Title
Signal Separation And Reconstruction Method For Simultaneously Received Multi-System Signals In Flexible Wireless System
Abstract
We previously proposed a unified wireless system called "Flexible Wireless System". Comprising of flexible access points and a flexible signal processing unit, it collectively receives a wideband spectrum that includes multiple signals from various wireless systems. In cases of simultaneous multiple signal reception, however, reception performance degrades due to the interference among multiple signals. To address this problem, we propose a new signal separation and reconstruction method for spectrally overlapped signals. The method analyzes spectral information obtained by the short-time Fourier transform to extract amplitude and phase values at each center frequency of overlapped signals at a flexible signal processing unit. Using these values enables signals from received radio wave data to be separated and reconstructed for simultaneous multi-system reception. In this paper, the BER performance of the proposed method is evaluated using computer simulations. Also, the performance of the interference suppression is evaluated by analyzing the probability density distribution of the amplitude of the overlapped interference on a symbol of the received signal. Simulation results confirmed the effectiveness of the proposed method.
Year
DOI
Venue
2012
10.1587/transcom.E95.B.1085
IEICE TRANSACTIONS ON COMMUNICATIONS
Keywords
Field
DocType
Flexible Wireless System, signal separation, signal reconstruction, short-time Fourier transform
Signal processing,Wideband,Multidimensional signal processing,Wireless,Computer science,Short-time Fourier transform,Electronic engineering,Speech recognition,Center frequency,Interference (wave propagation),Signal reconstruction,Distributed computing
Journal
Volume
Issue
ISSN
E95B
4
0916-8516
Citations 
PageRank 
References 
2
0.64
3
Authors
6
Name
Order
Citations
PageRank
Takayuki Yamada1132.40
Doohwan Lee2152.77
Hiroyuki Shiba3134.75
Yo Yamaguchi4236.39
Kazunori Akabane5155.06
Kazuhiro Uehara64513.26