JOURNAL ARTICLE

Low-delay Node-disjoint Multi-path Routing using Complementary Trees for Industrial Wireless Sensor Networks

Luming Liu

Year: 2011 Journal:   KSII Transactions on Internet and Information Systems Vol: 5 (11)   Publisher: Korea Society of Internet Information

Abstract

Complementary trees are two spanning trees rooted at the sink node satisfying that any source node’s two paths to the sink node on the two trees are node-disjoint. Complementary trees routing strategy is a special node-disjoint multi-path routing approach. Several complementary trees routing algorithms have been proposed, in which path discovery methods based on depth first search (DFS) or Dijkstra’s algorithm are used to find a path for augmentation in each round of path augmentation step. In this paper, a novel path discovery method based on multi-tree-growing (MTG) is presented for the first time to our knowledge. Based on this path discovery method, a complementary trees routing algorithm is developed with objectives of low average path length on both spanning trees and low complexity. Measures are employed in our complementary trees routing algorithm to add a path with nodes near to the sink node in each round of path augmentation step. The simulation results demonstrate that our complementary trees routing algorithm can achieve low average path length on both spanning trees with low running time, suitable for wireless sensor networks in industrial scenarios.

Keywords:
Computer science Equal-cost multi-path routing Geographic routing Dijkstra's algorithm Node (physics) Path vector protocol Path (computing) Disjoint sets Computer network Link-state routing protocol Shortest path problem Algorithm Routing (electronic design automation) Routing protocol Mathematics Theoretical computer science Graph Combinatorics Engineering

Metrics

7
Cited By
2.57
FWCI (Field Weighted Citation Impact)
1
Refs
0.89
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Energy Efficient Wireless Sensor Networks
Physical Sciences →  Computer Science →  Computer Networks and Communications
Advanced Optical Network Technologies
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Network Traffic and Congestion Control
Physical Sciences →  Computer Science →  Computer Networks and Communications

Related Documents

JOURNAL ARTICLE

Geographic Node-Disjoint Path Routing for Wireless Sensor Networks

Alok KumarShirshu Varma

Journal:   IEEE Sensors Journal Year: 2010 Vol: 10 (6)Pages: 1138-1139
JOURNAL ARTICLE

A fuzzy comprehensive evaluation-based node-disjoint multi-path routing for wireless sensor networks

De Quan WangJin Yan SongTeng GaoJin Ding

Journal:   International Journal of Internet Protocol Technology Year: 2018 Vol: 11 (2)Pages: 118-118
JOURNAL ARTICLE

A fuzzy comprehensive evaluation-based node-disjoint multi-path routing for wireless sensor networks

Teng GaoJin Yan SongJin DingDe Quan Wang

Journal:   International Journal of Internet Protocol Technology Year: 2018 Vol: 11 (2)Pages: 118-118
© 2026 ScienceGate Book Chapters — All rights reserved.