会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 51. 发明公开
    • COMMUNICATION TERMINAL DEVICE AND COMMUNICATION CONTROL METHOD
    • KOMMUNIKATIONSENDGERÄTEEINRICHTUNGUND KOMMUNIKATIONSSTEUERUNGSVERFAHREN
    • EP1496661A1
    • 2005-01-12
    • EP03725603.9
    • 2003-04-18
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
    • HIRANO, JunINOGAI, KazunoriIMAMURA, DaichiTANAKA, Takeshi
    • H04L29/02
    • H04L47/10H04L47/125H04L69/14H04L69/32
    • The present invention discloses a communication terminal apparatus, by which it is possible to perform communication while comprehensively controlling a plurality of different communication means. For instance, in a communication terminal apparatus 100 hierarchically classified to a plurality of layers depending on different processing functions such as OSI reference model, it is designed in such manner that a processing unit 303 belonging to a predetermined layer can selectively utilize a plurality of processing units 301 belonging to lower layer through control of an operation control unit 304 belonging to a predetermined layer. For instance, by referring to which processing is available among a plurality of processing units belonging to lower layer, which processing unit has better transmission efficiency in communication, or which processing unit can be used to perform communication with a desired communication partner, data distribution control means 309 controls data distributing means 307, and the data distributing means divides transmission data supplied from upper layer and distributes the data to a plurality of processing units belonging to the lower layer.
    • 本发明公开了一种通信终端装置,通过该通信终端装置,能够在全面地控制多个不同的通信手段的同时进行通信。 例如,在根据OSI参考模型等不同的处理功能层次地分类为多层的通信终端装置100中,设计为属于预定层的处理单元303可以选择性地利用多个处理 通过属于预定层的操作控制单元304的控制,属于下层的单元301。 例如,通过参照属于下层的多个处理单元哪个处理可用,哪个处理单元在通信中具有更好的传输效率,或哪个处理单元可以用于与期望的通信伙伴进行通信,数据分配控制 装置309控制数据分配装置307,并且数据分配装置分割从上层提供的发送数据,并将数据分配给属于下层的多个处理单元。
    • 52. 发明公开
    • ALONG-OPTICAL-FIBER RADIO COMMUNICATION SYSTEM
    • 系统ZUN FUNKKOMMUNIKATION ENTLANG EINER OPTISCHEN FASER
    • EP1467504A1
    • 2004-10-13
    • EP02806081.2
    • 2002-12-26
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD
    • HIRANO, JunARAMAKI, Takashi
    • H04B7/26
    • H04B10/25752H04B10/25753
    • A system to reduce number of APs (base station) and handover number (number of times to switch the APs) and secure a communication feasible area to prevent break of communication between a mobile body side and a ground side is disclosed. In this system, an optical fiber (15) connected to an AP (base station) (11) is branched by optical distribution means (17), and a plurality of tail ends of the optical fiber is' thereby formed. E/O, O/E conversion means (optical signal/electronic signal interconversion means) (19) which convert optical signals and electronic signals and antennas (21) emitting radio waves are respectively provided at the plurality of tail ends of the optical fiber. The respective antennas are arranged along a track (3) on which a mobile body (1) moves. The whole track is covered by a continuous area comprised of communication feasible areas (23) for the respective antennas. Consequently, the communication feasible area on the track of the mobile body by one AP can be wide.
