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    • 112. 发明授权
    • Modified polytetrafluoroethylene fine powder and method for the production of the same
    • 改性聚四氟乙烯细粉及其制备方法
    • US06531557B1
    • 2003-03-11
    • US09242272
    • 1999-03-12
    • Kazutaka HosokawaYoshinori NanbaTakahisa AoyamaTetsuo Shimizu
    • Kazutaka HosokawaYoshinori NanbaTakahisa AoyamaTetsuo Shimizu
    • C08F21426
    • C08F214/262
    • A modified polytetrafluoroethylene fine powder containing agglomerates of colloidal particles with an average particle size of from 0.05 to 0.5 &mgr;m which comprise a copolymer of tetrafluoroethylene and an olefin-monomer represented by X(CF2)nOCF═CF2 in which X is a hydrogen atom, a fluorine atom or a chlorine atom, and n is an integer of 1 to 6, and/or C3F7(OCF2CF2CF2)m[OCF(CF3)CF2]pOCF═CF2 in which m and p are independently an integer of 0 to 4, provided that the sum of m and p is not 0 (zero), a content of the olefin monomer being from 0.02 to 0.3 wt. %, wherein the copolymer has a molecular weight distribution Mw/Mn of from 1.5 to 4.5 and a standard specific gravity of from 2.135 to 2.175. This modified polytetrafluoroethylene has good paste extrudability, and provides molded articles having good mechanical properties, in particular, pressure resistance.
    • 一种改性聚四氟乙烯细粉末,其含有平均粒径为0.05〜0.5μm的胶体粒子的附聚物,其包含由X(CF 2)n OCF = CF 2(其中X为氢原子)表示的四氟乙烯与烯烃单体的共聚物, 氟原子或氯原子,n为1〜6的整数,和/或C 3 F 7(OCF 2 CF 2 CF 2)m [OCF(CF 3)CF 2] p OCF = CF 2,其中m和p分别为0〜4的整数, m和p的和不为0(零),烯烃单体的含量为0.02-0.3重量%。 %,其中共聚物的分子量分布Mw / Mn为1.5〜4.5,标准比重为2.135〜2.175。 该改性聚四氟乙烯具有良好的糊料挤出性,并提供具有良好机械性能,特别是耐压性的模制品。
    • 113. 发明授权
    • Detachment of a mobile terminal from a mobile communication system
    • 从移动通信系统分离移动终端
    • US09226256B2
    • 2015-12-29
    • US13996844
    • 2012-03-20
    • Genadi VelevJens BachmannTakahisa AoyamaShinkichi Ikeda
    • Genadi VelevJens BachmannTakahisa AoyamaShinkichi Ikeda
    • H04W60/06H04W68/00H04L12/54H04W4/22H04W28/02
    • H04W60/06H04L12/56H04W4/90H04W28/02H04W68/00
    • Methods for detaching a mobile terminal from a mobile communication network. Furthermore, the invention also relates to a mobile terminal and a mobility management entity that perform these methods. The invention is inter alia applicable to a 3GPP LTE-A system following the Evolved Packet System (EPS) architecture. The invention proposes that the detach procedure of a mobile terminal is triggered by the mobile terminal being transferred into idle state. The mobility management entity can trigger the detach procedure in response to this event. The detach procedure may be deferred by a given time span. A detach timer may be configured in the mobile terminal and the mobility entity for this purpose, and upon expiry of the detach timer in the mobile terminal and the mobility management entity, both silently delete the context information related to the mobile terminal's user plane and control plane to detach the mobile terminal.
