Cooperative Caching for Efficient Data Access in
Disruption Tolerant Networks
ABSTRACT:
Disruption
tolerant networks (DTNs) are characterized by low node density, unpredictable
node mobility, and lack of global network information. Most of current research
efforts in DTNs focus on data forwarding, but only limited work has been done
on providing efficient data access to mobile users. In this paper, we propose a
novel approach to support cooperative caching in DTNs, which enables the
sharing and coordination of cached data among multiple nodes and reduces data
access delay. Our basic idea is to intentionally cache data at a set of network
central locations (NCLs), which can be easily accessed by other nodes in the
network. We propose an efficient scheme that ensures appropriate NCL selection
based on a probabilistic selection metric and coordinates multiple caching
nodes to optimize the tradeoff between data accessibility and caching overhead.
Extensive trace-driven simulations show that our approach significantly
improves data access performance compared to existing schemes.
EXISTING SYSTEM:
Ø A common technique used to improve data access
performance is caching, i.e., to cache data at appropriate network locations
based on query history, so that queries in the future can be responded with
less delay. Although cooperative caching has been studied for both web-based
applications and wireless ad hoc networks to allow sharing and coordination
among multiple caching nodes.
DISADVANTAGES
OF EXISTING SYSTEM:
Ø The average inter-contact time in the network is
reduced and enables efficient access on data with shorter lifetime.
Ø Ratio of data access is reduced.
PROPOSED SYSTEM:
Ø In this paper, we propose a novel scheme to support
cooperative caching in DTNs. Our basic idea is to intentionally cache data at a
set of NCLs, which can be easily accessed by other nodes.
Ø We ensure appropriate NCL selection based on a
probabilistic metric; our approach coordinates caching nodes to optimize the
tradeoff between data accessibility and caching overhead
ADVANTAGES
OF PROPOSED SYSTEM:
Ø Our scheme greatly improves the ratio of queries
satisfied and reduces data access delay and performance.
Ø When T is
large, indicating long inter-contact time among mobile nodes in the network,
our experimental setup increases the data lifetime accordingly.
SYSTEM
REQUIREMENTS:
HARDWARE REQUIREMENTS:
Ø
System : Pentium IV 2.4 GHz.
Ø
Hard Disk :
40 GB.
Ø
Floppy Drive : 1.44
Mb.
Ø
Monitor : 15
VGA Colour.
Ø
Mouse :
Logitech.
Ø Ram : 512 Mb.
SOFTWARE
REQUIREMENTS:
Ø Operating system : Windows
XP/7.
Ø Coding Language : JAVA/J2EE
Ø IDE : Netbeans 7.4
Ø Database : MYSQL
REFERENCE:
Wei Gao, Guohong
Cao, Arun Iyengar, and Mudhakar Srivatsa, “Cooperative Caching for Efficient Data Access in Disruption Tolerant
Networks”, IEEE TRANSACTIONS ON MOBILE
COMPUTING, VOL. 13, NO. 3, MARCH 2014
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