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Scaled consensus for asynchronous high-order discrete-time multiagent systems
DOI:10.1002/rnc.4775.png)
摘要
En 中文
This paper investigates the distributed scaled consensus problem of multiple agents with high-order dynamics under the asynchronous setting, where each agent measures the neighbors' information at certain discrete time instants according to its own clock rather than the whole discrete process and all agents' clocks are independent of each other. Assume that the communication topology can be arbitrarily switched and the information transfer between agents has a time-varying delay. Under the designed asynchronous distributed control protocol, it is shown that the agents with the same scale will reach a common final state, while the agents with different scales will reach different final states. Moreover, an effective parameters selection strategy is presented for a large number of gain parameters in high-order multiagent systems based on novel model transformation techniques. Simulation examples are provided to demonstrate the high-order scaled consensus performances for the agents in the presence of asynchronous setting.
Keyword:
asynchronous setting
high-order discrete-time multiagent systems
scaled consensus
switching topologies
time-varying delays
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期刊
IF:
3.2
论文数:
7.0K
被引数:
1.4W
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引用论文
Consensus protocols for discrete-time multi-agent systems with time-varying delays时变时滞离散多智能体系统的一致性协议
AUTOMATICA
IF5.9

