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    • 11. 发明授权
    • Wireless communication device and method for communication using frame
    • 无线通信装置及通信方式
    • US07751776B2
    • 2010-07-06
    • US11826888
    • 2007-07-19
    • Hiroshi Fujita
    • Hiroshi Fujita
    • H04B3/36H04B7/14
    • H04W16/26H04B7/15542H04W16/14H04W84/047H04W88/04
    • Wireless communication device and method whereby, even in cases where relay stations that transmit control information to terminals and relay stations that do not transmit control information coexist in the same system, the terminals are prevented from interfering with one another's communications. A non-controlling relay station transmits only data, and not control information, to a terminal, and a controlling relay station transmits both data and control information to a terminal. The wireless communication device includes a transmission interval setter for setting, in a downlink subframe of a frame for communicating by wireless with terminals, the non-controlling relay station and the controlling relay station, an interval for transmitting data from the controlling relay station to the terminal communicating therewith.
    • 无线通信装置和方法,即使在向不发送控制信息的终端和中继站发送控制信息的中继站在同一系统中共存的情况下,也可以防止终端干扰彼此的通信。 非控制中继站仅向终端发送数据而不是控制信息,控制中继站向终端发送数据和控制信息。 无线通信装置包括发送间隔设定器,用于在与终端无线通信的帧的下行链路子帧中设置非控制中继站和控制中继站,用于将数据从控制中继站发送到 终端通信。
    • 13. 发明申请
    • Communication Systems
    • 通讯系统
    • US20100074164A1
    • 2010-03-25
    • US12513805
    • 2007-07-31
    • Michael John Beems HartYuefeng ZhouDorin ViorelChenzi ZhuMichiharu NakamuraMasahiro WatanabeHiroshi FujitaMakoto Yoshida
    • Michael John Beems HartYuefeng ZhouDorin ViorelChenzi ZhuMichiharu NakamuraMasahiro WatanabeHiroshi FujitaMakoto Yoshida
    • H04B7/14
    • H04W52/46H04L1/0003H04L1/0009H04L1/0028H04L1/0029H04L2001/0097
    • A method for transmission of information about downlink and uplink parameters of a intermediate apparatus link in a multi-hop wireless communication system, the system comprising a first node apparatus, a second node apparatus and one or more intermediate apparatuses, each said apparatus being operable to transmit and receive information along a series of links forming a communication path for downlink and uplink communication, the communication path extending between the first node and second node apparatuses via the or each intermediate apparatus, each link comprising either a first node link between the first node apparatus and a said intermediate apparatus or an intermediate apparatus link between a said intermediate apparatus and a said apparatus which is not the first node apparatus, and the system having access to a minimum allocation unit for allocating time and transmission frequency bandwidth, the method comprising: obtaining values of downlink and uplink parameters for a particular intermediate apparatus link; mapping both values onto a single minimum allocation unit and transmitting them towards the first node apparatus.
