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    • 86. 发明授权
    • Systems and methods for updating camera characteristics using a remote computing device
    • 使用远程计算设备更新摄像机特性的系统和方法
    • US09288374B1
    • 2016-03-15
    • US13608846
    • 2012-09-10
    • Ted John CooperYang Liu
    • Ted John CooperYang Liu
    • H04N5/232H04N9/04
    • H04N5/232H04N5/23206H04N5/23222H04N5/23225H04N5/23229H04N5/23251H04N5/2357H04N9/045
    • This disclosure relates to systems and methods for adjusting camera device characteristics using a remote imaging server. The camera device may take an initial image before the user takes a picture. The initial image is provided to the imaging server over a network. The imaging server analyzes the initial image and assesses which image parameters may need to be adjusted to capture a higher quality picture. The image parameters may include, but are not limited to, brightness, reflectivity, user vibrations, skin tone, subject movement, light sources, and/or user preferences. The imaging server may provide recommendations or adjustments to the camera device prior to the user taking a picture. The imaging server may also prompt the user to position or orientation of the camera device or a subject prior to taking a picture.
    • 本公开涉及用于使用远程成像服务器来调整相机设备特性的系统和方法。 相机设备可以在用户拍摄照片之前拍摄初始图像。 通过网络将初始图像提供给成像服务器。 成像服务器分析初始图像并评估可能需要调整哪些图像参数以捕获更高质量的图像。 图像参数可以包括但不限于亮度,反射率,用户振动,肤色,被摄体移动,光源和/或用户偏好。 成像服务器可以在用户拍摄照片之前向照相机设备提供建议或调整。 成像服务器还可以在拍摄照片之前提示用户定位或定向相机设备或被摄体。
    • 87. 发明授权
    • Ultra-responsive phase shifters for depletion mode silicon modulators
    • 用于耗尽型硅调制器的超响应型移相器
    • US09158138B2
    • 2015-10-13
    • US14060058
    • 2013-10-22
    • Yang LiuTom Baehr-Jones
    • Yang LiuTom Baehr-Jones
    • G02F1/035G02F1/025G02F1/015G02F1/225G02F1/01
    • G02F1/025G02F1/01G02F1/011G02F1/015G02F1/035G02F1/0353G02F1/0356G02F1/2257G02F2001/0113G02F2001/0152
    • A novel phase shifter design for carrier depletion based silicon modulators, based on an experimentally validated model, is described. It is believed that the heretofore neglected effect of incomplete ionization will have a significant impact on ultra-responsive phase shifters. A low VπL product of 0.3 V·cm associated with a low propagation loss of 20 dB/cm is expected to be observed. The phase shifter is based on overlapping implantation steps, where the doses and energies are carefully chosen to utilize counter-doping to produce an S-shaped junction. This junction has a particularly attractive VπL figure of merit, while simultaneously achieving attractively low capacitance and optical loss. This improvement will enable significantly smaller Mach-Zehnder modulators to be constructed that nonetheless would have low drive voltages, with substantial decreases in insertion loss. The described fabrication process is of minimal complexity; in particular, no high-resolution lithographic step is required.
