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Digital interval model conversion and simulation of continuous-time uncertain systems

机译:连续时间不确定系统的数字区间模型转换与仿真

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The paper deals with the problem of converting a continuous-time uncertain linear system to an equivalent discrete-time uncertain model and its digital simulation. The system matrices characterising the state-space representation of the original uncertain system are assumed to be interval matrices. The geometric series method together with interval arithmetic is employed to obtain the approximate discrete-time interval models. A new technique is developed to estimate the modelling errors. These modelling errors are used to modify the approximate interval models obtained via the interval geometric-series method. The resulting interval models (the enclosing interval models) are able to tightly enclose the exact uncertain model. Also their approximate discrete-time interval solutions are able to tightly enclose the exact interval solution of the continuous-time uncertain state-space equation. The proposed digital uncertain models can be used for digital simulation and digital design of continuous-time uncertain systems.
机译:本文研究了将连续时间不确定线性系统转换为等效离散时间不确定模型的问题及其数字仿真方法。假设表征原始不确定系统的状态空间表示的系统矩阵为区间矩阵。采用几何级数法和区间算法,得到近似的离散时间区间模型。开发了一种新技术来估计建模误差。这些建模误差用于修改通过间隔几何级数方法获得的近似间隔模型。生成的间隔模型(封闭间隔模型)能够紧密封闭精确的不确定模型。同样,它们的近似离散时间间隔解也能够紧紧包围连续时间不确定状态空间方程的精确间隔解。所提出的数字不确定性模型可用于连续时间不确定性系统的数字仿真和数字设计。

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