    • 从移动通信网络分离移动终端的方法。 此外,本发明还涉及执行这些方法的移动终端和移动性管理实体。 本发明特别适用于遵循演进分组系统(EPS)架构的3GPP LTE-A系统。 本发明提出,移动终端的分离过程由移动终端转入空闲状态来触发。 移动管理实体可以触发响应于该事件的分离过程。 分离过程可能会延迟给定的时间跨度。 为了这个目的,移动终端和移动性实体可以配置分离定时器,并且在移动终端和移动性管理实体中的分离定时器期满时,都静默地删除与移动终端的用户面相关的上下文信息和控制 飞机拆卸移动终端。
    • 115. 发明授权
    • Base station, terminal, band allocation method, and downlink data communication method
    • 基站,终端,频带分配方法和下行数据通信方式
    • US08971260B2
    • 2015-03-03
    • US13056615
    • 2009-08-03
    • Seigo NakaoHidetoshi SuzukiAkihiko NishioTakahisa AoyamaKatsuhiko Hiramatsu
    • Seigo NakaoHidetoshi SuzukiAkihiko NishioTakahisa AoyamaKatsuhiko Hiramatsu
    • H04W4/00H04W72/04H04L5/00H04L27/26
    • H04W56/001H04L5/001H04L5/0023H04L5/0048H04L5/0053H04L27/2601H04L27/2647H04W72/0406H04W72/0413H04W72/042H04W72/048H04W72/0493
    • Provided are a base station, a terminal, a band allocation method, and a downlink data communication method in which a mapping method for synchronization signals and report signals is implemented with high resource usage efficiency when a first system in which an independent single communication is allocated to a unit band co-exists with a second system in which a plurality of unit bands can be allocated to a single communication. In a base station (200), an OFDM signal generation unit (225) maps primary synchronization channel (P-SCH), secondary synchronization channel (S-SCH), primary broadcast channel (P-BCH), and dynamic broadcast channel (D-BCH), which can be decoded by both an LTE terminal and an LTE+ terminal, to some of a plurality of unit bands available to the station itself. The OFDM signal generation unit (225) also maps D-BCH+, which can be decoded only by an LTE+ terminal, to all of the plurality of unit bands to produce a multiplexed transmission signal. When the terminal which has transmitted terminal capability information is an LTE+ terminal, a control unit (265) transmits a band movement indication which indicates changes in the reception band to that terminal.
    • 提供一种基站,终端,频带分配方法和下行链路数据通信方法,其中当分配独立单个通信的第一系统时,以高资源使用效率实现同步信号和报告信号的映射方法 到单位频带与其中可以将多个单位频带分配给单个通信的第二系统共存。 在基站(200)中,OFDM信号生成部(225)将主同步信道(P-SCH),辅同步信道(S-SCH),主广播信道(P-BCH)和动态广播信道 -BCH),其可以由LTE终端和LTE +终端解码到站本身可用的多个单位频带中的一些。 OFDM信号生成单元(225)还将仅能由LTE +终端解码的D-BCH +映射到所述多个单位频带的全部以产生复用的发送信号。 当具有发送终端能力信息的终端是LTE +终端时,控制单元(265)向该终端发送指示接收频带的变化的频带移动指示。
    • 117. 发明授权
    • Radio terminal device, radio base station device, and channel signal forming method
    • 无线终端装置,无线基站装置,信道信号形成方法
    • US08743805B2
    • 2014-06-03
    • US13125422
    • 2009-10-30
    • Seigo NakaoAkihiko NishioDaichi ImamuraTakahisa Aoyama
    • Seigo NakaoAkihiko NishioDaichi ImamuraTakahisa Aoyama
    • H04W4/00
    • H04W72/042H04L1/004H04L5/0007H04L5/001H04L5/003H04L5/0046H04L5/0053H04L5/0094H04W28/06H04W72/0453
    • Provided are a radio terminal device, a radio base station device, and a channel signal forming method which can prevent quality degradation of the downlink source allocation information by reducing the frequency of the zero information addition process to the downlink resource allocation information when executing communication using an uplink unit band and a plurality of downlink unit bands correlated to the uplink unit band. A base station (100) can execute communication using the uplink unit band and a plurality of downlink unit bands correlated to the uplink unit band. The base station (100) includes: a PDCCH generation unit (102) which includes the uplink allocation information relating to the uplink unit band only in some of the channel signals formed for each of the downlink unit bands; and a padding unit (103) which adds zero information to the downlink allocation information only in the selected some channel signals having the bandwidth of the corresponding downlink unit band smaller than that of the uplink unit band until the downlink allocation information size becomes equal to the uplink allocation information size.
