Integrated Social and QoS Trust-Based Routing in Delay Tolerant Networks

Abstract

We propose and analyze a class of integrated social and quality of service (QoS) trust-based routing protocols in mobile ad-hoc delay tolerant networks. The underlying idea is to incorporate trust evaluation in the routing protocol, considering not only QoS trust properties but also social trust properties to evaluate other nodes encountered. We prove that our protocol is resilient against bad-mouthing, good-mouthing and whitewashing attacks performed by malicious nodes. By utilizing a stochastic Petri net model describing a delay tolerant network consisting of heterogeneous mobile nodes with vastly different social and networking behaviors, we analyze the performance characteristics of trust-based routing protocols in terms of message delivery ratio, message delay, and message overhead against connectivity-based, epidemic and PROPHET routing protocols. The results indicate that our trust-based routing protocols outperform PROPHET and can approach the ideal performance obtainable by epidemic routing in delivery ratio and message delay, without incurring high message overhead. Further, integrated social and QoS trust-based protocols can effectively trade off message delay for a significant gain in message delivery ratio and message overhead over traditional connectivity-based routing protocols.

Open PDF

Document Details

Document Type
Technical Report
Publication Date
Jan 01, 2012
Accession Number
ADA583268

Entities

People

  • Fenye Bao
  • Ing-Ray Chen
  • Jin-Hee Cho
  • Moonjeong Chang

Organizations

  • Virginia Tech

Tags

Communities of Interest

  • Cyber
  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Commerce
  • Computer Science
  • Detection
  • Disruption Tolerant Networks
  • Electronic Mail
  • Energy Consumption
  • Energy Levels
  • Information Operations
  • Intrusion Detection
  • Intrusion Detection Systems
  • Intrusion Detectors
  • Military Research
  • Mobile Ad Hoc Networks
  • Networks
  • Petri Nets
  • Rate Of Consumption
  • Routing Protocols

Fields of Study

  • Computer science

Readers

  • Computer Networking