DocumentCode :
2833142
Title :
A new design concept for high performance fading channel simulators using random wobble
Author :
Kai, Hu ; Chen, Cui
Author_Institution :
301 Lab., Electron. Eng. Inst., Hefei, China
Volume :
1
fYear :
2010
fDate :
21-24 May 2010
Abstract :
In this paper, a new technique which employs random wobble on the method of exact Doppler spread (MEDS) for the design of high performance Rayleigh fading channel simulators was proposed. The new method could be used on any deterministic parameter computation method in theory, such as the method of equal areas (MEA), the method of equal distance (MED) and the LP norm method (LPNM), etc, and if the random wobble amplitude is set to be an infinitesimal real value, the autocorrelation (ACF) of inphase (quadrature) components will converge to the ones of reference model exactly. Due to the ACF arithmetic errors of the inphase and quadrature components compensate each other over a determined domain; The ACF of complex waveform matches the desired ones perfectly even if the number of sinusoids is a single-digit integer. Simulation results show that the proposed method is useful for the design of simulation models for diversity-combined fading channels, frequency-selective channels, and multiple-input multiple-output (MIMO) channels; moreover, it has many kinds of realization and can be directly used to simulating multiple uncorrelated Rayleigh fading waveforms with low model complexity and low computation costs.
Keywords :
MIMO communication; Rayleigh channels; computational complexity; diversity reception; telecommunication computing; LP norm method; MEDS; Rayleigh fading channel; autocorrelation; diversity-combined fading channels; frequency-selective channels; method of equal areas; method of equal distance; method of exact Doppler spread; multiple-input multiple-output channels; random wobble; Analytical models; Computational modeling; Fading; Frequency; Laboratories; Mathematical model; Random variables; Rayleigh channels; Rayleigh scattering; Stochastic processes; Rayleigh fading; channel simulation models; parameter computation methods; sum-of-sinusoids principle;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Future Computer and Communication (ICFCC), 2010 2nd International Conference on
Conference_Location :
Wuhan
Print_ISBN :
978-1-4244-5821-9
Type :
conf
DOI :
10.1109/ICFCC.2010.5497827
Filename :
5497827
Link To Document :
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