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        Finite-time Issue of Discrete-time Linear Switched Systems With Partial Finite-time Unstable Modes Based on an Inverse Weighted Switching Scheme

        Yunpeng Zhan,Ruihua Wang,Shumin Fei 제어·로봇·시스템학회 2024 International Journal of Control, Automation, and Vol.22 No.2

        The work proposes a multiple convex Lyapunov function and an inverse weighted switching scheme to investigate the finite-time stability and finite-time boundedness for a class of discrete-time switched linear systems with partial finite-time unstable modes. A multiple convex Lyapunov function is put forth by constructing a convex combination of positive definite matrices, which can relax the restricted conditions of the Lyapunov function and make it carry more decision variables than traditional Lyapunov function methods. Besides, the inverse weighted switching scheme is devised by summing the reciprocal of each dwell time with weighting coefficients, by which tighter dwell time bounds are ensured. On the basis of the new Lyapunov function and switching scheme, the finitetime control for a class of switched linear systems with partial finite-time unstable modes is addressed. Different from other researches that require all subsystems to be controllable, we only require the existence of one controllable subsystem. In the end, two numerical examples and a tunnel diode circuit example are provided to verify the effectiveness of the developed results.

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        Study on the irradiation effect of mechanical properties of RPV steels using crystal plasticity model

        Junfeng Nie,Yunpeng Liu,Qihao Xie,Zhanli Liu 한국원자력학회 2019 Nuclear Engineering and Technology Vol.51 No.2

        In this paper a body-centered cubic(BCC) crystal plasticity model based on microscopic dislocationmechanism is introduced and numerically implemented. The model is coupled with irradiation effect viatracking dislocation loop evolution on each slip system. On the basis of the model, uniaxial tensile tests ofunirradiated and irradiated RPV steel(take Chinese A508-3 as an example) at different temperatures aresimulated, and the simulation results agree well with the experimental results. Furthermore, crystalplasticity damage is introduced into the model. Then the damage behavior before and after irradiation isstudied using the model. The results indicate that the model is an effective tool to study the effect ofirradiation and temperature on the mechanical properties and damage behavior.

      • SCIESCOPUS

        New generation software of structural analysis and design optimization--JIFEX

        Gu, Yuanxian,Zhang, Hongwu,Guan, Zhenqun,Kang, Zhan,Li, Yunpeng,Zhong, Wanxie Techno-Press 1999 Structural Engineering and Mechanics, An Int'l Jou Vol.7 No.6

        This paper presents the development and applications of the software package JIFEX, a new finite element system which can be used for structural analysis and optimum design by the modern computer hardware and software technologies such as MS Windows95/NT and Pentium PC platforms. The complete system of JIFEX is programmed with $C/C^{++}$ language to make full use of advanced facilities of MS Windows95/NT. In the system, the finite element data pre-processing, based on the most popular CAD package AutoCAD (R13, R14), has been implemented, so that the finite element modeling could be integrated with geometric modeling of CAD. The system not only has interactive graphics facility for data post-processing, but also realizes the real-time computing visualization by means of the Dynamic Data Exchange (DDE) technique. Running on the Pentium computers, JIFEX can solve large-scale finite element analysis problems such as the ones with more than 60000 nodes in the finite element model.

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