    • 描述了基于实验验证的模型的基于载波耗尽的硅调制器的新型移相器设计。 据信,迄今为止忽略不完全电离的作用将对超灵敏移相器产生重大影响。 预期可以观察到与20dB / cm的低传播损耗相关联的0.3V·cm的低V&pgr L产品。 移相器基于重叠的植入步骤,其中仔细选择剂量和能量以利用反掺杂产生S形结。 该接头具有特别有吸引力的V&pgr; L品质因数,同时实现了极低的电容和光损耗。 这种改进将使得能够构造出显着更小的马赫 - 曾德调制器,尽管如此,驱动电压也将较低,插入损耗也大大降低。 所描述的制造过程具有最小的复杂性; 特别地,不需要高分辨率光刻步骤。
    • 88. 发明申请
    • FORMATION MEASUREMENTS USING NONLINEAR GUIDED WAVES
    • 使用非线性引导波的形成测量
    • US20150268367A1
    • 2015-09-24
    • US14223416
    • 2014-03-24
    • Ehsan KhajehYang Liu
    • Ehsan KhajehYang Liu
    • G01V1/50
    • G01V1/50G01V1/46
    • An embodiment of a method of estimating a property of an earth formation includes: disposing an acoustic tool in a borehole in an earth formation, the acoustic tool including an acoustic source and at least one acoustic receiver; transmitting acoustic signals into the borehole by the acoustic source, the acoustic signals having at least one linear guided wave mode that propagates along a surface of the borehole; receiving the acoustic signals by at least one receiver; analyzing, by a processor, the acoustic signals to measure non-linear harmonic waves generated by the formation is response to the at least one linear guided wave mode; and estimating a property of the formation based on the measured non-linear harmonic waves.
    • 估计地球物理性质的方法的实施例包括:将声学工具设置在地层中的钻孔中,所述声学工具包括声源和至少一个声学接收器; 通过声源将声信号传输到钻孔中,声信号具有沿钻孔表面传播的至少一个线性导波模式; 通过至少一个接收器接收声信号; 通过处理器分析用于测量由地层产生的非线性谐波的声信号是对至少一个线性导波模式的响应; 并基于所测量的非线性谐波估计地层的性质。
    • 90. 发明申请
    • AUTOMATIC DUST-REMOVING AND CLEANING DEVICE FOR FILTER NET OF AIR-CONDITIONER
    • 空调机过滤器自动除尘清洗装置
    • US20150114232A1
    • 2015-04-30
    • US13807409
    • 2011-03-10
    • Wen PanYuanjing ChiKun LinXiaoding QinYang Liu
    • Wen PanYuanjing ChiKun LinXiaoding QinYang Liu
    • F24F3/16B01D46/00
    • F24F3/1603B01D46/0002B01D46/0028B01D46/0054B01D46/0065B01D46/42B01D2279/50F24F1/0007F24F11/39F24F13/28F24F2003/1639
    • Disclosed is an automatic dust-removing and cleaning device for a filter net of an air-conditioner which has a filter net (2) with an end to end sealing ring structure. The filter net (2) comprises a net frame (21) provided with gear sockets (211), and a mesh (22). A driving gear (5) is installed at one corner of an air inlet frame (1) of the air conditioner and meshed with the gear sockets (211) of the net frame (21). Driven gears (6) are installed at the other three corners of the air inlet frame (1) of the air conditioner and meshed with the gear sockets (211) of the net frame (21). A drive mechanism (12) drives the driving gear (5) to rotate. A dust-collecting box (3) is installed at the bottom of the air inlet frame (1) of the air conditioner and provided with a water inlet and a water outlet. The water inlet is connected to a water inlet pipe (8) and the water outlet is connected to a water outlet pipe (9). A dust removing brush (4) is installed on the dust-collecting box (3), located below the filter net (2) and in contact with the filter net (2) simultaneously.
    • 本发明公开了一种具有带有端对端密封环结构的过滤网(2)的空调机的过滤网的自动除尘清洗装置。 过滤网(2)包括设置有齿轮座(211)的网架(21)和网(22)。 驱动齿轮(5)安装在空调的空气入口框架(1)的一个角落处,并与网架(21)的齿轮座(211)啮合。 驱动齿轮(6)安装在空调的进气框架(1)的另外三个角处,并与网架(21)的齿轮座(211)啮合。 驱动机构(12)驱动驱动齿轮(5)旋转。 集尘箱(3)安装在空调进气框架(1)的底部,并设有进水口和出水口。 进水口与进水管(8)连接,出水口与出水管(9)连接。 在除尘网(2)下方并与过滤网(2)同时接触的集尘箱(3)上安装除尘刷(4)。