Wireless Sensor Network

Volume 1, Issue 4 (November 2009)

ISSN Print: 1945-3078   ISSN Online: 1945-3086

Google-based Impact Factor: 1  Citations  

H-TOSSIM: Extending TOSSIM with Physical Nodes

HTML  Download Download as PDF (Size: 815KB)  PP. 324-333  
DOI: 10.4236/wsn.2009.14040    6,684 Downloads   12,157 Views  Citations

Affiliation(s)

.

ABSTRACT

As the development of Wireless Sensor Network (WSN), software testing for WSN-based applications be-comes more and more important. Simulation testing is an important approach to WSN-based software testing, and TOSSIM is the most widely used simulation testing tool targeted at TinyOS which is the most popular operating system nowadays. However, simulation testing tools such as TOSSIM can not reveal program er-rors about communication detail or timing, and lack accurate power consumption model and even can not support power consumption estimation. In this paper, a hybrid testbed H-TOSSIM is proposed, which ex-tends TOSSIM with physical nodes. H-TOSSIM uses three physical nodes, of which, one shares the simu-lated environment with all virtual nodes to test the WSN program, and the other two bridge the real world and the simulated environment. H-TOSSIM combines the advantages of both the simulation in physical node and the simulation testing tools in WSN software testing. Through experiments, we show that H-TOSSIM really reveals program errors which the pure simulation testing can not capture, and can support power con-sumption estimation for large WSN with high accuracy and low hardware cost.

Share and Cite:

W. LI, X. ZHANG, W. TAN and X. ZHOU, "H-TOSSIM: Extending TOSSIM with Physical Nodes," Wireless Sensor Network, Vol. 1 No. 4, 2009, pp. 324-333. doi: 10.4236/wsn.2009.14040.

Cited by

[1] Reliable Fault Tolerant-Based Multipath Routing Model for Industrial Wireless Control Systems
Applied Sciences, 2022
[2] Development and Validation of an ISA100. 11a Simulation Model for Accurate Industrial WSN Planning and Deployment
2021
[3] Software-in-Loop Simulation Environment for Electromagnetic Underwater Wireless Sensor Networks over STANAG 5066 Protocol
2020
[4] Enhanced WSN Simulation Accuracy Through Novel Hardware in the Loop Approach
2018
[5] Testing Wireless Sensor Networks with Hybrid Simulators
arXiv preprint arXiv:1602.01567, 2016
[6] Integrated Toolset for WSN Application Planning, Development, Commissioning and Maintenance: The WSN-DPCM ARTEMIS-JU Project
Sensors, 2016
[7] Hybrid simulators for wireless sensor networks
2016
[8] Aplicando a técnica de simulação hardware-in-the-loop no desenvolvimento de um simulador híbrido para testbeds de redes de sensores sem fio
2014
[9] The Doppel System for Controlled Testing of Sensor Network Apps
2012
[10] Flexible experimentation in wireless sensor networks
Communications of the ACM, 2012
[11] Distributed algorithm engineering for networks of tiny artifacts
Computer Science Review,Elsevier, 2011
[12] Adding Virtual Mobility to a Federated Testbed for Wireless Sensor Networks: a Proposal
Technischer Bericht IAM-10-004 vom 30, 2010

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.