Title :
Bloom-Filter Aided Two-Layered Structured Overlay for Highly-Dynamic Wireless Distributed Storage
Author :
Sasaki, Kazuhiko ; Sugiura, Shinya ; Makido, S. ; Suzuki, Nobuhiro
Author_Institution :
Toyota Central R&D Labs., Nagakute, Japan
Abstract :
In this letter, we propose a novel two-layered structured overlay, called a distributed Bloom filter table (DBFT), which is capable of substantially reducing overhead imposed by highly-dynamic peer-to-peer (P2P) distributed storage systems. More specifically, in our DBFT scheme, each node´s ID remains unchanged, when the associated cluster changes due to the physical movement of the node. This provides us with an exclusive benefit of maintaining the rule of structured overlay without imposing any additional overhead to reconfigure index between saved information and its stored node, which cannot be achieved by the previous P2P techniques designed for mobile ad hoc networks. Moreover, another merit of the proposed scheme is that stored packets per node become more equally distributed than in the conventional schemes, because each node maintains to have its own addressing- and content-data when it moves within a storage area.
Keywords :
data structures; mobile ad hoc networks; peer-to-peer computing; Bloom filter aided two layered structured overlay; content data; distributed Bloom filter table; highly dynamic peer to peer distributed storage system; highly dynamic wireless distributed storage; mobile ad hoc networks; reconfigure index; Ad hoc networks; Benchmark testing; Indexes; Network topology; Peer to peer computing; Wireless communication; Wireless sensor networks; Bloom filter; DHT; MANET; P2P; distributed cache system; structured overlay; wireless sensor network;
Journal_Title :
Communications Letters, IEEE
DOI :
10.1109/LCOMM.2013.020513.122557