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    • 22. 发明申请
    • SERVER DEVICE, COMMUNICATION METHOD, AND PROGRAM PRODUCT
    • 服务器设备,通信方法和程序产品
    • US20120246224A1
    • 2012-09-27
    • US13412697
    • 2012-03-06
    • Hiroshi KawazoeTakuya Kawamura
    • Hiroshi KawazoeTakuya Kawamura
    • G06F15/16
    • H04N19/507H04N19/17
    • According to one embodiment, a server device includes a receiver, an acquisition unit, a difference extracting unit, an estimation unit, a determination unit, a compression unit, and a transmitter. The receiver receives manipulation information from a client device. The acquisition unit acquires a display image on which the manipulation information is reflected. The difference extracting unit extracts a region where pixel information on an image transmitted to the client device is not matched with pixel information on the display image. The estimation unit estimates an elapsed time since the manipulation information is received until the display image is acquired. The determination unit determines image quality, for which a response time is a predetermined value or less, on the basis of the elapsed time. The compression unit generates a compression image in which the image in the region is compressed with the determined image quality. The transmitter transmits the compression image.
    • 根据一个实施例,服务器设备包括接收器,获取单元,差分提取单元,估计单元,确定单元,压缩单元和发送器。 接收器从客户端装置接收操纵信息。 获取单元获取反映操作信息的显示图像。 差分提取单元提取关于发送到客户端设备的图像的像素信息与显示图像上的像素信息不匹配的区域。 估计单元估计从接收到操作信息直到获取显示图像之后的经过时间。 决定单元基于经过时间确定响应时间为预定值或更小的图像质量。 压缩单元产生压缩图像,其中以所确定的图像质量来压缩该区域中的图像。 发射机发送压缩图像。
    • 23. 发明申请
    • SERVER
    • 服务器
    • US20120221630A1
    • 2012-08-30
    • US13420161
    • 2012-03-14
    • Hiroshi KawazoeTakuya Kawamura
    • Hiroshi KawazoeTakuya Kawamura
    • G06F15/16
    • G06F9/505G06F2209/509
    • A server comprising: a detector that detects a run command of an application; a CPU load calculating unit that calculates a CPU load; a screen image transmission load calculating unit that calculates a screen image transmission load; a server runtime load calculating unit that calculates a server runtime load; a client runtime load calculating unit that calculates a client runtime load; a determining unit that determines which runs the application, the server or the client; a running unit that runs the application; and a transmitter that transmits the running information on the application to the client.
    • 一种服务器,包括:检测器,其检测应用的运行命令; CPU负载计算单元,其计算CPU负载; 屏幕图像传输负载计算单元,其计算屏幕图像传输负载; 服务器运行时负载计算单元,其计算服务器运行时负载; 客户端运行时负载计算单元,其计算客户端运行时负载; 确定应用程序,服务器或客户端运行的确定单元; 运行应用程序的运行单元; 以及将应用上的运行信息发送到客户端的发射机。
    • 24. 发明授权
    • Server, screen transmitting method, and program storage medium
    • 服务器,屏幕发送方法和程序存储介质
    • US08213730B2
    • 2012-07-03
    • US12382492
    • 2009-03-17
    • Hiroshi KawazoeShogo YamaguchiShinya Murai
    • Hiroshi KawazoeShogo YamaguchiShinya Murai
    • G06K9/36
    • H04N19/507H04N19/12H04N19/136H04N19/17H04N19/46H04N19/60
    • A server includes a generating unit which generates image data in a partial region of a displayed image on the screen; a type identifying unit configured to identify a type of a GUI component included in the region of the generated image data; a storage which stores compression property information for each GUI component type; a compression scheme deciding unit which decides a compression scheme based on compression property information corresponding to the GUI component type identified; a compression unit which compresses the generated image data with a decided compression scheme; a transmission unit which transmits the compressed data to the client terminal; an update frequency deciding unit which decides a update frequency of the compression property information in the storage for each type of the GUI component; and an updating unit which updates the compression property information with the update frequency decided for each type of the GUI component.
