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On the stabilization of nondeterministic finite automata via static output feedback

机译:通过静态输出反馈稳定非算法有限自动机

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A nondeterministic finite automaton (NDFA) can exhibit an uncertain behavior in modeling and analysis, and its stabilization is viewed as an essential component of theoretical research. In this paper, we focused on the problem of static output feedback stabilization of NDFA under the framework of matrix semi-tensor product (matrix STP). First, the dynamics of Moore-type NDFA can be described as a discrete-time bilinear expression by a matrix-based modeling approach. Subsequently, equilibrium point and closed transition matrix of NDFA are introduced, and the corresponding computational formulas are given based on the new matrix expression. By utilizing the matrix STP approach, we can obtain the necessary and sufficient conditions to implement the static state output feedback stabilization for NDFA. Meanwhile, starting from the matrix STP, we designed a systematic procedure to seek the controller through an extended output feedback feasible event set. Finally, an illustrative example is provided to prove the efficacy of newly proposed method. Current results are conducive to better understand and devise the effective finite automata for discrete event systems. (C) 2019 Elsevier Inc. All rights reserved.
机译:非法的有限自动机(NDFA)可以在建模和分析中表现出不确定的行为,并且它的稳定化被视为理论研究的重要组成部分。在本文中,我们专注于矩阵半张量产品框架下NDFA的静态输出反馈稳定问题(矩阵STP)。首先,可以通过基于矩阵的建模方法描述摩尔型NDFA的动态作为离散时间的比例表达。随后,引入了NDFA的平衡点和闭合转换矩阵,并且基于新的矩阵表达给出相应的计算公式。通过利用矩阵STP方法,我们可以获得必要和充分的条件以实现NDFA的静态输出反馈稳定。同时,从矩阵STP开始,我们设计了一种系统的过程,可以通过扩展输出反馈可行事件集来寻求控制器。最后,提供了说明性示例以证明新提出的方法的功效。目前的结果有利于更好地理解和设计离散事件系统的有效有限自动机。 (c)2019 Elsevier Inc.保留所有权利。

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