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Network-based deployment of the second-order multi agents: A PDE approach
Maria Terushkin
*
,
Emilia Fridman
*
Corresponding author for this work
School of Electrical Engineering
Research output
:
Contribution to journal
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Conference article
›
peer-review
4
Scopus citations
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Keyphrases
Numerical Examples
100%
Closed-loop System
100%
Communication Networks
100%
Multi-agent
100%
Control Law
100%
Three-dimensional Space
100%
Smooth Curve
100%
System Stability
100%
Absolute Position
100%
Network Applications
100%
Variable Sampling Interval
100%
Relative Position
100%
Feedback Model
100%
Input-to-state Stability
100%
Linear Matrix Inequality
100%
Neumann Boundary Condition
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Transmission Delay
100%
Static Output Feedback Controller
100%
PDE Approach
100%
2D Space
100%
State Observation
100%
Nonlinear Damped Wave Equation
100%
Open Curves
100%
Second-order Nonlinear multi-agent Systems
100%
Network Imperfections
100%
Engineering
Illustrates
100%
Local Information
100%
Numerical Example
100%
Control Law
100%
Output Feedback
100%
Absolute Position
100%
Relative Position
100%
Feedback Controller
100%
Communication Network
100%
Neumann Boundary Condition
100%
State Stability
100%
State Measurement
100%
Agent System
100%
Feedback Control
100%
Partial Differential Equation
100%
Computer Science
Communication Network
100%
Numerical Example
100%
Output Feedback
100%
Feedback Controller
100%
Relative Position
100%
Multi Agent Systems
100%
multi agent
100%
Local Information
100%
linear matrix
100%
State Measurement
100%
Transmission Delay
100%
Closest Neighbor
100%
Feedback Control
100%
Partial Differential Equation
100%
Boundary Condition
100%
Mathematics
Numerical Example
100%
Partial Differential Equation
100%
smooth curve γ
100%
Neumann Boundary Condition
100%
Local Information
100%
Linear Matrix Inequality
100%
Transmission Delay
100%
Damped Wave Equation
100%
Feedback Control
100%