Virtual Sensor Design for Replacement the Faulty Physical Sensors

A. Zhirabok, A. Zuev, V. Filaretov
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Abstract

Abstract: The paper considers the problem of virtual sensor design for nonlinear dynamic systems with non-smooth nonlinearities described by continuous-time models for faulty physical sensor replacement. It is assumed that to solve the problem, the system is equipped by diagnostic system allowing detecting and isolating the faulty sensor. For every such a sensor, the virtual sensor generating estimate replacing the faulty sensor is designed. To solve the problem, so-called logic-dynamic approach is used which does not guarantee optimal solution but uses only methods of linear algebra to solve the problem for systems with non-smooth nonlinearities. The virtual sensor can be designed in the identification canonical form or Jordan canonical form. The advantage of the first form is a standard procedure of the virtual sensor design while Jordan form allows obtaining a simpler solution. The relations allowing designing the virtual sensor both in identification and in Jordan canonical form are derived.
替换故障物理传感器的虚拟传感器设计
摘要:研究了用连续时间模型描述非光滑非线性的非线性动态系统的虚拟传感器设计问题,用于故障物理传感器的更换。假设为了解决这个问题,系统配备了诊断系统,可以对故障传感器进行检测和隔离。针对每一个传感器,设计了虚拟传感器生成估计来代替故障传感器。为了解决这一问题,使用了所谓的逻辑-动态方法,这种方法不保证最优解,而只使用线性代数方法来解决具有非光滑非线性的系统的问题。虚拟传感器可设计为识别规范型或约当规范型。第一种形式的优点是虚拟传感器设计的标准程序,而约旦形式允许获得一个更简单的解决方案。推导了虚拟传感器的辨识关系和约当标准型设计关系。
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