    • 服务器包括生成单元,其生成屏幕上显示图像的局部区域中的图像数据; 类型识别单元,被配置为识别包括在所生成的图像数据的区域中的GUI组件的类型; 用于存储每个GUI组件类型的压缩属性信息的存储器; 压缩方案决定单元,其基于与所识别的GUI组件类型相对应的压缩属性信息来决定压缩方案; 压缩单元,其以确定的压缩方案压缩生成的图像数据; 发送单元,其将压缩数据发送到客户终端; 更新频率决定单元,其针对每种类型的GUI组件决定存储器中的压缩属性信息的更新频率; 以及更新单元,其以针对每种类型的GUI组件确定的更新频率更新压缩属性信息。
    • 26. 发明授权
    • Devices, systems and methods for prohibition of acceleration for cooperative speed control system
    • 用于协调速度控制系统禁止加速的装置,系统和方法
    • US07653472B2
    • 2010-01-26
    • US11140253
    • 2005-05-31
    • Hiroshi KawazoeHiroshi Tsuda
    • Hiroshi KawazoeHiroshi Tsuda
    • B60K31/00
    • B60W30/146B60W2550/12B60W2550/22
    • A device for automatically controlling vehicle speed, including a processor. In one embodiment, the processor includes logic to automatically determine whether a first local required speed is greater than a second local required speed, and only if the first local required speed is greater than the second local required speed, automatically initiate output of a signal to a vehicle speed controller to change vehicle speed to a new set vehicle speed. In another embodiment, the processor includes logic to automatically determine a new set vehicle speed based at least on a change in local required speed and a current set vehicle speed, and only if the current set vehicle speed is greater than the determined new set vehicle speed, automatically initiate output of a signal to a vehicle speed controller to change vehicle speed to the determined new set vehicle speed.
    • 一种用于自动控制车速的装置,包括处理器。 在一个实施例中,处理器包括用于自动确定第一局部所需速度是否大于第二局部所需速度的逻辑,并且只有当第一局部所需速度大于第二本地所需速度时,自动启动信号输出 车速控制器,用于将车速改变为新的车速。 在另一个实施例中,处理器包括至少基于局部所需速度和当前设定车辆速度的变化来自动确定新的设定车辆速度的逻辑,并且仅当当前设定的车辆速度大于所确定的新的设定车辆速度 自动启动向车速控制器输出信号以将车速改变到所确定的新的设定车速。
    • 30. 发明授权
    • Fuel injector
    • 喷油器
    • US07278594B2
    • 2007-10-09
    • US11384243
    • 2006-03-21
    • Kazuaki KoyanagiHiroshi Kawazoe
    • Kazuaki KoyanagiHiroshi Kawazoe
    • B05B1/30
    • F02M61/168F02M51/0657F02M2200/9038Y10S239/90
    • A fuel injector 10 may comprise a valve body 14 having a fuel path, a valve seat 23 fixed to a downstream end of the valve body, and a valve 25 that opens and closes a fuel injection hole of the valve seat 23. The valve may be housed within the valve body in a manner allowing sliding. An armature 31 may be attached to an upstream end of the valve 25, and a valve closing element 32 may be attached to a downstream end of the valve 25. A core 21 may be disposed at an upstream side of the armature 31. A downstream end surface of the core 21 faces an upstream end surface of the armature 31. When the valve 25 opens the fuel injection hole, the downstream end surface of the core 21 makes contact with the upstream end surface of the armature 31. A non-magnetic ring 20 may be disposed at an outer circumference side of the armature 31 and the core 21. The non-magnetic ring 20 may extend as far as an upstream side of the solenoid coil 18, and the solenoid coil 18 may be wound directly around an outer circumference of the non-magnetic ring 20.
    • 燃料喷射器10可以包括具有燃料路径的阀体14,固定到阀体的下游端的阀座23和打开和关闭阀座23的燃料喷射孔的阀25。 阀可以以允许滑动的方式容纳在阀体内。 电枢31可以附接到阀25的上游端,并且阀关闭元件32可以附接到阀25的下游端。 芯21可以设置在衔铁31的上游侧。 芯21的下游端面面对电枢31的上游端面。 当阀25打开燃料喷射孔时,芯21的下游端面与电枢31的上游端面接触。 非磁性环20可以设置在电枢31和芯21的外周侧。 非磁性环20可以延伸到螺线管线圈18的上游侧,螺线管线圈18可以直接卷绕在非磁性环20的外周。