Title
Mean Packet Throughput Analysis of Downlink Cellular Networks with Spatio-Temporal Traffic.
Abstract
In this paper, we develop a framework using tools from stochastic geometry and queuing theory to evaluate the flow-level performance of downlink cellular networks with spatio-temporal traffic. Under this framework, we first obtain the mean service rate and the non-empty probability of a scheduled user queue by solving a fixed-point equation, which captures the inherent correlation between the interference and the queue status. By leveraging these results, we then derive closed-form expressions for the mean packet throughput and its bounds, defined as the mean number of packets that can be delivered during a given time duration. Simulation results validate the accuracy of the presented analysis, which can provide useful insight on the design of cellular networks while incorporating the spatial and temporal fluctuations of traffic.
Year
Venue
Field
2017
IEEE Global Communications Conference
Stochastic geometry,Computer science,Queue,Network packet,Stochastic process,Real-time computing,Queueing theory,Cellular network,Throughput,Telecommunications link
DocType
ISSN
Citations 
Conference
2334-0983
0
PageRank 
References 
Authors
0.34
0
6
Name
Order
Citations
PageRank
Lei Liu1676.39
Yi Zhong220622.15
howard hua yang321632.06
Min Sheng4907111.63
Tony Q. S. Quek53621276.75
Jiandong Li6117.91