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为进一步对控制系统进行系统分析与设计,对离散时滞奇异摄动不确定控制系统设计动态输出反馈控制器,使闭环系统渐近稳定.针对时滞依赖和时滞独立两种情形进行讨论,构造一种新的二次求和型李雅普诺夫泛函.利用交叉项界定方法对泛函差分过程进行放大,并综合运用引理消除系统的不确定性,推出动态输出反馈控制器在时滞条件下存在的充分性判据,扩大控制器的摄动控制范围.对所得结论进行推广,通过算例验证该方法的有效性和可行性,并通过对比相应文献,说明所得控制器具有一定的优越性,可使闭环系统渐近稳定.不仅符合设计要求,而且能达到二次调节控制效果.  相似文献   
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The purpose of this paper is to describe the oscillatory properties of second‐order Euler‐type half‐linear differential equations with perturbations in both terms. All but one perturbations in each term are considered to be given by finite sums of periodic continuous functions, while coefficients in the last perturbations are considered to be general continuous functions. Since the periodic behavior of the coefficients enables us to solve the oscillation and non‐oscillation of the considered equations, including the so‐called critical case, we determine the oscillatory properties of the equations with the last general perturbations. As the main result, we prove that the studied equations are conditionally oscillatory in the considered very general setting. The novelty of our results is illustrated by many examples, and we give concrete new corollaries as well. Note that the obtained results are new even in the case of linear equations.  相似文献   
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大型物理模型试验是研究复杂工程问题的重要方法,如何快速、准确地确定相似材料配比是试验中至关重要的一环.为降低试验成本、简化试验步骤、充分调用原料性能,采用河砂、水泥和石膏这三种最普通的原料,以骨胶比(河砂与水泥石膏的质量比)和水膏比(水泥与石膏的质量比)为变量,进行了45组对比试验,对相似材料的物理及动、静力学参数进行了研究.获得了以河砂、水泥和石膏为原料配制的相似材料各物理量的变化区间;探讨了骨胶比和水膏比对相似材料各物理量的控制作用,并对比了其敏感性;基于多元线性回归分析建立了各因素与物理量间的定量关系,得到的拟合公式能较好地描述相似材料的性质.  相似文献   
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In this paper, we study the local linear convergence properties of a versatile class of Primal–Dual splitting methods for minimizing composite non-smooth convex optimization problems. Under the assumption that the non-smooth components of the problem are partly smooth relative to smooth manifolds, we present a unified local convergence analysis framework for these methods. More precisely, in our framework, we first show that (i) the sequences generated by Primal–Dual splitting methods identify a pair of primal and dual smooth manifolds in a finite number of iterations, and then (ii) enter a local linear convergence regime, which is characterized based on the structure of the underlying active smooth manifolds. We also show how our results for Primal–Dual splitting can be specialized to cover existing ones on Forward–Backward splitting and Douglas–Rachford splitting/ADMM (alternating direction methods of multipliers). Moreover, based on these obtained local convergence analysis result, several practical acceleration techniques are discussed. To exemplify the usefulness of the obtained result, we consider several concrete numerical experiments arising from fields including signal/image processing, inverse problems and machine learning. The demonstration not only verifies the local linear convergence behaviour of Primal–Dual splitting methods, but also the insights on how to accelerate them in practice.  相似文献   
7.
利用Dashnic-Zusmanovich+矩阵的定义,通过不等式放缩技巧和Dashnic-Zusmanovich矩阵逆的无穷范数估计式得到Dashnic-Zusmanovich+矩阵线性互补问题解的误差界.  相似文献   
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Necessary and sufficient conditions for qualitative properties of infinite dimensional linear programing problems such as solvability, duality, and complementary slackness conditions are studied in this article. As illustrations for the results, we investigate the parametric version of Gale’s example.  相似文献   
9.
Some formulas for well‐defined solutions to four very special cases of a nonlinear fifth‐order difference equation have been presented recently in this journal, where some of them were proved by the method of induction, some are only quoted, and no any theory behind the formulas was given. Here, we show in an elegant constructive way how the general solution to the difference equation can be obtained, from which the special cases very easily follow, which is also demonstrated here. We also give some comments on the local stability results on the special cases of the nonlinear fifth‐order difference equation previously publish in this journal.  相似文献   
10.
In this paper, we define the generalised relative operator entropy and investigate some of its properties such as subadditivity and homogeneity. As application of our result, we obtain the information inequality. In continuation, we establish some reverses of the operator entropy inequalities under certain conditions by using the Mond–Pe?ari? method.  相似文献   
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