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    • 31. 发明申请
    • APPARATUS AND METHOD FOR WIRELESS COMMUNICATION
    • 无线通信的装置和方法
    • US20120177096A1
    • 2012-07-12
    • US13427423
    • 2012-03-22
    • Tetsuya YANOYoshihiro KAWASAKIYoshinori TANAKAShunji MIYAZAKI
    • Tetsuya YANOYoshihiro KAWASAKIYoshinori TANAKAShunji MIYAZAKI
    • H04B17/00
    • H03M13/6525H03M13/03H03M13/09H03M13/29H04L1/0057H04L1/0071H04L5/001H04L5/0053H04L5/0094
    • In a wireless communication method, a first wireless communication apparatus transmits through a first wireless resource to a second wireless communication apparatus a first signal generated from a second signal for use in processing performed by the second wireless communication apparatus and a third signal for use in error checking of the second signal. The second wireless communication apparatus detects a second wireless resource to be used in the processing on the basis of the first signal, and performs the processing by using the second signal and the detected second wireless resource. For the detection, a section of the first signal corresponding to the second wireless resource is scrambled, or the first signal is scrambled with a scrambling sequence corresponding to the second wireless resource, or the bit order in at least part of the first signal is changed in a manner corresponding to the second wireless resource.
    • 在无线通信方法中,第一无线通信装置通过第一无线资源向第二无线通信装置发送从由第二无线通信装置执行的处理中使用的第二信号生成的第一信号和用于错误的第三信号 检查第二个信号。 第二无线通信装置基于第一信号检测在处理中使用的第二无线资源,并且通过使用第二信号和检测到的第二无线资源来执行处理。 对于检测,将对应于第二无线资源的第一信号的一部分加扰,或者利用与第二无线资源相对应的扰频序列对第一信号进行加扰,或者改变至少部分第一信号中的比特顺序 以对应于第二无线资源的方式。
    • 33. 发明申请
    • TURBINE
    • 涡轮
    • US20120121393A1
    • 2012-05-17
    • US13386084
    • 2010-10-04
    • Yoshihiro KuwamuraKazuyuki MatsumotoHiroharu OoyamaYoshinori TanakaAsaharu Matsuo
    • Yoshihiro KuwamuraKazuyuki MatsumotoHiroharu OoyamaYoshinori TanakaAsaharu Matsuo
    • F01D11/08
    • F16J15/4472F01D5/225F01D11/001F01D11/02F01D11/08
    • The turbine is provided with a blade (50) and a structure body (11) which rotates relatively with respect to the blade (50). A stepped part (52A) having a step surface (53A) is installed at one of the leading end of the blade (50) and the structure body (11) corresponding to the leading end thereof, while a seal fin (15A) which extends toward the stepped part (52A) to form a small space (H) is installed at the other of them. A cavity (C1) is formed between the blade (50) and the structure body (11) and also between the seal fin (15A) and the partition wall which faces thereto in the rotating shaft direction of the structure body (11) on the upstream side. When a distance of the cavity (C1) between the partition wall and the seal fin (15A) is given as a cavity width (W), and a distance between the seal fin (15A) and the end edge (55) of the stepped part (52A) in the rotating shaft direction on the upstream side is given as (L), at least one of the distances (L) satisfies the following formula (1). 0.7H≦L≦0.3W  (1)
    • 涡轮机设置有相对于叶片(50)旋转的叶片(50)和结构体(11)。 具有台阶面(53A)的阶梯部(52A)安装在与其前端对应的叶片(50)和结构体(11)的前端中的一个上,而延伸的密封翅片 在台阶部分(52A)上形成一个较小的空间(H)。 在叶片(50)和结构体(11)之间以及在结构体(11)的旋转轴方向上与密封翅片(15A)和分隔壁之间形成的空腔(C1) 上游侧。 当分隔壁和密封翅片(15A)之间的空腔(C1)的距离被给定为空腔宽度(W)时,并且密封翅片(15A)和阶梯状的边缘(55)之间的距离 在上游侧的旋转轴方向上的部分(52A)被给出为(L),距离(L)中的至少一个满足下式(1)。 0.7H≦̸ L≦̸ 0.3W(1)
    • 39. 发明授权
    • Method, program and apparatus for generating image data
    • 用于生成图像数据的方法,程序和装置
    • US08026928B2
    • 2011-09-27
    • US11942842
    • 2007-11-20
    • Kohji TakanoYoshinori Tanaka
    • Kohji TakanoYoshinori Tanaka
    • G09G5/00
    • G06T3/4092G06F3/1454G06T11/60G09G2340/04G09G2340/145G09G2350/00
    • A method to realize efficient remote control of the server in a client with a limited display function, while maintaining a GUI-based image and minimizing a data transfer amount from the server, includes: receiving a command concerning a control operation to request an operation of the server from the client; in response to reception of the command, dividing an image displayed on a display screen of the server and detecting a change in the image in each of the divided areas; based on the detected change of the image, generating data of an image for status display to be displayed on the client; and transmitting the data of the image for status display to the client.
    • 一种在具有有限显示功能的客户机中实现对服务器的有效远程控制的方法,同时保持基于GUI的图像并使来自服务器的数据传输量最小化的方法包括:接收关于控制操作的命令以请求操作 客户端的服务器; 响应于所述命令的接收,划分显示在所述服务器的显示屏幕上的图像并检测每个所述划分区域中的图像的变化; 基于检测到的图像的变化,生成要在客户端上显示的用于状态显示的图像的数据; 并将用于状态显示的图像的数据发送给客户端。