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An Incentive Framework for Cellular Traffic Offloading 
ABSTRACT: 
Cellular networks (e.g., 3G) are currently facing severe traffic overload problems 
caused by excessive traffic demands. Offloading part of the cellular traffic through 
other forms of networks, such as Delay Tolerant Networks (DTNs) and WiFi 
hotspots, is a promising solution. However, since these networks can only provide 
intermittent connectivity to mobile users, utilizing them for cellular traffic 
offloading may result in a nonnegligib le delay. As the delay increases, the users’ 
satisfaction decreases. In this paper, we investigate the tradeoff between the 
amount of traffic being offloaded and the users’ satisfaction. We provide a novel 
incentive framework to motivate users to leverage their delay tolerance for cellular 
traffic offloading. To minimize the incentive cost given an offloading target, users 
with high delay tolerance and large offloading potential should be prioritized for 
traffic offloading. To effectively capture the dynamic characteristics of users’ 
delay tolerance, our incentive framework is based on reverse auction to let users 
proactively express their delay tolerance by submitting bids. We further illustrate 
how to predict the offloading potential of the users by using stochastic analysis for 
both DTN and WiFi cases. Extensive trace-driven simulations verify the efficiency 
of our incentive framework for cellular traffic offloading.
EXISTING SYSTEM: 
Existing offloading studies have not considered the satisfaction loss of the users 
when a longer delay is caused by traffic offloading. 
DISADVANTAGES OF EXISTING SYSTEM: 
 Not considered the satisfaction loss of the users when a longer delay is 
caused by traffic offloading. 
 Only provide intermittent and opportunistic network connectivity to the 
users. 
 Non-negligible data downloading delay. 
PROPOSED SYSTEM: 
In this paper, we focus on investigating the trade-off between the amount of traffic 
being offloaded and the users’ satisfaction, and propose a novel incentive 
framework to motivate users to leverage their delay tolerance for traffic offloading. 
Users are provided with incentives; i.e., receiving discount for their service charge 
if they are willing to wait longer for data downloading. During the delay, part of 
the cellular data traffic may be opportunistically off-loaded to other networks
mentioned above, and the user is assured to receive the remaining part of the data 
via cellular network when the delay period ends. 
ADVANTAGES OF PROPOSED SYSTEM: 
 To motivate the mobile users with high delay tolerance and large offloading 
potential to offload their traffic to other intermittently connected networks 
such as DTN or WiFihotspots. 
 To capture the dynamic characteristics of users’ delay tolerance. 
 To predict users’ offloading potential based on their mobility patterns and 
the geographical distribution of WiFi hotspots in the WiFi case. 
SYSTEM ARCHITECTURE:
SYSTEM REQUIREMENTS: 
HARDWARE REQUIREMENTS: 
 System : Pentium IV 2.4 GHz. 
 Hard Disk : 40 GB. 
 Floppy Drive : 1.44 Mb. 
 Monitor : 15 VGA Colour. 
 Mouse : Logitech. 
 Ram : 512 Mb. 
SOFTWARE REQUIREMENTS: 
 Operating system : Windows XP/7. 
 Coding Language : JAVA/J2EE 
 IDE : Netbeans 7.4 
 Database : MYSQL
REFERENCE: 
Xuejun Zhuo, Wei Gao, Guohong Cao, and Sha Hua, “An Incentive Framework 
for Cellular Traffic Offloading”, IEEE TRANSACTIONS ON MOBILE 
COMPUTING, VOL. 13, NO. 3, MARCH 2014

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JPN1410 Secure and Efficient Data Transmission for Cluster-Based Wireless Se...
JPN1410  Secure and Efficient Data Transmission for Cluster-Based Wireless Se...JPN1410  Secure and Efficient Data Transmission for Cluster-Based Wireless Se...
JPN1410 Secure and Efficient Data Transmission for Cluster-Based Wireless Se...
 
JPN1409 Neighbor Table Based Shortcut Tree Routing in ZigBee Wireless Networks
JPN1409  Neighbor Table Based Shortcut Tree Routing in ZigBee Wireless NetworksJPN1409  Neighbor Table Based Shortcut Tree Routing in ZigBee Wireless Networks
JPN1409 Neighbor Table Based Shortcut Tree Routing in ZigBee Wireless Networks
 
JPN1408 Hop-by-Hop Message Authentication and Source Privacy in Wireless Sen...
JPN1408  Hop-by-Hop Message Authentication and Source Privacy in Wireless Sen...JPN1408  Hop-by-Hop Message Authentication and Source Privacy in Wireless Sen...
JPN1408 Hop-by-Hop Message Authentication and Source Privacy in Wireless Sen...
 
JPN1406 Snapshot and Continuous Data Collection in Probabilistic Wireless S...
JPN1406   Snapshot and Continuous Data Collection in Probabilistic Wireless S...JPN1406   Snapshot and Continuous Data Collection in Probabilistic Wireless S...
JPN1406 Snapshot and Continuous Data Collection in Probabilistic Wireless S...
 
