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    • 101. 发明申请
    • IMAGE SENSORS WITH ELECTRONIC SHUTTER
    • 图像传感器与电子快门
    • WO2017156477A1
    • 2017-09-14
    • PCT/US2017/021942
    • 2017-03-10
    • INVISAGE TECHNOLOGIES, INC.
    • MANDELLI, EmanueleBOISVERT, David Michael
    • H04N5/353H04N5/351H01L27/146H01L27/148H04N5/235H04N5/347
    • H04N5/353H04N5/347H04N5/357H04N5/374
    • In various embodiments, an image sensor and related method are disclosed. In an embodiment, an image sensor includes an optically sensitive material, and a pixel circuit including a sense node in electrical communication with the optically sensitive material. The pixel circuit stores an electrical signal proportional to an intensity of light incident on the optically sensitive material during an integration period. The pixel circuit includes a differential transistor pair in electrical communication with the optically sensitive material. The differential transistor pair includes a first transistor and a second transistor, with the first transistor being disposed between the optically sensitive material and the sense node. The differential transistor pair steers current between the optically sensitive material and the sense node through the first transistor during the integration period and steers current through the second transistor after the integration period to discontinue integration of the electrical signal onto the sense node.
    • 在各种实施例中,公开了一种图像传感器和相关方法。 在一个实施例中,图像传感器包括光敏材料以及包括与光敏材料电连通的感测节点的像素电路。 像素电路存储与积分期间入射在光敏材料上的光的强度成比例的电信号。 像素电路包括与光敏材料电连通的差分晶体管对。 差分晶体管对包括第一晶体管和第二晶体管,第一晶体管设置在光敏材料和感测节点之间。 差分晶体管对在积分时段期间通过第一晶体管在光敏材料和感测节点之间操纵电流,并且在积分时段之后控制通过第二晶体管的电流以中断电信号到感测节点上的积分。
    • 104. 发明申请
    • MANAGING AND PRESENTING DATA FOR INDUSTRIAL ASSETS
    • 管理和呈现工业资产的数据
    • WO2017143276A1
    • 2017-08-24
    • PCT/US2017/018495
    • 2017-02-17
    • GENERAL ELECTRIC COMPANY
    • WRAGG, MartinHERNANDEZ, Carlos
    • G05B13/02G06K9/20G06T7/20B23Q35/12G06F3/01G06F17/30G06N5/04
    • G06F17/30994G05B23/0267G06F17/30088
    • In example embodiments, a method of presenting time series data in a user interface is disclosed. A time series data component is embedded in a user interface of an application executing on a device. Time series data corresponding to an asset in an industrial internet of things (IIoT) is presented by the time series data component based on a context of a user of the device. Customizations pertaining to the presenting of the time series data are received. The customizations include annotations relating to the time series data. A snapshot of the time series data and the customizations is shared. Upon an accessing of the shared snapshot from an additional time series data component, the snapshot is presented by the additional time series data component based on a combination the context of the user of the device and a context of a user of an additional device.
    • 在示例实施例中,公开了一种在用户界面中呈现时间序列数据的方法。 时间序列数据组件嵌入在设备上执行的应用程序的用户界面中。 时间序列数据组件基于设备的用户的情境呈现对应于工业物联网(IIoT)中的资产的时间序列数据。 接收与呈现时间序列数据有关的定制。 定制包括与时间序列数据相关的注释。 时间系列数据和定制的快照是共享的。 在从附加时间序列数据组件访问共享快照时,快照由附加时间序列数据组件基于设备的用户的上下文和附加设备的用户的上下文的组合来呈现。 / p>
    • 105. 发明申请
    • SPAM PROCESSING WITH CONTINUOUS MODEL TRAINING
    • 垃圾邮件处理连续模型培训
    • WO2017135977A1
    • 2017-08-10
    • PCT/US2016/023555
    • 2016-03-22
    • LINKEDIN CORPORATION
    • AGARWAL, SiddharthGUPTA, AninditaSODHANI, SiddharthGAURAV, NishantSHACHAM, DanRAMAN, Shivakumar Edayathumangalam
    • G06Q10/10G06Q50/00
    • H04L51/12G06N99/005G06Q10/107G06Q50/01
    • In various example embodiments, a system and method for generating a filtering spam content using machine learning are presented. One or more electronic content is received. The one or more electronic content is labeled as spam or not spam by a current spam filtering system. An associated accuracy score for each of the one or more labeled content is calculated. Potential errors in the one or more labeled content is identified based on the label of the one or more labeled content being inconsistent with information associated with the source of the one or more labeled content. The one or more labeled content with identified potential errors is sent for assessment. The one or more electronic content labeled as spam with an associated accuracy score within a predetermined range is filtered, excluding labeled content with identified potential errors.
    • 在各种示例实施例中,呈现了一种使用机器学习来生成过滤垃圾邮件内容的系统和方法。 收到一个或多个电子内容。 一个或多个电子内容被当前的垃圾邮件过滤系统标记为垃圾邮件或不是垃圾邮件。 计算一个或多个标记内容中的每一个的相关准确性分数。 基于一个或多个标签内容的标签与与一个或多个标签内容的来源相关联的信息不一致来标识一个或多个标签内容中的潜在错误。 具有已识别的潜在错误的一个或多个标记的内容被发送用于评估。 过滤标记为具有在预定范围内的相关准确度分数的垃圾邮件的一个或多个电子内容,不包括具有识别出的潜在错误的标记内容。
    • 106. 发明申请
    • CLOUD-BASED COORDINATION OF REMOTE SERVICE APPLIANCES
    • 基于云的远程服务设备协调
    • WO2017132513A1
    • 2017-08-03
    • PCT/US2017/015344
    • 2017-01-27
    • DOCUSIGN, INC.
