DocumentCode
2643653
Title
Utilizing parallelization and embedded multicore architectures for scheduling large-scale wireless mesh networks
Author
Han, Song ; Mok, Aloysius K. ; Nixon, Mark ; Chen, Deji ; Waugh, Lawrence ; Stotz, Fred
Author_Institution
Univ. of Texas at Austin, Austin, TX, USA
fYear
2012
fDate
25-28 Oct. 2012
Firstpage
3244
Lastpage
3251
Abstract
WirelessHART™ was released in September 2007 and became an IEC standard in April 2010 (IEC 62591). It is the first open wireless communication standard specifically designed for process measurement and control applications deployed in harsh and noisy environments. WirelessHART distinguishes itself from other public standards by maintaining a central Network Manager. The Network Manager is responsible for maintaining up-to-date routes and communication schedules for the network, thus guaranteeing the reliable and real-time network communications. To deal with the intensive computation requirement in a centralized WirelessHART Network Manager, particularly of middle or large scale network sizes, in this article, we utilize parallelization techniques to implement the Network Manager on embedded multicore architectures. By leveraging the multicore capabilities of the AMD Embedded G-Series Dual-Core processor, we utilize the Texas Multicore Technologies´ (TMT) SequenceL™ language and runtime environment to parallelize the algorithms proposed in our previous work for constructing reliable routing graphs and real-time communication schedule. Our experiments show that AMD Embedded G-Series is an ideal platform for medium to large size WirelessHART network and SequenceL™ language can help significantly reduce the development cycle and further improve the algorithm efficiency and system performance in embedded multicore architectures.
Keywords
graph theory; microprocessor chips; telecommunication network routing; wireless mesh networks; AMD embedded G-series dual-core processor; IEC standard; TMT SequenceL language; Texas Multicore Technologies; WirelessHART; central network manager; embedded multicore architecture; large-scale wireless mesh network; open wireless communication standard; parallelization technique; real-time communication schedule; routing graph; Industries; Job shop scheduling; Logic gates; Real-time systems; Reliability;
fLanguage
English
Publisher
ieee
Conference_Titel
IECON 2012 - 38th Annual Conference on IEEE Industrial Electronics Society
Conference_Location
Montreal, QC
ISSN
1553-572X
Print_ISBN
978-1-4673-2419-9
Electronic_ISBN
1553-572X
Type
conf
DOI
10.1109/IECON.2012.6389379
Filename
6389379
Link To Document