Author/Authors :
Amani, Nahid Department of Communication Technologies - ICT Research Center Institute, Tehran, Iran , Parsaeefard, Saeedeh Department of Communication Technologies - ICT Research Center Institute, Tehran, Iran , Taheri, Hassan Department of Electrical Engineering - AmirKabir University of Technology, Tehran, Iran , Pedram, Hossein Department of Computer Engineering - AmirKabir University of Technology Tehran, Iran
Abstract :
This paper considers the power-efficient resource allocation problem in a cloud radio access network (CRAN).
The C-RAN architecture consists of a set of base-band units (BBUs) which are connected to a set of radio
remote heads (RRHs) equipped with massive multiple input multiple output (MIMO), via fronthaul links with limited
capacity. We formulate the power-efficient optimization problem in C-RANs as a joint resource allocation problem in
order to jointly allocate the RRH and transmit power to each user, and fronthaul link and BBU assign to active RRHs
while satisfying the minimum required rate of each user. To solve this non-convex optimization problem we suggest
iterative algorithm with two-step based on the complementary geometric programming (CGP) and the successive
convex approximation (SCA). The simulation results indicate that our proposed scheme can significantly reduce the
total transmission power by switching off the under-utilized RRHs.
Keywords :
5G , switch off RRHs , successive convex approximation , C-RAN , Complementary geometric programming