A Cooperative Coded Caching Strategy for D2D-Enabled Cellular Networks

Author(s):  
Yunpeng Ma ◽  
Weijing Qi ◽  
Peng Lin ◽  
Mengru Wu ◽  
Lei Guo
2018 ◽  
Vol 17 (2) ◽  
pp. 969-981 ◽  
Author(s):  
Arpan Chattopadhyay ◽  
Bartlomiej Blaszczyszyn ◽  
H. Paul Keeler

2017 ◽  
Vol 21 (9) ◽  
pp. 2029-2032 ◽  
Author(s):  
Yifan Zhou ◽  
Zhifeng Zhao ◽  
Rongpeng Li ◽  
Honggang Zhang ◽  
Yves Louet

Author(s):  
Yash Doshi ◽  
B. N. Bharath ◽  
Navneet Garg ◽  
Vimal Bhatia ◽  
Tharmalingam Ratnarajah

2021 ◽  
Author(s):  
Xinyi Sun ◽  
Shushi Gu ◽  
Qinyu Zhang ◽  
Ning Zhang ◽  
Wei Xiang

Author(s):  
Bartłomiej Błaszczyszyn ◽  
Martin Haenggi ◽  
Paul Keeler ◽  
Sayandev Mukherjee

Author(s):  
Hoang Nhu Dong ◽  
Hoang Nam Nguyen ◽  
Hoang Trong Minh ◽  
Takahiko Saba

Femtocell networks have been proposed for indoor communications as the extension of cellular networks for enhancing coverage performance. Because femtocells have small coverage radius, typically from 15 to 30 meters, a femtocell user (FU) walking at low speed can still make several femtocell-to-femtocell handovers during its connection. When performing a femtocell-to-femtocell handover, femtocell selection used to select the target handover femtocell has to be able not only to reduce unnecessary handovers and but also to support FU’s quality of service (QoS). In the paper, we propose a femtocell selection scheme for femtocell-tofemtocell handover, named Mobility Prediction and Capacity Estimation based scheme (MPCE-based scheme), which has the advantages of the mobility prediction and femtocell’s available capacity estimation methods. Performance results obtained by computer simulation show that the proposed MPCE-based scheme can reduce unnecessary femtocell-tofemtocell handovers, maintain low data delay and improve the throughput of femtocell users. DOI: 10.32913/rd-ict.vol3.no14.536


Sign in / Sign up

Export Citation Format

Share Document