Title :
A Real Time UWB MIMO System With Programmable Transmit Waveforms: Architecture, Algorithms and Demonstrations
Author :
Song, Yu ; Guo, Terry N. ; Qiu, Robert Caiming ; Wicks, Michael C.
Author_Institution :
Ixia Commun. Inc., Raleigh, NC, USA
Abstract :
Research on ultra-wideband (UWB) systems with multiple-input multiple-output (MIMO) configuration has gained a great deal of attention recently. In this article we report a real time experimental UWB MIMO system testbed developed at Tennessee Technological University. We present the architecture, unique capabilities, algorithms development, experimental demonstrations, secure communications scheme with measurement based performances evaluation, and potential applications of the system testbed. Two demonstration cases are used to validate the system. In the first demo case we experimentally investigate UWB MIMO enhanced spatial-temporal focusing property in a harsh RF environment with time reversal waveform precoding technique to take advantage of multipath propagation. In the second demo case UWB MIMO spatial division multiple access (SDMA) in a typical office environment is experimentally verified. In particular, as a physical layer security enhancement, a unique location based security-enhanced communications concept is tested with normal office-area propagation channels, and it is proved to be feasible at certain data rates. First-hand experimental results are collected to support UWB MIMO research.
Keywords :
MIMO communication; channel coding; indoor radio; multipath channels; performance evaluation; precoding; radiowave propagation; space division multiple access; spatiotemporal phenomena; telecommunication security; ultra wideband communication; waveform analysis; SDMA; Tennessee Technological University; UWB MIMO enhanced spatial-temporal focusing property; UWB MIMO spatial division multiple access; algorithm development; experimental demonstrations; harsh RF environment; measurement-based performance evaluation; multipath propagation; multiple-input multiple-output configuration; normal office-area propagation channel; office environment; physical layer security enhancement; programmable transmit waveforms; real-time experimental UWB MIMO system; system testbed; system validation; time reversal waveform precoding technique; ultra wideband systems; unique location based security-enhanced communications; MIMO; Performance evaluation; Ultra wideband technology; Experimental testbed; multiple-input multiple-output (MIMO); performance evaluation; spatial division multiple access (SDMA); system measurement; time reversal; ultra-wideband (UWB);
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2012.2201107