    • PETERSON, Donald GrantFLEISCHMAN, Eric
    • G06F21/60H04L29/06H04L12/28G06F21/62
    • H04L63/10G06F21/60G06F21/602G06F21/604G06F21/62G06F21/6218H04L9/3247H04L12/4625H04L63/102H04L67/02H04L67/10H04L67/141H04L67/327H04L67/42H04L2463/101
    • Devices, systems, and methods are provided to provide cloud-based coordination of customer premise service appliances. A system can include a computing device comprising a communication module, a policy module, an appliance selection module, and a coordination module. The communication module receives a document request from a first client over a network connection, establishes a session with the first client in response to the document request, and receives metadata representing collected signatures at after completion of the electronic signature operation portion of the document request. The policy module manages a policy associate with a first account corresponding to the document request. The appliance selection module selects one of a plurality of document appliances. The coordination module controls a sequence of operations performed on the on-premise document appliance to service the document request, and instructs the on-premise document appliance to communicate results at the completion of the document request.
    • 提供设备,系统和方法以提供客户驻地服务设备的基于云的协调。 系统可以包括计算设备,该计算设备包括通信模块,策略模块,设备选择模块和协调模块。 通信模块通过网络连接从第一客户端接收文档请求,响应于文档请求与第一客户端建立会话,并且在完成文档请求的电子签名操作部分之后接收表示收集的签名的元数据。 策略模块管理与对应于文档请求的第一账户的策略关联。 设备选择模块选择多个文件设备中的一个。 协调模块控制在本地文件设备上执行的一系列操作以服务于文件请求,并指示室内文件设备在文件请求完成时传达结果。
    • 109. 发明申请
    • AUGMENTED REALITY BASED PATH VISUALIZATION FOR MOTION PLANNING
    • 基于增强现实的移动规划路径可视化
    • WO2017117562A1
    • 2017-07-06
    • PCT/US2016/069572
    • 2016-12-30
    • DAQRI, LLCMULLINS, BrianKAMMERAIT, MatthewIRVING JR., Frank Chester
    • MULLINS, BrianKAMMERAIT, MatthewIRVING JR., Frank Chester
    • G01C21/20G06K9/00G06T19/00G06F3/01
    • G06T19/006G01C21/20G06F3/011G06F3/04815G06K9/00671G06T19/003G06T19/20G06T2200/04
    • An augmented reality device (103, 105) includes one or more sensors for imaging and/or detecting an environment(308) and a transparent display (103) for displaying virtual objects. The augmented reality device (103, 105) monitors various biometric attributes of a user (302) and determines the user's location within the environment (308). The augmented reality device (103, 105) determines a virtual path from the user's location to a selected destination within the environment using the monitored biometric attributes as one or more constraints in the pathfinding determination. The determined virtual path (304-312, 314-324) is displayed on the transparent display (103) as a virtual object such that it appears overlaid on the user's environment. The augmented reality device(103, 105) monitors the user (302) as he or she traverses the virtual path (304-312, 314-324) through the environment (308), and updates the virtual path (304-312, 314-324 ) in response to changes in one or more of the user's monitored biometric attributes.
    • 增强现实设备(103,105)包括用于成像和/或检测环境(308)的一个或多个传感器和用于显示虚拟对象的透明显示器(103)。 增强现实设备(103,105)监视用户(302)的各种生物特征属性并确定用户在环境内的位置(308)。 增强现实设备(103,105)使用所监视的生物度量属性作为寻路确定中的一个或多个约束来确定从用户位置到环境内的选定目的地的虚拟路径。 确定的虚拟路径(304-312,314-324)作为虚拟对象显示在透明显示器(103)上,使得其看起来覆盖在用户的环境上。 当他或她穿过环境(308)的虚拟路径(304-312,314-324)时,增强现实设备(103,105)监视用户(302),并且更新虚拟路径(304-312,314 -324)以响应一个或多个用户的监控生物特征属性的变化。
    • 110. 发明申请
    • 3D VIDEO RECONSTRUCTION SYSTEM
    • 3D视频重建系统
    • WO2017117446A1
    • 2017-07-06
    • PCT/US2016/069302
    • 2016-12-29
    • DAQRI, LLC
    • MULLINS, Brian
    • H04N21/81G06T17/05G06T15/08G06T19/00
    • G06T15/205G02B27/0172G02B2027/0138G02B2027/014G02B2027/0141G06F3/005G06F3/012G06T3/40G06T17/00G06T19/003G06T19/006G06T2215/16G06T2219/024
    • A server receives video data and location data from mobile devices. Each mobile device records a video of a target. The location data identifies a position of the corresponding mobile device relative to the target and a distance between the corresponding mobile device to the target. The location data is associated with a corresponding video frame from the video data. The server identifies video frames from the video data captured from the mobile devices. The server scales parts of the identified video frames based on the position and distance of the corresponding mobile devices to the target. The server extracts the scaled parts of the identified video frames and generates a three-dimensional model of the target based on the extracted scaled parts of the identified video frames from the plurality of mobile devices.
    • 服务器从移动设备接收视频数据和位置数据。 每个移动设备都会记录一个目标的视频。 位置数据识别相对应的移动设备相对于目标的位置以及相应的移动设备与目标之间的距离。 位置数据与来自视频数据的对应视频帧相关联。 服务器从移动设备捕获的视频数据中识别视频帧。 服务器基于相应的移动设备到目标的位置和距离来缩放所识别的视频帧的一部分。 服务器提取所识别的视频帧的缩放部分,并且基于从多个移动设备中提取的所识别的视频帧的缩放部分来生成目标的三维模型。