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    • 1. 发明授权
    • Method for determining and representing an optimal arrangement and installation of a radiometric measuring system
    • 用于确定和表示辐射测量系统的最佳布置和安装的方法
    • US06889150B2
    • 2005-05-03
    • US10130318
    • 2002-01-29
    • Joachim NeuhausWolfgang Kämereit
    • Joachim NeuhausWolfgang Kämereit
    • G01N23/04G01F23/00G01F23/288G01F25/00G05B15/02G05B23/02G01D18/00G01L15/00
    • G01F23/00G01F23/288G01F25/0061
    • The invention relates to a method for determining and presenting an optimized arrangement and assembly of a measurement system of process measurement technology, especially of a radiometric measurement system, at a container or pipe, in which measurement system at least one characterizing parameter of a medium contained in the container or pipe is to be measured.The method proceeds with the aid of at least a first electronic computer (10) and a second electronic computer (11) connected therewith and containing a display- (12), a processor-controlled, data processing- (15) and an input-device (13), wherein container- or pipe-specific data and information on medium and on expected measurement range are taken into consideration. The method establishes therefrom an optimized arrangement of the measurement system at or on the container or pipe and presents this arrangement in a sketch.The invention produces at greatest possible speeds the optimized design of the measurement system, also respecting safety aspects, and this in direct contact between a customer and a manufacturer of such a measurement system, or a project planer.
    • 本发明涉及一种用于在容器或管道上确定和呈现过程测量技术的测量系统,特别是辐射测量系统的测量系统的优化布置和组装的方法,其中测量系统包含介质的至少一个特性参数 在容器或管道中进行测量。 该方法借助于至少第一电子计算机(10)和与之连接的第二电子计算机(11),并且包含显示器(12),处理器控制的数据处理(15)和输入 - 装置(13),其中考虑了容器或管道特定数据以及关于中期和预期测量范围的信息。 该方法由此确定测量系统在容器或管道上或之上的优化布置,并将其呈现在草图中。 本发明以最大可能的速度生产测量系统的优化设计,同时也遵守安全方面,并且在客户和这种测量系统的制造商之间直接接触或项目刨床。
    • 2. 发明授权
    • Device for determining and/or monitoring the density and/or the level of a filling material in a container
    • 用于确定和/或监测容器中的填充材料的密度和/或水平的装置
    • US06879425B2
    • 2005-04-12
    • US10362523
    • 2001-08-23
    • Hartmut DammJoachim NeuhausWolfgang Kämereit
    • Hartmut DammJoachim NeuhausWolfgang Kämereit
    • G01F23/288G01N9/24G01N23/22G02F1/153G01F23/00G01F23/28G01J5/02
    • G01N9/24G01F23/288G01N23/22
    • The invention relates to a device for determining and/or monitoring the density and/or the level (L) of a filling material in a container. A transmitting unit which emits radioactive radiation and a receiving unit which is arranged in such a way that it receives the radioactive radiation or the secondary radiation that is produced by the interaction of the radioactive radiation with the filling material are provided. A regulating/evaluating unit which determines the density and/or the level of the filling material in the container using the measuring data that is supplied by the receiving unit is also provided. The aim of the invention is to provide a device which enables the level or the density of a filling material in a container to be measured reliably. To this end, the receiving unit consists of individual detector units. These detector units are positioned at different distances from the floor of the container, so that each detector unit directly or indirectly, essentially detects the proportion of radiation that passes.
