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    • 6. 发明授权
    • Image modulation apparatus, method, and program
    • 图像调制装置,方法和程序
    • US09076369B2
    • 2015-07-07
    • US13754968
    • 2013-01-31
    • Atsushi Yoshida
    • Atsushi Yoshida
    • G09G5/02G06F3/14G09G5/00
    • G09G5/02G06F3/1454G09G5/003G09G2320/0693G09G2370/022G09G2370/042
    • An image modulation apparatus includes a device information obtaining unit to obtain device property information of a plurality of display devices respectively disposed at a plurality of image distribution destination apparatuses; a simulated image generator to generate a simulated image to be displayed on each of the display devices disposed at each of the image distribution destination apparatuses based on a distribution target image, to be transmitted to each of the image distribution destination apparatuses, and the device property information of each of the display devices obtained by the device information obtaining unit; and an image modulation unit to modulate the distribution target image based on a modulation instruction prepared for the plurality of the simulated images simulated by the simulated image generator.
    • 图像调制装置包括:设备信息获取单元,用于获得分别设置在多个图像分发目的地设备上的多个显示设备的设备属性信息; 模拟图像生成器,用于生成待发送到每个图像分发目的地设备的基于分发对象图像而在每个图像分发目的地设备上设置的每个显示设备上显示的模拟图像,以及设备属性 由设备信息获取单元获得的每个显示设备的信息; 以及图像调制单元,用于基于由模拟图像生成器模拟的多个模拟图像准备的调制指令来调制分布对象图像。
    • 8. 发明授权
    • Maintenance method for liquid ejecting apparatus
    • 液体喷射装置的维护方法
    • US08356876B2
    • 2013-01-22
    • US13015101
    • 2011-01-27
    • Atsushi Yoshida
    • Atsushi Yoshida
    • B41J29/393
    • B41J2/165
    • There is a first process of pressurizing the liquid introduced into the discharge pipe by driving a pump device and transferring the liquid to one end side of the discharge pipe; a second process of applying an electric field between a liquid reception unit, which is disposed to face the surface of the nozzle openings of the liquid ejecting head in a non-contact state, communicates with the other end side of the discharge pipe and is ejected with liquid from the nozzles, and the surface of the nozzle openings; a third process of detecting a change in voltage based on electrostatic induction when the pressurizing of the liquid in the discharge pipe due to the pump device is released; and a fourth process of detecting the discharge state of the liquid from the discharge pipe on the basis of detection result of the change in voltage.
    • 通过驱动泵装置并将液体输送到排出管的一端侧,对引入排出管的液体进行加压的第一工序; 与处于非接触状态的液体喷射头的喷嘴开口的表面配置的液体接收单元之间施加电场的第二过程与排出管的另一端侧连通并被排出 来自喷嘴的液体和喷嘴开口的表面; 当排出管中的液体由于泵装置的加压被释放时,基于静电感应来检测电压变化的第三过程; 以及基于电压变化的检测结果检测来自排出管的液体的排出状态的第四处理。
    • 9. 发明授权
    • Relay device
    • 继电器
    • US08234435B2
    • 2012-07-31
    • US13305832
    • 2011-11-29
    • Atsushi YoshidaTakao YamaguchiTomoki Ishii
    • Atsushi YoshidaTakao YamaguchiTomoki Ishii
    • G06F13/36
    • H04L49/101H04L49/254H04L49/3027
    • A relay device includes: an input buffer for receiving data units, each of which includes a header, to which multiple pieces of destination information have been added, and data associated with the header; multiple virtual channels for storing data units, each of the multiple virtual channels storing a data unit in accordance with the destination information; a destination comparing section for determining the order of allocation of virtual channels at a relay device on the receiving end with respect to the data units that are stored on the multiple virtual channels by seeing if their destinations are the same; and an output section for outputting the stored data units preferentially through one of the virtual channels that has already allocated at the relay device on the receiving end.
    • 中继装置包括:用于接收数据单元的输入缓冲器,每个数据单元包括已经添加了多条目的地信息的报头和与报头相关联的数据; 用于存储数据单元的多个虚拟通道,所述多个虚拟通道中的每一个根据所述目的地信息存储数据单元; 目的地比较部分,用于通过查看其目的地是否相同来确定相对于存储在多个虚拟频道上的数据单元在接收端的中继设备处的虚拟频道的分配顺序; 以及输出部,用于优先通过已经在接收端的中继装置分配的虚拟信道之一来输出所存储的数据单元。
    • 10. 发明授权
    • Relay device and relay method
    • 继电器和继电器方式
    • US08121077B2
    • 2012-02-21
    • US12741048
    • 2009-07-23
    • Atsushi YoshidaTakao YamaguchiTomoki Ishii
    • Atsushi YoshidaTakao YamaguchiTomoki Ishii
    • H04W4/00
    • H04B7/2606H04B7/155H04W40/02H04W72/085H04W84/047
    • A relay device can perform high-quality communication even in a wireless mesh network where relay devices are densely arranged and interference of wireless packets is caused. The relay device includes: a representative node determining unit (605) which determines the channel used in its own cluster for intra-cluster communication to be a channel different from the channel used in neighboring cluster for intra-cluster communication, when the communication quality of its own relay device does not meet predetermined quality and no representative node exists among neighboring nodes; a joining and removal notifying unit (607) which allows a neighboring node which is not associated with any cluster to join to its own associated cluster; and a frequency channel changing unit (609) which changes the channel used for intra-cluster communication to the channel determined by the representative node determining unit (605) of the representative node.
    • 即使在密集布置中继装置的无线网状网络中,中继装置也能够进行高质量的通信,并且引起无线分组的干扰。 中继装置包括:代表性节点确定单元(605),其将用于集群内通信的其自己的群集中使用的信道确定为与用于集群内通信的相邻群集中使用的信道不同的信道,当通信质量 其自身的中继设备不符合预定的质量,相邻节点之间不存在代表节点; 加入和移除通知单元(607),其允许与任何群集不相关联的相邻节点连接到其自己的相关联的群集; 以及将用于群内通信的信道改变为由代表性节点的代表性节点确定单元(605)确定的信道的频道改变单元(609)。