DocumentCode :
3721267
Title :
An autoregressive model for a single-hop relay channel
Author :
Tadesse Ghirmai
Author_Institution :
School of STEM, Engineering and Mathematics Division, University of Washington Bothell, 98011, United States of America
fYear :
2015
Firstpage :
162
Lastpage :
166
Abstract :
In this paper, we developed a mathematical model for a single-hop relay-based communication channel. Assuming the transmitter-to-relay and receiver-to-relay channels are non-line-of-sight flat fading channels, we show that the real and imaginary components of the combined single channel have Laplace probability density functions. We, therefore, develop a complex Laplace autoregressive process (AR) that captures the statistical characteristics of the fading process of the relay channel. Such an AR model makes channel simulations simple, and eases formulation of such problems as data detection in a state-space form for convenient application of well-known algorithms. Furthermore, the autocorrelation of the developed Laplace AR model has Yule-Walker type of properties that enables us to configure its parameters to match to the second-order statistical characteristics of the channel through autocorrelation matching. The derivation of the channel model is illustrated through an example and computer simulations.
Keywords :
"Relays","Correlation","Channel models","Signal processing","Receivers","Probability density function","Wireless communication"
Publisher :
ieee
Conference_Titel :
Signal Processing and Signal Processing Education Workshop (SP/SPE), 2015 IEEE
Type :
conf
DOI :
10.1109/DSP-SPE.2015.7369546
Filename :
7369546
Link To Document :
بازگشت