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Finite-time control of perturbed dynamical systems based on a generalized time transformation approach

机译:基于通用时间转换方法的扰动动力系统有限时间控制

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We study finite-time control of perturbed dynamical systems based on the time transformation approach. For addressing time-critical applications, where the execution of a control algorithm over a prescribed time interval [0, tau) is necessary with tau being a user-defined convergence time, we introduce a new class of scalar, time-varying gain functions entitled as "generalized finite-time gain functions" that have the capability to convert an original baseline control algorithm into a time-varying one. Based on these generalized finite-time gain functions, in particular, the corresponding "generalized time transformation functions" are obtained and used to transform a resulting algorithm over the prescribed time interval [0, tau) to an equivalent algorithm over the stretched infinite-time interval [0, infinity) for stability analysis, where the connection between the generalized finite-time gain functions and their corresponding generalized time transformation functions are investigated in detail. A procedure for designing finite-time control algorithms is further proposed and illustrated by numerical examples showing that the method is applicable to, but not limited to, a class of nonlinear systems as well as multiagent systems. In addition, we show all the conditions on the proposed generalized finite-time gain functions that guarantee the boundedness and convergence of the state and control signals. An application of our theoretical findings to the distributed control of networked multiagent systems problem over a prescribed time interval is also presented. (C) 2019 Elsevier B.V. All rights reserved.
机译:基于时间转换方法研究扰动动力系统的有限时间控制。为了解决时间关键的应用程序,其中在通过规定的时间间隔内执行控制算法[0,tau)是具有用户定义的收敛时间所必需的,我们介绍了一个新的标量,时变的增益函数作为具有将原始基线控制算法转换为时变的“广义有限时间增益函数”的“广义有限时间增益函数”。基于这些广义有限时间增益函数,特别地,获得了相应的“广义时间转换函数”并用于将结果算法在规定的时间间隔[0,TAU)上转换为在拉伸无限时间上的等效算法用于稳定性分析的间隔[0,无限间隔),其中详细研究了广义有限时间增益函数的连接及其相应的广泛时间转换函数。通过数值示例进一步提出和说明了用于设计有限时间控制算法的过程,示出该方法适用于但不限于一类非线性系统以及多算系统。此外,我们在提出的广义有限时间增益函数上显示了所有条件,以保证状态和控制信号的界限和收敛。还介绍了我们对规定的时间间隔内联网多层系统问题的分布式控制的理论发现。 (c)2019年Elsevier B.V.保留所有权利。

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