JPN1405 RBTP: Low-Power Mobile Discovery Protocol through Recursive Binary T...
JPN1405  RBTP: Low-Power Mobile Discovery Protocol through Recursive Binary T...JPN1405  RBTP: Low-Power Mobile Discovery Protocol through Recursive Binary T...
JPN1405 RBTP: Low-Power Mobile Discovery Protocol through Recursive Binary T...
 
JPN1404 Optimal Multicast Capacity and Delay Tradeoffs in MANETs
JPN1404 Optimal Multicast Capacity and Delay Tradeoffs in MANETsJPN1404 Optimal Multicast Capacity and Delay Tradeoffs in MANETs
JPN1404 Optimal Multicast Capacity and Delay Tradeoffs in MANETs
 
JPM1410 Images as Occlusions of Textures: A Framework for Segmentation
JPM1410   Images as Occlusions of Textures: A Framework for SegmentationJPM1410   Images as Occlusions of Textures: A Framework for Segmentation
JPM1410 Images as Occlusions of Textures: A Framework for Segmentation
 
JPM1407 Exposing Digital Image Forgeries by Illumination Color Classification
JPM1407   Exposing Digital Image Forgeries by Illumination Color ClassificationJPM1407   Exposing Digital Image Forgeries by Illumination Color Classification
JPM1407 Exposing Digital Image Forgeries by Illumination Color Classification
 

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JPJ1447 An Incentive Framework for Cellular Traffic Offloading

  • 1. An Incentive Framework for Cellular Traffic Offloading ABSTRACT: Cellular networks (e.g., 3G) are currently facing severe traffic overload problems caused by excessive traffic demands. Offloading part of the cellular traffic through other forms of networks, such as Delay Tolerant Networks (DTNs) and WiFi hotspots, is a promising solution. However, since these networks can only provide intermittent connectivity to mobile users, utilizing them for cellular traffic offloading may result in a nonnegligib le delay. As the delay increases, the users’ satisfaction decreases. In this paper, we investigate the tradeoff between the amount of traffic being offloaded and the users’ satisfaction. We provide a novel incentive framework to motivate users to leverage their delay tolerance for cellular traffic offloading. To minimize the incentive cost given an offloading target, users with high delay tolerance and large offloading potential should be prioritized for traffic offloading. To effectively capture the dynamic characteristics of users’ delay tolerance, our incentive framework is based on reverse auction to let users proactively express their delay tolerance by submitting bids. We further illustrate how to predict the offloading potential of the users by using stochastic analysis for both DTN and WiFi cases. Extensive trace-driven simulations verify the efficiency of our incentive framework for cellular traffic offloading.
  • 2. EXISTING SYSTEM: Existing offloading studies have not considered the satisfaction loss of the users when a longer delay is caused by traffic offloading. DISADVANTAGES OF EXISTING SYSTEM:  Not considered the satisfaction loss of the users when a longer delay is caused by traffic offloading.  Only provide intermittent and opportunistic network connectivity to the users.  Non-negligible data downloading delay. PROPOSED SYSTEM: In this paper, we focus on investigating the trade-off between the amount of traffic being offloaded and the users’ satisfaction, and propose a novel incentive framework to motivate users to leverage their delay tolerance for traffic offloading. Users are provided with incentives; i.e., receiving discount for their service charge if they are willing to wait longer for data downloading. During the delay, part of the cellular data traffic may be opportunistically off-loaded to other networks
  • 3. mentioned above, and the user is assured to receive the remaining part of the data via cellular network when the delay period ends. ADVANTAGES OF PROPOSED SYSTEM:  To motivate the mobile users with high delay tolerance and large offloading potential to offload their traffic to other intermittently connected networks such as DTN or WiFihotspots.  To capture the dynamic characteristics of users’ delay tolerance.  To predict users’ offloading potential based on their mobility patterns and the geographical distribution of WiFi hotspots in the WiFi case. SYSTEM ARCHITECTURE:
  • 4. SYSTEM REQUIREMENTS: HARDWARE REQUIREMENTS:  System : Pentium IV 2.4 GHz.  Hard Disk : 40 GB.  Floppy Drive : 1.44 Mb.  Monitor : 15 VGA Colour.  Mouse : Logitech.  Ram : 512 Mb. SOFTWARE REQUIREMENTS:  Operating system : Windows XP/7.  Coding Language : JAVA/J2EE  IDE : Netbeans 7.4  Database : MYSQL
  • 5. REFERENCE: Xuejun Zhuo, Wei Gao, Guohong Cao, and Sha Hua, “An Incentive Framework for Cellular Traffic Offloading”, IEEE TRANSACTIONS ON MOBILE COMPUTING, VOL. 13, NO. 3, MARCH 2014