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用于波形划分多址超宽带无线通信系统的脉冲波形设计

Design of pulse waveform for waveform division multiple access UWB wireless communication system.

作者信息

Yin Zhendong, Wang Zhirui, Liu Xiaohui, Wu Zhilu

机构信息

School of Electronics and Information Engineering, Harbin Institute of Technology, Harbin 150001, China.

出版信息

ScientificWorldJournal. 2014 Feb 11;2014:171875. doi: 10.1155/2014/171875. eCollection 2014.

Abstract

A new multiple access scheme, Waveform Division Multiple Access (WDMA) based on the orthogonal wavelet function, is presented. After studying the correlation properties of different categories of single wavelet functions, the one with the best correlation property will be chosen as the foundation for combined waveform. In the communication system, each user is assigned to different combined orthogonal waveform. Demonstrated by simulation, combined waveform is more suitable than single wavelet function to be a communication medium in WDMA system. Due to the excellent orthogonality, the bit error rate (BER) of multiuser with combined waveforms is so close to that of single user in a synchronous system. That is to say, the multiple access interference (MAI) is almost eliminated. Furthermore, even in an asynchronous system without multiuser detection after matched filters, the result is still pretty ideal and satisfactory by using the third combination mode that will be mentioned in the study.

摘要

提出了一种基于正交小波函数的新型多址接入方案——波形分割多址接入(WDMA)。在研究了不同类别的单小波函数的相关特性后,将具有最佳相关特性的函数选作合成波形的基础。在通信系统中,为每个用户分配不同的合成正交波形。仿真表明,合成波形比单小波函数更适合作为WDMA系统中的通信媒介。由于具有出色的正交性,在同步系统中,使用合成波形的多用户误码率(BER)与单用户的误码率非常接近。也就是说,多址接入干扰(MAI)几乎被消除。此外,即使在没有匹配滤波器后多用户检测的异步系统中,使用研究中提到的第三种合成模式,结果仍然相当理想且令人满意。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7868/3942344/f789446a3e00/TSWJ2014-171875.001.jpg

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