DocumentCode
1772865
Title
PhonePool: On energy-efficient mobile network collaboration with provider aggregation
Author
Joohyun Lee ; Kyunghan Lee ; Yeongjin Kim ; Song Chong
Author_Institution
Dept. of Electr. Eng., KAIST, Daejeon, South Korea
fYear
2014
fDate
June 30 2014-July 3 2014
Firstpage
564
Lastpage
572
Abstract
Energy consumption for cellular communication is increasingly gaining importance in smartphone battery lifetime as the bandwidth of wireless communication and the demand for mobile traffic increase. For energy-efficient cellular communication, we tackle two energy characteristics of cellular networks: (1) transmission energy highly varies upon channel condition, and (2) transmission of a packet accompanies unnecessary tail energy waste. Under the objective of transmitting packets when the best channel is provided as well as a number of packets are accumulated, we propose a new mobile collaboration framework “PhonePool” that aggregates smart devices across multiple cellular providers. Compared to the standalone operation, even without a buffering delay, PhonePool allows better channel and reduces more tail energy in a statistical point of view. To maximize the energy benefit while maintaining the fairness among the nodes in collaboration, we further develop a dynamic programming framework providing the optimal algorithm of PhonePool and its approximated heuristic. Trace-driven simulations on our experimental HSPA/EVDO/LTE network traces show that PhonePool of 5 devices achieves up to 42% of energy reduction.
Keywords
cellular radio; dynamic programming; energy conservation; energy consumption; HSPA-EVDO-LTE network traces; PhonePool; cellular networks; dynamic programming framework; energy characteristics; energy consumption; energy reduction; energy-efficient cellular communication; energy-efficient mobile network collaboration; mobile traffic; multiple cellular providers; provider aggregation; smart devices; smart phone battery lifetime; tail energy waste; trace-driven simulations; transmission energy; transmitting packets; wireless communication; Batteries; Bluetooth; Collaboration; IEEE 802.11 Standards; Minimization; Mobile communication; Sensors;
fLanguage
English
Publisher
ieee
Conference_Titel
Sensing, Communication, and Networking (SECON), 2014 Eleventh Annual IEEE International Conference on
Conference_Location
Singapore
Type
conf
DOI
10.1109/SAHCN.2014.6990396
Filename
6990396
Link To Document