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Journal ArticleDOI

Non-hermitian symmetry orthogonal frequency division multiplexing for multiple-input multiple-output visible light communications

TLDR
This paper investigates a non-Hermitian symmetry OFDM (NHS-OFDM) scheme for MIMO-VLC systems that achieves superior bit error rate (BER) performance to that using HS-OF DM, with lower or nearly the same computational complexity.
Abstract
Multiple-input multiple-output (MIMO) is a natural and effective way to increase the capacity of white light-emitting diode (LED) based visible light communication (VLC) systems. Orthogonal frequency division multiplexing (OFDM) using high-order modulation is another widely used technique in VLC systems. Due to the intensity modulation and direct detection nature of VLC systems, Hermitian symmetry is usually imposed in OFDM so as to obtain a real-valued signal. In this paper, we investigate a non-Hermitian symmetry OFDM (NHS-OFDM) scheme for MIMO-VLC systems. By transmitting the real and imaginary parts of a complex-valued OFDM signal via a pair of white LEDs, NHS-OFDM circumvents the constraint of Hermitian symmetry. We evaluate the performance of an indoor 2×2 MIMO-VLC system using conventional Hermitian symmetry-based OFDM (HS-OFDM) and NHS-OFDM, where both a non-imaging receiver and an imaging receiver are considered. Analytical results show that the system using NHS-OFDM achieves superior bit error rate (BER) performance to that using HS-OFDM, with lower or nearly the same computational complexity. The superior BER performance of NHS-OFDM-based MIMO-VLC is further verified by experiments. The experimental results demonstrate that, in a 400  Mb/s2×2 MIMO-VLC system with an imaging receiver, NHS-OFDM improves the communication coverage by about 30% compared with conventional HS-OFDM for a target BER of 3.8×10−3.

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Citations
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Journal ArticleDOI

An Efficient Flicker-Free FEC Coding Scheme for Dimmable Visible Light Communication Based on Polar Codes

TL;DR: Based on polar codes’ recursive encoding structure, an efficient and flicker-free FEC coding scheme for dimmable VLC is proposed to increase the transmission efficiency and simplify the coding structure.
Journal ArticleDOI

On the Performance of MIMO-NOMA-Based Visible Light Communication Systems

TL;DR: It is demonstrated that NomA with NGDPA achieves a sum rate improvement of up to 29.1% compared with NOMA with the gain ratio power allocation method in the $2\times 2$ MIMO-VLC system with three users.
Journal ArticleDOI

Reduction of SINR Fluctuation in Indoor Multi-Cell VLC Systems Using Optimized Angle Diversity Receiver

TL;DR: In this paper, a generalized angle diversity receiver (ADR) structure was proposed to reduce SINR fluctuation in indoor multi-cell VLC systems, which consists of one top detector and multiple inclined side detectors.
Journal ArticleDOI

Multi-User Visible Light Communications: State-of-the-Art and Future Directions

TL;DR: This paper provides a comprehensive overview of multi-user VLC systems discussing the recent advances on multi- user precoding, multiple access, resource allocation, and mobility management and possible directions for future research in this emerging topic.
Journal ArticleDOI

On the coverage of multiple-input multiple-output visible light communications [Invited]

TL;DR: A comprehensive investigation of both the illumination and communication coverages of an indoor MIMO-VLC system based on NHS-OFDM is presented and the analytical bit error rate expression of the system is derived.
References
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Journal ArticleDOI

Fundamental analysis for visible-light communication system using LED lights

TL;DR: Based on numerical analyses, it is shown that the proposed indoor visible-light communication system utilizing white LED lights is expected to be the indoor communication of the next generation.
Book

Optical Wireless Communications: System and Channel Modelling with MATLAB®

TL;DR: The authors highlight past and current research activities to illustrate optical sources, transmitters, detectors, receivers, and other devices used in optical wireless communications and describe techniques for using theoretical analysis and simulation to mitigate channel impact on system performance.
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Indoor optical wireless communication: potential and state-of-the-art

TL;DR: This article aims at reviewing and summarizing recent advancements in OW communication, with the main focus on indoor deployment scenarios, including a discussion of challenges, potential applications, state of the art, and prospects.
Journal ArticleDOI

On the general BER expression of one- and two-dimensional amplitude modulations

TL;DR: This work provides an exact and general closed-form expression of the BER for one-dimensional and two-dimensional amplitude modulations, i.e., PAM and QAM, under an additive white Gaussian noise (AWGN) channel when Gray code bit mapping is employed.
Journal ArticleDOI

High data rate multiple input multiple output (MIMO) optical wireless communications using white led lighting

TL;DR: In this paper, a non-imaging optical MIMO system does not perform properly at all receiver positions due to symmetry, but an imaging based system can operate under all foreseeable circumstances, and simulations show such systems can operate at several hundred Mbit/s, and up to G Bit/s in many circumstances.
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