Chinese Journal of Lasers, Volume. 51, Issue 2, 0206001(2024)
Dimming Controllable Hybrid Multilayer OFDM Modulation Method for Indoor Visible Light Communication
[1] Haas H, Yin L, Chen C et al. Introduction to indoor networking concepts and challenges in LiFi[J]. Journal of Optical Communications and Networking, 12, A190-A203(2019).
[2] Kumar S, Singh P. A comprehensive survey of visible light communication: potential and challenges[J]. Wireless Personal Communications, 109, 1357-1375(2019).
[3] Nguyen T, Islim M S, Chen C et al. iDim: practical implementation of index modulation for LiFi dimming[J]. IEEE Transactions on Green Communications and Networking, 5, 1880-1891(2021).
[4] Li L, Wang C, Guo J N et al. Dimmable visible light communication scheme based on deleting polar code[J]. Acta Optica Sinica, 42, 1606007(2022).
[5] Hei Y Q, Kou Y C, Shi G M et al. Energy-spectral efficiency tradeoff in DCO-OFDM visible light communication system[J]. IEEE Transactions on Vehicular Technology, 68, 9872-9882(2019).
[6] Mohammed M M A, He C W, Armstrong J. Diversity combining in layered asymmetrically clipped optical OFDM[J]. Journal of Lightwave Technology, 35, 2078-2085(2017).
[7] Huang X, Yang F, Pan C Y et al. Advanced ADO-OFDM with adaptive subcarrier assignment and optimized power allocation[J]. IEEE Wireless Communications Letters, 8, 1167-1170(2019).
[8] Huang X, Yang F, Liu X et al. Subcarrier and power allocations for dimmable enhanced ADO-OFDM with iterative interference cancellation[J]. IEEE Access, 7, 28422-28435(2019).
[9] Wang T, Hou Y H, Zhang H Y. The spectral efficiency augmented HACO-OFDM based visible light communications[J]. Optics Communications, 437, 178-183(2019).
[10] Wang Q, Wang Z C, Dai L L. Asymmetrical hybrid optical OFDM for visible light communications with dimming control[J]. IEEE Photonics Technology Letters, 27, 974-977(2015).
[11] Jia K J, Jin B, Hao L et al. Performance analysis of DCO-OFDM and ACO-OFDM systems in indoor visible light communications[J]. Chinese Journal of Lasers, 44, 0806003(2017).
[12] Islam R, Mondal M R H. Hybrid DCO-OFDM, ACO-OFDM and PAM-DMT for dimmable LiFi[J]. Optik, 180, 939-952(2019).
[13] Li B L, Xu W, Feng S M et al. Spectral-efficient reconstructed LACO-OFDM transmission for dimming compatible visible light communications[J]. IEEE Photonics Journal, 11, 7900714(2019).
[14] Zhang X Y, Wang Q, Zhang R et al. Performance analysis of layered ACO-OFDM[J]. IEEE Access, 5, 18366-18381(2017).
[15] Li B L, Xue X M, Feng S M et al. Layered optical OFDM with adaptive bias for dimming compatible visible light communications[J]. Journal of Lightwave Technology, 39, 3434-3444(2021).
[16] Zhang T, Zou Y, Sun J N et al. Improved companding transform for PAPR reduction in ACO-OFDM-based VLC systems[J]. IEEE Communications Letters, 22, 1180-1183(2018).
[17] Xu X Y, Yue D W. A novel optical spatial modulation OFDM based on complex constellation mapping with Hartley transform[J]. Chinese Journal of Lasers, 48, 0906002(2021).
[18] Hu W W. PAPR reduction in DCO-OFDM visible light communication systems using optimized odd and even sequences combination[J]. IEEE Photonics Journal, 11, 7901115(2019).
[19] Liu X S, Li J F, Ren Y H et al. Non-iterative detection receiving method of LACO-OFDM in wireless optical communication[J]. Chinese Journal of Lasers, 49, 1106002(2022).
[20] Feng S M, Feng H L, Zhou Y et al. Low-complexity hybrid optical OFDM with high spectrum efficiency for dimming compatible VLC system[J]. Applied Sciences, 9, 3666(2019).
[21] Li B L, Feng S M, Xu W et al. Interference-free hybrid optical OFDM with low-complexity receiver for wireless optical communications[J]. IEEE Communications Letters, 23, 818-821(2019).
[22] Sun Y Q, Yang F, Gao J N. Novel dimmable visible light communication approach based on hybrid LACO-OFDM[J]. Journal of Lightwave Technology, 36, 4942-4951(2018).
[23] Dissanayake S D, Armstrong J. Comparison of ACO-OFDM, DCO-OFDM and ADO-OFDM in IM/DD systems[J]. Journal of Lightwave Technology, 31, 1063-1072(2013).
[24] Li X, Mardling R, Armstrong J. Channel capacity of IM/DD optical communication systems and of ACO-OFDM[C], 2128-2133(2007).
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Jiawei Ren, Tao Wang, Zhijian Xu, Jing Qu. Dimming Controllable Hybrid Multilayer OFDM Modulation Method for Indoor Visible Light Communication[J]. Chinese Journal of Lasers, 2024, 51(2): 0206001
Category: Fiber optics and optical communication
Received: Mar. 6, 2023
Accepted: May. 22, 2023
Published Online: Jan. 19, 2024
The Author Email: Qu Jing (jingqu_vlc@163.com)
CSTR:32183.14.CJL230589