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    • 1. 发明申请
    • Adaptive And State Driven Data Collection
    • 自适应和状态驱动数据收集
    • US20160048110A1
    • 2016-02-18
    • US14825050
    • 2015-08-12
    • COMPUTATIONAL SYSTEMS, INC.
    • Christopher G. HilemonThomas E. NelsonRobert D. SkeirikAnthony J. HayzenDeane M. Horn
    • G05B13/02
    • G08B21/02G05B21/02
    • A method of automatically adjusting data collection parameters for machines on a data collection route in a portable collection device used by a technician, based on states of the machines. For each machine on the data collection route, the state of the machine is read into the portable collection device. The machine is automatically included in or excluded from the data collection route based at least in part on the state of the machine. The portable collection device is automatically configured with a first predetermined set of data collection parameters that is automatically configured based at least in part on the state of the included machine. An initial set of data is collected from the included machine with the portable collection device, based on the first predetermined set of data collection parameters. The initial set of data is automatically analyzed using a predetermined set of data analysis parameters that is automatically configured based at least in part on the state of the included machine, to determine alerts. Based on the alerts, a second set of data is selectively automatically immediately collected from the included machine based on a second predetermined set of data collection parameters that is automatically configured based at least in part on the state of the included machine and the alerts. Also based on the alerts, the technician is selectively prompted with the portable collection device to take a predetermined action and collect a third set of data from the included machine. The action and the third set of data is based on a third predetermined set of data collection parameters that is automatically configured at least in part on the state of the included machine and the alerts.
    • 基于机器的状态,技术人员使用的便携式收集装置中的数据收集路线上的机器的数据收集参数的方法。 对于数据采集路线上的每台机器,将机器的状态读入便携式收集装置。 该机器至少部分地基于机器的状态被自动地包括在数据收集路线中或从数据收集路线排除。 便携式收集装置被自动配置有至少部分地基于所包括的机器的状态自动配置的第一预定数据收集参数集合。 基于第一预定数据收集参数集,从包含的便携式收集装置的机器收集初始数据集。 使用至少部分地基于所包括的机器的状态自动配置的预定的一组数据分析参数来自动分析初始数据集,以确定警报。 基于警报,基于第二预定数据收集参数集合,从包含的机器中选择性地自动地立即收集第二组数据,所述第二预定数据集合参数被至少部分地基于所包括的机器的状态和警报而被自动配置。 还基于警报,技术人员被选择性地提示与便携式收集装置采取预定的动作并从所包含的机器收集第三组数据。 动作和第三组数据基于第三预定数据集合参数集合,其至少部分地基于所包括的机器的状态和警报自动配置。
    • 2. 发明申请
    • Processing Machinery Protection and Fault Prediction Data Natively in a Distributed Control System
    • 分布式控制系统中的加工机械保护和故障预测数据
    • US20160026173A1
    • 2016-01-28
    • US14808418
    • 2015-07-24
    • Computational Systems, Inc.
    • John W. WillisDeane M. HornMichael D. MedleyRichard W. KephartKevin D. Steele
    • G05B19/4065
    • G05B19/4065G01M7/00G05B2219/33273G05B2219/37252G05B2219/37434G05B2219/37435
    • A vibration data acquisition and analysis module is operable to be inserted directly into a distributed control system (DCS) I/O backplane, so that processed vibration parameters may be scanned directly by the DCS I/O controller. Because the process data and the vibration data are both being scanned by the same DCS I/O controller, there is no need to integrate numerical data, binary relay outputs, and analog overall vibration level outputs from a separate vibration monitoring system into the DCS. The system provides for: (1) directly acquiring vibration data by the DCS for machinery protection and predictive machinery health analysis; (2) direct integration of vibration information on DCS alarm screens; (3) acquisition and display of real time vibration data on operator screens; (4) using vibration data to detect abnormal situations associated with equipment failures; and (5) using vibration data directly in closed-loop control applications.
