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    • 103. 发明申请
    • ABSOLUTE ENCODER, SIGNAL PROCESSING METHOD, PROGRAM, DRIVING APPARATUS, AND INDUSTRIAL MACHINE
    • 绝对编码器,信号处理方法,程序,驱动装置和工业机器
    • US20150153205A1
    • 2015-06-04
    • US14554803
    • 2014-11-26
    • CANON KABUSHIKI KAISHA
    • Takayuki Uozumi
    • G01D5/347G05B1/03
    • G01D5/34776G01D5/24476G01D5/34707G01D5/34715G01D5/3473G01D5/34792G01S3/784G05B1/03H03M1/00
    • An absolute encoder includes a scale in which a plurality of marks including a plurality of types of marks are arranged with a space and a period, a detector including a plurality of elements arranged along a direction corresponding to the arrangement, and configured to detect a partial plurality of marks, and a signal processor configured to perform quantization of an amplitude with respect to each period of periodic signals with a plurality of periods output from the detector to generate a data string, and generate, based on the data string, first position data having a resolution of the period. The signal processor is configured to obtain a plurality of thresholds for the quantization respectively corresponding to a plurality of periodic signals of the periodic signals with the plurality of periods based on a plurality of representative values respectively obtained from the periodic signals with the plurality of periods.
    • 绝对编码器包括其中包括多个类型的标记的多个标记以空格和周期排列的标尺,包括沿着与该布置相对应的方向布置的多个元件的检测器,并且被配置为检测部分 多个标记,以及信号处理器,被配置为相对于具有从检测器输出的多个周期的周期信号的周期执行幅度的量化,以生成数据串,并且基于该数据串,生成第一位置数据 有一段时间的决议。 信号处理器被配置为基于分别从具有多个周期的周期信号获得的多个代表值来分别对应于具有多个周期的周期信号的多个周期信号的量化的多个阈值。
    • 104. 发明申请
    • HEAD-WEARABLE USER INTERFACE DEVICE FOR LIGHTING RELATED OPERATIONS
    • 用于照明相关操作的HEAD-EARABLE用户界面设备
    • US20150130355A1
    • 2015-05-14
    • US14077941
    • 2013-11-12
    • ABL IP HOLDING LLC
    • Jack C. RAINS, JR.David P. RAMERJanuk AGGARWAL
    • H05B37/02G02B27/01
    • H05B37/0227G01S3/784G01S5/16G02B27/017G02B2027/0138G02B2027/014G02B2027/0178G06F3/011H05B37/0218H05B37/0272Y02B20/46
    • A wearable user interface device provides a display (e.g. an augmented reality display) for a user/wearer. The device includes a camera or other optical sensor and wireless communication capability. The camera or sensor provides an input to detect and possibly communicate with a lighting device or system. The communications and display capabilities allow the device to obtain and present lighting-related information to the wearer. For example, before installation, the device may identify a light fixture and communicate with a server to obtain information about fixture installation or configuration. As another example, the user can operate the device to identify and communicate with an installed fixture, to configure the fixture into a system (e.g. as part of a lighting group) or to check or repair fixture or system firmware. Hence, the device provides a wearable, interactive user interface for a variety of lighting-related functions.
    • 可戴式的用户界面装置为用户/佩戴者提供显示(例如增强现实显示)。 该装置包括相机或其他光学传感器和无线通信能力。 相机或传感器提供输入以检测并可能与照明装置或系统通信。 通信和显示功能允许设备获得并向佩戴者呈现与照明有关的信息。 例如,在安装之前,设备可以识别灯具并与服务器通信以获得关于灯具安装或配置的信息。 作为另一示例,用户可以操作设备以识别并与安装的夹具通信,将夹具配置到系统(例如作为照明组的一部分)中,或者检查或修理夹具或系统固件。 因此,该设备为各种与照明相关的功能提供可穿戴的交互式用户界面。
    • 108. 发明申请
    • Stereo Vision Encoded Ultrasonic Inspection
    • 立体视觉编码超声波检测
    • US20140184750A1
    • 2014-07-03
    • US13731709
    • 2012-12-31
    • AREVA NP INC.
    • Bradley A. ThigpenSamuel William Glass, III
    • H04N13/02
    • H04N13/243G01N29/043G01N29/226G01N29/265G01N2291/0258G01S3/784G01S5/16
    • This invention applies optical tracking technology with an ultrasound inspection system to associate recorded position data with the inspection data. The reference targets of the optical tracking system can be attached to the inspection assembly to allow fully recorded position information to be associated with the ultrasonic, eddy current, or other nondestructive examination data without substantially impacting the overall envelope of the NDE inspection equipment. Moreover, the optical tracking system can be used to monitor skew or twist of the inspection equipment with respect to the normal rectilinear transducer orientation. The inspection equipment position information is then coupled to the inspection data to provide outputs equivalent to fully encoded multi-axis manipulator automated scans, but with less setup burden and equipment expense.
    • 本发明应用具有超声检查系统的光学跟踪技术将记录的位置数据与检查数据相关联。 光学跟踪系统的参考目标可以附接到检查组件,以允许完全记录的位置信息与超声波,涡流或其他非破坏性检查数据相关联,而不会基本上影响NDE检查设备的整体包络。 此外,光学跟踪系统可以用于监测检查设备相对于正常直线换能器取向的偏斜或扭曲。 然后将检查设备的位置信息耦合到检查数据,以提供相当于完全编码的多轴机械手自动扫描的输出,但是具有较少的设置负担和设备费用。