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    • 21. 发明授权
    • Resonant flow sensor and uses and production methods for the same
    • 共振流量传感器及其用途和生产方法相同
    • US08733162B2
    • 2014-05-27
    • US12737376
    • 2009-07-27
    • Norman WoodKarin BauerXaver RiedlRoland Wagner
    • Norman WoodKarin BauerXaver RiedlRoland Wagner
    • G01M9/00
    • G01H13/00G01P5/01
    • The invention relates to a flow state sensor (10) for detecting a flow state at a body (16) that may be impinged on by a flow (12). A flow state sensor (10) that is of a simple construction and that is simple to evaluate is characterized in accordance with the invention by at least one frequency detecting device (20) for detecting at least one predefined frequency characteristic of the flow state. The frequency detecting device (20) has at least one oscillation element (22; 22a, 22b, 22c) excitable to resonant oscillatory movement (30) by a flow (12) and having a resonant frequency or natural frequency adapted to the predefined frequency characteristic, especially corresponding to the predefined frequency characteristic. Uses of the flow state sensor (10) in a flow measuring device (62) and in a flow measuring method, and an advantageous production method for the flow state sensor (10) are also proposed.
    • 本发明涉及一种用于检测可能被流动(12)撞击的主体(16)处的流动状态的流量状态传感器(10)。 根据本发明,具有简单结构且简单评估的流状态传感器(10)由至少一个用于检测流动状态的至少一个预定频率特性的频率检测装置(20)来表征。 频率检测装置(20)具有至少一个振荡元件(22; 22a,22b,22c),该振荡元件(22; 22a,22b,22c)可通过流动(12)激励到谐振振荡运动(30),并具有适应预定频率特性的谐振频率或固有频率 ,特别是对应于预定义的频率特性。 还提出了流量测量装置(62)中的流量状态传感器(10)和流量测量方法的使用以及用于流动状态传感器(10)的有利的生产方法。
    • 24. 发明授权
    • Method and system for detecting target objects
    • 检测目标物体的方法和系统
    • US08712098B2
    • 2014-04-29
    • US13202233
    • 2010-01-27
    • Albert Bodenmueller
    • Albert Bodenmueller
    • G06K9/00
    • G06K9/00993G01S13/867G01S17/023
    • Method for detecting target objects by a first sensor device containing at least one first sensor and a second sensor device containing at least one second sensor. The second sensor is alignable by a control device in different spatial directions. Method includes: detecting target objects by first sensor device, determining at least one first target parameter for target objects; and storing at least a part of target objects with at least one first target parameter and information on a spatial direction of target object relative to a position of second sensor. Method additionally includes: assessing stored target objects, and determining highest priority target object; aligning second sensor to highest priority target object, and obtaining a sensor signal of second sensor to target object; extracting at least one further target parameter by automatic evaluation of sensor signal; and performing assessing, aligning, and extracting repeatedly.
    • 用于通过包含至少一个第一传感器的第一传感器装置和包含至少一个第二传感器的第二传感器装置来检测目标物体的方法。 第二传感器可通过不同空间方向的控制装置对准。 方法包括:通过第一传感器装置检测目标对象,确定目标对象的至少一个第一目标参数; 并且存储具有至少一个第一目标参数的目标对象的至少一部分和关于目标对象的空间方向的信息相对于第二传感器的位置。 方法还包括:评估存储的目标对象,并确定最高优先级的目标对象; 将第二传感器对准最高优先级的目标对象,并获得第二传感器到目标物体的传感器信号; 通过传感器信号的自动评估来提取至少一个目标参数; 并重复执行评估,对齐和提取。
    • 28. 发明申请
    • Methods for Detecting the Flight Path of Projectiles
    • 检测射弹飞行路径的方法
    • US20140009321A1
    • 2014-01-09
    • US14002618
    • 2012-02-29
    • Robert SchneiderGeorg WeissWilhelm Gruener
    • Robert SchneiderGeorg WeissWilhelm Gruener
    • G01S13/50G01S13/72
    • G01S13/505G01S13/44G01S13/58G01S13/723G01S13/726
    • Methods for detecting the flight path of projectiles involve a sequence of N target detections that include detecting the measured velocities and azimuthal angle bearings of the projectile along the flight path of the projectile by Doppler radar at the times tn, wherein n=1 . . . N, and determining the flight path and the direction of motion of the projectile are from these measurements. The measurements are adapted in a first nonlinear parameter fit to an analytical relationship of the time curve of the radial velocity of the projectile while the projectile passes through the detection range of the radar and so that the absolute projectile velocity, minimum distance of the project flight path from the radar, time at which the projectile passes the point having the minimum distance, flight path direction in azimuth, and flight path direction in elevation can be estimated.
    • 用于检测弹丸飞行路径的方法涉及N个目标检测的序列,其包括在时间tn处,通过多普勒雷达,其中n = 1,沿着射弹的飞行路径检测弹丸的测量速度和方位角轴承。 。 。 N,并确定射弹的飞行路径和运动方向来自这些测量。 测量结果适用于第一个非线性参数,适合射弹径向速度的时间曲线的分析关系,同时射弹通过雷达的检测范围,使得绝对射弹速度,项目飞行的最小距离 可以估计从雷达的路径,射弹通过具有最小距离的点的时间,方位角的飞行路径方向和仰角的飞行路径方向。
    • 29. 发明授权
    • Apparatus for contacting a T/R module with a test device
    • 用于将T / R模块与测试装置接触的装置
    • US08604818B2
    • 2013-12-10
    • US12991657
    • 2009-04-02
    • Karl-Ernst SchmegnerThomas Johannes MuellerGeorg Hoefer
    • Karl-Ernst SchmegnerThomas Johannes MuellerGeorg Hoefer
    • G01R31/00
    • G01R1/0408
    • An apparatus for making contact between a T/R module and a test device, the apparatus including a mechanically guided contact-making unit having a plurality of contact elements for contacting the T/R module. A triplate line substrate is arranged is electrically connected to the T/R module, via which the RF signals can be passed to the test device. One or more register pins for defined alignment of the T/R module with respect to the contact-making unit and a fixing unit for mechanical fixing of the T/R module are provided. A shifting device has a plurality of inclined planes that convert a shifting movement of the shifting device to a movement of the contact-making unit toward the T/R module at right angles to the shifting direction. When the contact-making unit reaches a defined final position the contact is made with the T/R module via the contact elements in one process.
    • 一种用于在T / R模块和测试装置之间进行接触的装置,该装置包括具有用于接触T / R模块的多个接触元件的机械引导接触形成单元。 布置三板线基板电连接到T / R模块,通过该T / R模块可以将RF信号传递到测试装置。 提供了一个或多个用于T / R模块相对于接触制造单元定义的对准的定位销和用于T / R模块的机械固定的固定单元。 移动装置具有多个倾斜平面,其将移动装置的移动运动转换成与移动方向成直角的接触形成单元朝向T / R模块的移动。 当接触制造单元到达定义的最终位置时,通过一个过程中的接触元件与T / R模块进行接触。