• Chinese Optics Letters
  • Vol. 12, Issue 1, 010605 (2014)
Nan Chi, Yuanquan Wang, Yiguang Wang, Xingxing Huang, and Xiaoyuan Lu
DOI: 10.3788/col201412.010605 Cite this Article Set citation alerts
Nan Chi, Yuanquan Wang, Yiguang Wang, Xingxing Huang, Xiaoyuan Lu. Ultra-high-speed single red–green–blue light-emitting diode-based visible light communication system utilizing advanced modulation formats[J]. Chinese Optics Letters, 2014, 12(1): 010605 Copy Citation Text show less
References

[1] R. Li, Y. Wang, C. Tang, Y. Wang, H. Shang, and N. Chi, Chin. Opt. Lett. 11, 080605 (2013).

[2] Y. Wang, Y. Wang, N. Chi, J. Yu, and H. Shang, Opt. Express 21, 1203 (2013).

[3] Y. Wang, N. Chi, Y. Wang, R. Li, X. Huang, C. Yang, and Z. Zhang, Opt. Express 21, 27558 (2013).

[4] G. Cossu, A. M. Khalid, P. Choudhury, R. Corsini, and E. Ciaramella, Opt. Express 20, B501 (2012).

[5] Y. Wang, Y. Shao, H. Shang, X. Lu, Y. Wang, J. Yu, and N. Chi, in Proceedings of OFC OTh1G.3 (2013).

[6] J. Zhang, J. Yu, F. Li, N. Chi, Z. Dong, and X. Li, Opt. Express 21, 18842 (2013).

[7] L. Tao, J. Yu, J. Zhang, Y. Shao, and N. Chi, IEEE Photon. Technol. Lett. 25, 851 (2013).

[8] N. Chi, W. Fang, Y. Shao, J. Zhang, L. Tao, and B. Huang, Chin. Opt. Lett. 8, 837 (2010).

[9] F. Wu, C. Liu, C. Wei, C. Chen, Z. Chen, and K. Huang, in Proceedings of OFC OTh1G.4 (2013).

[10] R. Li, H. Shang, Y. Lei, Y. Wang, Y. Wang, X. Lu, and N. Chi, Laser and Optoelectronics Progress 50, 050003 (2013).

[11] Y. Wang, M. Zhang, Y. Wang, W. Fang, L. Tao, and N. Chi, in Proceedings of 2012 Opto-Electronicsand Communications Conference 745 (2012).

[12] F. Yan, Y. Wang, Y. Shao, Y. Wang, L. Tao, N. Chi, and M. Zhang, in Proceedings of 18th Asia-Pacif ic Communications Conference 924 (2012).

[13] D. Falconer, S. L. Ariyavisitakul, A. Benyamin-Seeyar, and B.Eidson, IEEE Commun. Mag. 40, 58 (2002).

[14] A. M. Khalid, G. Cossu, R. Corsini, P. Choudhury, and E. Ciaramella, IEEE Photon. J. 4, 1465 (2012).

[15] Y. Wu, A. Yang, L. Feng, and Y. Sun, Chin. Opt. Lett. 11, 030601 (2013).

[16] Z. Huang, Chin. Opt. Lett. 11, 060603 (2013).

[17] J. Armstrong, Photon. Res. 1, 92 (2013).

[18] Z. Ghassemlooy, P.A. Haigh, F. Arca, S. F. Tedde, O. Hayden, I. Papakonstantinou, and S. Rajbhandari, Photon. Res. 1, 65 (2013).

CLP Journals

[1] Zhixin Wang, Li Tao, Yiguang Wang, Nan Chi. 56 Gb/s direct-detection polarization multiplexing multi-band CAP transmission[J]. Chinese Optics Letters, 2015, 13(8): 080602

[2] 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

[3] Xizheng Ke, Huan Zhang. Indoor Visible Light Uplink Communication System Based on Inverse Modulation[J]. Laser & Optoelectronics Progress, 2018, 55(2): 020601

[4] Xinyue Guo, Xin Li. Experimental demonstration of an adaptive orthogonal frequency division multiplexing visible light communication system[J]. Chinese Optics Letters, 2016, 14(11): 110604

[5] Honglei Li, Yini Zhang, Xiongbin Chen, Chunhui Wu, Junqing Guo, Zongyu Gao, Hongda Chen. High-speed phosphorescent white LED visible light communications without utilizing a blue filter[J]. Chinese Optics Letters, 2015, 13(8): 080605

[6] Xiang Liu, Aiying Yang, Yu Wang, Lihui Feng. Combination of light-emitting diode positioning identification and time-division multiplexing scheme for indoor location-based service[J]. Chinese Optics Letters, 2015, 13(12): 120601

[7] Xingxing Huang, Siyuan Chen, Zhixin Wang, Yiguang Wang, Nan Chi. 1.2  Gbit/s visible light transmission based on orthogonal frequency-division multiplexing using a phosphorescent white light-emitting diode and a pre-equalization circuit[J]. Chinese Optics Letters, 2015, 13(10): 100602

Data from CrossRef

[1] Te Chen, Lu Liu, Zhong Zheng, Jie Song, Kai Wu, Weiwei Hu. Fisheye-lens-based space division multiplexing system for visible light communications. EURASIP Journal on Wireless Communications and Networking, 2015, 237(2015).