    • 本发明涉及一种用于确定和/或监测容器中的填充材料的密度和/或水平(L)的装置。 提供发射放射性辐射的发送单元和接收单元,其以接收放射性辐射或通过放射性辐射与填充材料的相互作用产生的次级辐射的方式布置。 还提供了使用由接收单元提供的测量数据来确定容器中的填充材料的密度和/或水平的调节/评估单元。 本发明的目的是提供一种能够可靠地测量容器中的填充材料的水平或密度的装置。 为此,接收单元由单独的检测器单元组成。 这些检测器单元位于与容器的地板不同的距离处,使得每个检测器单元直接或间接地基本上检测通过的辐射的比例。
    • 3. 发明授权
    • Liquid level meter
    • 液位计
    • US06229476B1
    • 2001-05-08
    • US09447189
    • 1999-11-22
    • Wolfram LütkeJoachim NeuhausRalf ReimeltWerner Thoren
    • Wolfram LütkeJoachim NeuhausRalf ReimeltWerner Thoren
    • G01F23284
    • G01F23/68G01F23/284
    • A liquid level meter is provided for measuring a level of a liquid (1) in a container (3), which meter measures acceptably in the case of liquids with low dielectric constants, and the installation and maintenance of which are simple and cost effective. This meter comprises an electronic circuit (13), which generates electromagnetic signals in operation, a conductor (7), which projects into the container (3), along which a float (11, 11a, 11b, 11c, 11d, 11e) moves along with the level, which has at least one segment reflecting electromagnetic signals, an injector (9), which transmits the signals from the circuit (13) to the conductor (7), which conductor (7) leads the signals into the container (3) and leads out a signal reflected at the float (11) and a receiving and evaluating circuit (15), which receives the reflected signals, which determines a travel time of the signals and which ascertains the level from the travel time.
    • 提供了用于测量容器(3)中的液体(1)的液位的液位计,该仪表在具有低介电常数的液体的情况下可接受地测量,并且其安装和维护是简单和成本有效的。 该仪表包括一个产生电磁信号的电子电路(13),一个突出到容器(3)中的导体(7),浮子(11,11a,11b,11c,11d,11e)沿着该电子线移动 以及具有反射电磁信号的至少一个部分的电平,将来自电路(13)的信号传输到导体(7)的喷射器(9),该导体(7)将信号引导到容器( 引出在浮子(11)处反射的信号和接收和评估电路(15),接收和评估电路(15)接收反射信号,其确定信号的行进时间并确定行进时间的电平。
    • 4. 发明申请
    • Method for selecting products of a process automation engineering device via internet
    • 通过互联网选​​择过程自动化工程设备产品的方法
    • US20060173836A1
    • 2006-08-03
    • US10539115
    • 2003-12-08
    • Joachim NeuhausHarald Freimark
    • Joachim NeuhausHarald Freimark
    • G06F17/30
    • G06Q30/02G06F16/958
    • In a method for selecting products via the Internet, an Internet connection is established between a customer-side client-computer, which contains a planning module, and a manufacturer-side server, which contains a product database. After selecting at least one product line from the product database by querying of basic data via the Internet, a first identifier characterizing the selected product line is transmitted to the client-computer by the server. The specifying of a product of the product line is done with the help of the planning module by local querying of application data at the client-computer using the planning module. The first identifier can then be expanded to a second identifier uniquely characterizing the specified product. No transmitting of application data to third parties via the Internet is required.
    • 在通过因特网选择产品的方法中,在包含计划模块的客户端客户端计算机和包含产品数据库的制造商侧服务器之间建立因特网连接。 通过通过因特网查询基本数据从产品数据库中选择至少一个产品线后,服务器将表征所选产品线的第一个标识符传送到客户端计算机。 在规划模块的帮助下,通过使用规划模块在客户端计算机上对应用程序数据进行本地查询来完成产品线产品的指定。 然后可以将第一标识符扩展为唯一表征指定产品的第二标识符。 不需要通过因特网向第三方发送应用数据。
    • 5. 发明授权
    • Method of suppressing extraneous radiation effects in radioactive
measuring methods
    • 放射性测量方法抑制外来辐射效应的方法
    • US5646409A
    • 1997-07-08
    • US611523
    • 1996-03-06
    • Ulrich LeisingerJoachim Neuhaus
    • Ulrich LeisingerJoachim Neuhaus
    • G01F23/288G01T7/00G01N23/00
    • G01T7/00G01F23/288
    • The instant invention relates to a method to compensate for extraneous radiation caused by the effects of intermittent active radiation sources (not effects due to cosmic or terrestrial radiation) that can cause errors in radiation measured values. For the purposes of suppressing these extraneous radiation effects in radio-active measuring methods, the commencement and termination of the extraneous radiation and the attainment of a stable condition in the extraneous radiation are determined. The difference between the measured value (before commencement of the extraneous radiation) and the measured value (on attainment of the stable condition) is determined. The measured value is then reduced by the determined difference for the duration of the extraneous radiation. Since the determined difference corresponds to the change in the measured result brought about by the extraneous radiation, the resultant measured value obtained by this reduction, equals the measured value that would be obtained in the absence of the extraneous radiation.
