计与改良回复演算法可以有效降低取样率并保持频带还原错误率。
The rapid development of wireless communications results in a great demand for radio spectrum. Unfortunately, the resource of spectrum is limited; therefore, there is no doubt that to raise the utilization of spectrum is one of the most important subjects for next generation of cellular networks. To increase the utilization of spectrum, sensing the vacant bands in the spectrum for further use has been viewed as an effective solution in literature. However, for wideband spectrum sensing, the hardware cost may be unaffordable for practical applications as sampling at the full Nyquist rate is required for signal processing. Modulated wideband converter (MWC) is an analog front end which can support sub-Nyquist rate sampling with the aid of compressive sensing (CS) for the design of modulated waveform. In this thesis, we use MWC to sample wideband signals at a sub-Nyquist rate and find the vacant bands by the orthogonal matching pursuit (OMP). Based on the optimal design of sensing matrix for CS, we propose different modulated waveforms with amplitude of ±1 and fixed-point real/complex values to achieve high accuracy of spectrum sensing. Besides, the occurrence of side-bands may be observed as the sampling rate and the period of the modulated waveform in MWC are not well matched to wideband signals. Since the direct use of OMP to the MWC with side-bands reveals severe degradation of system performance, we also propose several modified schemes of OMP with respect to the MWC with side-bands for enhancement. Simulation results indicate that the proposed modulated waveforms can have a good tradeoff between the complexity and accuracy for spectrum sensing. The modified schemes of OMP are also verified to mitigate performance degradation due to side-bands.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT070160272
http://hdl.handle.net/11536/127375
显示于类别:Thesis