    • 振动数据采集和分析模块可直接插入到分布式控制系统(DCS)I / O背板中,从而可以通过DCS I / O控制器直接扫描经过处理的振动参数。 由于过程数据和振动数据都被相同的DCS I / O控制器扫描,因此不需要将数字数据,二进制继电器输出和模拟总体振动电平输出从单独的振动监控系统集成到DCS中。 该系统规定:(1)DCS直接获取振动数据进行机械保护和预测机械健康分析; (2)在DCS报警屏幕上直接集成振动信息; (3)在操作员屏幕上采集和显示实时振动数据; (4)使用振动数据检测与设备故障相关的异常情况; 和(5)直接在闭环控制应用中使用振动数据。
    • 7. 发明授权
    • Adaptive and state driven data collection
    • 自适应和状态驱动的数据收集
    • US09524629B2
    • 2016-12-20
    • US14825050
    • 2015-08-12
    • Computational Systems, Inc.
    • Christopher G. HilemonThomas E. NelsonRobert D. SkeirikAnthony J. HayzenDeane M. Horn
    • G05B21/00G08B21/02
    • G08B21/02G05B21/02
    • Automatically adjusting collection parameters for machines on a route in a collection device, based on states of the machines. For each machine on the route, the machine state is read into the collection device. The machine is included or excluded based on the machine state. The collection device is configured with first collection parameters that are configured based on the machine state. Data is collected from the machine based on the first collection parameters. The data is analyzed using parameters that are configured based on the machine, to determine alerts. Based on the alerts, data is selectively immediately collected from the machine based on second collection parameters that are configured based on the machine state and the alerts. Also based on the alerts, the technician is selectively prompted with the collection device to take a predetermined action and collect data from the machine. The action and data are based on third collection parameters that are configured on the machine state and the alerts.
    • 根据机器的状态自动调整收集设备中路由上的机器的收集参数。 对于路由上的每台机器,将机器状态读入收集设备。 根据机器状态包括或排除机器。 收集设备配置有基于机器状态配置的第一个收集参数。 基于第一个收集参数从机器收集数据。 使用基于机器配置的参数来分析数据,以确定警报。 基于警报,基于基于机器状态和警报配置的第二收集参数,选择性地立即从机器收集数据。 还基于警报,技术人员被选择性地通过收集装置提示以采取预定的动作并从机器收集数据。 操作和数据基于在机器状态和警报上配置的第三个收集参数。
    • 8. 发明申请
    • Apparatus and Method for Signal Synchronization
    • 信号同步的装置和方法
    • US20160146646A1
    • 2016-05-26
    • US14549107
    • 2014-11-20
    • Computational Systems, Inc.
    • John W. WillisMichael D. MedleyAnthony J. HayzenDeane M. Horn
    • G01D21/00
    • G01D21/00G01H1/003G05B15/02H03M1/00
    • A system is described for time synchronizing digitized measurement signals, such as vibration signals. The digitized signals, which are acquired asynchronously by multiple distributed measurement units, indicate the operational condition of a machine or a process. To measure the phase of the digitized signals relative to a pulse tachometer input, the time between the leading edge of the tachometer pulse and the digitized samples is measured. To achieve phase-coherent synchronization across the distributed measurement units, a local synchronization signal is embedded into the data produced by the measurement units. The systems uses the synchronization signal to align the data in post processing, which phase aligns the data and aligns the data in absolute time. The synchronization signal may be encoded with a timestamp to provide additional timing information.
    • 描述了用于时间同步数字化测量信号(例如振动信号)的系统。 由多个分布式测量单元异步获取的数字化信号指示机器或过程的操作条件。 为了测量相对于脉冲转速计输入的数字化信号的相位,测量转速计脉冲前沿与数字化采样之间的时间。 为了在分布式测量单元之间实现相位相干同步,本地同步信号被嵌入到由测量单元产生的数据中。 系统使用同步信号在后处理中对齐数据,该相位对齐数据并以绝对时间对准数据。 可以用时间戳编码同步信号以提供附加的定时信息。