Distributed coordination of multi-agent systems with quantized-observer based encoding-decoding

Integrative design of communication mechanism and coordinated control law is an interesting and important problem for multi-agent networks. In this paper, we consider distributed coordination of discrete-time second-order multi-agent systems with partially measurable state and a limited communicatio...

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Main Authors: Li, Tao, Xie, Lihua
Other Authors: School of Electrical and Electronic Engineering
Format: Article
Language:English
Published: 2013
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Online Access:https://hdl.handle.net/10356/95808
http://hdl.handle.net/10220/11217
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-958082020-03-07T14:02:45Z Distributed coordination of multi-agent systems with quantized-observer based encoding-decoding Li, Tao Xie, Lihua School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering Integrative design of communication mechanism and coordinated control law is an interesting and important problem for multi-agent networks. In this paper, we consider distributed coordination of discrete-time second-order multi-agent systems with partially measurable state and a limited communication data rate. A quantized-observer based encoding-decoding scheme is designed, which integrates the state observation with encoding/decoding. A distributed coordinated control law is proposed for each agent which is given in terms of the states of its encoder and decoders. It is shown that for a connected network, 2-bit quantizers suffice for the exponential asymptotic synchronization of the states of the agents. The selection of controller parameters and the performance limit are discussed. It is shown that the algebraic connectivity and the spectral radius of the Laplacian matrix of the communication graph play key roles in the closed-loop performance. The spectral radius of the Laplacian matrix is related to the selection of control gains, while the algebraic connectivity is related to the spectral radius of the closed-loop state matrix. Furthermore, it is shown that as the number of agents increases, the asymptotic convergence rate can be approximated as a function of the number of agents, the number of quantization levels (communication data rate) and the ratio of the algebraic connectivity to the spectral radius of the Laplacian matrix of the communication graph. 2013-07-11T07:04:33Z 2019-12-06T19:21:54Z 2013-07-11T07:04:33Z 2019-12-06T19:21:54Z 2012 2012 Journal Article Li, T., & Xie, L. (2012). Distributed coordination of multi-agent systems with quantized-observer based encoding-decoding. IEEE Transactions on Automatic Control, 57(12), 3023-3037. https://hdl.handle.net/10356/95808 http://hdl.handle.net/10220/11217 10.1109/TAC.2012.2199152 en IEEE transactions on automatic control © 2012 IEEE.
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic DRNTU::Engineering::Electrical and electronic engineering
spellingShingle DRNTU::Engineering::Electrical and electronic engineering
Li, Tao
Xie, Lihua
Distributed coordination of multi-agent systems with quantized-observer based encoding-decoding
description Integrative design of communication mechanism and coordinated control law is an interesting and important problem for multi-agent networks. In this paper, we consider distributed coordination of discrete-time second-order multi-agent systems with partially measurable state and a limited communication data rate. A quantized-observer based encoding-decoding scheme is designed, which integrates the state observation with encoding/decoding. A distributed coordinated control law is proposed for each agent which is given in terms of the states of its encoder and decoders. It is shown that for a connected network, 2-bit quantizers suffice for the exponential asymptotic synchronization of the states of the agents. The selection of controller parameters and the performance limit are discussed. It is shown that the algebraic connectivity and the spectral radius of the Laplacian matrix of the communication graph play key roles in the closed-loop performance. The spectral radius of the Laplacian matrix is related to the selection of control gains, while the algebraic connectivity is related to the spectral radius of the closed-loop state matrix. Furthermore, it is shown that as the number of agents increases, the asymptotic convergence rate can be approximated as a function of the number of agents, the number of quantization levels (communication data rate) and the ratio of the algebraic connectivity to the spectral radius of the Laplacian matrix of the communication graph.
author2 School of Electrical and Electronic Engineering
author_facet School of Electrical and Electronic Engineering
Li, Tao
Xie, Lihua
format Article
author Li, Tao
Xie, Lihua
author_sort Li, Tao
title Distributed coordination of multi-agent systems with quantized-observer based encoding-decoding
title_short Distributed coordination of multi-agent systems with quantized-observer based encoding-decoding
title_full Distributed coordination of multi-agent systems with quantized-observer based encoding-decoding
title_fullStr Distributed coordination of multi-agent systems with quantized-observer based encoding-decoding
title_full_unstemmed Distributed coordination of multi-agent systems with quantized-observer based encoding-decoding
title_sort distributed coordination of multi-agent systems with quantized-observer based encoding-decoding
publishDate 2013
url https://hdl.handle.net/10356/95808
http://hdl.handle.net/10220/11217
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