    • 公开了一种减少AP数量(基站)和切换次数(切换AP的次数)并确保通信可行区域以防止移动体侧与接地侧之间的通信中断的系统。 在该系统中,连接到AP(基站)(11)的光纤(15)由光分配装置(17)分支,从而形成光纤的多个尾端。 分别在光纤的多个尾端设置E / O,O / E转换装置(光信号/电子信号互换装置)(19),其转换光信号和电子信号以及发射无线电波的天线(21)。 各个天线沿着移动体(1)移动的轨道(3)布置。 整个轨道由包括用于各个天线的通信可行区域(23)组成的连续区域覆盖。 因此,一个AP在移动体的轨道上的通信可行区域可以是宽的。
    • 53. 发明公开
    • RADIO LAN SYSTEM AND RADIO LAN SYSTEM SIGNAL COLLISION EVADING METHOD
    • KOMMUNIKATIONSSEINRICHTUNG EINES FUNK-LAN-SYSTEMS UND SIGNALKOLLISIONSVERMEIDUNGSVERFAHRENFÜREIN FUNK-LAN-SYSTEM
    • EP1289194A1
    • 2003-03-05
    • EP02703922.1
    • 2002-03-06
    • MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD
    • HIRANO, Jun
    • H04L12/28
    • H04W74/0816H04W40/00H04W74/04H04W74/085H04W84/12
    • The present invention discloses a wireless LAN system and a signal collision avoidance method for the wireless LAN system, which can avoid the collision of signals between a wireless LAN system initiating communication at fixed intervals and a wireless LAN system initiating communication after waiting for the vacancy of a channel. According to the present invention, when it is recognized that there is a no signal section between a downlink phase and an uplink phase upon scheduling of a communication frame, a scheduler part.6 performs scheduling for putting a NAV setup signal, which covers the no signal section, behind the downlink phase in accordance with instructions from a NAV setup signal generating part 8, and transmits the same. It can prevent any station in an IEEE802.11a wireless LAN system from transmitting data in the no signal section, and hence avoid the collision of signals within the period of the uplink phase.
    • 本发明公开了一种用于无线LAN系统的无线LAN系统和信号冲突避免方法,其可以避免在固定间隔发起通信的无线LAN系统和等待空闲后发起通信的无线LAN系统之间的信号冲突 一个频道 根据本发明,当调度通信帧时,当认识到在下行链路相位和上行链路相位之间存在无信号部分时,调度器部分6执行调整以将覆盖no的NAV建立信号 信号部分,根据来自NAV建立信号生成部分8的指令在下行链路相位之后,并且发送它。 可以防止IEEE802.11a无线局域网系统中的任何一台台站在无信号部分发送数据,避免上行链路相位周期内的信号冲突。
    • 58. 发明申请
    • OPTIMIZATION OF HANDOVERS TO UNTRUSTED NON-3GPP NETWORKS
    • 非手机非3GPP网络的优化
    • WO2010034483A1
    • 2010-04-01
    • PCT/EP2009/006882
    • 2009-09-23
    • PANASONIC CORPORATIONBACHMANN, JensVELEV, GenadiIKEDA, ShinkichiHIRANO, Jun
    • BACHMANN, JensVELEV, GenadiIKEDA, ShinkichiHIRANO, Jun
    • H04L29/06H04W36/00
    • H04W12/08H04L63/164H04W36/0011
    • The invention relates to a method for ensuring IP session continuity upon a handover of a mobile node to a non-3GPP network, wherein an ongoing IP session of the mobile node goes via a packet data network gateway. For non-3GPP networks it is necessary to discover a security gateway and to then establish the corresponding tunnels to the ePDG to form the new data path; a security tunnel between the mobile node and the security gateway, and an IP tunnel between the packet data network gateway and the security gateway. In order to prepare the handover to possible non-3GPP accesses, the two tunnels are pre-established, however maintained deactivated until their use is actually needed. Accordingly, when handing over to the non-3GPP network, the IP session may be continued without any significant interruption by activating the already established tunnels.
    • 本发明涉及一种用于在移动节点切换到非3GPP网络时确保IP会话连续性的方法,其中移动节点的正在进行的IP会话经由分组数据网络网关进行。 对于非3GPP网络,有必要发现安全网关,然后建立到ePDG的相应隧道,以形成新的数据路径; 移动节点和安全网关之间的安全隧道,以及分组数据网络网关和安全网关之间的IP隧道。 为了准备到可能的非3GPP接入的切换,两个隧道是预先建立的,然而保持停用,直到实际需要使用它们为止。 因此,当切换到非3GPP网络时,可以通过激活已经建立的隧道来继续IP会话而没有任何明显的中断。