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An integrated approach for sensor placement in linear dynamic systems

机译:线性动态系统中传感器放置的集成方法

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This paper investigates the sensor placement in linear dynamic systems for fault detectability and isolability. A linear system is modelled by a bond graph (BG) that can be associated in a natural way with a set of linear differential-algebraic equations (DAEs). Simultaneously, possible sensor locations are modelled as junctions on the BG. Causal paths capture cause-effect relationships of a linear system and provide a means to analyze what subset of junctions contributes to fault detectability and isolability. Furthermore, this paper exploits DAEs associated with a BG and proves a necessary and sufficient condition of sensor placement to fulfill fault detectability. Based on the fault detectability condition, a necessary condition of sensor placement to achieve two-fault distinguishability is developed in the DAEs model and serves as the basis of formulating the sensor placement problem with regard to a fault set F. For efficiency, a dedicated dynamic programming (DP) algorithm is devised to attain the optimal set of junctions for fault isolability. The two-tank system is employed to illustrate the sensor placement steps in a linear system. The optimal set (s), computed by the proposed sensor placement methodology, is/are validated by deriving primary analytical redundancy relations (ARRs) of the two-tank system.
机译:本文研究了传感器在线性动态系统中的位置,以进行故障检测和隔离。线性系统由键图(BG)建模,该键图可以自然方式与一组线性微分-代数方程(DAE)相关联。同时,将可能的传感器位置建模为BG上的连接点。因果路径捕获了线性系统的因果关系,并提供了一种手段来分析哪些结子集有助于故障检测和隔离。此外,本文利用了与BG相关的DAE,并证明了满足故障检测能力的传感器放置的必要和充分条件。基于故障可检测性条件,在DAEs模型中开发了实现两点故障区分性的传感器放置的必要条件,并作为针对故障集F制定传感器放置问题的基础。设计了一种程序设计(DP)算法,以实现故障可隔离性的最佳结点集。采用两罐系统来说明线性系统中的传感器放置步骤。通过推导两罐系统的主要分析冗余关系(ARR),可以验证由建议的传感器放置方法计算出的最佳集合。

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  • 来源
    《Journal of the Franklin Institute》 |2015年第3期|1056-1079|共24页
  • 作者单位

    EXQUISITUS, Centre for E-City, School of Electrical and Electronic Engineering, Nanyang Technological University, Singapore 639798, Singapore;

    EXQUISITUS, Centre for E-City, School of Electrical and Electronic Engineering, Nanyang Technological University, Singapore 639798, Singapore;

    EXQUISITUS, Centre for E-City, School of Electrical and Electronic Engineering, Nanyang Technological University, Singapore 639798, Singapore;

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  • 入库时间 2022-08-18 02:57:45

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