TY - GEN
T1 - Spherical Color-Shift Keying for Visible Light Communication Systems
AU - Chen, Wenjun
AU - Chen, Bo
AU - Jiang, Ming
N1 - Publisher Copyright:
© 2020 IEEE.
PY - 2020/3
Y1 - 2020/3
N2 - In this paper, we propose the novel spherical colorshift keying (SCSK) schemes for visible light communication (VLC) systems, which can improve the system fidelity comparing to the conventional color-shift keying (CSK) techniques. Specifically, the constant-intensity constraint in conventional CSK schemes requires that the constellation symbols remain on a two-dimensional intensity plane. We propose to expand the envelope of CSK constellations to three-dimensional space subjected to a new spherical intensity constraint, such that the minimum Euclidean distance (MED) is enlarged. Furthermore, we convert the constellation design problem to the new spherical circle packing (SCP) problem, then solve it with the aid of the proposed spherical quasi-physical (SQP) model, where the socalled spherical heuristic quasi-physical algorithm (SHQPA) is employed to obtain the optimal SCSK constellations. Simulation results demonstrate that the new schemes can achieve beneficial gains upon their conventional counterparts.
AB - In this paper, we propose the novel spherical colorshift keying (SCSK) schemes for visible light communication (VLC) systems, which can improve the system fidelity comparing to the conventional color-shift keying (CSK) techniques. Specifically, the constant-intensity constraint in conventional CSK schemes requires that the constellation symbols remain on a two-dimensional intensity plane. We propose to expand the envelope of CSK constellations to three-dimensional space subjected to a new spherical intensity constraint, such that the minimum Euclidean distance (MED) is enlarged. Furthermore, we convert the constellation design problem to the new spherical circle packing (SCP) problem, then solve it with the aid of the proposed spherical quasi-physical (SQP) model, where the socalled spherical heuristic quasi-physical algorithm (SHQPA) is employed to obtain the optimal SCSK constellations. Simulation results demonstrate that the new schemes can achieve beneficial gains upon their conventional counterparts.
KW - Visible light communication
KW - quasi-physical model
KW - spherical colorshift keying
KW - spherical packing
UR - https://www.scopus.com/pages/publications/85085250287
U2 - 10.1109/CISS48834.2020.1570617217
DO - 10.1109/CISS48834.2020.1570617217
M3 - 会议稿件
AN - SCOPUS:85085250287
T3 - 2020 54th Annual Conference on Information Sciences and Systems, CISS 2020
BT - 2020 54th Annual Conference on Information Sciences and Systems, CISS 2020
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 54th Annual Conference on Information Sciences and Systems, CISS 2020
Y2 - 18 March 2020 through 20 March 2020
ER -