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    • 3. 发明申请
    • Machine-to-Machine Visual Code Generation and Recognition Method and System for Device Communications
    • 机器到机器视觉代码生成和识别方法和设备通信系统
    • US20160212613A1
    • 2016-07-21
    • US14599448
    • 2015-01-16
    • Jeffrey Huang
    • Jeffrey Huang
    • H04W8/24H04W12/06H04L29/06
    • H04W12/06H04W4/50H04W4/70H04W8/20H04W84/04
    • Various embodiments of a machine-to-machine visual code generation and recognition method and a corresponding system are disclosed. In one embodiment, a first machine gathers real-time hardware setting information of the first machine, and subsequently generates a first QR code that embeds hardware setting information of the first machine. The first QR code is displayed to a display panel connected to the first machine, and a second machine with a camera captures the first QR code, and deciphers the first QR code to determine communication compatibility between the first machine and the second machine. Then, the second machine formulates a response that incorporates its own real-time hardware setting information, and generates a second QR code that embeds the second machine's response to the first machine. Subsequently, the first machine scans the second QR code from the second machine's display panel, and registers the second machine's hardware setting information.
    • 公开了机器对机器视觉代码生成和识别方法和对应系统的各种实施例。 在一个实施例中,第一机器收集第一机器的实时硬件设置信息,随后生成嵌入第一机器的硬件设置信息的第一QR码。 第一个QR码被显示给连接到第一机器的显示面板,并且具有照相机的第二机器捕获第一个QR码,并解密第一个QR码以确定第一机器和第二机器之间的通信兼容性。 然后,第二机器制定包含其自己的实时硬件设置信息的响应,并且生成将第二机器响应嵌入第一机器的第二QR码。 随后,第一台机器从第二台机器的显示面板扫描第二张QR码,并注册第二台机器的硬件设置信息。
    • 4. 发明授权
    • Apparatus and method for automatic realtime cloud computing processing for live multimedia content
    • 用于实时多媒体内容的自动实时云计算处理的装置和方法
    • US08990874B2
    • 2015-03-24
    • US13445879
    • 2012-04-12
    • Jeffrey Huang
    • Jeffrey Huang
    • H04N7/173H04L29/06G06F17/30H04N21/2343H04N21/24
    • H04L65/4076G06F17/30867H04L65/1026H04L65/605H04N21/234309H04N21/234336H04N21/2405
    • An apparatus and a method for automatic real-time cloud computing processing of live multimedia content are disclosed. In one embodiment of the invention, a portable electronic device can transmit live event multimedia data to a web/cloud computing storage service in real time, wherein the web/cloud computing storage service segmentizes incoming streams of the live event multimedia data into multiple media files during an ongoing transmission of the live event multimedia data. In one embodiment of the invention, the size of each segmented media file depends on a current network traffic condition and/or a bandwidth availability. By automatically segmentizing the streams of encoded multimedia data into individually-viewable segments for the web or cloud-computing storage service, a user can start viewing the currently-uploading multimedia data faster than a conventional single stream upload which requires a longer waiting time.
    • 公开了一种用于实时多媒体内容的自动实时云计算处理的装置和方法。 在本发明的一个实施例中,便携式电子设备可以实时地将实况事件多媒体数据传送到网络/云计算存储服务,其中网络/云计算存储服务将实况事件多媒体数据的输入流分段成多个媒体文件 在正在进行的现场活动多媒体数据传输期间。 在本发明的一个实施例中,每个分段媒体文件的大小取决于当前网络业务状况和/或带宽可用性。 通过将编码的多媒体数据流自动分割成用于网络或云计算存储服务的单独可视区段,用户可以比需要更长等待时间的传统单流上传更快地开始查看当前上传的多媒体数据。
    • 5. 发明申请
    • System and Method for Synchronizing, Merging, and Utilizing Multiple Data Sets for Augmented Reality Application
    • 用于同步,合并和利用多个数据集进行增强现实应用的系统和方法
    • US20140168243A1
    • 2014-06-19
    • US13720994
    • 2012-12-19
    • Jeffrey Huang
    • Jeffrey Huang
    • G06T1/20
    • G06T1/20G09G5/377G09G2340/12G09G2340/125G09G2354/00H04N21/472
    • Systems and methods for synchronizing, merging, and utilizing multiple data sets for augmented reality application are disclosed. In one example, an electronic system receives and processes live recorded video information, GPS information, map data information, and points of interest information to produce a data set comprising merged graphical and/or audio information and non-graphical and non-audio information metadata that are referenced to the same clock and timestamp information. This data set can be stored in a cloud network storage. By retaining numerical and textual values of non-graphical and non-audio information (e.g. camera viewing angle information, GPS coordinates, accelerometer values, and compass coordinates) as metadata that are referenced to the same clock and timestamp information within the data set, an augmented reality application that replays information or augments information in real time can dynamically select or change how the data set is presented in augmented reality based on dynamically-changeable user preferences.