    • 一种用于在多跳无线通信系统中传输关于中间设备链路的下行链路和上行链路参数的信息的方法,所述系统包括第一节点设备,第二节点设备和一个或多个中间设备,每个所述设备可操作为 沿着形成用于下行链路和上行链路通信的通信路径的一系列链路发送和接收信息,所述通信路径经由或每个中间设备在第一节点和第二节点设备之间延伸,每个链路包括第一节点之间的第一节点链路 装置以及所述中间装置或中间装置之间的链路,所述中间装置或所述中间装置与不是所述第一节点装置的所述装置之间的链路,并且所述系统具有访问用于分配时间和传输频率带宽的最小分配单元,所述方法包括: 获得一个参数的下行链路和上行链路参数的值 中型设备连接; 将这两个值映射到单个最小分配单元上并将其发送到第一节点设备。
    • 19. 发明申请
    • META-TYPE WHOLLY AROMATIC POLYAMIDE FIBER EXCELLENT IN HIGH-TEMPERATURE PROCESSABILITY, AND METHOD FOR PRODUCING THE SAME
    • 具有高温可加工性的META型异丙醇酰胺纤维及其制造方法
    • US20090054620A1
    • 2009-02-26
    • US12162762
    • 2007-01-30
    • Kotaro TakiueHiroshi Fujita
    • Kotaro TakiueHiroshi Fujita
    • C08G63/44D01F6/60
    • D01F6/605C08G69/32D01F6/805D01F6/905D04H1/42D04H1/4342D04H1/55D04H3/16D06M2101/36D06P1/67341D06P3/24Y10T428/2913Y10T428/2969
    • Upon producing a meta-type wholly aromatic polyamide fiber by wet spinning a polymer solution containing a meta-type wholly aromatic polyamide containing a m-phenylenediamine isophthalamide skeleton as a major component, and an amide solvent containing a salt, (1) the polymer solution is ejected into a coagulation bath containing an amide solvent and water and containing a salt at a low concentration to coagulate as a porous thread body (fibrous material), (2) which is subsequently stretched in a plastic stretching bath containing an aqueous solution of an amide solvent, (3) is rinsed with water and then subjected to a heat treatment in a saturated steam atmosphere, and (4) is then subjected to a dry heat treatment, so as to produce a novel meta-type wholly aromatic polyamide fiber that contains an extremely small amount of a solvent remaining in the fibers, contains a small amount of a volatile substance harmful in a heat treatment step at a high temperature, is capable of suppressing coloration of a fiber product, and is capable of providing a product with high performance and high quality.
    • 通过湿法纺丝含有间苯二胺间苯二甲酰骨架的间位型全芳香族聚酰胺作为主要成分的聚合物溶液和含有盐的酰胺系溶剂制造间位型全芳香族聚酰胺纤维时,(1)聚合物溶液 被喷射到含有酰胺溶剂和水并含有低浓度的盐的凝结浴中,以凝固为多孔螺纹体(纤维材料),(2),随后在含有水溶液的塑料拉伸浴中拉伸 酰胺溶剂,(3)用水冲洗,然后在饱和蒸汽气氛中进行热处理,然后(4)进行干热处理,以制备新颖的间位型全芳族聚酰胺纤维,其中 含有极少量的残留在纤维中的溶剂,含有少量在高温下在热处理步骤中有害的挥发性物质,能够抑制 纤维制品的着色,并且能够提供具有高性能和高质量的产品。
    • 20. 发明授权
    • Lens system assembling method and spacing jig
    • 镜头系统组装方法和间距夹具
    • US07471472B2
    • 2008-12-30
    • US11790627
    • 2007-04-26
    • Daisuke AyameHiroshi Fujita
    • Daisuke AyameHiroshi Fujita
    • G02B7/02
    • G02B27/62G02B7/021G02B7/022G02B7/027
    • In a lens system assembling method, the spacing between two mutually opposing lenses are set more accurately. The method includes the steps of: holding a first lens with a lens holding member, with the opposing lens face of the first lens being brought into close contact with a first receiving face of a spacing jig, and a lens receiving face of the lens holding member being brought into close contact with a second receiving face of the spacing jig; removing the spacing jig from the first lens and the lens holding member holding the first lens; and setting the spacing between the mutually opposing first and second lenses at a predetermined distance by abutting the second lens to the lens receiving face of the lens holding member such that the opposing lens face of the second lens is brought into close contact with the lens receiving face.
    • 在透镜系统组装方法中,更精确地设置两个相互相对的透镜之间的间隔。 该方法包括以下步骤:保持具有透镜保持部件的第一透镜,使第一透镜的相对透镜面与间隔夹具的第一接收面紧密接触,并且透镜保持部件的透镜接收面 构件与间隔夹具的第二接收面紧密接触; 从第一透镜和保持第一透镜的透镜保持部件移除间隔夹具; 以及通过将所述第二透镜与所述透镜保持部件的透镜接收面抵接而将相互相对的第一透镜和第二透镜之间的间隔设置在预定距离处,使得所述第二透镜的相对透镜面与所述透镜接收部紧密接触 面对。