Optical Communication Technology, Volume. 49, Issue 1, 107(2025)
Research progress on power over fiber technology in heterogeneous passive optical access networks
[1] [1] BUDELMANN C. Opto-electronic sensor network powered over fiber for harsh industrial applications[J]. IEEE Transactions on Industrial Electronics, 2018, 65(2): 1170-1177.
[2] [2] NOVAK D, WATERHOUSE R B, NIRMALATHAS A, et al. Radio-over-fiber technologies for emerging wireless systems[J]. IEEE Journal of Quantum Electronics, 2015, 52(1): 1-11.
[3] [3] YANG L, YI X, HUANG Z, et al. Hybrid PWoF-RoF-PON for next-generation access network[C]//Optoelectronic Devices and Integration X, October 10-12, 2021, Nantong, China. Bellingham: SPIE, 2021: 65-68.
[4] [4] MONTERO D S, LOPEZ-CARDONA J D AL-ZUBAIDI F M A, et al. The role of power-over-fiber in C-RAN fronthauling towards 5G[C]//22nd International Conference on Transparent Optical Networks(ICTON), July 19-23, 2020, Bari, Italy. New York: IEEE 2020: 1-4.
[5] [5] UMEZAWA T, KANNO A, DAT P T, et al. Multi-core based 94-GHz radio and power over fiber transmission using 100-GHz analog photoreceiver[C]//ECOC 2016 and 42nd European Conference on Optical Communication, September 18-22, 2016, Dusseldorf, Germany. Offenbach: VDE, 2016:1-3.
[6] [6] WAKE D, GOMES N J, LETHIEN C, et al. An optically powered radio over fiber remote unit using wavelength division multiplexing[C]//International Topical Meeting on Microwave Photonics jointly held with the 2008 Asia-Pacific Microwave Photonics Conference, September 30-October 3, 2008, Gold Coast, Australia. New York: IEEE, 2008: 197-200.
[7] [7] WAKE D, NKANSAH A, GOMES N. Optical powering of remote units for radio over fiber links[C]//International Topical Meeting on Microwave Photonics, October 2-5, 2007, Victoria, Canada. New York: IEEE, 2007: 29-32.
[8] [8] LETHIEN C, WAKE D, VERBEKE B, et al. Energy-autonomous picocell remote antenna unit for radio-over-fiber system using the multiservices concept[J]. IEEE Photonics Technology Letters, 2012, 24(8): 649-651.
[9] [9] AL-ZUBAIDI F M A, MONTERO D S, VAZQUEZ C. SI-POF supporting power-over-fiber in multi-Gbit/s transmission for in-home networks[J]. Journal of Lightwave Technology, 2020, 39(1): 112-121.
[10] [10] SIM D H, TAKUSHIMA Y, CHUNG Y C. High-speed multimode fiber transmission by using mode-field matched center-launching technique[J]. Journal of Lightwave Technology, 2009, 27(8): 1018-1026.
[11] [11] HAAS Z, SANTORO M A. A mode-filtering scheme for improvement of the bandwidth-distance product in multimode fiber systems[J]. Journal of lightwave technology, 1993, 11(7): 1125-1131.
[12] [12] RADDATZ L, WHITE I H, CUNNINGHAM D G, et al. An experimental and theoretical study of the offset launch technique for the enhancement of the bandwidth of multimode fiber links[J]. Journal of Lightwave Technology, 1998, 16(3): 324-331.
[13] [13] KUBOKI H, MATSUURA M. Optically powered radio-over-fiber system based on center-and offset-launching techniques using a conventional multimode fiber[J]. Optics Letters, 2018, 43(5): 1067-1070.
[14] [14] UMEZAWA T, DAT P T, KASHIMA K, et al. 100 GHz radio and power over fiber transmission through multicore fiber using optical-to-radio converter[J]. Journal of Lightwave Technology, 2018, 36(2): 617-623.
[15] [15] UMEZAWA T, DAT P T, HASE E, et al. 100 GHz optical-to-radio converter module and its application in radio and power over fiber transmission through multi-core fiber[C]//Optical Fiber Communication Conference. Optica Publishing Group, March 19-23, 2017, Los Angeles, USA. New York: IEEE, 2017: W4B.2-1-W4B.2-3.
