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    • 111. 发明公开
    • 이동단말기의 프레임워크 장치 및 컴포넌트의 상호 운용성보장 방법
    • 移动的框架装置和提供组件之间的互操作性的方法
    • KR1020090039069A
    • 2009-04-22
    • KR1020070104481
    • 2007-10-17
    • 한국전자통신연구원삼성전자주식회사
    • 배명남이병복박애순
    • G06F9/06H04B1/40
    • G06F9/5044G06F9/465G06F9/541G06F9/547
    • A framework apparatus of a mobile terminal and a method for providing interoperability between components are provided to realize a hardware dependent part of a hardware component by a hardware middleware, thereby securing interoperability between a hardware component and a software component without respect to a location of a component. Hardware middleware comprises the following units. A message interpreting unit(221) judges a request message. A logic selector(223) identifies a hardware component according to the object identifier included in the request message. The logic selector produces an operation identifier. The first application signal determines the first hardware logic by integrating the operation identifier with the object identifier. A data converter(224) extracts a parameter necessary for performing the first hardware logic. The parameter is converted into the first data and transmitted to the first hardware logic.
    • 提供了移动终端的框架装置和用于提供组件之间的互操作性的方法,以通过硬件中间件实现硬件组件的硬件相关部分,从而确保硬件组件与软件组件之间的互操作性,而不必依赖于 零件。 硬件中间件包括以下单元。 消息解释单元(221)判断请求消息。 逻辑选择器(223)根据包含在请求消息中的对象标识符来识别硬件组件。 逻辑选择器产生操作标识符。 第一应用信号通过将操作标识符与对象标识符集成来确定第一硬件逻辑。 数据转换器(224)提取执行第一硬件逻辑所需的参数。 将参数转换为第一个数据并发送到第一个硬件逻辑。
    • 113. 发明授权
    • 이동통신단말기의 MBMS 베어러 제어 방법
    • 在移动中控制多媒体广播和组播服务承载的方法
    • KR100839599B1
    • 2008-06-19
    • KR1020060125160
    • 2006-12-08
    • 한국전자통신연구원
    • 신재욱정광렬천경열박애순
    • H04B7/26
    • H04W52/0254H04W4/06H04W76/10Y02D70/00
    • 1. 청구범위에 기재된 발명이 속한 기술분야
      본 발명은 이동통신단말기의 MBMS 베어러 제어 방법에 관한 것임.
      2. 발명이 해결하려고 하는 기술적 과제
      본 발명은 이동통신단말기에서 MBMS 서비스를 수행함에 있어서 MBMS 서비스를 수신하기 위한 MBMS 베어러를 제어하기 위한, 이동통신단말기의 MBMS 베어러 제어 방법을 제공하는데 그 목적이 있음.
      3. 발명의 해결방법의 요지
      본 발명은 SM(Session Management)과 RRC(Radio Resource Control)와 RABM(Radio Access Bearer Management)을 포함하는 이동통신단말기의 MBMS 베어러 제어 방법에 있어서, 상기 RRC가 외부로부터 MBMS 서비스 세션 시작을 통보받으면, 상기 RRC에 의해 MBMS 서비스를 위한 MBMS 베어러를 설정하는 제1 단계; 상기 MBMS 베어러가 설정되면, 상기 RRC가 상기 RABM으로 MBMS 서비스 세션 시작을 통보하는 제2 단계; 및 상기 RABM이 세션 비활성화 상태에서 세션 활성화 상태로 천이하면, 외부로부터 MBMS 서비스 데이터가 상기 설정된 MBMS 베어러를 통해 전달되는 제3 단계를 포함함.
      4. 발명의 중요한 용도
      본 발명은 이동통신단말기의 MBMS 베어러 제어 등에 이용됨.
      MBMS, 무선 액세스 베어러 관리(RABM), 무선 자원 제어(RRC), 세션 관리(SM), 활성화, 비활성화
    • 提供了一种用于控制移动终端的MBMS承载的方法。 该方法包括以下步骤:当RRC从外部通知MBMS服务会话开始时,在RRC处建立用于MBMS服务的MBMS承载; 在RRC处建立MBMS承载时通知RABM MBMS业务会话开始; 并且如果RABM将会话无效状态转换到会话活动状态,则通过建立的MBMS承载从外部接收MBMS服务数据。
    • 114. 发明公开
    • 고속의 대량 데이터를 수신하기 위한 데이터 수신 모듈의처리 방법
    • 用于高速接收数据接收数据的数据接收模块的方法
    • KR1020080050888A
    • 2008-06-10
    • KR1020060121759
    • 2006-12-04
    • 한국전자통신연구원
    • 이병복배명남박애순
    • G06F9/38G06F9/06
    • A processing method of a data receipt module for receiving massive data at a high speed is provided to guarantee transmission rate of high speed data by receiving massive data at a high speed on the basis of a multi-thread or a multi-task technique. A processing method of a data receipt module comprises the following several steps. A main thread of the data receipt module in a terminal defines signal numbers as many as the number of data receipt processing threads to be generated(301). The main thread performs setup and masking for the defined signal not to lose the signal which the main thread itself receives at the first time(302). The main thread generates message receipt module threads as many as necessary(303). The main thread generates a thread load balancing table record for each message receipt module thread and stores the generated thread load balancing table record at a local database and a container data structure(304,305). Then, the main thread waits in order to receive a control data record signal, recorded at a DPRAM(Dual Ported Random Access Memory), from the second intermediate board(306). The main thread searches for a record whose load count is the smallest from the thread load balancing information table according to the received control data record signal, sends a wakeup signal to a corresponding data receipt thread, increases a load count, and updates a record(307).
