Title :
Resource sharing in heterogeneous cloud radio access networks
Author :
Marotta, Marcelo Antonio ; Kaminski, Nicholas ; Gomez-Miguelez, Ismael ; Zambenedetti Granville, Lisandro ; Rochol, Juergen ; DaSilva, Luiz ; Both, Cristiano Bonato
Author_Institution :
Inst. of Inf. (INF), Fed. Univ. of Rio Grande do Sul (UFRGS), Rio Grande, Brazil
Abstract :
Heterogeneous cloud radio access networks incorporate the heterogeneous network and cloud radio access network concepts for next generation cellular networks. H-CRANs exploit the heterogeneity of macro and small cells from HetNets, enabling cellular networks to achieve higher spectral efficiency. Meanwhile, concepts from C-RANs involving baseband units and remote radio heads enable H-CRANs to insert a centralized point of processing for cellular networks, reducing capital and operational expenditures. In this article, we investigate resource sharing in H-CRANs at three levels: spectrum, infrastructure, and network. For each level, we discuss the benefits and challenges, highlighting key enabling technologies that make resource sharing feasible in H-CRANs, such as software defined radio, virtualization, network function virtualization, and software defined networking. Through these technologies, H-CRANs can be virtualized in an overlay network capable of achieving enhanced infrastructure and spectrum sharing.
Keywords :
cellular radio; cloud computing; radio access networks; radio spectrum management; telecommunication computing; virtualisation; H-CRAN; HetNets; heterogeneous cloud radio access network; network function virtualization; next generation cellular network; overlay network; resource sharing; software defined radio networking; spectrum sharing; Antennas; Base stations; Cloud computing; Interference; Radio access networks; Resource management; Time-frequency analysis; Virtualization;
Journal_Title :
Wireless Communications, IEEE
DOI :
10.1109/MWC.2015.7143329