TY - JOUR
T1 - On the Interplay between Communication and Computation in Green C-RAN with Limited Fronthaul and Computation Capacity
AU - Guo, Kun
AU - Sheng, Min
AU - Tang, Jianhua
AU - Quek, Tony Q.S.
AU - Qiu, Zhiliang
N1 - Publisher Copyright:
© 1972-2012 IEEE.
PY - 2018/7
Y1 - 2018/7
N2 - Supporting cooperative radio among remote radio heads (RRHs) and elastic cloud service in the baseband unit (BBU) pool, cloud radio access network (C-RAN) is perceived as a promising solution for the next mobile network. In C-RAN, cooperative radio can enhance power saving at RRHs, along with impact on computation effort and power saving in the BBU pool. In turn, power saving at RRHs, benefited from cooperative radio is restricted by the constrained computation capacity provisioned by processors in the BBU pool. Besides, limited fronthauls, which support baseband signal transfer between the BBU pool and RRHs, affect the cooperative radio design and power consumption at RRH as well. By jointly optimizing transmit beamforming among RRHs and processor sleeping in the BBU pool, we exploit such interplay between communication and computation for system power minimization in C-RAN with limited fronthaul and computation capacity. Specifically, we formulate this problem as a mixed-integer non-linear programming problem (MINLP), and then leverage the special structure of the MINLP to make a near optimal decision on the set of active processors and transmit beamforming vectors with high efficiency. Finally, extensive numerical results demonstrate that our proposed algorithms can enforce processor sleeping and reduce system power consumption significantly.
AB - Supporting cooperative radio among remote radio heads (RRHs) and elastic cloud service in the baseband unit (BBU) pool, cloud radio access network (C-RAN) is perceived as a promising solution for the next mobile network. In C-RAN, cooperative radio can enhance power saving at RRHs, along with impact on computation effort and power saving in the BBU pool. In turn, power saving at RRHs, benefited from cooperative radio is restricted by the constrained computation capacity provisioned by processors in the BBU pool. Besides, limited fronthauls, which support baseband signal transfer between the BBU pool and RRHs, affect the cooperative radio design and power consumption at RRH as well. By jointly optimizing transmit beamforming among RRHs and processor sleeping in the BBU pool, we exploit such interplay between communication and computation for system power minimization in C-RAN with limited fronthaul and computation capacity. Specifically, we formulate this problem as a mixed-integer non-linear programming problem (MINLP), and then leverage the special structure of the MINLP to make a near optimal decision on the set of active processors and transmit beamforming vectors with high efficiency. Finally, extensive numerical results demonstrate that our proposed algorithms can enforce processor sleeping and reduce system power consumption significantly.
KW - Cloud radio access network (C-RAN)
KW - cooperative radio
KW - limited computation capacity
KW - limited fronthaul capacity
KW - processor sleeping
KW - system power saving
UR - https://www.scopus.com/pages/publications/85042875203
U2 - 10.1109/TCOMM.2018.2811479
DO - 10.1109/TCOMM.2018.2811479
M3 - 文章
AN - SCOPUS:85042875203
SN - 0090-6778
VL - 66
SP - 3201
EP - 3216
JO - IEEE Transactions on Communications
JF - IEEE Transactions on Communications
IS - 7
ER -