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    • 81. 发明授权
    • Methods and systems for collecting and processing data in association with machine operation and maintenance
    • 与机器运行和维护相关的收集和处理数据的方法和系统
    • US06853954B2
    • 2005-02-08
    • US10253950
    • 2002-09-24
    • John K. Apostolides
    • John K. Apostolides
    • F01M1/18F01M5/02F16N29/00G07C3/00G06F11/00
    • F16N29/00F01M1/18F01M5/02F01M11/04G07C3/00
    • A method is provided for processing data in connection with operation of a machine. The method includes detecting at least one condition of the machine during an operational state of the machine, wherein the operational state is selected from the group consisting of a dormant state of the machine and a pre-start state of the machine; collecting data indicative of the detected condition; and, performing at least one of storing the collected data and analyzing the collected data for determining whether a fault condition exists in connection with the detected condition of the machine. In another embodiment, a method is provided for operating an emergency machine that includes initiating activation of the emergency machine in response to a signal indicative of an emergency condition communicated to the emergency machine; and, initiating at least one pre-lubrication operation in association with the activation of the emergency machine in response to the communicated emergency condition signal. System and computer-readable media embodiments are also provided in accordance with the various method embodiments discussed herein.It is emphasized that this abstract is provided to comply with the rules requiring an abstract that will allow a searcher or other reader to quickly ascertain the subject matter of the technical disclosure. It is submitted with the understanding that it will not be used to interpret or limit the scope or meaning of the claims. 37 CFR § 1.72(b).
    • 提供了一种用于处理与机器的操作有关的数据的方法。 该方法包括在机器的操作状态期间检测机器的至少一个状态,其中操作状态选自机器的休眠状态和机器的预启动状态; 收集指示检测到的条件的数据; 以及执行存储所收集的数据中的至少一个并且分析所收集的数据以确定是否存在与所检测到的机器的状况有关的故障状况。 在另一个实施例中,提供了一种用于操作紧急机器的方法,所述应急机器响应于指示通信给所述应急机器的紧急情况的信号而启动所述应急机器的激活; 以及响应于所传达的紧急情况信号,启动至少一个与所述应急机器的激活相关联的预润滑操作。 系统和计算机可读介质实施例还根据本文所讨论的各种方法实施例提供。强调提供该摘要以符合要求抽象的规则,允许搜索者或其他读者快速确定主题 的技术披露。 提交它的理解是,它不会用于解释或限制权利要求的范围或含义。 37 CFR§1.72(b)。
    • 84. 发明授权
    • Machine monitor
    • 机器监视器
    • US5852351A
    • 1998-12-22
    • US915069
    • 1997-08-20
    • Ronald G. CanadaEugene F. PardueJames C. Robinson
    • Ronald G. CanadaEugene F. PardueJames C. Robinson
    • G01R31/34G01R33/028G07C3/00H02K11/00G07C3/08H02H7/085
    • G07C3/00G01R31/343G01R33/028H02K11/20H02K11/25H02K11/35H02K11/0094
    • A monitor attaches to a mount proximate a machine to determine the health and operating status of the machine. The monitor is preferably self-contained, having its own internal power source, electronics, and sensor suite. One or more sensors are provided to sense machine operating characteristics such as temperature, flux, and vibration. Sensor outputs are processed and analyzed by monitor electronics to determine various operating parameters, including machine speed and load, which are stored in memory. Other parameters which can be calculated and stored include cumulative time of machine operation for different categories of loads, cumulative time of machine operation over a predetermined maximum temperature, and total number of machine starts. Monitor electronics are also operable to transform time domain data generated by the sensors to frequency domain data. A communications port enables a peripheral device, such as a notebook computer or portable data collector, to communicate with the monitor and download stored data. Downloaded data can be further analyzed and statistically compared to trend data at a base computer to further ascertain the health and condition of the machine. For purposes of prolonging the life of the internal power source, the monitor electronics are configured to consume very little power.
    • 显示器连接到靠近机器的安装架,以确定机器的运行状况和运行状态。 显示器最好是独立的,具有自己的内部电源,电子设备和传感器套件。 提供一个或多个传感器来感测机器的操作特性,例如温度,通量和振动。 传感器输出由监控电子设备进行处理和分析,以确定存储在存储器中的各种操作参数,包括机器速度和负载。 可以计算和存储的其他参数包括不同类别的负载的机器操作的累积时间,超过预定最大温度的机器操作的累积时间和机器启动的总数。 监控电子设备还可以将传感器产生的时域数据转换为频域数据。 通信端口使诸如笔记本电脑或便携式数据收集器的外围设备能够与监视器通信并下载存储的数据。 下载数据可以进一步分析,并与基础计算机的趋势数据进行统计学比较,以进一步确定机器的健康状况。 为了延长内部电源的寿命,显示器电子设备被配置为消耗很少的功率。
    • 85. 发明授权
    • Diagnostics for resistance based transmitter
    • 基于电阻的变送器诊断
    • US5828567A
    • 1998-10-27
    • US744980
    • 1996-11-07
    • Evren EryurekGary Lenz
    • Evren EryurekGary Lenz
    • G08C25/00G01K15/00G05B9/03G07C3/00G08C19/02G06F19/00
    • G08C19/02G01K15/00G05B9/03G07C3/00Y10S706/903
    • Transmitter in a process control system includes a resistance sensor sensing a process variable and providing a sensor output. Sensor monitoring circuitry coupled to the sensor provides a secondary signal related to the sensor. Analog-to-digital conversion circuitry coupled to the sensor output and the sensor monitoring circuitry provides a digitized sensor output and a digitized secondary signal. Output circuitry coupled to a process control loop transmits a residual life estimate related to residual life of the sensor. A memory stores a set of expected results related to the secondary signal and to the sensor. Diagnostic circuitry provides the residual life estimate as a function of the expected results stored in the memory, the digitized sensor output and the digitized secondary signal.
