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An Interval Approach for Parameter Identification and Observer Design of Spatially Distributed Heating Systems

机译:空间分布式供热系统参数辨识和观测器设计的一种区间方法

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Offline parameter identification as well as online estimation of state variables are common tasks for a large variety of control applications. These tasks become especially challenging if parameters are not known with absolute accuracy. Then, interval representations can be used to describe worst-case bounds of uncertain parameters and to compute guaranteed enclosures of the trajectories of all state variables. In this paper, an interval-based parameter identification procedure is presented, extended to an observer approach, and validated experimentally for a finite volume representation of a distributed heating system. For the implementation of this procedure, the structural property of cooperativity is exploited which allows for constructing two independent sets of state equations describing guaranteed lower and upper bounds of all system states.
机译:离线参数识别以及状态变量的在线估计是各种控制应用程序的常见任务。如果无法绝对准确地知道参数,这些任务将变得特别具有挑战性。然后,区间表示可用于描述不确定参数的最坏情况边界,并计算所有状态变量的轨迹的有保证的包围。在本文中,提出了一种基于间隔的参数识别程序,将其扩展到观察者方法,并通过实验验证了分布式加热系统的有限体积表示。为了执行此过程,利用了合作性的结构特性,该特性允许构造两个独立的状态方程组,以描述所有系统状态的保证下限和上限。

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