DocumentCode
686075
Title
Evaluation of Joint Transmission CoMP in C-RAN based LTE-A HetNets with large coordination areas
Author
Davydov, Alexei ; Morozov, Gregory ; Bolotin, Ilya ; Papathanassiou, Apostolos
Author_Institution
Nizhny Novgorod State Univ., Nizhny Novgorod, Russia
fYear
2013
fDate
9-13 Dec. 2013
Firstpage
801
Lastpage
806
Abstract
Coordinated Multi-Point (CoMP) transmission is considered as one of the key technology enhancements for Rel-11 LTE-A systems. CoMP transmission is realized by exchanging coordination information between a set of transmission nodes, forming a so-called CoMP cluster. The size of the CoMP cluster is typically limited, which leads to cell-edge performance issues appearing at the CoMP cluster boundaries. However, in new radio access network (RAN) architectures such as Cloud RAN (C-RAN) the effect of cell-edge user performance degradation at the CoMP cluster boundaries can be minimized by considering larger CoMP coordination areas. In this paper, we investigate the Joint Transmission (JT) CoMP performance in a C-RAN implementation of LTE-A HetNet with large CoMP cluster sizes. Some approaches to minimize the CoMP processing requirements for this case are also discussed. As a baseline for comparison, the LTE-A time-domain enhanced Inter-Cell Interference Coordination (eICIC) scheme which has no coordination boundary issues is considered.
Keywords
Long Term Evolution; interference (signal); pattern clustering; radio access networks; C-RAN; CoMP cluster boundaries; CoMP coordination areas; CoMP transmission; JT CoMP performance; LTE-A HetNet; LTE-A time-domain; RAN architectures; Rel-11 LTE-A systems; cell-edge performance issues; cell-edge user performance degradation; cloud RAN; coordinated multipoint transmission; coordination information; eICIC scheme; enhanced intercell interference coordination scheme; joint transmission CoMP performance; radio access network architectures; transmission nodes; Array signal processing; Complexity theory; Conferences; Interference; Mobile communication; Optimal scheduling; Processor scheduling; C-RAN; Cloud RAN; CoMP; CoMP cluster boundary; Coordinated multi-point; JT; Joint transmission; LTE-A; cell edge; eICIC;
fLanguage
English
Publisher
ieee
Conference_Titel
Globecom Workshops (GC Wkshps), 2013 IEEE
Conference_Location
Atlanta, GA
Type
conf
DOI
10.1109/GLOCOMW.2013.6825087
Filename
6825087
Link To Document