A Distributed Approach for Multi-Constrained Path Selection and Routing Optimization

Abstract

Multi-constrained path (MCP) selection, in which the key objective is to search for feasible paths satisfying multiple routing constraints simultaneously, is known to be an NP-Complete problem. Multi-constrained path optimization (MCPO) is different from MCP mainly in that, the feasible paths selected should also be optimal with regard to an optimization metric, which makes path computation in MCPO even harder. We propose a fully distributed multi-constrained path optimization routing (MPOR) protocol that solves the general -constrained path selection and routing optimization problems. MPOR computes paths using distance vectors exchanged only amongst neighboring nodes and does not require the maintenance of global network state about the topology or resources; supports hop-by-hop, connectionless routing of data packets, and implements constrained path optimization by distributively constructing an x-optimal path set (i.e., the shortest, the second shortest and up to the xth shortest path in terms of the optimization metric) for each destination at each node. Simulations show that MPOR has satisfactory routing success ratios for multiconstrained path selection, and performs consistently with varying number of constraints. For constrained path optimization, MPOR has high probabilities of finding feasible paths that are also optimal or near-optimal for the given optimization metric.

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Document Details

Document Type
Technical Report
Publication Date
Jan 01, 2006
Accession Number
ADA467530

Entities

People

  • J.J. Garcia-Luna-Aceves
  • Zhenjiang Li

Organizations

  • University of California, Santa Cruz

Tags

Communities of Interest

  • C4I

DTIC Thesaurus Topics

  • Abstracts
  • Additives (Chemicals)
  • Algorithms
  • Bandwidth
  • Computational Complexity
  • Computations
  • Convergence
  • Information Operations
  • Military Research
  • Numbers
  • Optimization
  • Probability
  • Real Numbers
  • Routing Protocols
  • Simulations
  • Simulators
  • Topology

Fields of Study

  • Computer science

Readers

  • Computer Networking
  • Operations Research