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    • 8. 发明授权
    • Digital image color plane compression
    • 数字图像彩色平面压缩
    • US09531920B2
    • 2016-12-27
    • US14610201
    • 2015-01-30
    • KYOCERA Document Solutions Inc.
    • Michael M. ChangKenneth A. SchmidtDongpei SuSheng LiKendrick WongAlfred AbkarianStephen L. Schafer
    • G06K9/36H04N1/64
    • H04N1/648H04N1/413H04N1/64H04N9/64H04N19/119H04N2201/0094
    • An example embodiment may involve obtaining an a×b pixel macro-cell from an input image. The a×b pixel macro-cell may contain 4 non-overlapping m×n pixel cells. The a×b pixels in the a×b pixel macro-cell may have respective color values and may be associated with respective object type tags. The example embodiment may also include selecting a compression technique to either (i) compress the a×b pixel macro-cell as a whole, or (ii) compress the a×b pixel macro-cell by compressing each of the 4 non-overlapping m×n pixel cells separately. The example embodiment may further include compressing the a×b pixel macro-cell according to the selected compression technique, and writing a representation of the compressed a×b pixel macro-cell to a computer-readable output medium.
    • 示例性实施例可以涉及从输入图像获得a×b像素宏小区。 a×b像素宏单元可以包含4个非重叠的m×n个像素单元。 a×b像素宏单元中的a×b像素可以具有各自的颜色值,并且可以与相应的对象类型标签相关联。 该示例性实施例还可以包括选择压缩技术以(i)整体地压缩a×b个像素宏小区,或者(ii)通过压缩4个不重叠的每个像素宏小区来压缩a×b像素宏小区 m×n个像素单元。 示例性实施例还可以包括根据所选择的压缩技术来压缩a×b像素宏小区,并将压缩的a×b像素宏小区的表示写入计算机可读输出介质。
    • 9. 发明授权
    • Electronic devices with hybrid patch and monopole antenna for high altitude platform application
    • 具有混合贴片和单极天线的电子设备,用于高空平台应用
    • US09478869B1
    • 2016-10-25
    • US14584610
    • 2014-12-29
    • Google Inc.
    • Jiang ZhuCyrus Behroozi
    • H01Q1/38H01Q19/00H01Q19/10H01Q5/385H01Q5/30H01Q5/378
    • H01Q5/378H01Q1/246H01Q1/28H01Q5/30H01Q5/385H01Q9/0435H01Q15/14H01Q19/10
    • This disclosure relates to an antenna system. The antenna system includes a first radiating element configured to emit electromagnetic radiation based on a first input signal. The antenna system also includes a reflecting element configured to reflect at least a portion of the electromagnetic radiation emitted by the first radiating element. The antenna system further includes a ground plane located between the first radiating element and the reflecting elements. Additionally, the antenna system has a feed configured to provide the input signal to the first radiating element. Furthermore, the antenna system includes at least one metallic support structure. The metallic support structure is configured to both (i) provide a separation between the first radiating element and the reflecting element and (ii) radiate electromagnetic energy based on a coupling of the electromagnetic radiation emitted by the first radiating element.
    • 本公开涉及一种天线系统。 天线系统包括被配置为基于第一输入信号发射电磁辐射的第一辐射元件。 天线系统还包括被配置为反射由第一辐射元件发射的电磁辐射的至少一部分的反射元件。 天线系统还包括位于第一辐射元件和反射元件之间的接地平面。 另外,天线系统具有被配置为向第一辐射元件提供输入信号的馈电。 此外,天线系统包括至少一个金属支撑结构。 金属支撑结构被配置为(i)在第一辐射元件和反射元件之间提供间隔,以及(ii)基于由第一辐射元件发射的电磁辐射的耦合辐射电磁能量。
    • 10. 发明授权
    • Projection of interactive map data
    • 投影交互式地图数据
    • US09473594B1
    • 2016-10-18
    • US14547010
    • 2014-11-18
    • Google Inc.
    • Ryan HickmanAnthony G. Francis, Jr.Thor Lewis
    • G05B19/04H04L29/06B25J9/16
    • B25J9/1664B25J9/1602B25J9/1697G05B2219/39252G05B2219/40178G06F17/30268G06N3/008H04L67/42Y10S901/01Y10S901/47
    • Methods and systems for robot cloud computing are described. Within examples, cloud-based computing generally refers to networked computer architectures in which application execution and storage may be divided, to some extent, between client and server devices. A robot may be any device that has a computing ability and interacts with its surroundings with an actuation capability (e.g., electromechanical capabilities). A client device may be configured as a robot including various sensors and devices in the forms of modules, and different modules may be added or removed from robot depending on requirements. In some example, a robot may be configured to receive a second device, such as mobile phone, that may be configured to function as an accessory or a “brain” of the robot. A robot may interact with the cloud to perform any number of actions, such as to share information with other cloud computing devices.
    • 描述了机器人云计算的方法和系统。 在实例中,基于云的计算通常是指网络计算机体系结构,其中应用程序执行和存储在一定程度上可以在客户端和服务器设备之间划分。 机器人可以是具有计算能力并与其周围环境具有致动能力(例如机电能力)相互作用的任何装置。 客户端设备可以被配置为包括模块形式的各种传感器和设备的机器人,并且可以根据需要从机器人添加或移除不同的模块。 在一些示例中,机器人可以被配置为接收可被配置为用作机器人的附件或“大脑”的第二设备,诸如移动电话。 机器人可以与云交互以执行任何数量的动作,例如与其他云计算设备共享信息。