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    • 13. 发明授权
    • Method for the analysis and evaluation of measured values of an open test system
    • 分析和评估开放测试系统测量值的方法
    • US06968284B2
    • 2005-11-22
    • US10107802
    • 2002-03-28
    • Klaus-Christoph HarmsChristian Beidl
    • Klaus-Christoph HarmsChristian Beidl
    • G01N3/62G05B23/02G06F19/00G06F9/00
    • G01N3/62
    • In a method for the analysis and evaluation of measured values of an open test system, a test piece is monitored during a test run by at least one signal channel which sends a signal to an evaluation unit for further processing whereby at least one plausibility node is coupled with at least one signal channel. In order to allow a statement to be made about the value of plausibility nodes and their results in relation to a specific measuring task, an evaluated plausibility is ascertained for at least one of the measured values from the type and number of plausibility nodes as well as their possible, variable interconnection.In order to permit, in addition, statements on the reliability of the results of the test system in relation to the desired measured values, it is provided that from the type and number of available plausibility nodes in combination with the type and number of available signal channels, a value is ascertained for the confidence level of the plausibility of at least one of the measured values of the current test system.
    • 在用于分析和评估开放测试系统的测量值的方法中,在测试运行期间通过至少一个信号通道来监测测试片,所述至少一个信号通道将信号发送到评估单元用于进一步处理,由此至少一个似真性节点是 与至少一个信号通道耦合。 为了允许对合理性节点的价值及其与特定测量任务相关的结果进行说明,根据合理性节点的类型和数量,确定至少一个测量值的评估真实性,以及 可能的互连。 此外,为了允许关于测试系统的结果与期望的测量值相关的可靠性的陈述,根据可用合理性节点的类型和数量以及可用信号的类型和数量 通道,确定当前测试系统的至少一个测量值的可信度的置信水平的值。
    • 14. 发明申请
    • Ultrasonic gas flowmeter as well as device to measure exhaust flows of internal combustion engines and method to determine flow of gases
    • 超声波气体流量计以及测量内燃机排气流量的装置以及确定气体流量的方法
    • US20050066744A1
    • 2005-03-31
    • US10892476
    • 2004-07-16
    • Mario KupnikAndreas SchroderMichael WiesingerKlaus-Christoph Harms
    • Mario KupnikAndreas SchroderMichael WiesingerKlaus-Christoph Harms
    • G01F1/00G01F1/66G01F15/02G01F1/86
    • G01F15/024G01F1/662G01F1/667G01F1/668
    • An ultrasonic gas flowmeter includes a measuring pipe with flowing gas, transmitting and receiving sound transducers, transmission and reception electronics, and evaluation electronics. The sound transducers (7, 8, 9, 10) are designed as capacitive electro-acoustic ultrasonic transducers to construct a flowmeter with improved capacity, especially in view of temperature stability and the reduction and consideration of a temperature profile. Devices (5, 6) are provided to level the gas temperature profile and to minimize the influence of the temperature profile on the flow measurement. A more accurate and dependable detection of the volume flow or the mass flow of gases is to be achieved, especially in highly dynamic flows, for the method of determining the flow of gases whereby the mean flow velocity is determined and the flowing gas quantity is determined with highly synchronized resolution from the two transit times of two acoustic signals. In addition, an assessed value is computed (35) for the flow after the determination of the transit times and the assessed value is corrected at least by means of a characteristic temperature of the gas and the temperature of the wall of the measuring pipe (36).
    • 超声波气体流量计包括具有流动气体的测量管,发送和接收声音传感器,传输和接收电子设备以及评估电子设备。 声音传感器(7,8,9,10)被设计为电容式电声超声波换能器,以构建具有改进的容量的流量计,特别是考虑到温度稳定性和降低和考虑温度曲线。 提供设备(5,6)以平衡气体温度分布,并最小化温度分布对流量测量的影响。 对于确定气体流量的方法,尤其是在高动态流量中,要实现气体的体积流量或质量流量的更准确和可靠的检测,从而确定平均流速并确定流动气体量 具有来自两个声信号的两个传送时间的高度同步的分辨率。 此外,在确定运输时间之后计算流量的评估值(35),并且评估值至少通过气体的特征温度和测量管壁(36)的温度校正 )。
    • 15. 发明授权
    • System for the conduction of liquid media, as well as filtering device for use in such a system
    • 用于传导液体介质的系统,以及用于这种系统的过滤装置
    • US06530983B2
    • 2003-03-11
    • US09748363
    • 2000-12-26
    • Dieter ChybinRudolf ChristianKlaus-Christoph Harms
    • Dieter ChybinRudolf ChristianKlaus-Christoph Harms
    • B01D1900
    • B67D7/76B01D19/0063
    • The invention relates to a system for the conduction of liquid media, for example fuels, between a tank and a delivery point, especially fuel consumption measuring systems or fuel conditioning systems, which includes a bubble-separating arrangement, as well as a filter element for use in such a system. For the simple and effective detection and separation of bubbles and further contaminations of every type in the particular liquid medium and, if necessary, the further development for additional simple and rapid determination of their volumes and therewith consideration in possible measurements, it is provided that the bubble-separating arrangement is formed by a filtering device and in the filtering device the connection for the liquid medium is arranged in a zone outside the filtering element.
