[1] |
NTT DOCOMO, INC., “Revised WID on new radio access technology,” 3GPP RP-172109, 2017.
|
[2] |
Study on New Radio Access Technology: Radio Access Architecture and Interfaces, 3GPP TR38.801, 2016.
|
[3] |
I. Toufik, “Report of 3GPP RAN WG3 #95bis,” R3-171412, Spokane, USA, Apr. 2017.
|
[4] |
Study of CU-DU Low Layer Split for NR (Release 15), 3GPP TS 38.816, 2018.
|
[5] |
Study of Separation of NR Control Plane (CP) and User Plane (UP) for Split Option 2 (Release 15), 3GPP TS 38.806, 2018.
|
[6] |
NG-RAN, Architecture Description (Release 15), 3GPP TS 38.401, 2018.
|
[7] |
NG-RAN, F1 General Aspects and Principles (Release 15), 3GPP TS 38.470, 2018.
|
[8] |
NG-RAN, F1 Application Protocol (Release 15), 3GPP TS 38.473, 2018.
|
[9] |
H. J. Zhang, N. Liu, X. L. Chu, et al., “Network slicing based 5G and future mobile networks: mobility, resource management, and challenges,” IEEE Communications Magazine, vol. 55, no. 8, pp. 138-145, Aug. 2017. doi: 10.1109/MCOM.2017.1600940.
|
[10] |
H. J. Zhang, Y. Qiu, X. L. Chu, K. P. Long,V. C. M.Leung, “Fog radio access networks: mobility management, interference mitigation and resource optimization,” IEEE Wireless Communications, vol. 24, no. 6, pp. 120-127 Dec. 2017. doi: 10.1109/MWC.2017.1700007.
|
[11] |
NG-RAN, NR User Plane Protocol (Release 15), 3GPP TS38.425, 2018.
|
[12] |
ZTE Corporation, “R3-180131 further discussion on data retransmission indication,” 3GPP R3-180610, 2018.
|