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ABSTRACTIONS OF VARYING DECENTRALIZATION DEGREE FOR REACHABILITY OF COUPLED MULTIAGENT SYSTEMS

机译:耦合多元素系统可达性的不同分散度的抽象

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In this paper we present a decentralized abstraction framework for multiagent systems with couplings in their dynamics, which arise in their popular coordination protocols. The discrete models are basexl on a varying decentralization degree, namely, the agents' individual abstractions are obtained by using discrete information up to a tunable distance in their network graph. Deriving these models at the agent level is essential to address scalability issues which appear in the discretization of systems with a high state dimension. The approach builds on the appropriate discretization of the agents' state space and the selection of a transition time step, which enable the construction of a nonblocking transition system for each agent with quantifiable transition possibilities. The transitions are based on the design of local feedback laws for the manipulation of the coupling terms, which guarantee the execution of the transitions by the continuous systems. For a class of nonlinear agent interconnections, the derivation of such abstractions is always guaranteed, based on sufficient conditions which relate the agents' dynamics and the space/time quantization.
机译:在本文中,我们为其动态耦合提供了一个分散的抽象框架,其动态中的耦合,在他们流行的协调协议中出现。离散模型是基于分散程度的BasexL,即,通过在其网络图中的可调谐距离上使用离散信息来获得代理的单独抽象。在代理级别导出这些模型对于解决具有高状态维度的系统的离散化而出现的可伸缩性问题至关重要。该方法基于代理的状态空间的适当离散化和转换时间步骤的选择,这使得能够为每个试剂构造具有可量化的转换可能性的每个试剂的非阻塞过渡系统。转换基于用于操纵耦合术语的局部反馈规律的设计,该耦合术语保证了连续系统的过渡。对于一类非线性代理互连,基于将代理动态和空间/时间量化相关的充分条件,始终保证此类抽象的推导。

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