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    • 2. 发明授权
    • Data acquisition system indexed by cycle segmentation
    • 数据采集​​系统采用循环分割方法
    • US08185290B2
    • 2012-05-22
    • US12073669
    • 2008-03-07
    • Brian MintahRobert J. PriceKevin D. KingVijayakumar JanardhanShoji Tozawa
    • Brian MintahRobert J. PriceKevin D. KingVijayakumar JanardhanShoji Tozawa
    • G06F19/00
    • E02F3/435E02F9/24E02F9/264E02F9/267
    • A data acquisition system for an excavation machine having a power source configured to drive a tool through a work cycle is disclosed. The data acquisition system may have a first sensor associated with the power source to generate a first signal indicative of a performance of the power source, and a second sensor associated with the tool to generate a second signal indicative of a performance of the tool. The data acquisition system may also have a controller in communication with the first and second sensors. The controller may be configured to record the first and second signals, and partition the work cycle into a plurality of segments. The controller may be further configured to link the performance of the power source and the performance of the tool together with one of the plurality of segments during which the associated first and second signals were recorded.
    • 公开了一种用于挖掘机的数据采集系统,其具有被配置成驱动工具通过工作循环的动力源。 数据采集​​系统可以具有与电源相关联的第一传感器以产生指示电源的性能的第一信号,以及与该工具相关联的第二传感器以产生指示该工具性能的第二信号。 数据采集​​系统还可以具有与第一和第二传感器通信的控制器。 控制器可以被配置为记录第一和第二信号,并且将工作周期划分成多个段。 控制器还可以被配置为将电源的性能和工具的性能与多个片段中的一个链接在一起,在该片段期间记录关联的第一和第二信号。
    • 3. 发明授权
    • Adaptive payload monitoring system
    • 自适应负载监测系统
    • US08156048B2
    • 2012-04-10
    • US12073668
    • 2008-03-07
    • Brian MintahRobert J. PriceKevin D. KingVijayakumar JanardhanShoji Tozawa
    • Brian MintahRobert J. PriceKevin D. KingVijayakumar JanardhanShoji Tozawa
    • G06F19/00
    • G01G19/10E02F9/2029E02F9/264
    • A payload monitoring system for an excavation machine is disclosed. The payload monitoring system may have a tool, a first sensor configured to generate a first signal indicative of a velocity of the tool, and a second sensor configured to generate a second signal indicative of a lift force of the tool. The payload monitoring system may also have a controller in communication with the first sensor and the second sensor. The controller may be configured to record the velocity and the lift force of the tool during a work cycle based on the first and second signals, and partition the work cycle into a plurality of segments including a loaded moving segment. The controller may also be configured to determine a period of time within the loaded moving segment during which the velocity of the tool is substantially constant, and calculate a payload of the tool based on the lift force recorded during the period of time.
    • 公开了一种挖掘机的有效载荷监控系统。 有效载荷监视系统可以具有工具,第一传感器被配置为生成指示工具的速度的第一信号,以及被配置为产生指示工具的提升力的第二信号的第二传感器。 有效载荷监视系统还可以具有与第一传感器和第二传感器通信的控制器。 控制器可以被配置为基于第一和第二信号在工作循环期间记录工具的速度和提升力,并且将工作周期划分成包括加载的移动段的多个段。 控制器还可以被配置为确定加载的运动段内的时间段,在该时间段期间刀具的速度基本上是恒定的,并且基于在该时间段期间记录的升力来计算工具的有效载荷。
    • 4. 发明申请
    • Adaptive payload monitoring system
    • 自适应负载监测系统
    • US20090228394A1
    • 2009-09-10
    • US12073668
    • 2008-03-07
    • Brian MintahRobert J. PriceKevin D. KingVijayakumar JanardhanShoji Tozawa
    • Brian MintahRobert J. PriceKevin D. KingVijayakumar JanardhanShoji Tozawa
    • G06F19/00
    • G01G19/10E02F9/2029E02F9/264
    • A payload monitoring system for an excavation machine is disclosed. The payload monitoring system may have a tool, a first sensor configured to generate a first signal indicative of a velocity of the tool, and a second sensor configured to generate a second signal indicative of a lift force of the tool. The payload monitoring system may also have a controller in communication with the first sensor and the second sensor. The controller may be configured to record the velocity and the lift force of the tool during a work cycle based on the first and second signals, and partition the work cycle into a plurality of segments including a loaded moving segment. The controller may also be configured to determine a period of time within the loaded moving segment during which the velocity of the tool is substantially constant, and calculate a payload of the tool based on the lift force recorded during the period of time.
    • 公开了一种挖掘机的有效载荷监控系统。 有效载荷监视系统可以具有工具,第一传感器被配置为生成指示工具的速度的第一信号,以及被配置为产生指示工具的提升力的第二信号的第二传感器。 有效载荷监视系统还可以具有与第一传感器和第二传感器通信的控制器。 控制器可以被配置为基于第一和第二信号在工作循环期间记录工具的速度和提升力,并且将工作周期划分成包括加载的移动段的多个段。 控制器还可以被配置为确定加载的运动段内的时间段,在该时间段期间刀具的速度基本上是恒定的,并且基于在该时间段期间记录的升力来计算工具的有效载荷。
    • 5. 发明申请
    • Data acquisition system indexed by cycle segmentation
    • 数据采集​​系统采用循环分割方法
    • US20090228176A1
    • 2009-09-10
    • US12073669
    • 2008-03-07
    • Brian MintahRobert J. PriceKevin D. KingVijayakumar JanardhanShoji Tozawa
    • Brian MintahRobert J. PriceKevin D. KingVijayakumar JanardhanShoji Tozawa
    • G06F19/00
    • E02F3/435E02F9/24E02F9/264E02F9/267
    • A data acquisition system for an excavation machine having a power source configured to drive a tool through a work cycle is disclosed. The data acquisition system may have a first sensor associated with the power source to generate a first signal indicative of a performance of the power source, and a second sensor associated with the tool to generate a second signal indicative of a performance of the tool. The data acquisition system may also have a controller in communication with the first and second sensors. The controller may be configured to record the first and second signals, and partition the work cycle into a plurality of segments. The controller may be further configured to link the performance of the power source and the performance of the tool together with one of the plurality of segments during which the associated first and second signals were recorded.
    • 公开了一种用于挖掘机的数据采集系统,其具有被配置成驱动工具通过工作循环的动力源。 数据采集​​系统可以具有与电源相关联的第一传感器以产生指示电源的性能的第一信号,以及与该工具相关联的第二传感器以产生指示该工具性能的第二信号。 数据采集​​系统还可以具有与第一和第二传感器通信的控制器。 控制器可以被配置为记录第一和第二信号,并且将工作周期划分成多个段。 控制器还可以被配置为将电源的性能和工具的性能与多个片段中的一个链接在一起,在该片段期间记录关联的第一和第二信号。