    • 本发明涉及一种用于在罐和输送点之间传导液体介质(例如燃料)的系统,特别是包括气泡分离装置的燃料消耗测量系统或燃料调节系统,以及用于 在这样的系统中使用。 为了简单有效地检测和分离气泡以及特定液体介质中每种类型的进一步污染,并且如果需要,进一步开发进一步简单和快速地确定其体积并且在可能的测量中考虑, 气泡分离装置由过滤装置形成,并且在过滤装置中,用于液体介质的连接被布置在过滤元件外部的区域中。
    • 16. 发明授权
    • Test assembly and procedure for capturing performance data
    • 用于捕获性能数据的测试组件和过程
    • US08209151B2
    • 2012-06-26
    • US12458285
    • 2009-07-07
    • Jerome GruazKlaus-Christoph HarmsMartin RzehorskaRüdiger Teichmann
    • Jerome GruazKlaus-Christoph HarmsMartin RzehorskaRüdiger Teichmann
    • G06F15/00
    • G01D3/022G01D3/08G01D5/02
    • In order to make error recognition, for example, in cabling, in the stored data or in the data allocation, in the allocation of a sensor unit to sensor-relevant data for calibration of an analysis unit that is connected with a sensor unit possible, a sensor identification (6) is located in or on the sensor unit that can be polled by the analysis unit (4) and to which sensor-specific data are allocated in a storage unit (5), and a data carrier (7) is located in or on the sensor unit in which a second set of sensor-specific data are stored that can be read by the analysis unit (4) and can be compared with the first set of sensor-specific data of storage unit (5). Upon agreement of the first and second set of sensor-specific data, the measuring signals are transformed into measurement data by considering the sensor-specific data.
    • 为了进行错误识别,例如,在布线,存储的数据或数据分配中,在将传感器单元分配给与传感器单元连接的分析单元进行校准的传感器相关数据时, 传感器识别(6)位于传感器单元中或传感器单元上​​,可由分析单元(4)轮询,并将传感器特定数据分配到存储单元(5)中,数据载体(7)为 位于传感器单元中或传感器单元上​​,其中存储有可由分析单元(4)读取的第二组传感器特定数据,并且可以与存储单元(5)的第一组传感器特定数据进行比较。 根据第一组和第二组传感器特定数据,通过考虑传感器特定的数据将测量信号转换成测量数据。
    • 18. 发明申请
    • Measuring arrangement and method to determine at intervals the usability potential of at least one operational fluid in an engine
    • 测量装置和方法,以间隔确定发动机中至少一个操作流体的可用性潜力
    • US20050216178A1
    • 2005-09-29
    • US11085597
    • 2005-03-22
    • Franz GrafKarol SchleiferKlaus-Christoph Harms
    • Franz GrafKarol SchleiferKlaus-Christoph Harms
    • G01M15/00G01M15/09G01N33/26
    • G01M15/09
    • A measuring and testing system for a test piece (1) with at least one operational fluid, particularly to test an internal combustion engine, is provided with at least one measuring arrangement connected to a space (2) of the test piece (1) containing operational fluid, and comprising a partial measuring arrangement (4, 5, 6) for the quantity parameter of the operational fluid and at least one additional partial measuring arrangement (6, 7) for at least one quality parameter for the characterization of the physical and/or chemical condition of the operational fluid, as well as a control and evaluation unit (6) connected to the measuring arrangement. An evaluation logic is implemented in the evaluation unit (6) whereby said evaluation logic links the quantity parameters with at least one condition parameter according to a predefinable relationship and determines the usability potential of the operational fluid to be able to give in a systematic and simple manner also information about the admissibility and possible validity of the parameters of the operational fluids and possibly about other measuring and testing results.
    • 具有至少一个操作流体(特别是测试内燃机)的测试件(1)的测量和测试系统设置有连接到测试件(1)的空间(2)的至少一个测量装置,其包含 操作流体,并且包括用于操作流体的量参数的部分测量装置(4,5,6)和用于至少一个质量参数的至少一个额外的部分测量装置(6,7),用于表征物理和 /或操作流体的化学条件,以及连接到测量装置的控制和评估单元(6)。 在评估单元(6)中实现评估逻辑,由此所述评估逻辑根据预定义关系将数量参数与至少一个条件参数相连接,并确定操作流体能够以系统和简单的方式给出的可用性潜力 还可以了解有关操作流体参数的可接受性和可能的​​有效性以及可能涉及其他测量和测试结果的信息。