DocumentCode :
247349
Title :
Energy-delay tradeoffs of virtual base stations with a computational-resource-aware energy consumption model
Author :
Tao Zhao ; Jian Wu ; Sheng Zhou ; Zhisheng Niu
Author_Institution :
Dept. of Electron. Eng., Tsinghua Univ., Beijing, China
fYear :
2014
fDate :
19-21 Nov. 2014
Firstpage :
26
Lastpage :
30
Abstract :
The next generation (5G) cellular network faces the challenges of efficiency, flexibility, and sustainability to support data traffic in the mobile Internet era. To tackle these challenges, cloud-based cellular architectures have been proposed where virtual base stations (VBSs) play a key role. VBSs bring further energy savings but also demands a new energy consumption model as well as the optimization of computational resources. This paper studies the energy-delay tradeoffs of VBSs with delay tolerant traffic. We propose a computational-resource-aware energy consumption model to capture the total energy consumption of a VBS and reflect the dynamic allocation of computational resources including the number of CPU cores and the CPU speed. Based on the model, we analyze the energy-delay tradeoffs of a VBS considering BS sleeping and state switching cost to minimize the weighted sum of power consumption and average delay. We derive the explicit form of the optimal data transmission rate and find the condition under which the energy optimal rate exists and is unique. Opportunities to reduce the average delay and achieve energy savings simultaneously are observed. We further propose an efficient algorithm to jointly optimize the data rate and the number of CPU cores. Numerical results validate our theoretical analyses and under a typical simulation setting we find more than 60% energy savings can be achieved by VBSs compared with conventional base stations under the EARTH model, which demonstrates the great potential of VBSs in 5G cellular systems.
Keywords :
5G mobile communication; cloud computing; data communication; delay tolerant networks; mobile computing; next generation networks; telecommunication power management; telecommunication traffic; 5G cellular network; CPU cores; CPU speed; EARTH model; VBS; cloud-based cellular architectures; computational-resource-aware energy consumption model; data transmission rate; delay tolerant traffic; dynamic allocation; energy-delay tradeoffs; mobile Internet; next generation cellular network; virtual base stations; Analytical models; Computational modeling; Computer architecture; Delays; Earth; Energy consumption; Power demand; 5G; energy consumption model; energy-delay tradeoff; virtual base station;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communication Systems (ICCS), 2014 IEEE International Conference on
Conference_Location :
Macau
Type :
conf
DOI :
10.1109/ICCS.2014.7024759
Filename :
7024759
Link To Document :
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