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On the Power and Offset Allocation for Rate Adaptation of Spatial Multiplexing in Optical Wireless MIMO Channels

Authors
Park, Ki-HongKo, Young-ChaiAlouini, Mohamed-Slim
Issue Date
4월-2013
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Keywords
Visible light communication; optical wireless MIMO; intensity modulation; direct detection; rate adaptation; adaptive modulation
Citation
IEEE TRANSACTIONS ON COMMUNICATIONS, v.61, no.4, pp.1535 - 1543
Indexed
SCIE
SCOPUS
Journal Title
IEEE TRANSACTIONS ON COMMUNICATIONS
Volume
61
Number
4
Start Page
1535
End Page
1543
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/103552
DOI
10.1109/TCOMM.2013.012913.110290
ISSN
0090-6778
Abstract
In this paper, we consider resource allocation method in the visible light communication. It is challenging to achieve high data rate due to the limited bandwidth of the optical sources. In order to increase the spectral efficiency, we design a suitable multiple-input multiple-output (MIMO) system utilizing spatial multiplexing based on singular value decomposition and adaptive modulation. More specifically, after explaining why the conventional allocation method in radio frequency MIMO channels cannot be applied directly to the optical intensity channels, we theoretically derive a power allocation method for an arbitrary number of transmit and receive antennas for optical wireless MIMO systems. Based on three key constraints: the nonnegativity of the intensity-modulated signal, the aggregate optical power budget, and the bit error rate requirement, we propose a novel method to allocate the optical power, the offset value, and the modulation size. Based on some selected simulation results, we show that our proposed allocation method gives a better spectral efficiency at the expense of an increased computational complexity in comparison to a simple method that allocates the optical power equally among all the data streams.
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