DocumentCode :
3605597
Title :
Decentralized Traffic Aware Scheduling in 6TiSCH Networks: Design and Experimental Evaluation
Author :
Accettura, Nicola ; Vogli, Elvis ; Palattella, Maria Rita ; Grieco, Luigi Alfredo ; Boggia, Gennaro ; Dohler, Mischa
Author_Institution :
Berkeley Sensor & Actuator Center, Univ. of California Berkeley, Berkeley, CA, USA
Volume :
2
Issue :
6
fYear :
2015
Firstpage :
455
Lastpage :
470
Abstract :
This paper capitalizes on two emerging trends, i.e., the growing use of wireless at the edge of industrial control networks and the growing interest to integrate IP into said networks. This is facilitated by recent design contributions from the IEEE and the IETF, where the former developed a highly efficient deterministic time-frequency scheduled medium access control protocol in the form of IEEE 802.15.4e timeslotted channel hopping (TSCH) and the latter IPv6 networking paradigms in the form of 6LoWPAN/ROLL, and scheduling approaches in the form of 6TiSCH. The focus of the present work is on advancing the state-of-the-art of deterministic 6TiSCH schedules toward more flexible but equally reliable distributed approaches. In addition, this paper aims to introduce the first implementation of 6TiSCH networks for factory automation environments: it outlines the challenges faced to overcome the scalability issues inherent to multihop dense low-power networks; the experimental results confirm that the naturally unreliable radio medium can support time-critical and reliable applications. These developments pave the way for wireless industry-grade monitoring approaches.
Keywords :
IP networks; protocols; telecommunication scheduling; telecommunication traffic; 6TiSCH networks; decentralized traffic aware scheduling; factory automation environments; multihop dense low-power networks; wireless industry-grade monitoring approaches; IP networks; Network topology; Protocols; Reliability; Schedules; Standards; Wireless communication; 6TiSCH; IEEE 802.15.4e; Timeslotted Channel Hopping; scheduling algorithms; timeslotted channel hopping (TSCH);
fLanguage :
English
Journal_Title :
Internet of Things Journal, IEEE
Publisher :
ieee
ISSN :
2327-4662
Type :
jour
DOI :
10.1109/JIOT.2015.2476915
Filename :
7254107
Link To Document :
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