1Pfeiffer T. Next generation mobile fronthaul architec- tures [C]//OFC 2015. Los Angeles, US: OSA, 2015 : M2J. 7.
2Pizzinat A, Chanclou P, Saliou F, et al. Things you should know about fronthaul [J]. Journal of Light- wave Technology, 2015, 33(5) : 1077- 1083.
3Saliou F , Simon G , Chanclou P , et al. Self - Seeded RSOAs WDM PON Field Trial for Business and Mo- bile Fronthaul Applications [C]//OFC 2015. Los An- geles, US: OSA, 2015:M2A. 2.
4Ma Y, Xu Z, Lin H, et al. Demonstration of CPRI o-ver Self-seeded WDM-PON in Commercial LTE Envi- ronment. [C]//OFC 2015. Los Angeles, US: OSA, 2015 : M2J. 6.
5Shibata N, Tashiro T, Kuwano S, et al. Mobile front- haul employing Ethernet-based TDM-PON system for small cells [C]//OFC 2015. Los Angeles, US:OSA, 2015: M2J. 1.
6Uzawa H, Arikawa Y, Kawai K, et al. Data trans- mission scheme for enhancing effective downlink band- width in 5G mobile fronthaul with TDM-PON [C]// ECOC 2015. Valencia, Spain :IEEE, 2015: 1-3.
7Cho S H, Park H, Chung H S, et al. Cost-effective next generation mobile fronthaul architecture with multi-IF carrier transmission scheme [C]//OFC 2014. San Francisco, USzOSA, 2014 1-3.
8Han C, Cho S H, Chung H S, et al. Linearity im- provement of directly-modulated multi-IF-over-fibre LTE-A mobile fronthaul link using shunt diode predis- torter [C]//ECOC 2015. Valencia, Spain: IEEE, 2015: 1-3.
9Miyamoto K, Kuwano S, Terada J, et al. Split-PHY Processing Architecture to Realize Base Station Coordi- nation and Transmission Bandwidth Reduction in Mo- bile Fronthaul [C]//OFC 2015. Los Angeles, US: OSA, 2015:M2J. 4.