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    • 8. 发明申请
    • METHOD OF TRANSMITTING AND RECEIVING SYSTEM INFORMATION IN THE MOBILE COMMUNICATION SYSTEM
    • 移动通信系统中传输和接收系统信息的方法
    • WO2009082076A8
    • 2010-03-25
    • PCT/KR2008004166
    • 2008-07-16
    • KOREA ELECTRONICS TELECOMMSAMSUNG ELECTRONICS CO LTDJUNG KWANG-RYULPARK AE-SOON
    • JUNG KWANG-RYULPARK AE-SOON
    • H04B7/26
    • H04W48/12H04W68/00
    • A method of transmitting and receiving changed system information between a User Equipment (UE) and an evolved NodeB (eNB) whose Radio Resource Control (RRC) layers are connected is provided. When a UE connected with an eNB is informed that system information is changed and informed of partial system information by the eNB through a previously set Dedicated Control Channel (DCCH), the UE sets a channel of a lower layer, i.e., Physical (PHY)/Media Access Control (MAC)/Radio Link Control (RLC) layer, as a Dynamic Broadcast Control Channel (DBCCH):Downlink-Shared Channel (DL-SCH) to receive changed system information and receives the entire changed system information. Then, the UE sets an L1 parameter and a channel of L1/L2, which is a lower layer, using the received information and continuously performs data communication and a Discontinuous Reception (DRx) operation. Since it is possible to recognize that system information is changed using a DCCH, the methods can reduce delay time resulting from unnecessary channel setting and also power consumed by periodically demodulating a channel.
    • 提供了一种在用户设备(UE)和其无线资源控制(RRC)层所连接的演进型节点B(eNB)之间发送和接收改变的系统信息的方法。 当eNB通过先前设置的专用控制信道(DCCH)通知与eNB连接的UE被更改并通知eNB部分系统信息时,UE设置较低层的信道,即物理(PHY) 作为动态广播控制信道(DBCCH)的媒体接入控制(MAC)/无线链路控制(RLC)层:用于接收改变的系统信息并接收整个改变的系统信息的下行链路共享信道(DL-SCH)。 然后,UE使用接收到的信息设置L1参数和作为较低层的L1 / L2的信道,并且连续执行数据通信和不连续接收(DRx)操作。 由于可以认识到使用DCCH改变系统信息,所以这些方法可以减少由于不必要的信道设置引起的延迟时间,并且还可以减少周期性地解调信道所消耗的功率。
    • 9. 发明申请
    • FRAMEWORK DEVICE OF MOBILE TERMINAL AND METHOD FOR PROVIDING INTEROPERABILITY BETWEEN COMPONENTS
    • 移动终端的框架装置和提供组件之间的互操作性的方法
    • WO2009051340A1
    • 2009-04-23
    • PCT/KR2008004885
    • 2008-08-21
    • KOREA ELECTRONICS TELECOMMSAMSUNG ELECTRONICS CO LTDBAE MYUNG NAMLEE BYUNG BOGPARK AE-SOON
    • BAE MYUNG NAMLEE BYUNG BOGPARK AE-SOON
    • G06F9/06
    • G06F9/5044G06F9/465G06F9/541G06F9/547
    • The present invention relates to a framework device of a mobile terminal and a component interoperability guaranteeing method, and is configured by a hardware component generated by a developer and hardware middleware to be linked by a software (or another hardware) component. Therefore, in the exemplary embodiment of the present invention, hardware dependent parts in the hardware component are provided to the hardware middleware through setting parameters so that the hardware middleware is linked with the corresponding hardware component. The hardware middleware receives a request message according to the general inter- ORB protocol (GIOP) transmission system used for the basic communication system of the framework, parses the request message, and converts and transmits data to the corresponding hardware component. The hardware component (hardware logic) to which the request message is transmitted uses data to perform its unique function, and the result is configured as a response message by the hardware middleware and is then transmitted to the software component.
    • 本发明涉及移动终端的框架设备和组件互操作性保证方法,并且由由开发者生成的硬件组件和由软件(或另一硬件)组件链接的硬件中间件来配置。 因此,在本发明的示例性实施例中,通过设置参数将硬件组件中的硬件相关部件提供给硬件中间件,使得硬件中间件与相应的硬件组件链接。 硬件中间件根据用于框架基本通信系统的通用ORBB协议(GIOP)传输系统接收请求消息,解析请求消息,并将数据转换并发送到相应的硬件组件。 发送请求消息的硬件组件(硬件逻辑)使用数据来执行其唯一功能,并将结果配置为硬件中间件的响应消息,然后发送到软件组件。
    • 10. 发明申请
    • MULTI-MODE COMMUNICATION SYSTEM AND METHOD THEREOF
    • 多模式通信系统及其方法
    • WO2007035051A3
    • 2007-06-21
    • PCT/KR2006003766
    • 2006-09-22
    • KOREA ELECTRONICS TELECOMMJUNG KWANG-RYULKWON HYE-YEONPARK AE-SOON
    • JUNG KWANG-RYULKWON HYE-YEONPARK AE-SOON
    • H04L12/24H04L29/08H04W52/02H04W68/12H04W88/06
    • H04W68/12H04W52/0216H04W88/06Y02D70/00Y02D70/142Y02D70/144
    • The present invention relates to a multi-mode communication system and a method thereof. The multi-mode communication system uses a first mode among a plurality communication modes for accessing a first mobility control entity (MCE) (310) among a plurality of MCEs (310, 320, 330), and communicates data with the first MCE (310). The multi-mode communication system receives a paging request that has been transmitted from a multi- mode control entity (MMCE) (400) for accessing a second MCE (320) from the first MCE (310) and analyzes the paging request, and puts the first mode into a sleep mode and a second mode for accessing the second MCE (320) into an awake mode based on the analysis. Subsequently, multi-mode UE accesses the second MCE (320) by using the second mode in the awake mode. According to the present invention, an MMCE(400) for multi-mode control is provided to integrate and manage an idle state for each access mode of multi-mode user equipment, thereby minimizing power consumption due to access of the multi-mode UE to a radio access system In addition, a change of the access of the multi-mode UE to the radio access system due to a paging request can be efficiently performed.
    • 多模式通信系统及其方法技术领域本发明涉及一种多模式通信系统及其方法。 多模式通信系统使用多个通信模式中的第一模式来访问多个MCE(310,320,330)中的第一移动性控制实体(MCE)(310),并且与第一MCE(310)通信数据 )。 多模式通信系统接收从多模式控制实体(MMCE)(400)发送的寻呼请求,用于从第一MCE(310)接入第二MCE(320)并分析寻呼请求,并将 所述第一模式进入休眠模式,以及用于基于所述分析将所述第二MCE(320)访问为唤醒模式的第二模式。 随后,多模式UE通过在唤醒模式中使用第二模式来访问第二MCE(320)。 根据本发明,提供了一种用于多模式控制的MMCE(400),用于对多模式用户设备的每个接入模式进行空闲状态的整合和管理,从而将由多模UE接入的功耗降到最低 无线电接入系统另外,可以有效地执行由于寻呼请求而导致的多模式UE对无线电接入系统的接入的改变。