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    • 1. 发明申请
    • WEIGHING PLATFORM WITH COMPUTER-VISION TRACKING
    • 具有计算机视觉跟踪的称重平台
    • US20130118814A1
    • 2013-05-16
    • US13296950
    • 2011-11-15
    • David J. Michael
    • David J. Michael
    • G01G23/38
    • G01G23/38G01G19/035G01G19/387G01G19/393
    • The disclosure relates to weighing moving objects in a weighing platform functionally coupled to a computer-vision tracking platform. The objects can translate, rotate, and translate and rotate. Weighing of the objects can be accomplished through combination of object imaging and upstream weighing. Object imaging can permit tracking, through computer vision, a logical object moving in a trajectory from the first location to the second location, wherein a logical object is a formal representation of one or more physical objects. Upstream weighing can permit updating a record indicative of weight of the one or more physical objects associated with the tracked logical object. As a part of weighing termination, data integrity check(s) can be performed on a plurality of records indicative of a weight of a single physical object. Based on outcome of the data integrity check(s), a record indicative of the weight of the single physical object can be supplied.
    • 本公开涉及在功能上耦合到计算机视觉跟踪平台的称重平台中称量移动物体。 对象可以进行平移,旋转,平移和旋转。 物体的称重可以通过对象成像和上游称重的组合来实现。 对象成像可以允许通过计算机视觉跟踪从第一位置到第二位置的轨迹移动的逻辑对象,其中逻辑对象是一个或多个物理对象的正式表示。 上游称重可以允许更新指示与跟踪的逻辑对象相关联的一个或多个物理对象的权重的记录。 作为称重终端的一部分,可以在指示单个物理对象的权重的多个记录上执行数据完整性检查。 基于数据完整性检查的结果,可以提供表示单个物理对象的权重的记录。
    • 6. 发明授权
    • Weighing platform with computer-vision tracking
    • 称重平台与计算机视觉跟踪
    • US09121751B2
    • 2015-09-01
    • US13296950
    • 2011-11-15
    • David J. Michael
    • David J. Michael
    • G01G23/38G01G19/03G01G19/393G01G19/387
    • G01G23/38G01G19/035G01G19/387G01G19/393
    • The disclosure relates to weighing moving objects in a weighing platform functionally coupled to a computer-vision tracking platform. The objects can translate, rotate, and translate and rotate. Weighing of the objects can be accomplished through combination of object imaging and upstream weighing. Object imaging can permit tracking, through computer vision, a logical object moving in a trajectory from the first location to the second location, wherein a logical object is a formal representation of one or more physical objects. Upstream weighing can permit updating a record indicative of weight of the one or more physical objects associated with the tracked logical object. As a part of weighing termination, data integrity check(s) can be performed on a plurality of records indicative of a weight of a single physical object. Based on outcome of the data integrity check(s), a record indicative of the weight of the single physical object can be supplied.
    • 本公开涉及在功能上耦合到计算机视觉跟踪平台的称重平台中称量移动物体。 对象可以进行平移,旋转,平移和旋转。 物体的称重可以通过对象成像和上游称重的组合来实现。 对象成像可以允许通过计算机视觉跟踪从第一位置到第二位置的轨迹移动的逻辑对象,其中逻辑对象是一个或多个物理对象的正式表示。 上游称重可以允许更新指示与跟踪的逻辑对象相关联的一个或多个物理对象的权重的记录。 作为称重终端的一部分,可以在指示单个物理对象的权重的多个记录上执行数据完整性检查。 基于数据完整性检查的结果,可以提供表示单个物理对象的权重的记录。
    • 7. 发明授权
    • Device for monitoring the operating conditions of a balance
    • 用于监控天平运行状况的装置
    • US06995323B2
    • 2006-02-07
    • US10997370
    • 2004-11-24
    • Hansruedi KunziRoger LeisingerMarc Blochlinger
    • Hansruedi KunziRoger LeisingerMarc Blochlinger
    • G01G23/01
    • G01G23/38G01G23/002
    • A device for monitoring an operating condition is incorporated in a balance with a weighing cell, an electronic weighing circuit arrangement (15), an output unit (21, 22, 44), and at least one electronic inclination sensor (13). The circuit arrangement (15) includes a signal-processing device (17), a memory device (19) as well as a time clock (20). Based on a sensor signal received from the electronic inclination sensor (13), the signal-processing device (17) determines a quantity that is indicative of the operating condition of the balance. The signal-processing device (17) also determines the current time and assigns a time value to the quantity that represents the operating condition. The resultant vector-like sets of time and operating condition data are transmitted to and stored in the memory device (19), so that the data are at all times available for transmission to an output unit (21, 22, 44).
    • 用于监测操作条件的装置与称重单元,电子称重电路装置(15),输出单元(21,22,44)和至少一个电子倾斜传感器(13)的平衡结合。 电路装置(15)包括信号处理装置(17),存储装置(19)以及时钟(20)。 基于从电子倾斜传感器(13)接收的传感器信号,信号处理装置(17)确定表示天平的运行状态的量。 信号处理装置(17)还确定当前时间,并将时间值分配给表示操作条件的数量。 所得到的矢量式时间和操作条件数据集合被发送到存储装置(19)并存储在存储装置(19)中,使得数据始终可用于传输到输出单元(21,22,44)。