    • 提供了一种用于高速接收海量数据的数据接收模块的处理方法,以通过基于多线程或多任务技术高速接收海量数据来保证高速数据的传输速率。 数据接收模块的处理方法包括以下几个步骤。 终端中的数据接收模块的主线程定义与要生成的数据接收处理线程的数量一样多的信号号(301)。 主线程对所定义的信号执行设置和屏蔽,不会丢失主线程本身在第一次接收到的信号(302)。 主线程根据需要生成消息收据模块线程(303)。 主线程为每个消息接收模块线程生成线程负载平衡表记录,并将生成的线程负载平衡表记录存储在本地数据库和容器数据结构(304,305)。 然后,主线程等待从第二中间板(306)接收记录在DPRAM(双通道随机存取存储器)中的控制数据记录信号。 主线程根据接收到的控制数据记录信号,从线程负载平衡信息表中搜索负载数最小的记录,向对应的数据接收线程发送唤醒信号,增加负载计数,更新记录( 307)。
    • 115. 发明公开
    • 다중 모드 단말의 시스템간 핸드오버 방법
    • 多模终端切换方法
    • KR1020080050301A
    • 2008-06-05
    • KR1020070102544
    • 2007-10-11
    • 한국전자통신연구원삼성전자주식회사
    • 정광렬박애순
    • H04B7/26H04B7/24H04L12/28
    • H04W36/0055H04W36/14H04W36/24
    • An inter-system handover method of a multi-mode terminal is provided to perform handover between systems by adding the least procedure by using a radio access protocol having the existing wide area coverage as it is. A handover request message is received from a terminal(100). A handover preparation request message including a network address of the terminal is transmitted to the second wireless access system based on the handover request message. A handover preparation complete message including multicast group information generated by the second wireless access system based on the network address of the terminal is received. The terminal is instructed to perform handover based on the received handover preparation complete message.
    • 提供了一种多模式终端的系统间切换方法,通过使用具有现有广域覆盖的无线电接入协议来添加最小过程来执行系统之间的切换。 从终端(100)接收切换请求消息。 基于切换请求消息,向第二无线接入系统发送包括终端的网络地址的切换准备请求消息。 接收包括基于终端的网络地址的由第二无线接入系统生成的组播组信息的切换准备完成消息。 指示终端根据接收到的切换准备完成消息进行切换。
    • 116. 发明公开
    • 통신 소프트웨어 구조에서의 도메인 프로파일 파싱 장치 및그 방법
    • 在软件通信架构中分配域配置文件的装置和方法
    • KR1020080043517A
    • 2008-05-19
    • KR1020060112168
    • 2006-11-14
    • 한국전자통신연구원
    • 배명남이병복박애순
    • G06F9/06G06F9/44G06F9/54
    • H04L67/02
    • A device and a method for parsing a domain profile in a communication software architecture are provided to improve efficiency of a parsing time without frequent duplicated parsing, a hard coding process, and an additional storage structure by providing a high level XML(eXtensible Markup Language) parsing interface and a DOM(Document Object Model) tree management function when a system domain profile is parsed in a mobile terminal. An open profile interface processor(32) transfers a domain profile name, which is received from a framework(15) simultaneously with a DOM tree generation request, to XML parsers(31,34), generates a query corresponding to information in a DOM tree(35) of a domain profile(14), extracts corresponding information from the DOM tree by using the query, and transfers the extracted information to the framework. The XML parser generates the DOM tree of the domain profile by receiving the domain profile name from the open profile interface processor. The open profile interface processor includes a parser interface processor(322), a DOM interface processor(323) and a scraping interface processor(321).
