• Photonics Research
  • Vol. 4, Issue 6, 249 (2016)
Jiaqi Zhao, Chaoyi Qin, Mengjie Zhang, and Nan Chi*
Author Affiliations
  • Key Laboratory for Information Science of Electromagnetic Waves (MoE), Department of Communication Science and Engineering, Fudan University, Shanghai 200433, China
  • show less
    DOI: 10.1364/PRJ.4.000249 Cite this Article Set citation alerts
    Jiaqi Zhao, Chaoyi Qin, Mengjie Zhang, Nan Chi. Investigation on performance of special-shaped 8-quadrature amplitude modulation constellations applied in visible light communication[J]. Photonics Research, 2016, 4(6): 249 Copy Citation Text show less
    References

    [1] Y. Wang, Y. Wang, N. Chi, J. Yu, H. Shang. Demonstration of 575-Mb/s downlink and 225-Mb/s uplink bi-directional SCM-WDM visible light communication using RGB LED and phosphor-based LED. Opt. Express, 21, 1203-1208(2013).

    [2] N. Chi, Y. Wang, Y. Wang, X. Huang, X. Lu. Ultra-high-speed single red-green-blue light-emitting diode-based visible light communication system utilizing advanced modulation formats. Chin. Opt. Lett., 12, 010605(2014).

    [3] D. Wu, W. D. Zhong, Z. Ghassemlooy, C. Chen. Short-range visible light ranging and detecting system using illumination light emitting diodes. IET Optoelectron., 10, 94-99(2015).

    [4] P. H. Pathak, X. Feng, P. Hu, P. Mohapatra. Visible light communication, networking, and sensing: a survey, potential and challenges. IEEE Commun. Surv. Tutorials, 17, 2047-2077(2015).

    [5] C. Thomas, M. Weidner, S. H. Durrani. Digital amplitude-phase keying with M-ary alphabets. IEEE Trans. Commun., 22, 168-180(1974).

    [6] G. J. Foschini, R. D. Gitlin, S. B. Weinstein. Optimization of two-dimensional signal constellations in the presence of Gaussian noise. IEEE Trans. Commun., 22, 28-38(1974).

    [7] H. Kwok, D. Jones. PAR reduction via constellation shaping. Proceedings of IEEE International Symposium on Information Theory, 166(2000).

    [8] S. Sezginer, H. Sari. Peak power reduction in OFDM systems using dynamic constellation shaping. 13th European Signal Processing Conference, 1-4(2005).

    [9] A. Mobasher, A. K. Khandani. Integer-based constellation-shaping method for PAPR reduction in OFDM systems. IEEE Trans. Commun., 54, 119-127(2006).

    [10] N. H. Tran, H. H. Nguyen. Signal mappings of 8-ary constellations for bit interleaved coded modulation with iterative decoding. IEEE Trans. Broadcast., 52, 92-99(2006).

    [11] G. Hosoya, H. Yashima. Constellation shaping for non-uniform signals in bit-interleaved coded modulation combined with multi-stage decoding. Australian Communications Theory Workshop (AusCTW), 181-186(2016).

    [12] M. Nölle, F. Frey, R. Elschner, C. Schmidt-Langhorst, A. Napoli, C. Schubert. Performance comparison of different 8QAM constellations for the use in flexible optical networks. Optical Fiber Communication Conference(2014).

    [13] E. Agrell, M. Karlsson. Power-efficient modulation formats in coherent transmission systems. J. Lightwave Technol., 27, 5115-5126(2009).

    [14] P. A. Bello, B. D. Nelin. The effect of frequency selective fading on the binary error probabilities of incoherent and differentially coherent matched filter receivers. IEEE Trans. Commun. Syst., 11, 170-186(1963).

    [15] K. Ying, Z. Yu, R. J. Baxley, H. Qian, G. K. Chang, G. T. Zhou. Nonlinear distortion mitigation in visible light communications. IEEE Wireless Commun., 22, 36-45(2015).

    [16] W. Yan, B. Liu, L. Li, Z. Tao, T. Takahara, J. C. Rasmussen. Nonlinear distortion and DSP-based compensation in metro and access networks using discrete multi-tone. European Conference and Exhibition on Optical Communication, Mo-1(2012).

    [17] X. Huang, Z. Wang, J. Shi, Y. Wang, N. Chi. 1.6  Gbit/s phosphorescent white LED based VLC transmission using a cascaded pre-equalization circuit and a differential outputs PIN receiver. Opt. Express, 23, 22034-22042(2015).

    CLP Journals

    [1] Miaofeng Li, Xiang Li, Chao Yang, Qi Yang, Shaohua Yu. Experimental demonstration of indoor interfered visible light communication system employing successive interference cancellation[J]. Chinese Optics Letters, 2017, 15(5): 050604

    [2] Nan Chi, Jiaqi Zhao, Zhixin Wang. Bandwidth-efficient visible light communication system based on faster-than-Nyquist pre-coded CAP modulation[J]. Chinese Optics Letters, 2017, 15(8): 080601

    [3] Zhixin Wang, Mengjie Zhang, Siyuan Chen, Nan Chi. Carrier-less amplitude and phase modulated visible light communication system based on a constellation-shaping scheme[J]. Chinese Optics Letters, 2017, 15(3): 030602

    Jiaqi Zhao, Chaoyi Qin, Mengjie Zhang, Nan Chi. Investigation on performance of special-shaped 8-quadrature amplitude modulation constellations applied in visible light communication[J]. Photonics Research, 2016, 4(6): 249
    Download Citation