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Award Abstract # 1553395
CAREER: Interconnected Mobile Computing in Wireless Networks

NSF Org: CNS
Division Of Computer and Network Systems
Recipient: UNIVERSITY OF TENNESSEE
Initial Amendment Date: March 8, 2016
Latest Amendment Date: May 30, 2017
Award Number: 1553395
Award Instrument: Continuing Grant
Program Manager: Thyagarajan Nandagopal
CNS
 Division Of Computer and Network Systems
CSE
 Directorate for Computer and Information Science and Engineering
Start Date: July 1, 2016
End Date: January 31, 2018 (Estimated)
Total Intended Award Amount: $480,000.00
Total Awarded Amount to Date: $185,834.00
Funds Obligated to Date: FY 2016 = $10,187.00
FY 2017 = $0.00
History of Investigator:
  • Wei Gao (Principal Investigator)
    weigao@pitt.edu
Recipient Sponsored Research Office: University of Tennessee Knoxville
201 ANDY HOLT TOWER
KNOXVILLE
TN  US  37996-0001
(865)974-3466
Sponsor Congressional District: 02
Primary Place of Performance: University of Tennessee Knoxville
Knoxville
TN  US  37996-0003
Primary Place of Performance
Congressional District:
02
Unique Entity Identifier (UEI): FN2YCS2YAUW3
Parent UEI: LXG4F9K8YZK5
NSF Program(s): Networking Technology and Syst
Primary Program Source: 01001617DB NSF RESEARCH & RELATED ACTIVIT
01001718DB NSF RESEARCH & RELATED ACTIVIT

01001819DB NSF RESEARCH & RELATED ACTIVIT

01001920DB NSF RESEARCH & RELATED ACTIVIT

01002021DB NSF RESEARCH & RELATED ACTIVIT
Program Reference Code(s): 1045, 9150
Program Element Code(s): 736300
Award Agency Code: 4900
Fund Agency Code: 4900
Assistance Listing Number(s): 47.070

ABSTRACT

Mobile computing has been an indispensable part of modern life. However, diverse manufacturing limits make current mobile devices far from ideal for being used anytime, anywhere. Traditional solutions design individual mobile devices for different application scenarios by exploring tradeoffs among the various design perspectives, but cannot scale to the increasing complexity and performance requirements of future mobile applications. Instead, the vision of this project is Interconnected Mobile Computing (IMC), which fully interconnects multiple mobile devices owned by the same user via wireless networks and allows these devices to complement each other via cooperative resource sharing. IMC aims to fundamentally remove the physical boundary between mobile devices and hence augment the mobile computing capability provided to the user. The success of this research could fully unleash the potential of heterogeneous mobile devices and allow insertion of highly pervasive and cognitive mobile applications into every aspect of human life. The results from this research are likely to foster new research directions on mobile computing and benefit a broader scope of cyber-physical systems such as industry control, remote sensing and connected healthcare. The project will actively apply the research results into development of undergraduate curriculum, engage under-represented students into research, and exploit the research outcomes for K-12 educational and outreach programs.

This project intends to develop key enabling technologies in wireless networks and mobile systems that ensure the efficiency, adaptability and generality of IMC. More specifically, this project consists of three closely intertwined research thrusts: (i) reducing the wireless transmission latency of resource sharing between mobile devices by designing an extra wireless communication channel that dedicates to IMC; ii) ensuring adaptability of resource sharing to various network and system dynamics by designing distributed network algorithms for resource sharing decisions; and iii) systematically supporting generic resource access between remote mobile systems via development of new mobile OS interfaces. The proposed technical designs will be implemented and evaluated over a medium-scale mobile testbed of software-defined radios and off-the-shelf mobile devices, and will also be validated by large-scale trace-based emulation.

PUBLICATIONS PRODUCED AS A RESULT OF THIS RESEARCH

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Haoyang Lu and Wei Gao "Scheduling Dynamic Wireless Networks with Limited Operations" Proceedings of the IEEE International Conference on Network Protocols (ICNP) , 2016
Haoyang Lu and Wei Gao "Supporting Real-Time Wireless Traffic through A High-Throughput Side Channel" Proceedings of the ACM International Symposium on Mobile Ad Hoc Networking and Computing (MobiHoc) , 2016

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