    • 过程控制系统中的变送器包括感测过程变量并提供传感器输出的电阻传感器。 耦合到传感器的传感器监测电路提供与传感器相关的辅助信号。 耦合到传感器输出和传感器监测电路的模数转换电路提供数字化的传感器输出和数字化的辅助信号。 耦合到过程控制回路的输出电路传输与传感器的剩余寿命相关的剩余寿命估计。 存储器存储与二次信号和传感器相关的一组预期结果。 诊断电路根据存储在存储器中的预期结果,数字化传感器输出和数字化辅助信号提供剩余寿命估计。
    • 86. 发明授权
    • Electric motor monitor
    • 电动机监视器
    • US5726911A
    • 1998-03-10
    • US697335
    • 1996-08-22
    • Ronald G. CanadaEugene F. PardueJames C. Robinson
    • Ronald G. CanadaEugene F. PardueJames C. Robinson
    • G01R31/34G01R33/028G07C3/00H02K11/00G01K3/04H02H7/085
    • G07C3/00G01R31/343G01R33/028H02K11/20H02K11/25H02K11/35H02K11/0094
    • An ac machine monitor, particularly applicable to ac induction motors, provides information for ascertaining the health and condition of the motor. The monitor is self-contained, having its own internal power source, electronics, and sensor suite, and attaches directly to the outer frame of the motor. Sensors disposed within the monitor include a motor frame temperature sensor, flux sensor, vibration sensor, and clock. An ambient temperature sensor enables determination of motor frame temperature relative to ambient. Sensor outputs are processed and analyzed by monitor electronics to determine various life history parameters, including motor speed and load, which are stored in electronic memory. A communications port enables a peripheral device, such as a notebook computer or portable data collector, to communicate with the monitor and download the life history parameters stored in memory. Downloaded data can be further analyzed and statistically compared to trend data at a base computer to ascertain the health and condition of the motor. The monitor electronics are configured to consume very little power so that the internal power source will continue to power the monitor for several years.
    • 交流电机监视器,特别适用于交流感应电动机,提供了确定电机健康状况的信息。 显示器是独立的,具有自己的内部电源,电子和传感器套件,并直接连接到电机的外框。 设置在监视器内的传感器包括电机框架温度传感器,磁通传感器,振动传感器和时钟。 环境温度传感器可以确定相对于环境的电机框架温度。 传感器输出由监控电子设备进行处理和分析,以确定存储在电子存储器中的各种寿命参数,包括电机速度和负载。 通信端口使诸如笔记本计算机或便携式数据收集器的外围设备能够与监视器通信并下载存储在存储器中的生命历史参数。 下载数据可以进一步分析,并与基础计算机的趋势数据进行统计学比较,以确定电机的健康状况。 显示器电子设备被配置为消耗很少的电力,以便内部电源将继续为显示器供电数年。
    • 87. 发明授权
    • Method for monitoring prescribed use periods of replaceable parts within
an image forming apparatus
    • 用于监视图像形成装置内的可替换部件的规定使用期限的方法
    • US5717974A
    • 1998-02-10
    • US655025
    • 1996-05-29
    • Jin-Sung Park
    • Jin-Sung Park
    • G03G15/00G07C3/00G03G21/00
    • G03G15/553G03G15/55G07C3/00G03G2221/1663
    • A method for monitoring prescribed use periods of replaceable parts within an image forming apparatus, contemplates the steps of: updating in a memory, current count values respectively corresponding to the replaceable parts in response to each printed sheet generated by the apparatus, each one of the current count values representing an amount of use sustained by a corresponding one of the replaceable parts; sequentially comparing the current count values with corresponding predetermined count values representative of the prescribed use periods to determine whether any one of the prescribed use periods has expired; and providing output of a printed document indicating that one of the prescribed use periods has expired when one of the current count values equals a corresponding one of the predetermined count values.
    • 一种用于监视图像形成装置内的可替换部件的规定使用期限的方法,其特征在于,具有以下步骤:响应于由所述装置产生的每张打印纸,在存储器中更新分别对应于所述可替换部件的当前计数值, 当前计数值,表示相应的一个可替换部件所使用的使用量; 顺序地将当前计数值与表示规定使用期间的相应预定计数值进行比较,以确定规定使用期间中的任何一个是否已经过期; 以及当所述当前计数值之一等于所述预定计数值中的相应一个计数值时,提供指示所述规定使用期间中的一个已经期满的打印文档的输出。