DocumentCode
2128189
Title
Estimate Aggregation with Delay Constraints in Multihop Wireless Sensor Networks
Author
Haitao Zhang ; Huadong Ma ; Xiang-Yang Li
Author_Institution
Beijing Key Lab. of Intell. Telecomm. Software & Multimedia, Beijing Univ. of Posts & Telecomm., Beijing, China
fYear
2011
fDate
12-14 April 2011
Firstpage
184
Lastpage
193
Abstract
Using wireless sensor networks (WSNs) to observe physical processes for control systems has attracted much attention recently. For some real-time control applications, controllers need to accurately estimate the process state within rigid delay constraints. In this paper, we jointly consider state estimation and scheduling problems in multihop WSNs. For accurately estimating a process state as well as satisfying rigid delay constraints, we propose an in-network estimation approach which includes two coupled parts: the estimation operations performed at sensor nodes and an aggregation scheduling algorithm. Our in-network estimation operation performed at intermediate relay nodes not only optimally fuses the estimates obtained from different sensors but also predicts upper stream sensors´ estimates which can not be aggregated to the sink before deadlines. Our estimate-based aggregation scheduling algorithm, which is interference-free, is able to aggregate as much estimate information as possible from a network to a sink within delay constraints. We prove the unbiasedness of in-network estimation, and theoretically analyze the optimality of our approach. Our simulation results corroborate the theoretical results.
Keywords
delay estimation; networked control systems; scheduling; state estimation; wireless sensor networks; control system physical processes; estimate-based aggregation scheduling algorithm; in-network estimation approach; intermediate relay nodes; multihop WSN scheduling problem; multihop wireless sensor networks; process state estimation; real-time control application; rigid delay constraints; Delay; Estimation; Interference; Protocols; Relays; Scheduling algorithm; Wireless sensor networks; aggregation scheduling; cyber-physical systems; delay; estimation; wireless sensor networks;
fLanguage
English
Publisher
ieee
Conference_Titel
Cyber-Physical Systems (ICCPS), 2011 IEEE/ACM International Conference on
Conference_Location
Chicago, IL
Print_ISBN
978-1-61284-640-8
Type
conf
DOI
10.1109/ICCPS.2011.9
Filename
5945433
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