TR2009-077
Unified Analysis of Linear Block Precoding for Distributed Antenna Systems
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- "Unified Analysis of Linear Block Precoding for Distributed Antenna Systems", IEEE Global Telecommunications Conference (GLOBECOM), November 2009, pp. 1-6.BibTeX TR2009-077 PDF
- @inproceedings{Koike-Akino2009nov,
- author = {Koike-Akino, T. and Molisch, A.F. and Tao, Z. and Orlik, P.V. and Kuze, T.},
- title = {Unified Analysis of Linear Block Precoding for Distributed Antenna Systems},
- booktitle = {IEEE Global Telecommunications Conference (GLOBECOM)},
- year = 2009,
- pages = {1--6},
- month = nov,
- issn = {1930-529X},
- url = {https://www.merl.com/publications/TR2009-077}
- }
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- "Unified Analysis of Linear Block Precoding for Distributed Antenna Systems", IEEE Global Telecommunications Conference (GLOBECOM), November 2009, pp. 1-6.
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MERL Contacts:
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Research Area:
Abstract:
Block transmission with cyclic prefix is a promising technique to realize high-speed data rates in frequency selective fading channels. Many popular linear precoding schemes, including orthogonal frequency-division multiplexing (OFDM), single-carrier (SC) block transmission, and time-reversal (TR), can be interpreted as such a block transmission. This paper presents a unified performance analysis which shows how the optimal precoding strategy depends on the receiver type and the optimization criterion (capacity and mean-square error). We analyze three variants of TR methods (based on maximum-ratio combining, equal-gain combining and selective combining) and two-types of pre-equalization methods (zero-forcing and minimum mean-square error). As one application of our framework, we derive optimal power control for OFDM in the presence of interference limitation for distributed antenna systems; we find that without power control, OFDM does not have any capacity advantage over SC transmissions. When comparing SC and TR, we find that for single-antenna systems at high SNRs, SC has a capacity advantage; however, TR performs better in the low SNR regime. For multiple-antenna systems, TR always provides higher capacity, and the capacity of TR can approach that of optimal precoders with a number of distributed antennas.
Related News & Events
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NEWS GLOBECOM 2009: 7 publications by Philip V. Orlik, Koon Hoo Teo, Toshiaki Koike and Jinyun Zhang Date: November 30, 2009
Where: IEEE Global Telecommunications Conference (GLOBECOM)
MERL Contacts: Jinyun Zhang; Philip V. Orlik; Toshiaki Koike-AkinoBrief- The papers "Relay Selection and Data Transmission Throughput Tradeoff in Cooperative Systems" by Shah, V., Mehta, N.B. and Yim, M.H.R., "Medium Access Control Signaling for Reliable Spectrum Agile Radios" by Azarnasab, E., Chen, R.-R., Teo, K.H., Tao, Z. and Farhang-Boroujeny, B., "Unified Analysis of Linear Block Precoding for Distributed Antenna Systems" by Koike-Akino, T., Molisch, A.F., Tao, Z., Orlik, P.V. and Kuze, T., "Multi-user Cooperative Communications with Relay-Coding for Uplink IMT-Advanced 4G Systems" by Cao, L., Zhang, J. and Kanno, N., "Error Control Strategies for WiMAX Multi-Hop Relay Networks" by Fu, W., Tao, Z., Zhang, J. and Agrawal, D.P., "Opportunistic Cell Edge Selection in Multi-Cell OFDMA Networks" by Au-Yeung, C.K., Maaref, A. and Zhang, J. and "A New Coupling Channel Estimator for Cross-Talk Cancellation at Wireless Relay Stations" by Ma, J., Li, G.Y., Zhang, J., Kuze, T. and Iura, H. were presented at the IEEE Global Telecommunications Conference (GLOBECOM).
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AWARD GLOBECOM 2009 Best Paper Award Date: November 1, 2009
Awarded to: Toshiaki Koike-Akino, Andreas Molisch, Zhifeng Tao, Philip Orlik and Toshiyuki Kuze
Awarded for: "Unified Analysis of Linear Block Precoding for Distributed Antenna Systems"
Awarded by: Global Telecommunications Conference (GLOBECOM)
MERL Contacts: Toshiaki Koike-Akino; Philip V. Orlik
Research Area: Communications