[2] Xingxing Huang, Zhixin Wang, Jianyang Shi, Yiguang Wang, Nan Chi. 16 Gbit/s phosphorescent white LED based VLC transmission using a cascaded pre-equalization circuit and a differential outputs PIN receiver. Optics Express, 23, 22034(2015).

[3] Hongda Chen, Chunhui Wu, Honglei Li, Xiongbin Chen, Zongyu Gao, Shigang Cui, Qin Wang. Advances and prospects in visible light communications. Journal of Semiconductors, 37, 011001(2016).

[4] Honglei Li, Xiongbin Chen, Junqing Guo, Hongda Chen. A 550 Mbit/s real-time visible light communication system based on phosphorescent white light LED for practical high-speed low-complexity application. Optics Express, 22, 27203(2014).

[5] Jianyang Shi, Xingxing Huang, Yiguang Wang, Nan Chi. Real-time bi-directional visible light communication system utilizing a phosphor-based LED and RGB LED. 2014 Sixth International Conference on Wireless Communications and Signal Processing (WCSP), 1(2014).

[6] Meng Shi, Fumin Wang, Mengjie Zhang, Zhixin Wang, Nan Chi. PAPR reduction of 2.0Gbit/s DFT-S OFDM modulated visible light communication system based on interleaved sub-banding technique. 2017 IEEE International Conference on Communications Workshops (ICC Workshops), 337(2017).

[7] Fumin Wang, Jiaqi Yin, Jianyang Shi, Nan Chi, Liuming Lu, Aijun Xu, Jie Xiong, Zhuang Ma. Real-time bi-directional 800Mbs visible light communication system utilizing commercial LEDs. Asia Communications and Photonics Conference 2016, AF3A.5(2016).

[8] Jianyang Shi, Yiguang Wang, Xingxing Huang, Li Tao, Nan Chi. Enhanced performance using STBC aided coding for led-based multiple input single output visible light communication network. Microwave and Optical Technology Letters, 57, 2943(2015).

[9] Lunhua Li, Yufei Wang, Yun Liu, Shaoyu Zhao, Wanhua Zheng. Efficient self-frequency-doubling Nd:GdCOB green laser at 545??nm pumped by a 796??nm laser diode. Applied Optics, 56, 4025(2017).

[10] Xingxing Huang, Jianyang Shi, Jiehui Li, Yiguang Wang, Nan Chi. A Gb/s VLC Transmission Using Hardware Preequalization Circuit. IEEE Photonics Technology Letters, 27, 1915(2015).

[11] Honglei Li, Xiongbin Chen, Junqing Guo, Zongyu Gao, Hongda Chen. An analog modulator for 460 MB/S visible light data transmission based on OOK-NRS modulation. IEEE Wireless Communications, 22, 68(2015).

[12] Honglei Li, Yini Zhang, Xiongbin Chen, Chunhui Wu, Junqing Guo, Zongyu Gao, Weihua Pei, Hongda Chen. 682Mbit/s phosphorescent white LED visible light communications utilizing analog equalized 16QAM-OFDM modulation without blue filter. Optics Communications, 354, 107(2015).

[13] Peng Zou, Yuanfan Liu, Fumin Wang, Fangchen Hu, Nan Chi. Enhanced performance of odd order square geometrical shaping QAM constellation in underwater and free space VLC system. Optics Communications, 438, 132(2019).

[14] Te Chen, Zhong Zheng, Lu Liu, Weiwei Hu. High-Diversity Space Division Multiplexing Visible Light Communication Utilizing a Fisheye-Lens-Based Imaging Receiver. Optical Fiber Communication Conference, Tu2G.3(2015).

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

[16] Meng Shi, Can Wang, Haichao Guo, Yiguang Wang, Xiaojun Li, Nan Chi. A high-speed visible light communication system based on DFT-S OFDM. 2016 IEEE International Conference on Communication Systems (ICCS), 1(2016).

Nan Chi, Yuanquan Wang, Yiguang Wang, Xingxing Huang, Xiaoyuan Lu. Ultra-high-speed single red–green–blue light-emitting diode-based visible light communication system utilizing advanced modulation formats[J]. Chinese Optics Letters, 2014, 12(1): 010605
Download Citation