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Output tracking of delayed logical control networks with multi-constraint 被引量:1

多重受限时滞逻辑控制网络的输出跟踪(英文)
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摘要 In this study,the output tracking of delayed logical control networks(DLCNs)with state and control constraints is further investigated.Compared with other delays,state-dependent delay updates its value depending on the current state values and a pseudo-logical function.Multiple constraints mean that state values are constrained in a nonempty set and the design of the controller is conditioned.Using the semi-tensor product of matrices,dynamical equations of DLCNs are converted into an algebraic description,and an equivalent augmented system is constructed.Based on the augmented system,the output tracking problem is transformed into a set stabilization problem.A deformation of the state transition matrix is computed,and a necessary and sufficient condition is derived for the output tracking of a DLCN with multi-constraint.This condition is easily verified by mathematical software.In addition,the admissible state-feedback controller is designed to enable the outputs of the DLCN to track the reference signal.Finally,theoretical results are illustrated by an example. In this study, the output tracking of delayed logical control networks(DLCNs) with state and control constraints is further investigated. Compared with other delays, state-dependent delay updates its value depending on the current state values and a pseudo-logical function. Multiple constraints mean that state values are constrained in a nonempty set and the design of the controller is conditioned. Using the semi-tensor product of matrices,dynamical equations of DLCNs are converted into an algebraic description, and an equivalent augmented system is constructed. Based on the augmented system, the output tracking problem is transformed into a set stabilization problem. A deformation of the state transition matrix is computed, and a necessary and sufficient condition is derived for the output tracking of a DLCN with multi-constraint. This condition is easily verified by mathematical software. In addition, the admissible state-feedback controller is designed to enable the outputs of the DLCN to track the reference signal. Finally, theoretical results are illustrated by an example.
出处 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2020年第2期316-323,共8页 信息与电子工程前沿(英文版)
基金 Project supported by the National Natural Science Foundation of China(Nos.61773371 and 61877036) the Natural Science Foundation of Shandong Province,China(No.ZR2019MF002)。
关键词 Logical control networks Multi-constraint OUTPUT tracking STABILIZATION State-dependent delay Semi-tensor product Logical control networks Multi-constraint Output tracking Stabilization State-dependent delay Semi-tensor product
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