Title :
Very-large-scale integration hardware implementation of adaptive space-time coding/spatial multiplexing switching
Author :
Nurmi, W. ; Nooshabadi, Saeid
Author_Institution :
Dept. of Inf. Technol., Univ. of Turku, Turku, Finland
Abstract :
Multiple input multiple output (MIMO) techniques are widely employed in modern wireless systems. The most prominent approaches to MIMO communication are space-time coding (STC) and spatial multiplexing (SM). Less studied is a hybrid technique called adaptive MIMO switching (AMS), which may be employed by fixing the transmission rate and selecting between space-time block coding and SM transmission modes based on instantaneous channel conditions to achieve the most efficient link. This study presents a hardware implementations of a selector algorithm and a detector employing it. The detector is designed for a 2×2 MIMO system and was implemented on an Altera Cyclone II FPGA. In addition, two transmission protocols with decision feedback from the receiver to the transmitter via a low-rate feedback channel are introduced and the feasibility of switching for high-data-rate transmissions is discussed.
Keywords :
MIMO communication; adaptive codes; automatic repeat request; field programmable gate arrays; protocols; radio receivers; radio transmitters; space division multiplexing; space-time codes; telecommunication channels; Altera Cyclone II FPGA; MIMO system; adaptive MIMO switching; adaptive space-time coding; decision feedback; low-rate feedback channel; modern wireless systems; multiple input multiple output communication; receiver; space-time block coding; spatial multiplexing switching; transmitter; two transmission protocols; very-large-scale integration hardware implementation;
Journal_Title :
Communications, IET
DOI :
10.1049/iet-com.2010.1124