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    함수관측자를 이용한 장치고장검출 기법 = An Instrument Fault Detection Scheme using Function Observers

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    https://www.riss.kr/link?id=A104282044

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    - A major difficulty with the practical application of the multiple observer based IFDI schemes is the computational burden of the residual generation. In this paper, a new residual generator that employs function observers is proposed to reduce the computational burden, and the design methods of the IFDIS, equipped with the residual generator, are presented. The function observers employed in the residual generator can be considered as a dual of the unknown input (function) observer. And it can be designed to estimate the measurement errors that are due to sensor faults. The error estimates are further processed to generate the residuals by which reliable fault detection/isolation result can be obtained. The proposed scheme is more useful, in real-time application, than any other multiple state observer based IFDISs. It can be effectively applied to fault tolerant control because the failure effects can be compensated by the use of the estimates of measurement errors. The proposed IFDI scheme is applied to an inverted pendulum control system for the IFDI of failed sensor and fault compensation.
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    - A major difficulty with the practical application of the multiple observer based IFDI schemes is the computational burden of the residual generation. In this paper, a new residual generator that employs function observers is proposed to reduce the c...

    - A major difficulty with the practical application of the multiple observer based IFDI schemes is the computational burden of the residual generation. In this paper, a new residual generator that employs function observers is proposed to reduce the computational burden, and the design methods of the IFDIS, equipped with the residual generator, are presented. The function observers employed in the residual generator can be considered as a dual of the unknown input (function) observer. And it can be designed to estimate the measurement errors that are due to sensor faults. The error estimates are further processed to generate the residuals by which reliable fault detection/isolation result can be obtained. The proposed scheme is more useful, in real-time application, than any other multiple state observer based IFDISs. It can be effectively applied to fault tolerant control because the failure effects can be compensated by the use of the estimates of measurement errors. The proposed IFDI scheme is applied to an inverted pendulum control system for the IFDI of failed sensor and fault compensation.

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    참고문헌 (Reference)

    1 이기상, "함수관측자를 이용한 고장검출식별에 관한 연구" 10 (10): 883-890, 2003.

    2 Abbas Enami-Naeini et. al, "and accomodation for sensor failures" 1986.

    3 "Real time fault monitoring of industrial processes" Kluwer Academic Publishers 1994

    4 P. Murdoch, "Observer design for a linear functional of the state vector" 16 (16): 308-310, 1973.

    5 Allard Beutel, "NASA launches space shuttle return to flight mission" July.2005.

    6 J. Gertler, "Generating directional residuals with dynamic parity equations" 7 : 505-510, 1993.

    7 R. Patton, "Fault diagnosis in dynamic systems" Prentice-Hall 1989.

    8 H. Hammouri, "Fault diagnosis and nonlinear observer, application to a hydraulic process" 339 (339): 455-478, 2002.

    9 S. Simani, "Diagnosis techniques for sensor faults of industrial processes" 8 (8): 848-855, 2000.

    10 J. Apkarian, "A comprehensive and modular laboratory for control systems design and implementation" Quanser Consulting Inc. 1997.

    1 이기상, "함수관측자를 이용한 고장검출식별에 관한 연구" 10 (10): 883-890, 2003.

    2 Abbas Enami-Naeini et. al, "and accomodation for sensor failures" 1986.

    3 "Real time fault monitoring of industrial processes" Kluwer Academic Publishers 1994

    4 P. Murdoch, "Observer design for a linear functional of the state vector" 16 (16): 308-310, 1973.

    5 Allard Beutel, "NASA launches space shuttle return to flight mission" July.2005.

    6 J. Gertler, "Generating directional residuals with dynamic parity equations" 7 : 505-510, 1993.

    7 R. Patton, "Fault diagnosis in dynamic systems" Prentice-Hall 1989.

    8 H. Hammouri, "Fault diagnosis and nonlinear observer, application to a hydraulic process" 339 (339): 455-478, 2002.

    9 S. Simani, "Diagnosis techniques for sensor faults of industrial processes" 8 (8): 848-855, 2000.

    10 J. Apkarian, "A comprehensive and modular laboratory for control systems design and implementation" Quanser Consulting Inc. 1997.

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