• Semiconductor Optoelectronics
  • Vol. 44, Issue 2, 294 (2023)
CHEN Libo1,*, LI Ye1,2, and WEI Junyi1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    DOI: 10.16818/j.issn1001-5868.2023020901 Cite this Article
    CHEN Libo, LI Ye, WEI Junyi. OFDM-based Optimization Algorithm for Joint Sub-channel and Power Resource Allocation for Multi-color Visible Light Communication[J]. Semiconductor Optoelectronics, 2023, 44(2): 294 Copy Citation Text show less
    References

    [1] Habibi S, Omidi M, Sadat Tabataba F, et al. An overview: Orthogonal frequency division multiplexing techniques for visible light communication systems[C]// 2022 4th West Asian Symposium on Optical and Millimeter-wave Wireless Communications (WASOWC), 2022: 1-6.

    [2] Krongold B S, Ramchandran K, Jones D L. Computationally efficient optimal power allocation algorithms for multicarrier communication systems[J]. IEEE Trans. Commun., 2000, 48(1): 23-27.

    [3] Na Z, Lv J, Jiang F, et al. Joint subcarrier and sub-symbol allocation-based simultaneous wireless information and power transfer for multiuser GFDM in IoT[J]. IEEE Internet Things J., 2019, 6(4): 5999-6006.

    [4] Fu Y, Hong Y, Chen L K, et al. Enhanced power allocation for sum rate maximization in OFDM-NOMA VLC systems[J]. IEEE Photon. Technol. Lett., 2018, 30(13): 1218-1221.

    [5] Chahar D, Jani M, Garg P. Performance evaluation of Fibonacci polynomial based power allocation algorithm for NOMA in VLC system[C]// 2021 7th Inter. Conf. on Signal Processing and Communication (ICSC), 2021: 106-110.

    [6] Bai B, Deng J, Jin X, et al. Hypergraph based resource allocation algorithms for VLC network with heterogeneous LEDs and varied users[J]. IEEE Photon. J., 2021, 13(4): 1-10.

    [7] Zhang R, Cui Y, Claussen H, et al. Anticipatory association for indoor visible light communications: Light, follow me![J]. IEEE Trans. Wireless Commun., 2018, 17(4): 2499-2510.

    [8] Guo Y, Xiong K, Lu Y, et al. Achievable information rate in hybrid VLC-RF networks with lighting energy harvesting[J]. IEEE Trans. on Communications, 2021, 69(10): 6852-6864.

    [9] Hu C, Wang G, Song S, et al. Experimental demonstration of a novel OFDM-NOMA bit and power loading algorithm for hybrid unicast and broadcast transmission in cooperative VLC systems[C]// 2022 European Conf. on Optical Communication (ECOC), 2022: 1-4.

    [10] Yapici Y, Guvenc I. Non-orthogonal multiple access for mobile VLC networks with random receiver orientation[C]// 2019 IEEE Global Communications Conf. (GLOBECOM), 2019: 1-6.

    [11] Huang X, Yang F, Pan C, et al. Advanced ADO-OFDM with adaptive subcarrier assignment and optimized power allocation[J]. IEEE Wireless Commun. Lett., 2019, 8(4): 1167-1170.

    [12] Deng X, Fan W X, Ma S, et al. Two-dimensional power allocation for optical MIMO-OFDM systems over low-pass channels[J]. IEEE Trans. on Vehicular Technol., 2022, 71(7): 7244-7257.

    [13] Yamashita K, Mano T, Nagasato T, et al. Adaptive resource assignment for multi-user VLC based on pre-distorted ADO-OFDM[C]// 2022 IEEE Inter. Conf. on Consumer Electronics-Asia (ICCE-Asia), 2022: 1-4.

    [14] Chi N. Visible light communication pre-equalization technology[C]// LED-based Visible Light Communications, 2018: 111-132.

    [15] Guzman B G, Serrano A L, Jimenez V P G. Cooperative optical wireless transmission for improving performance in indoor scenarios for visible light communications[J]. IEEE Trans. Consum. Electron., 2015, 61(4): 393-401.

    CHEN Libo, LI Ye, WEI Junyi. OFDM-based Optimization Algorithm for Joint Sub-channel and Power Resource Allocation for Multi-color Visible Light Communication[J]. Semiconductor Optoelectronics, 2023, 44(2): 294
    Download Citation