DocumentCode
2522605
Title
Localized QoS-aware media access control in high-fidelity data center sensing networks
Author
Huang, Renjie ; Song, Wen-Zhan ; Xu, Mingsen ; Shirazi, Behrooz
Author_Institution
Sensorweb Res. Lab., Washington State Univ., Vancouver, WA, USA
fYear
2010
fDate
15-18 Aug. 2010
Firstpage
397
Lastpage
404
Abstract
Low-cost non-intrusive wireless sensor network is ideal for high-fidelity data center monitoring and helping improve energy efficiency. However, the stringent quality of service (QoS) requirements such as real-time data delivery together with the dynamic nature of low-power wireless communication render traditional MAC protocols inapplicable to high-fidelity data center sensing networks. In this paper, we present RoMac, a localized QoS-aware TDMA MAC protocol for high-fidelity data center sensing networks. The key contributions of RoMac include: (1) it provides collision-free communication and persistent QoS guarantee such as constant packet jitter and bounded latency; (2) it is resilient to topology dynamics and truly traffic adaptive in dynamic environments. To our best knowledge, this is the first TDMA MAC protocol that can achieve the resilience to dynamic topologies; (3) its localized design eases the need of scheduling message exchange beyond the initialization phase. We present an implementation of the protocol using the TinyOS operating system running on the iMote2 sensor mote platform. Our experiment result shows that RoMac can achieve the adaptability to dynamic changes in data collection sensor networks and provide persistent QoS support in terms of timeliness, packet jitter and fairness.
Keywords
access protocols; jitter; operating systems (computers); quality of service; telecommunication computing; telecommunication congestion control; time division multiple access; wireless sensor networks; MAC protocol; QoS; RoMac; TDMA; TinyOS; bounded latency; collision free communication; data collection sensor network; energy efficiency; high fidelity data center sensing network; iMote2 sensor mote platform; low power wireless communication; media access control; operating system; packet jitter; quality of service; real time data delivery; time division multiple access; topology dynamics; wireless sensor network; Schedules; Wireless communication; Wireless sensor networks; Data Sensing Netowrks; Media Access Control; QoS-Aware;
fLanguage
English
Publisher
ieee
Conference_Titel
Green Computing Conference, 2010 International
Conference_Location
Chicago, IL
Print_ISBN
978-1-4244-7612-1
Type
conf
DOI
10.1109/GREENCOMP.2010.5598287
Filename
5598287
Link To Document