Guaranteeing Real-Time Services for Industrial Wireless Sensor Networks With IEEE 802.15.4

Industrial applications of wireless sensor networks require timeliness in exchanging messages among nodes. Although IEEE 802.15.4 provides a superframe structure for real-time communication, a real-time message-scheduling algorithm is still required to schedule a large number of real-time messages t...

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Published in:IEEE transactions on industrial electronics (1982) Vol. 57; no. 11; pp. 3868 - 3876
Main Authors: Yoo, Seong-eun, Chong, Poh Kit, Kim, Daeyoung, Doh, Yoonmee, Pham, Minh-Long, Choi, Eunchang, Huh, Jaedoo
Format: Journal Article
Language:English
Published: New York IEEE 01.11.2010
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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ISSN:0278-0046, 1557-9948
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Abstract Industrial applications of wireless sensor networks require timeliness in exchanging messages among nodes. Although IEEE 802.15.4 provides a superframe structure for real-time communication, a real-time message-scheduling algorithm is still required to schedule a large number of real-time messages to meet their timing constraints. We propose a distance-constrained real-time offline message-scheduling algorithm which generates the standard specific parameters such as beacon order, superframe order, and guaranteed-time-slot information and allocates each periodic real-time message to superframe slots for a given message set. The proposed scheduling algorithm is evaluated and analyzed extensively through simulations. In addition, a guaranteed time service is implemented in a typical industrial sensor node platform with a well-known IEEE 802.15.4-compliant transceiver CC2420 and ATmega128L to verify the feasibility of the guaranteed time service with the schedule generated by the proposed scheduling algorithm. Through experiments, we prove that the real system runs accurately according to the schedule calculated by the proposed algorithm.
AbstractList Industrial applications of wireless sensor networks require timeliness in exchanging messages among nodes. Although IEEE 802.15.4 provides a superframe structure for real-time communication, a real-time message-scheduling algorithm is still required to schedule a large number of real-time messages to meet their timing constraints. We propose a distance-constrained real-time offline message-scheduling algorithm which generates the standard specific parameters such as beacon order, superframe order, and guaranteed-time-slot information and allocates each periodic real-time message to superframe slots for a given message set. The proposed scheduling algorithm is evaluated and analyzed extensively through simulations. In addition, a guaranteed time service is implemented in a typical industrial sensor node platform with a well-known IEEE 802.15.4-compliant transceiver CC2420 and ATmega128L to verify the feasibility of the guaranteed time service with the schedule generated by the proposed scheduling algorithm. Through experiments, we prove that the real system runs accurately according to the schedule calculated by the proposed algorithm.
Author Seong-eun Yoo
Yoonmee Doh
Poh Kit Chong
Jaedoo Huh
Minh-Long Pham
Eunchang Choi
Daeyoung Kim
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SubjectTerms Algorithms
Application software
Communication industry
Guaranteed time slot (GTS)
industrial wireless sensor network (WSN)
Intelligent sensors
Job shop scheduling
Manufacturing automation
Materials science and technology
Permission
real-time communication
Scheduling algorithm
Scheduling algorithms
Studies
Wireless communication
Wireless sensor networks
WSN
Title Guaranteeing Real-Time Services for Industrial Wireless Sensor Networks With IEEE 802.15.4
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