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    • 2. 发明申请
    • USER INTERFACE AND METHOD FOR DIRECTLY SETTING DISPLAY WHITE POINT
    • 用户界面和方法直接设置显示白点
    • WO2015183853A1
    • 2015-12-03
    • PCT/US2015/032515
    • 2015-05-27
    • APPLE INC.
    • MARCU, GabrielGREENEBAUM, Kenneth, I.HENDRY, Ian, C.
    • G09G5/02H04N9/31H04N9/73G09G3/20
    • G09G5/04G06K9/4652G09G3/2003G09G5/02G09G5/10G09G2320/0606G09G2320/0666G09G2320/0693G09G2354/00H04N1/6077H04N9/3182H04N9/73
    • A method and user interface for direct setting of black and white points. Black point is set using a slider (210) and matching of gray shades. White point setting is performed by having a setting object (224) move within a defined region (206), such as a square or circle, with the area (222) where the setting object moves being adjusted dynamically based on the location of the setting object (224) with respect to the defined region (206). When the area (222) is the desired white, the setting is complete. Preferably the defined region has a varying color border (220) to allow a reference for the user in moving the setting object. A more detailed setting of gray levels can be accomplished by providing a gray scale (600) with reference points (602, 608). Each reference point has an associated white point setting area (604, 610), so that settings are developed for each reference point. Settings at other locations are determined by interpolation or extrapolation.
    • 用于直接设置黑白点的方法和用户界面。 使用滑块(210)设置黑点并配置灰色阴影。 白点设定是通过使设定对象(224)在规定区域(206)内移动的规定区域(206)中进行的,所述区域(例如平方或圆)与设定对象移动的区域(222)基于设定的位置动态调整 物体(224)相对于所限定的区域(206)。 当区域(222)是所需的白色时,设置完成。 优选地,限定区域具有变化的颜色边界(220),以允许使用者在移动设定对象时的参考。 可以通过提供具有参考点(602,608)的灰度级(600)来实现灰度级的更详细的设置。 每个参考点具有相关联的白点设置区域(604,610),使得针对每个参考点开发设置。 其他位置的设置通过插值或外推来确定。
    • 3. 发明申请
    • LOSSLESS CONNECTION FAILOVER FOR MIRRORED DEVICES
    • 用于镜像设备的无线连接故障
    • WO2013085981A1
    • 2013-06-13
    • PCT/US2012/067923
    • 2012-12-05
    • BROCADE COMMUNICATIONS SYSTEMS, INC.
    • HEGLAND, RyanSABAA, AmrADIRAJU, Siva
    • G06F15/16
    • H04L69/163H04L69/14H04L69/40
    • The WAN optimization devices delay ACK until the ACK is actually received from the target while opening up the TCP window. When the ACK is received and forwarded, the TCP window is reduced in size. If there are mirrored WAN optimization devices, the original WAN optimization device sends the datagram across the WAN and at the same time sends the datagram to the mirroring WAN optimization device. When the mirroring WAN optimization device ACKs the mirrored datagram, the original WAN optimization device ACKs the host. When the ACK across the WAN is received, the mirroring WAN optimization device gets the ACK forwarded and deletes the mirrored datagram. On a loss of a device, the TCP connection transitions to the mirroring WAN optimization device, which closes the LAN TCP window and transmits all un-ACKed data. Then upon success the mirroring WAN optimization device reopens the LAN TCP window.
    • WAN优化设备延迟ACK,直到在打开TCP窗口时从目标实际接收到ACK。 当ACK被接收和转发时,TCP窗口的大小减小。 如果有镜像广域网优化设备,原有的WAN优化设备将通过WAN发送数据报,同时将数据报发送到镜像广域网优化设备。 当镜像WAN优化设备对镜像数据报进行ACK时,原始的WAN优化设备会对主机进行ACK。 当接收到广域网上的ACK时,镜像广域网优化设备将转发ACK并删除镜像数据报。 在设备丢失的情况下,TCP连接转换到镜像WAN优化设备,该设备关闭LAN TCP窗口并发送所有未确认的数据。 然后成功后,镜像WAN优化设备重新打开LAN TCP窗口。
    • 4. 发明申请
    • LOSSLESS CONNECTION FAILOVER FOR SINGLE DEVICES
    • 用于单个设备的无线连接故障
    • WO2013085977A1
    • 2013-06-13
    • PCT/US2012/067914
    • 2012-12-05
    • BROCADE COMMUNICATION SYSTEMS, INC.
