SYSTEM FOR SURVEILLANCE OF SPECTRAL SIGNALS
    1.
    发明申请
    SYSTEM FOR SURVEILLANCE OF SPECTRAL SIGNALS 审中-公开
    光谱信号监测系统

    公开(公告)号:WO9926073A8

    公开(公告)日:1999-08-12

    申请号:PCT/US9823166

    申请日:1998-10-30

    Applicant: ARCH DEV CORP

    CPC classification number: G01R23/16

    Abstract: The invention is a method and system for monitoring at least one of a system, a process and a data source. A method and system have been developed for carrying out surveillance, testing and modification of an ongoing process or other source of data, such as a spectroscopic examination. A signal from the system under surveillance is collected and compared with a learned states (40), a frequency domain transformation carried out for the system signal and reference signal, and a frequency domain difference function is established. The process is then repeated until a full range of data is accumulated over the time domain and an SPRT methodology (50) is applied to determine a three-dimensional surface plot (60) characteristic of the operating state of the system under surveillance.

    Abstract translation: 本发明是用于监视系统,过程和数据源中的至少一个的方法和系统。 已经开发了用于对正在进行的过程或其他数据源(例如光谱检查)进行监视,测试和修改的方法和系统。 收集来自被监视系统的信号,并与学习状态(40)进行比较,建立了对系统信号和参考信号进行的频域变换,并建立了频域差分函数。 然后重复该过程,直到在时域上累积完整的数据范围,并且应用SPRT方法(50)来确定监视系统的操作状态特征的三维表面图(60)。

    SYSTEM FOR SURVEILLANCE OF SPECTRAL SIGNALS
    2.
    发明公开
    SYSTEM FOR SURVEILLANCE OF SPECTRAL SIGNALS 审中-公开
    ÜBERWACHTUNGSSYSTEMVON SPEKTROL-SIGNALEN

    公开(公告)号:EP1031039A4

    公开(公告)日:2000-12-20

    申请号:EP98956419

    申请日:1998-10-30

    Applicant: ARCH DEV CORP

    CPC classification number: G01R23/16

    Abstract: The invention is a method and system for monitoring at least one of a system, a process and a data source. A method and system have been developed for carrying out surveillance, testing and modification of an ongoing process or other source of data, such as a spectroscopic examination. A signal from the system under surveillance (10) is collected and compared with a reference signal (20), a frequency domain transformation carried out for the system signal and reference signal, and a frequency domain difference function is established. The process is then repeated until a full range of data is accumulated over the time domain and a SPRT methodology (50) is applied to determine a three-dimensional surface plot (60) characteristic of the operating state of the system under surveillance.

    Abstract translation: 本发明是用于监视系统,过程和数据源中的至少一个的方法和系统。 已经开发了用于执行对正在进行的过程或诸如光谱检查等其他数据源的监视,测试和修改的方法和系统。 收集来自受监视系统(10)的信号并将其与参考信号(20)进行比较,对系统信号和参考信号执行频域变换,并建立频域差分函数。 然后重复该过程,直到在整个时间范围内累积全部范围的数据并且应用SPRT方法(50)来确定受监视的系统的操作状态的三维表面图(60)特征。

    System for surveillance of spectral signals

    公开(公告)号:AU745828B2

    公开(公告)日:2002-04-11

    申请号:AU1294699

    申请日:1998-10-30

    Applicant: ARCH DEV CORP

    Abstract: A method and system for monitoring at least one of a system, a process and a data source. A method and system have been developed for carrying out surveillance, testing and modification of an ongoing process or other source of data, such as a spectroscopic examination. A signal from the system under surveillance is collected and compared with a reference signal, a frequency domain transformation carried out for the system signal and reference signal, a frequency domain difference function established. The process is then repeated until a full range of data is accumulated over the time domain and a Sequential Probability Ratio Test ("SPRT") methodology applied to determine a three-dimensional surface plot characteristic of the operating state of the system under surveillance.

    SYSTEM FOR SURVEILLANCE OF SPECTRAL SIGNALS

    公开(公告)号:CA2309271A1

    公开(公告)日:1999-05-27

    申请号:CA2309271

    申请日:1998-10-30

    Applicant: ARCH DEV CORP

    Abstract: The invention is a method and system for monitoring at least one of a system, a process and a data source. A method and system have been developed for carrying out surveillance, testing and modification of an ongoing process or other source of data, such as a spectroscopic examination. A signal from the system under surveillance is collected and compared with a learned states (40), a frequency domain transformation carried out for the system signal and reference signal, and a frequency domain difference function is established. The process is then repeated until a full range of data is accumulated over the time domain and an SPRT methodology (50) is applied to determine a threedimensional surface plot (60) characteristic of the operating state of the system under surveillance.

    System for surveillance of spectral signals

    公开(公告)号:AU1294699A

    公开(公告)日:1999-06-07

    申请号:AU1294699

    申请日:1998-10-30

    Applicant: ARCH DEV CORP

    Abstract: A method and system for monitoring at least one of a system, a process and a data source. A method and system have been developed for carrying out surveillance, testing and modification of an ongoing process or other source of data, such as a spectroscopic examination. A signal from the system under surveillance is collected and compared with a reference signal, a frequency domain transformation carried out for the system signal and reference signal, a frequency domain difference function established. The process is then repeated until a full range of data is accumulated over the time domain and a Sequential Probability Ratio Test ("SPRT") methodology applied to determine a three-dimensional surface plot characteristic of the operating state of the system under surveillance.

    SYSTEM FOR SURVEILLANCE OF SPECTRAL SIGNALS

    公开(公告)号:CA2309271C

    公开(公告)日:2006-07-11

    申请号:CA2309271

    申请日:1998-10-30

    Applicant: ARCH DEV CORP

    Abstract: The invention is a method and system for monitoring at least one of a system, a process and a data source. A method and system have been developed for carrying out surveillance, testing and modification of an ongoing process or other source of data, such as a spectroscopic examination. A signal from the system under surveillance is collected and compared with a learned states (40), a frequency domain transformation carried out for the system signal and reference signal, and a frequency domain difference function is established. The process is then repeated until a full range of data is accumulated over the time domain and an SPRT methodology (50) is applied to determine a three-dimensional surface plot (60) characteristic of the operating state of the system under surveillance.

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