[16] [16] VAZQUEZ C, LOPEZ-CARDONA J D, LALLANA P C, et al. Multicore fiber scenarios supporting power over fiber in radio over fiber systems[J]. IEEE Access, 2019, 7: 158409-158418.
[17] [17] VAZQUEZ C, MONTERO D S, AL-ZUBAIDI F M A, et al. Experiments on shared-and dedicated-power over fiber scenarios in multi-core fibers[C]//28th European Conference on Networks and Communications (EuCNC), July 18-21, 2019, Valencia, Spain. New York: IEEE, 2019: 412-415.
[18] [18] LOPEZ-CARDONA J D, ROMMEL S, GRIVAS E, et al. Powerover-fiber in a 10 km long multicore fiber link within a 5G fronthaul scenario[J]. Optics Letters, 2021, 46(21): 5348-5351.
[19] [19] KOPLOW J P, MOORE S W, KLINER D A V. A new method for side pumping of double-clad fiber sources[J]. IEEE Journal of Quantum Electronics, 2003, 39(4): 529-540.
[20] [20] SATO J, MATSUURA M. Radio-over-fiber transmission with optical power supply using a double-clad fiber[C]//OptoElectronics and Communications Conference and Photonics in Switching, June 30-July 4, 2013, Kyoto, Japan. New York: Optica Publishing Group, 2013: TuPO_8-1-TuPO_8-8.
[21] [21] MATSUURA M, SATO J. Bidirectional radio-over-fiber systems using double-clad fibers for optically powered remote antenna units[J]. IEEE Photonics Journal, 2015, 7(1): 1-9.
[22] [22] MATSUURA M, NOMOTO H, MAMIYA H, et al. Over 40 W electric power and optical data transmission using an optical fiber[J]. IEEE Transactions on Power Electronics, 2021, 36(4): 4532-4539.
[23] [23] MATSUURA M, FURUGORI H, SATO J. 60 W power-over-fiber feed using double-clad fibers for radio-over-fiber systems with optically powered remote antenna units[J]. Optics Letters, 2015, 40(23): 5598-5601.
[24] [24] MATSUURA M, TAJIMA N, NOMOTO H, et al. 150 W powerover-fiber using double-clad fibers[J]. Journal of Lightwave Technology, 2019, 38(2): 401-408.
[25] [25] MATSUURA M. Power-over-fiber using double-clad fibers[J]. Journal of Lightwave Technology, 2022, 40(10): 3187-3196.
[26] [26] WANG S, YANG H, QIN Y, et al. Power-over-fiber in support of 5G NR fronthaul: space division multiplexing versus wavelength division multiplexing[J]. Journal of Lightwave Technology, 2022, 40(13): 4169-4177.
[27] [27] YANG H, PENG D, QIN Y, et al. 10-W power light co-transmission with optically carried 5G NR signal over standard single-mode fiber[J]. Optics Letters, 2021, 46(20): 5116-5119.
[28] [28] MATSUURA M, LKUKAWA A, KUBOKI H, et al. Investigation of crosstalk between data signals and feed light in power-over-fiber[J]. Photonics, 2022, 9(6): 369-369.
[29] [29] SAKANO T, FADLULLAH Z M, NGO T, et al. Disaster-resilient networking: a new vision based on movable and deployable resource units[J]. IEEE Network, 2013, 27(4): 40-46.
[31] [31] ALTUNA R, LPEZ-CARDONA J D, VZQUEZ C. Monitoring of power over fiber signals using intercore crosstalk in ARoF 5G NR transmission[J]. Journal of Lightwave Technology, 2023, 41(23): 7155-7161.
Get Citation
Copy Citation Text
YANG Linjie, SHAO Yufeng, WANG Anrong, ZHU Yaodong, LIU Hainan, LI Wenchen, HU Wenguang, CHEN Chao. Research progress on power over fiber technology in heterogeneous passive optical access networks[J]. Optical Communication Technology, 2025, 49(1): 107
Category:
Received: Mar. 4, 2024
Accepted: Jun. 17, 2025
Published Online: Jun. 17, 2025
The Author Email: