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Cache-Enabled Millimeter Wave Cellular Networks With Clusters

delete2020-12-01
delete9
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OA
AI
Y
Yu Ye
S
Shaocheng Huang
M
Ming Xiao *
Z
Zheng Ma
M
Mikael Skoglund
DOI:10.1109/TCOMM.2020.3022896delete
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摘要

摘要

En 中文
Wireless content caching in cellular networks is an efficient way to reduce the service delay and alleviate backhaul pressure. For the benefits of sharing spectral and storage resources, clustering in cached networks has recently attracted significant research interests. Meanwhile, since the multimedia content (e.g., video) of caching networks may require a huge transmission rates, millimeter wave (mmWave) communication is considered to be an efficient transmission scheme for cache-enabled networks. We investigate the ergodic rate and average service delay for typical user terminal (UT) in the clustered cache-enabled small cell networks (SCN) and ultra dense networks (UDN) with mmWave channels. In SCN, each cluster consists of cache-enabled UTs, and in the UDN a cluster is formed by cache-enabled UTs and small base stations (SBSs) with non-uniform caching capacity. The clusters are assumed to be discs and content sharing is only possible within clusters through mmWave device-to-device (D2D) tier and SBS tier communications. With stochastic geometry methods, the distributions of content sharing distance and signal-to-interference-noise-ratio (SINR) of typical UT in a cluster are derived for both SCN and UDN scenarios. To minimize the average service delay in high SINR region, we provide an algorithm to jointly optimize caching scheme for SBSs and UTs. By simulations, we validate our theoretical analysis and the performance of proposed caching scheme. The numerical results also show that there exists best radius in the design of cluster for UDNs.
Keyword:
Device-to-device communication
Delays
Interference
Signal to noise ratio
Wireless communication
Resource management
Numerical models
Caching
D2D communication
heterogeneous networks
ultra dense networks
mmWave
clustering
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期刊

IEEE Transactions on Communications 封面图
IEEE Transactions on Communications
IF:
8.3
论文数:
1.2W
被引数:
3.6W

机构

R
Royal Institute of Technology
学者数:
1.8W
论文数: 1.8W
被引数: 25
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