Radio resource coordination and scheduling scheme in ultra-dense cloud-based small cell networks

被引:0
作者
Zengxian Chen
Sai Zou
Yuliang Tang
Xiaojiang Du
Mohsen Guizani
机构
[1] Xiamen University,Department of Communication Engineering
[2] Temple University,Department of Computer and Information Sciences
[3] University of Idaho,Department of Electrical and Computer Engineering
来源
EURASIP Journal on Wireless Communications and Networking | / 2018卷
关键词
Ultra-dense network (UDN); The cloud radio access network (Cloud-RAN); Fog computing; Resource coordination; 5th generation (5G); Small cell;
D O I
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中图分类号
学科分类号
摘要
In a 5G ultra-dense network, dynamic network topology and traffic patterns lead to excessive system overhead and complex radio resource conflicts. The cloud radio access network and the fog computing have the advantages of high computation capabilities and low transmission delays. Therefore, by taking full advantage of these two characteristics, this study proposes a novel radio resource coordination and scheduling scheme in an ultra-dense cloud-based small cell network. Interference among small cells (or remote radio heads) can be avoided by implementing centralized cooperative processing in the base band unit pool in advance. Resource sharing in coordination and transfer depend on fog computing to relieve the overloaded cloud processing platform and reduce transmission delays, thereby maximizing resource utilization and minimizing system overhead when the network topology and number of users change dynamically. The simulation shows that the proposed scheme can increase the system throughput by 20% compared with the clustering-based algorithm; it can also increase system throughput by 33% compared with the graph coloring algorithm, decrease the signaling overhead by about 50%, and improve network’s quality of service.
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