    • 提供了用于解析通信软件体系结构中的域简档的设备和方法,以通过提供高级XML(可扩展标记语言)来提高解析时间的效率,而无需频繁的重复解析,硬编码过程和附加存储结构, 解析界面和DOM(文档对象模型)树管理功能,当在移动终端中解析系统域配置文件时。 打开配置文件接口处理器(32)将与DOM树生成请求同时从框架(15)接收到的域简档名称传送到XML解析器(31,34),生成与DOM树中的信息相对应的查询 (14)的(35),通过使用查询从DOM树提取相应的信息,并将提取的信息传送到框架。 XML解析器通过从打开的配置文件界面处理器接收域配置文件名称来生成域配置文件的DOM树。 打开配置文件接口处理器包括解析器接口处理器(322),DOM接口处理器(323)和刮擦接口处理器(321)。
    • 117. 发明授权
    • IP 이동성 지원을 위한 이동 단말의 터널링 방법
    • 移动终端用于支持IP移动性的方法
    • KR100826670B1
    • 2008-05-02
    • KR1020060113130
    • 2006-11-16
    • 한국전자통신연구원
    • 천경열권혜연박애순
    • H04L12/56H04L12/28H04L29/02
    • H04L12/4633
    • A tunneling method of a mobile terminal for supporting IP(Internet Protocol) mobility is provided to implement tunneling of the terminal by conducting a packet processing function on a device driver end(network driver end) when a mobile IP is used to support the IP mobility of the terminal mounted with a closed-source OS(Operating System) of an IP end. In case of movement detection(401), a mobile terminal decides whether a network where the mobile terminal is currently located is a home network or a visiting network(402). In case of the home network, the mobile terminal confirms whether an IP layer of a device currently connected to the home network is activated(403). If so, the mobile terminal transmits/receives packets by operating without an additional operation. In case of the visiting network, the mobile terminal inactivates an IP of a home device(406), and transmits/receives the packets(404).
    • 提供用于支持IP(因特网协议)移动性的移动终端的隧道方法以通过在移动IP用于支持IP移动性的设备驱动器端(网络驱动器端)上执行分组处理功能来实现终端的隧道 的终端安装有IP端的封闭源OS(操作系统)。 在移动检测(401)的情况下,移动终端判定移动终端当前所在的网络是家庭网络还是访问网络(402)。 在家庭网络的情况下,移动终端确认当前连接到家庭网络的设备的IP层是否被激活(403)。 如果是这样,移动终端通过操作而不附加操作来发送/接收分组。 在访问网络的情况下,移动终端停用家庭设备的IP(406),并发送/接收分组(404)。
    • 120. 发明公开
    • 범용 이동 통신시스템망과 무선 근거리 통신망과의 서비스연속성을 위한 장치 및 방법
    • UMTS网络和WLAN之间的服务连续性的装置和方法
    • KR1020070024388A
    • 2007-03-02
    • KR1020060080076
    • 2006-08-23
    • 한국전자통신연구원주식회사 케이티에스케이텔레콤 주식회사
    • 천경열노광현신재욱권혜연신형철정광렬황유선박애순
    • H04L12/46H04L12/66H04B7/26H04L12/28
    • H04W36/0033H04W8/26H04W76/22H04W92/02H04L12/66
    • An apparatus and a method for service continuity between a UMTS(Universal Mobile Telecommunication System) network and a WLAN(Wireless LAN) are provided to enable an IWG(InterWorking Gateway), interworking with the SGSN(Serving GPRS Support Node) or GGSN(Gateway GPRS Support Node) of a 3GPP(Third Generation Partnership Project) network, to seamlessly provide a service to a mobile station in case the mobile station moves from the 3GPP network to a non-3GPP network or returns to the 3GPP network from the non-3GPP network. An apparatus for service continuity between a UMTS network and a WLAN comprises the first node, the second node, and an IWG(250). The first node, or an SGSN(220), executes packet data transfer with a mobile station(100) within service area of the UMTS network. The second node, or a GGSN(230), serves as a wireless gateway between the SGSN(220) and a packet data network(400), and allocates the first address to the mobile station(100) through the SGSN(220) for data communication with the packet data network(400). The IWG (250), when the mobile station(100) moves from the UMTS network to the WLAN, receives the first address, allocated to the mobile station(100), through the first interface from the GGSN (230) and provides a seamless service to the mobile station(100) by using the first address. Also the IWG(250) forms a tunnel with the mobile station(100) by using the first address.
    • 提供UMTS(通用移动电信系统)网络和WLAN(无线LAN)之间的服务连续性的装置和方法,以使IWG(InterWorking Gateway)能够与SGSN(服务GPRS支持节点)或GGSN(网关 GPRS支持节点),在移动台从3GPP网络移动到非3GPP网络或从非3GPP网络返回到3GPP网络的情况下,无缝地向移动台提供服务, 3GPP网络。 UMTS网络和WLAN之间的服务连续性的装置包括第一节点,第二节点和IWG(250)。 第一节点或SGSN(220)执行与UMTS网络的服务区域内的移动台(100)的分组数据传输。 第二节点或GGSN(230)用作SGSN(220)和分组数据网络(400)之间的无线网关,并且通过SGSN(220)向移动台(100)分配第一地址,用于 与分组数据网络(400)的数据通信。 当移动站(100)从UMTS网络移动到WLAN时,IWG(250)通过第一接口从GGSN(230)接收分配给移动站(100)的第一地址,并提供无缝 通过使用第一地址向移动台(100)提供服务。 此外,IWG(250)通过使用第一地址与移动台(100)形成隧道。