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An interval arithmetic approach for discrete time non-smooth uncertain systems with application to an anti-locking system

机译:离散时间非光滑不确定系统的区间算法及其在防抱死系统中的应用

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In this paper, a global optimization technique using interval analysis applied to the simulation of an anti-locking control system with possible sensor tolerances is presented. The anti-locking system and the vehicle are described as an uncertain discrete time system with nonsmooth nonlinearities. Sensor tolerances can be modeled in a natural way by means of interval arithmetics which helps to achieve reliable results in the simulation. However, a simulation approach using merely natural interval extensions leads to overestimations rendering the result useless. Therefore, we employ a global optimization algorithm which allows the inclusion of the actual dynamic system behavior with a predefined and guaranteed overestimation limit. All algorithms are implemented in MATLAB.
机译:本文介绍了使用适用于具有可能传感器公差的防锁控制系统模拟的间隔分析的全局优化技术。防锁系统和车辆被描述为具有非光滑非线性的不确定离散时间系统。传感器公差可以通过间隔算法以自然的方式建模,这有助于实现模拟中的可靠结果。然而,使用仅仅自然间隔扩展的模拟方法导致高估渲染结果无用。因此,我们采用了全局优化算法,其允许将实际动态系统行为包含预定义和保证的高估极限。所有算法都在Matlab中实现。

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