DocumentCode
1292246
Title
The Wireless Control Network: A New Approach for Control Over Networks
Author
Pajic, Miroslav ; Sundaram, Shreyas ; Pappas, George J. ; Mangharam, Rahul
Author_Institution
Dept. of Electr. & Syst. Eng., Univ. of Pennsylvania, Philadelphia, PA, USA
Volume
56
Issue
10
fYear
2011
Firstpage
2305
Lastpage
2318
Abstract
We present a method to stabilize a plant with a network of resource constrained wireless nodes. As opposed to traditional networked control schemes where the nodes simply route information to and from a dedicated controller (perhaps performing some encoding along the way), our approach treats the network itself as the controller. Specifically, we formulate a strategy for each node in the network to follow, where at each time-step, each node updates its internal state to be a linear combination of the states of the nodes in its neighborhood. We show that this causes the entire network to behave as a linear dynamical system, with sparsity constraints imposed by the network topology. We provide a numerical design procedure to determine appropriate linear combinations to be applied by each node so that the transmissions of the nodes closest to the actuators will stabilize the plant. We also show how our design procedure can be modified to maintain mean square stability under packet drops in the network, and present a distributed scheme that can handle node failures while preserving stability. We call this architecture a Wireless Control Network, and show that it introduces very low computational and communication overhead to the nodes in the network, allows the use of simple transmission scheduling algorithms, and enables compositional design (where the existing wireless control infrastructure can be easily extended to handle new plants that are brought online in the vicinity of the network).
Keywords
actuators; decentralised control; industrial plants; scheduling; stability; telecommunication network topology; wireless sensor networks; actuators; control over networks; controller; linear dynamical system; mean square stability; network packet drops; network topology; networked control schemes; numerical design; plant stabilization; resource constrained wireless nodes; transmission scheduling algorithms; wireless control infrastructure; wireless control network; Actuators; Delay; Schedules; Synchronization; Wireless networks; Wireless sensor networks; Cooperative control; decentralized control; linear systems; networked control systems; wireless sensor networks;
fLanguage
English
Journal_Title
Automatic Control, IEEE Transactions on
Publisher
ieee
ISSN
0018-9286
Type
jour
DOI
10.1109/TAC.2011.2163864
Filename
5977006
Link To Document