    • 提供一种无线电终端设备,无线电基站设备和信道信号形成方法,其可以通过在执行通信时将下行链路资源分配信息的零信息添加处理的频率降低来防止下行链路源分配信息的质量劣化 上行链路单位频带和与上行单位频带相关联的多个下行链路单位频带。 基站(100)可以使用与上行链路单位频带相关联的上行链路单位频带和多个下行链路单位频带来执行通信。 基站(100)包括:PDCCH生成单元(102),其仅在针对每个下行链路单位频带形成的一些信道信号中包括与上行链路单位频带有关的上行链路分配信息; 以及填充单元(103),其仅在所选择的一些信道信号中向下行链路分配信息添加零信息,所述选择的一些信道信号具有相应的下行链路单位带宽的带宽小于上行链路单元频带的带宽,直到下行链路分配信息大小变得等于 上行分配信息大小。
    • 118. 发明授权
    • Logical channel prioritization procedure for generating multiple uplink transport blocks
    • 用于生成多个上行链路传输块的逻辑信道优先级过程
    • US08687541B2
    • 2014-04-01
    • US13265468
    • 2010-04-01
    • Joachim LöhrTakahisa AoyamaMartin Feuersänger
    • Joachim LöhrTakahisa AoyamaMartin Feuersänger
    • H04W52/28H04W52/30
    • H04W52/146H04L5/0007H04L5/0039H04L5/0064H04L5/0092H04L5/0094H04W72/04H04W72/1242H04W72/1268
    • The invention relates to methods for scheduling of uplink transmission and generating transport blocks according to multiple received uplink assignments Furthermore, the invention is also related to the implementation of these methods in hardware and software. To propose strategies for generating plural transport blocks within a given time constraint, the invention introduces prioritization of the uplink assignments, so that multiple uplink assignments can be ranked in the mobile terminal in a priority order. The prioritization of the uplink assignments is used to determine the order in which the individual transport blocks corresponding to the uplink assignments are filled, respectively how the data of different logical channels is multiplexed to the transport blocks for transmission in the uplink. Another aspect of the invention is to suggest joint logical channel procedures that operate on virtual transport blocks accumulated from the received uplink assignments. One or more such joint logical channel procedure can be performed in parallel.
    • 本发明涉及根据多个接收的上行链路分配调度上行链路传输和生成传输块的方法。此外,本发明还涉及这些方法在硬件和软件中的实现。 为了提出在给定时间约束内产生多个传输块的策略,本发明引入了上行链路分配的优先级,使得可以按照优先级顺序在移动终端中对多个上行链路分配进行排名。 使用上行链路分配的优先级来确定与上行链路分配相对应的各个传输块的顺序分别如何将不同的逻辑信道的数据复用到传输块以在上行链路中传输。 本发明的另一方面是提出对从接收到的上行链路分配累积的虚拟传输块进行操作的联合逻辑信道过程。 可以并行地执行一个或多个这样的联合逻辑信道过程。
    • 120. 发明授权
    • Radio communication base station device and radio communication method
    • 无线通信基站装置及无线通信方式
    • US08548524B2
    • 2013-10-01
    • US13339046
    • 2011-12-28
    • Takahisa AoyamaAkito FukuiDragan Petrovic
    • Takahisa AoyamaAkito FukuiDragan Petrovic
    • H04B1/38
    • H04W76/28H04W36/30
    • It is possible to provide a radio communication terminal device, a radio communication base station device, and a radio communication method capable of rapidly completing a handover even during DRX/DTX. In the devices and the method, a terminal (100) transmits a quality measurement result to a base station (150) at an Active interval. Here, the terminal (100) sets the DRX/DTX interval to a short interval since performance of a handover is predicted. The base station (150) which has received the quality measurement result transmitted from the terminal (100) recognizes that the terminal has set the DRX/DTX interval to a short interval and transmits a handover instruction to the terminal (100) at the Active interval, considering the shortened DRX/DTX interval.
    • 可以提供即使在DRX / DTX期间能够迅速完成切换的无线通信终端装置,无线通信基站装置和无线通信方法。 在设备和方法中,终端(100)以有效间隔向基站(150)发送质量测量结果。 这里,由于进行切换的预测,所以终端(100)将DRX / DTX间隔设定为短的间隔。 接收到从终端(100)发送的质量测量结果的基站(150)识别出终端已将DRX / DTX间隔设定为短的间隔,并以活动间隔向终端(100)发送切换指示 考虑到缩短的DRX / DTX间隔。