Linear Optimal Signal Designs for Multi-Color MISO-VLC Systems Adapted to CCT Requirement

In visible light communications (VLC), multi-color light emitting diodes (LEDs) have higher modulation bandwidth and better chromatic property compared with traditional phosphor-converted LEDs. For multi-color multi-input single-output (MISO) VLC systems, multiple colors of one LED are not independe...

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Main Authors: Ye Xiao, Yi-Jun Zhu, Yan-Yu Zhang, Zheng-Guo Sun
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8542651/
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spelling doaj-1be2a8c346b248849e3407718b31a1422021-03-29T21:36:18ZengIEEEIEEE Access2169-35362018-01-016755197553010.1109/ACCESS.2018.28825448542651Linear Optimal Signal Designs for Multi-Color MISO-VLC Systems Adapted to CCT RequirementYe Xiao0Yi-Jun Zhu1https://orcid.org/0000-0003-3857-1661Yan-Yu Zhang2https://orcid.org/0000-0001-8992-1719Zheng-Guo Sun3National Digital Switching System Engineering and Technological Research Center, Zhengzhou, ChinaNational Digital Switching System Engineering and Technological Research Center, Zhengzhou, ChinaNational Digital Switching System Engineering and Technological Research Center, Zhengzhou, ChinaNational Digital Switching System Engineering and Technological Research Center, Zhengzhou, ChinaIn visible light communications (VLC), multi-color light emitting diodes (LEDs) have higher modulation bandwidth and better chromatic property compared with traditional phosphor-converted LEDs. For multi-color multi-input single-output (MISO) VLC systems, multiple colors of one LED are not independent with each other since they are limited jointly with chromaticity constraint. In this paper, we develop a novel linear optimal signal constellation (LOSC) for three-color LEDs and four-color LEDs to maximize the minimum Euclidean distance of received signal constellation under lighting constraints. The main signal design problem is formulated as a max-min optimization problem with continuous variables and discrete variables. To solve this problem, we disassemble it into two parts. In the inner part, we develop a linear optimal signal structure under maximum likelihood detection criterion for the fixed average optical power of each color. In the outer part, we transform the non-convex optimization problem into several convex optimization problems with polar coordinate transformations and slack variables. Combining these two parts, our proposed LOSC design scheme shows a lower computation complexity than the exhaustive search scheme. For different given correlated color temperature (CCT) values, the LOSC would always provide an efficient signal design method adaptively. Simulation results demonstrate that our proposed LOSC achieves better bit error rate performances than the conventional schemes.https://ieeexplore.ieee.org/document/8542651/Visible light communication (VLC)multi-color LEDmultiple-input-multiple-output (MIMO)constellation designMacAdam ellipsecorrelated color temperature (CCT)
collection DOAJ
language English
format Article
sources DOAJ
author Ye Xiao
Yi-Jun Zhu
Yan-Yu Zhang
Zheng-Guo Sun
spellingShingle Ye Xiao
Yi-Jun Zhu
Yan-Yu Zhang
Zheng-Guo Sun
Linear Optimal Signal Designs for Multi-Color MISO-VLC Systems Adapted to CCT Requirement
IEEE Access
Visible light communication (VLC)
multi-color LED
multiple-input-multiple-output (MIMO)
constellation design
MacAdam ellipse
correlated color temperature (CCT)
author_facet Ye Xiao
Yi-Jun Zhu
Yan-Yu Zhang
Zheng-Guo Sun
author_sort Ye Xiao
title Linear Optimal Signal Designs for Multi-Color MISO-VLC Systems Adapted to CCT Requirement
title_short Linear Optimal Signal Designs for Multi-Color MISO-VLC Systems Adapted to CCT Requirement
title_full Linear Optimal Signal Designs for Multi-Color MISO-VLC Systems Adapted to CCT Requirement
title_fullStr Linear Optimal Signal Designs for Multi-Color MISO-VLC Systems Adapted to CCT Requirement
title_full_unstemmed Linear Optimal Signal Designs for Multi-Color MISO-VLC Systems Adapted to CCT Requirement
title_sort linear optimal signal designs for multi-color miso-vlc systems adapted to cct requirement
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2018-01-01
description In visible light communications (VLC), multi-color light emitting diodes (LEDs) have higher modulation bandwidth and better chromatic property compared with traditional phosphor-converted LEDs. For multi-color multi-input single-output (MISO) VLC systems, multiple colors of one LED are not independent with each other since they are limited jointly with chromaticity constraint. In this paper, we develop a novel linear optimal signal constellation (LOSC) for three-color LEDs and four-color LEDs to maximize the minimum Euclidean distance of received signal constellation under lighting constraints. The main signal design problem is formulated as a max-min optimization problem with continuous variables and discrete variables. To solve this problem, we disassemble it into two parts. In the inner part, we develop a linear optimal signal structure under maximum likelihood detection criterion for the fixed average optical power of each color. In the outer part, we transform the non-convex optimization problem into several convex optimization problems with polar coordinate transformations and slack variables. Combining these two parts, our proposed LOSC design scheme shows a lower computation complexity than the exhaustive search scheme. For different given correlated color temperature (CCT) values, the LOSC would always provide an efficient signal design method adaptively. Simulation results demonstrate that our proposed LOSC achieves better bit error rate performances than the conventional schemes.
topic Visible light communication (VLC)
multi-color LED
multiple-input-multiple-output (MIMO)
constellation design
MacAdam ellipse
correlated color temperature (CCT)
url https://ieeexplore.ieee.org/document/8542651/
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