    • HEGLAND, RyanSABAA, AmrADIRAJU, Siva
    • H04L12/56
    • H04L47/33H04L47/193H04L47/27H04L47/40H04L69/163
    • The WAN optimization devices delay ACK until the ACK is actually received from the target while opening up the TCP window. When the ACK is received and forwarded, the TCP window is reduced in size. If there are mirrored WAN optimization devices, the original WAN optimization device sends the datagram across the WAN and at the same time sends the datagram to the mirroring WAN optimization device. When the mirroring WAN optimization device ACKs the mirrored datagram, the original WAN optimization device ACKs the host. When the ACK across the WAN is received, the mirroring WAN optimization device gets the ACK forwarded and deletes the mirrored datagram. On a loss of a device, the TCP connection transitions to the mirroring WAN optimization device, which closes the LAN TCP window and transmits all un-ACKed data. Then upon success the mirroring WAN optimization device reopens the LAN TCP window.
    • WAN优化设备延迟ACK,直到在打开TCP窗口时从目标实际接收到ACK。 当ACK被接收和转发时,TCP窗口的大小减小。 如果有镜像广域网优化设备,原有的WAN优化设备将通过WAN发送数据报,同时将数据报发送到镜像广域网优化设备。 当镜像WAN优化设备对镜像数据报进行ACK时,原始的WAN优化设备会对主机进行ACK。 当接收到广域网上的ACK时,镜像广域网优化设备将转发ACK并删除镜像数据报。 在设备丢失的情况下,TCP连接转换到镜像WAN优化设备,该设备关闭LAN TCP窗口并发送所有未确认的数据。 然后成功后,镜像WAN优化设备重新打开LAN TCP窗口。
    • 6. 发明申请
    • SEISMIC VIBRATOR CONTROLLED BY DIRECTLY DETECTING BASE PLATE MOTION
    • 通过直接检测基板运动控制的地震振动台
    • WO2010127213A1
    • 2010-11-04
    • PCT/US2010/033115
    • 2010-04-30
    • ION GEOPHYSICAL CORPORATIONWEI, Zhouhong
    • WEI, Zhouhong
    • G01V1/00
    • G01V1/047
    • A seismic vibrator has a base plate with at least four isolators isolating a frame from the base plate. Each of these isolators is offset from the plate's footprint on shelves to free up area on the plate's top surface. An accelerometer disposed directly on the base plate detects the acceleration imparted to the plate. To reduce flexing and bending, the plate has an increased stiffness and approximately the same mass of a plate for a comparably rated vibrator. The accelerometer disposes at a particular location of the plate that experiences transition between longitudinal flexing along the plate's length. This transition location better represents the actual acceleration of the plate during vibration and avoids overly increased and decreased acceleration readings that would be obtained from other locations on the plate.
    • 地震振动器具有至少四个隔离器的基板,隔离器将框架与基板隔离开。 这些隔离器中的每一个都从板上的搁板偏移,以释放板顶表面上的区域。 直接设置在基板上的加速度计检测加到板上的加速度。 为了减少弯曲和弯曲,板具有增加的刚度和大致相同质量的用于相当额定振动器的板。 加速度计配置在板的特定位置,其经历沿着板长度的纵向弯曲之间的转变。 该转换位置更好地表示板在振动期间的实际加速度,并避免过度增加和减小从板上其他位置获得的加速度读数。
    • 9. 发明申请
    • MARINE THREAT MONITORING AND DEFENSE SYSTEM
    • 海上监控和防御系统
    • WO2012162310A1
    • 2012-11-29
    • PCT/US2012/038979
    • 2012-05-22
    • ION GEOPHYSICAL CORPORATIONGAGLIARDI, Joseph, R.FLYNN, DesGRANT, John
    • GAGLIARDI, Joseph, R.FLYNN, DesGRANT, John
    • G08G3/02
    • G08G3/02B63B43/18B63B2211/06B63J2099/006
    • A marine threat monitoring and defense system and method protects a target vessel in icy or other marine regions. The system uses communications, user interfaces, and data sources to identify marine obstacles (e.g., icebergs, ice floes, pack ice, etc.) near a target vessel performing set operations (e.g., a stationed structure performing drilling or production operations or a seismic survey vessel performing exploration operations with a planned route). The system monitors positions of these identified marine obstacles over time relative to the target vessel and predicts any potential threats. When a threat is predicted, the system plans deployment of support vessels, beacons, and the like to respond to the threat. For example, the system can direct a support vessel to divert the path or break up ice threatening the target vessel.
    • 海洋威胁监测和防御系统和方法保护目标船只在冰冷或其他海洋地区。 该系统使用通信,用户界面和数据源来识别执行设定操作的目标船舶附近的海洋障碍(例如,冰山,冰川,包冰等)(例如,执行钻井或生产操作的驻地结构或地震 勘测船舶按照规划路线进行勘探作业)。 该系统监测这些识别的海洋障碍物相对于目标船只的位置,并预测任何潜在的威胁。 当预测到威胁时,系统计划部署支持船只,信标等来应对威胁。 例如,该系统可以引导支撑船只转移路径或破坏威胁目标船的冰。