    • 公开了用于同步,合并和利用用于增强现实应用的多个数据集的系统和方法。 在一个示例中,电子系统接收并处理实时记录的视频信息,GPS信息,地图数据信息和兴趣点信息,以产生包括合并的图形和/或音频信息以及非图形和非音频信息元数据的数据集 参考相同的时钟和时间戳信息。 该数据集可以存储在云网络存储中。 通过将非图形和非音频信息(例如,摄像机视角信息,GPS坐标,加速度计值和罗盘坐标)的数值和文本值保留为参考数据集内的相同时钟和时间戳信息的元数据, 基于动态可变的用户偏好,增强现实应用程序实时重放信息或增强信息可以动态地选择或改变数据集在增强现实中的呈现方式。
    • 7. 发明申请
    • APPARATUS AND METHOD FOR AUTOMATIC REALTIME CLOUD COMPUTING PROCESSING FOR LIVE MULTIMEDIA CONTENT
    • 用于实时多媒体内容的自动实时云计算处理的装置和方法
    • US20120198335A1
    • 2012-08-02
    • US13445879
    • 2012-04-12
    • Jeffrey Huang
    • Jeffrey Huang
    • G06F3/01
    • H04L65/4076G06F17/30867H04L65/1026H04L65/605H04N21/234309H04N21/234336H04N21/2405
    • An apparatus and a method for automatic real-time cloud computing processing of live multimedia content are disclosed. In one embodiment of the invention, a portable electronic device can transmit live event multimedia data to a web/cloud computing storage service in real time, wherein the web/cloud computing storage service segmentizes incoming streams of the live event multimedia data into multiple media files during an ongoing transmission of the live event multimedia data. In one embodiment of the invention, the size of each segmented media file depends on a current network traffic condition and/or a bandwidth availability. By automatically segmentizing the streams of encoded multimedia data into individually-viewable segments for the web or cloud-computing storage service, a user can start viewing the currently-uploading multimedia data faster than a conventional single stream upload which requires a longer waiting time.
    • 公开了一种用于实时多媒体内容的自动实时云计算处理的装置和方法。 在本发明的一个实施例中,便携式电子设备可以实时地将实况事件多媒体数据传送到网络/云计算存储服务,其中网络/云计算存储服务将实况事件多媒体数据的输入流分段成多个媒体文件 在正在进行的现场活动多媒体数据传输期间。 在本发明的一个实施例中,每个分段媒体文件的大小取决于当前网络业务状况和/或带宽可用性。 通过将编码的多媒体数据流自动分割成用于网络或云计算存储服务的单独可视区段,用户可以比需要更长等待时间的传统单流上传更快地开始查看当前上传的多媒体数据。
    • 8. 发明申请
    • Optical Reflector Having A High Efficiency
    • 具有高效率的光反射器
    • US20110058381A1
    • 2011-03-10
    • US12556762
    • 2009-09-10
    • Ray ChiangJeffrey HuangPatrick Chen
    • Ray ChiangJeffrey HuangPatrick Chen
    • F21V7/04
    • F21V7/005F21Y2103/00
    • An optical reflector includes a reflector body (1) having a receiving space (11) and an opening (12). The receiving space of the reflector body has a peripheral wall provided with a reflective surface. The reflective surface of the reflector body includes a light splitting zone (14), two light scattering zones (15) and two light gathering zones (16). The light splitting zone of the reflective surface includes an elongate protrusion (141). Each of the two light scattering zones of the reflective surface includes a plurality of elongate arcuate convex portions (151). Each of the two light gathering zones of the reflective surface includes a plurality of elongate arcuate concave portions (161).
    • 光学反射器包括具有容纳空间(11)和开口(12)的反射体(1)。 反射体的接收空间具有设置有反射面的周壁。 反射体的反射面包括分光区(14),两个光散射区(15)和两个聚光区(16)。 反射表面的分光区域包括细长突起(141)。 反射表面的两个光散射区域中的每一个包括多个细长的弓形凸部(151)。 反射表面的两个聚光区中的每一个包括多个细长的弓形凹部(161)。
    • 9. 发明申请
    • Apparatus and Method for Intelligent Analysis of Device Compatibility and Adaptive Processing of Multimedia Data
    • 多媒体数据设备兼容性和自适应处理智能分析装置与方法
    • US20100287312A1
    • 2010-11-11
    • US12435416
    • 2009-05-05
    • Jeffrey Huang
    • Jeffrey Huang
    • G06F3/00
    • G06F9/4411
    • An apparatus and a method for intelligent analysis of device compatibility and adaptive processing of multimedia data are disclosed. By performing a unique intelligent analysis of device compatibility, the present invention provides a full application-level compatibility between the apparatus performing the intelligent analysis and an external device operatively connected to the apparatus even when device driver-level information of the external device is unavailable. Furthermore, a unique intelligent analysis for adaptive processing of multimedia data between the apparatus and the external devices enables an efficient and flexible usage of storage space in the external device for a multimedia data transfer from the apparatus to the external device.
    • 公开了一种用于多媒体数据的设备兼容性和自适应处理的智能分析的装置和方法。 通过执行设备兼容性的独特智能分析,即使在外部设备的设备驱动程序级别信息不可用的情况下,本发明也提供了执行智能分析的设备与可操作地连接到设备的外部设备之间的完全应用级的兼容性。 此外,用于设备和外部设备之间的多媒体数据的自适应处理的独特智能分析使得能够有效和灵活地使用外部设备中的存储空间,用于从设备到外部设备的多媒体数据传输。