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Model Reduction Methods for Complex Network Systems
- Source :
- Annual review of control, robots, and Aauthonomous systems, VOL 4, 2021, 425-453, STARTPAGE=425;ENDPAGE=453;TITLE=Annual review of control, robots, and Aauthonomous systems, VOL 4, 2021
- Publication Year :
- 2021
- Publisher :
- Annual Reviews, 2021.
-
Abstract
- Network systems consist of subsystems and their interconnections, and provide a powerful framework for analysis, modeling and control of complex systems. However, subsystems may have high-dimensional dynamics, and the amount and nature of interconnections may also be of high complexity. Therefore, it is relevant to study reduction methods for network systems. An overview on reduction methods for both the topological (interconnection) structure of the network and the dynamics of the nodes, while preserving structural properties of the network, and taking a control systems perspective, is provided. First topological complexity reduction methods based on graph clustering and aggregation are reviewed, producing a reduced-order network model. Second, reduction of the nodal dynamics is considered by using extensions of classical methods, while preserving the stability and synchronization properties. Finally, a structure-preserving generalized balancing method for simplifying simultaneously the topological structure and the order of the nodal dynamics is treated.<br />To be published in Annual Review of Control, Robotics, and Autonomous Systems
- Subjects :
- 0209 industrial biotechnology
Computer science
Complex system
Dynamical Systems (math.DS)
02 engineering and technology
structure-preserving
Topology
ORDER REDUCTION
REALIZATION
Reduction (complexity)
PASSIVITY
020901 industrial engineering & automation
Synchronization (computer science)
FOS: Mathematics
0202 electrical engineering, electronic engineering, information engineering
Mathematics - Dynamical Systems
Mathematics - Optimization and Control
Clustering coefficient
Network model
Interconnection
Topological complexity
020208 electrical & electronic engineering
MULTIAGENT SYSTEMS
Complex network
AGGREGATION
reduced-order modeling
graph clustering
BALANCED TRUNCATION
network systems
Optimization and Control (math.OC)
Automotive Engineering
SYNCHRONIZATION
interconnected systems
semistability
TUTORIAL
CONSENSUS
POWER NETWORKS
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Annual review of control, robots, and Aauthonomous systems, VOL 4, 2021, 425-453, STARTPAGE=425;ENDPAGE=453;TITLE=Annual review of control, robots, and Aauthonomous systems, VOL 4, 2021
- Accession number :
- edsair.doi.dedup.....29300db5670284ee3b9b613620682d5a