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Traffic-Differentiation-Based Modular QoS Localized Routing for Wireless Sensor Networks

Published: 01 June 2011 Publication History

Abstract

A new localized quality of service (QoS) routing protocol for wireless sensor networks (WSN) is proposed in this paper. The proposed protocol targets WSN's applications having different types of data traffic. It is based on differentiating QoS requirements according to the data type, which enables to provide several and customized QoS metrics for each traffic category. With each packet, the protocol attempts to fulfill the required data-related QoS metric(s) while considering power efficiency. It is modular and uses geographical information, which eliminates the need of propagating routing information. For link quality estimation, the protocol employs distributed, memory and computation efficient mechanisms. It uses a multisink single-path approach to increase reliability. To our knowledge, this protocol is the first that makes use of the diversity in data traffic while considering latency, reliability, residual energy in sensor nodes, and transmission power between nodes to cast QoS metrics as a multiobjective problem. The proposed protocol can operate with any medium access control (MAC) protocol, provided that it employs an acknowledgment (ACK) mechanism. Extensive simulation study with scenarios of 900 nodes shows the proposed protocol outperforms all comparable state-of-the-art QoS and localized routing protocols. Moreover, the protocol has been implemented on sensor motes and tested in a sensor network testbed.

Cited By

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  • (2024)TG-SPRED: Temporal Graph for Sensorial Data PREDictionACM Transactions on Sensor Networks10.1145/364989220:3(1-20)Online publication date: 13-Apr-2024
  • (2020)Energy Management in a Multi-Source Energy Harvesting IoT SystemJournal of Information Technology Research10.4018/JITR.202004010313:2(42-59)Online publication date: 1-Apr-2020
  • (2017)Cross-Layer QoS Scheme Based on Priority Differentiation in Multihop Wireless NetworksJournal of Electrical and Computer Engineering10.1155/2017/48920382017Online publication date: 28-Dec-2017
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Published In

cover image IEEE Transactions on Mobile Computing
IEEE Transactions on Mobile Computing  Volume 10, Issue 6
June 2011
158 pages

Publisher

IEEE Educational Activities Department

United States

Publication History

Published: 01 June 2011

Author Tags

  1. Wireless sensor networks
  2. distributed protocols.
  3. geographical routing
  4. quality of service

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Cited By

View all
  • (2024)TG-SPRED: Temporal Graph for Sensorial Data PREDictionACM Transactions on Sensor Networks10.1145/364989220:3(1-20)Online publication date: 13-Apr-2024
  • (2020)Energy Management in a Multi-Source Energy Harvesting IoT SystemJournal of Information Technology Research10.4018/JITR.202004010313:2(42-59)Online publication date: 1-Apr-2020
  • (2017)Cross-Layer QoS Scheme Based on Priority Differentiation in Multihop Wireless NetworksJournal of Electrical and Computer Engineering10.1155/2017/48920382017Online publication date: 28-Dec-2017
  • (2017)The Influence of k-Constant to Delay Performance of RI-MAC Protocol for Wireless Sensor NetworksWireless Personal Communications: An International Journal10.1007/s11277-017-4239-796:1(1313-1328)Online publication date: 1-Sep-2017
  • (2016)An Analysis of QoS in ZigBee Network Based on Deviated Node PriorityJournal of Electrical and Computer Engineering10.1155/2016/62543952016(3)Online publication date: 1-Mar-2016
  • (2016)Routing in wireless multimedia sensor networksJournal of Network and Computer Applications10.1016/j.jnca.2016.05.01371:C(30-49)Online publication date: 1-Aug-2016
  • (2016)Multi-objective optimization in sensor networksComputer Networks: The International Journal of Computer and Telecommunications Networking10.1016/j.comnet.2016.01.01599:C(134-161)Online publication date: 22-Apr-2016
  • (2016)Task requirement aware pre-processing and Scheduling for IoT sensory environmentsAd Hoc Networks10.1016/j.adhoc.2016.07.00550:C(102-114)Online publication date: 1-Nov-2016
  • (2016)Evaluation of available bandwidth as a routing metric for delay-sensitive IEEE 802.15.4-based ad-hoc networksAd Hoc Networks10.1016/j.adhoc.2015.10.00537:P2(526-542)Online publication date: 1-Feb-2016
  • (2016)Lightweight, latency-aware routing for data compression in wireless sensor networks with heterogeneous trafficsWireless Communications & Mobile Computing10.1002/wcm.258416:9(1035-1049)Online publication date: 25-Jun-2016
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