    • 本发明涉及一种补偿由间歇性有源辐射源(不是由于宇宙或陆地辐射引起的影响)引起的外来辐射的方法,其可导致辐射测量值的误差。 为了在放射性活性测量方法中抑制这些无关的辐射效应,确定外来辐射的开始和终止以及在外来辐射中达到稳定状态。 确定测量值(外部辐射开始之前)与测量值(达到稳定条件)之间的差异。 然后在外部辐射持续时间内将测量值减小确定的差值。 由于所确定的差异对应于由外部辐射引起的测量结果的变化,所以通过该减少获得的所得测量值等于在不存在外来辐射的情况下将获得的测量值。
    • 6. 发明授权
    • Device for measuring the material level in a vessel
    • 用于测量容器中材料水平的装置
    • US06691570B1
    • 2004-02-17
    • US09429198
    • 1999-10-28
    • Joachim NeuhausWerner ThorenWolfram LütkeRalf Reimelt
    • Joachim NeuhausWerner ThorenWolfram LütkeRalf Reimelt
    • G01S1308
    • G01F23/284
    • A level measurement device for measuring the level of material inside of a vessel which includes a conductive element, a signal generating unit, and a receiving unit. The conductive element does not come into direct contact with the material being measured. The signal generating unit generates measurement signals which are transmitted along the conductive element. Each of the measurement signals produces an electromagnetic field which travels along the conductive element and is reflected when it reaches the surface of material in the vessel. The reflected electromagnetic field produces an echo signal which travels along said conductive element to the receiving unit. The receiving unit receives the echo signal and determines the level of material in the vessel. The conductive element can be located outside of the vessel. The level measurement device can also include a protective shield which substantially surrounds the sides of the conductive element to prevent interfering radiation from interfering with the signals transmitted and reflected along the conductive element.
    • 一种液位测量装置,用于测量包括导电元件,信号产生单元和接收单元的容器内部的材料的水平。 导电元件不会与所测量的材料直接接触。 信号发生单元产生沿导电元件传输的测量信号。 每个测量信号产生沿着导电元件行进的电磁场,并且当它到达容器中的材料表面时被反射。 反射的电磁场产生沿着所述导电元件行进到接收单元的回波信号。 接收单元接收回波信号并确定容器中材料的水平。 导电元件可以位于容器外部。 电平测量装置还可以包括基本上围绕导电元件的侧面的防护屏蔽件,以防止干扰辐射干扰沿导电元件传输和反射的信号。
    • 7. 发明授权
    • Device for measuring the filling level of a filling material in a container
    • 用于测量容器中填充物料的填充量的装置
    • US06481276B2
    • 2002-11-19
    • US09739973
    • 2000-12-20
    • Joachim NeuhausMichael KrauseUdo GrittkeGerd Wartmann
    • Joachim NeuhausMichael KrauseUdo GrittkeGerd Wartmann
    • G07F2300
    • G01F23/263G01F23/00G01F23/266G01F23/284
    • The present invention relates to a device for measuring the filling level of a filing material in a container, having a sensor and a control/evaluation unit. The invention provides a device which permits optimized determination of the filling level and/or the monitoring of the filling level in a container. For this purpose a sensor is designed such that it is operated in conjunction with at least two different measurement methods and/or the sensor is operated in at least two different operating modes, that the control/evaluation unit operates the sensor respectively according to at least one of the two measurement methods and/or at least in one of the two operating modes, and that the control/evaluation unit determines the filling level of the filling material in the container with the aid of the measured data of the sensor, which are supplied via at least one measurement method and/or during at least one operating mode.
    • 本发明涉及一种用于测量容器中填充物的填充量的装置,其具有传感器和控制/评估单元。 本发明提供一种装置,其允许优化确定容器中的填充水平和/或监测填充水平。 为此,传感器被设计成使得其与至少两种不同的测量方法相结合地操作和/或传感器以至少两种不同的操作模式操作,即控制/评估单元至少分别操作传感器 两种测量方法中的一种和/或两种操作模式中的至少一种,并且控制/评估单元借助于传感器的测量数据来确定容器中的填充材料的填充水平 通过至少一种测量方法和/或在至少一种操作模式期间提供。