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논문 기본 정보

자료유형
학술저널
저자정보
Byung Wook Kim (Hoseo University) Sung-Yoon Jung (Yeungnam University)
저널정보
한국광학회 Current Optics and Photonics Current Optics and Photonics Vol.2 No.6
발행연도
2018.12
수록면
532 - 539 (8page)

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Multiple LED arrays can be utilized in visible-light communication (VLC) to improve communication efficiency, while maintaining smart illumination functionality through dimming control. This paper proposes a modulation scheme called “Spatial Intensity Modulation” (SIM), where the effective number of turned-on LEDs is employed for data modulation and dimming control in VLC systems. Unlike the conventional pulse-amplitude modulation (PAM), symbol intensity levels are not determined by the amplitude levels of a VLC signal from each LED, but by counting the number of turned-on LEDs, illuminating with a single amplitude level. Because the intensity of a SIM symbol and the target dimming level are determined solely in the spatial domain, the problems of conventional PAM-based VLC and related MIMO VLC schemes, such as unstable dimming control, non uniform illumination functionality, and burdens of channel prediction, can be solved. By varying the number and formation of turned-on LEDs around the target dimming level in time, the proposed SIM scheme guarantees homogeneous illumination over a target area. An analysis of the dimming capacity, which is the achievable communication rate under the target dimming level in VLC, is provided by deriving the turn-on probability to maximize the entropy of the SIM-based VLC system. In addition, a practical design of dimmable SIM scheme applying the multilevel inverse source coding (MISC) method is proposed. The simulation results under a range of parameters provide baseline data to verify the performance of the proposed dimmable SIM scheme and applications in real systems.

목차

I. INTRODUCTION
II. THEORETICAL DESIGN OF SPATIAL INTENSITY MODULATION
III. PRACTICAL SIM DESIGN USING MULTILEVEL INVERSE SOURCE CODING
IV. ANALYSIS OF DIMMING CAPACITY
V. CONCLUSION
REFERENCES

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