DocumentCode :
3179213
Title :
Exploitation of MIMO techniques for reliable HF communication
Author :
Sahay, Shishir B. ; Bhagwat, Kanad C. ; Mohan, PR Jagan
Author_Institution :
Naval Wing, DIAT (DU), Pune, India
fYear :
2012
fDate :
22-25 July 2012
Firstpage :
1
Lastpage :
4
Abstract :
HF Communication has been synonymous with long ranges achievable using relatively inexpensive equipment. The downside though, has been the highly unreliable nature of the HF Ionospheric channel, which has deterred the development of systems capable of exploiting the large ranges achievable using sky wave/ionospheric propagation. The ionospheric channel is characterized by extensive multipath fading which is a substantial impediment for HF communication systems. MIMO (Multi Input Multi Output) systems on the other hand, exploit multipath to substantially improve communication efficacy and have been successfully employed in Wi-fi, cellular and VHF range applications. This paper studies the feasibility of exploiting MIMO techniques to exploit the Multipath effects prevalent in HF Ionospheric channel so as to improve the BER efficiency of data communication over HF links. Simulations for HF communication system using multiple transmit and/or receive antennas show substantial improvement in performance (Eb/No v/s BER) vis-à-vis the case of single transmitter and receiver. It is shown that diversity gain achieved compares to the maximum gain possible as in the case of MIMO over VHF and Wi-Fi applications.
Keywords :
HF radio propagation; MIMO communication; antenna arrays; diversity reception; ionospheric electromagnetic wave propagation; receiving antennas; telecommunication network reliability; transmitting antennas; BER efficiency; HF communication reliability; HF ionospheric channel; HF links; MIMO techniques; VHF range application; Wi-Fi application; cellular application; communication efficacy; data communication; diversity gain; multipath effects; multipath fading; multiple-input multiple-output systems; multiple-receive antennas; multiple-transmit antennas; sky wave-ionospheric propagation; Channel models; Diversity reception; Interference; MIMO; Receiving antennas; Transmitting antennas; Diversity; multipath channels; multiple receive antennas; multiple transmit antennas; receive diversity; space-time block coding; transmit diversity and wireless communication;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signal Processing and Communications (SPCOM), 2012 International Conference on
Conference_Location :
Bangalore
Print_ISBN :
978-1-4673-2013-9
Type :
conf
DOI :
10.1109/SPCOM.2012.6290228
Filename :
6290228
Link To Document :
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