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    • 54. 发明授权
    • Transmission timing control method, base station apparatus and mobile station apparatus
    • 发送定时控制方法,基站装置和移动站装置
    • US08493961B2
    • 2013-07-23
    • US11813582
    • 2006-01-11
    • Atsushi MatsumotoSadaki FutagiKenichi MiyoshiDaichi ImamuraAkihiko Nishio
    • Atsushi MatsumotoSadaki FutagiKenichi MiyoshiDaichi ImamuraAkihiko Nishio
    • H04J3/06
    • H04L5/1469H04L5/023H04L27/2646H04L27/2655
    • A wireless communication method for improving the transmission efficiency in an upstream communication in OFDMA-TDD system or the like. An upstream transmission timing control part (108), which employs this method, controls, based on the OFDMA-TDD scheme, the transmission timings of a mobile station (#p) and a mobile station (#M) communicating with a base station (100). The upstream transmission timing control part (108) acquires information about the propagation delay times τp and τM of the mobile station (#p) and mobile station (#M). When the propagation delay time τp is shorter than the propagation delay time τM, the upstream transmission timing control part (108) decides the transmission timings of the mobile station (#p) and mobile station (#M) such that the timing at which the base station (100) starts receiving symbols from the mobile station (#p) in an upstream section is earlier, by αp times an OFDM symbol length (L) (where αp is a natural number), than the timing at which the base station (100) starts receiving symbols from the mobile station (#M) in the same section.
    • 一种用于在OFDMA-TDD系统中提高上行通信中的传输效率的无线通信方法等。 使用该方法的上行发送定时控制部(108)基于OFDMA-TDD方式,控制与基站通信的移动台(#p)和移动台(#M)的发送定时 100)。 上游发送定时控制部(108)获取关于移动台(#p)和移动台(#M)的传播延迟时间taup和tauM的信息。 当传播延迟时间taup比传播延迟时间ττ短时,上游发送定时控制部(108)决定移动台(#p)和移动台(#M)的发送定时, 基站(100)开始在上游部分中从移动站(#p)开始接收符号的时间早于基站的时间(alphap是自然数) (100)开始从同一部分的移动台(#M)接收符号。
    • 57. 发明申请
    • DEVELOPING DEVICE
    • 开发设备
    • US20120251185A1
    • 2012-10-04
    • US13429717
    • 2012-03-26
    • Atsushi Matsumoto
    • Atsushi Matsumoto
    • G03G15/08
    • G03G15/0893
    • A developing device includes a developer carrying member for carrying a developer; a first feeding chamber for feeding along the developer carrying member to supply the developer to the developer carrying member and for collecting the developer, after being subjected to development; a second feeding chamber, connected to the first feeding chamber, for foaming a circulating path with the first feeding chamber; and a screw member rotatably provided in the first feeding chamber. In a region where the screw member opposes at least a developing region with respect to a rotational axis direction of the developer carrying member, the screw member includes a first helical portion having a helix direction of feeding the developer in the same direction as a circulation direction of the circulation path and a second helical portion having a helix direction opposite to the helix direction of the first helical portion.
    • 显影装置包括用于承载显影剂的显影剂承载构件; 第一进料室,用于沿着显影剂承载构件供给以将显影剂供应到显影剂承载构件并用于在显影后收集显影剂; 第二进料室,连接到第一进料室,用于与第一进料室发泡循环路径; 以及可旋转地设置在所述第一进料室中的螺杆构件。 在螺杆构件相对于显影剂承载构件的旋转轴线方向至少相对于显影区域的区域中,螺杆构件包括具有沿与循环方向相同的方向供给显影剂的螺旋方向的第一螺旋部 和具有与第一螺旋部分的螺旋方向相反的螺旋方向的第二螺旋部分。
    • 58. 发明申请
    • INPUT DEVICE
    • 输入设备
    • US20120229376A1
    • 2012-09-13
    • US13508259
    • 2010-01-18
    • Atsushi MatsumotoWataru YamazakiTakuji MorimotoTaro Kumagai
    • Atsushi MatsumotoWataru YamazakiTakuji MorimotoTaro Kumagai
    • G09G5/00
    • G06F3/0233G06F3/016G06F3/04886
    • An input device displays a screen including character input buttons to each of which characters are assigned, and each of which specifies one character assigned thereto, as a character to be inputted, according to the number of times that a selection operation is performed thereon, and display area B in which a character to be inputted specified through a selection operation performed on the character input buttons is displayed in order on a display device, specifies candidate characters each of which can be inputted to follow a character string being inputted and displayed in the display area B from the character strings of words each including the character string being inputted, and, when a character to be inputted which is specified to follow the character string is not included in the candidate characters, tones down and displays the character to be inputted immediately after the character string.
    • 输入装置根据其上进行选择操作的次数,显示包括字符输入按钮的屏幕,每个字符输入按钮分配给每个字符,并且每个字符指定分配给其的一个字符作为要输入的字符;以及 显示区域B,其中通过对字符输入按钮执行的选择操作指定的要输入的字符被输入到显示设备上,指定可以输入的候选字符,以便遵循输入和显示的字符串 显示区域B从包括输入的字符串的字的字符串中,并且当被指定为跟随字符串的被输入的字符不包括在候选字符中时,下调并显示要输入的字符 紧跟字符串后。
    • 60. 发明申请
    • PRESSURE-LOSS ADJUSTING MEMBER REACTOR
    • 压力调节会员反应器
    • US20120014494A1
    • 2012-01-19
    • US13181174
    • 2011-07-12
    • Atsushi MatsumotoNoboru KuboRyo Yoshimura
    • Atsushi MatsumotoNoboru KuboRyo Yoshimura
    • G21C1/04
    • G21C3/322G21C7/32G21C15/06Y02E30/38Y02E30/39
    • [Problem to be Solved] To suppress problems due to a flow of a primary coolant while easily distributing a flow rate of the primary coolant to fuel assemblies.[Solution] A pressure-loss adjusting member 60 includes: a pressure-loss adjusting hole 62 that can cause light water to pass therethrough in a state with a pressure-loss being increased more than that of when light water flowing around the fuel assembly passes through only a core support plate flow hole formed in a lower core support plate; and a core support plate engaging unit 70 that can be engaged with the lower core support plate by being inserted into the core support plate flow hole. Accordingly, the flow rate of light water flowing toward the fuel assembly can be reduced by arranging the pressure-loss adjusting member 60 between a lower nozzle of a fuel assembly having a small pressure-loss and the lower core support plate, and rattling or the like of the pressure-loss adjusting member 60 can be suppressed by engaging the core support plate engaging unit 70 with the lower core support plate. As a result, problems due to the flow of light water can be suppressed, while easily distributing the flow rate of light water to the fuel assemblies.
    • [待解决的问题]为了抑制由于一次冷却剂的流动而容易地将一次冷却剂的流量分配给燃料组件的问题。 [解决方案]压力损失调节构件60包括:在压力损失增加的情况下能够使轻水通过的压力损失调节孔62比在燃料组件周围流动的轻水流过 仅通过形成在下芯支撑板中的芯支撑板流动孔; 和芯支撑板接合单元70,其可以通过插入到芯支撑板流动孔中而与下芯支撑板接合。 因此,通过将压力损失调节构件60配置在具有小的压力损失的燃料组件的下部喷嘴与下部芯部支撑板之间,可以减少向燃料组件流动的轻水的流量, 可以通过将芯支撑板接合单元70与下芯支撑板接合来抑制压力损失调节构件60的压力。 结果,能够容易地将轻水的流量分配给燃料组件,能够抑制由于轻水流动引起的问题。