METHOD FOR IMPLEMENTING IP MULTIMEDIA SUBSYSTEM REGISTRATION
    1.
    发明申请
    METHOD FOR IMPLEMENTING IP MULTIMEDIA SUBSYSTEM REGISTRATION 有权
    实施IP多媒体子系统注册的方法

    公开(公告)号:US20080039081A1

    公开(公告)日:2008-02-14

    申请号:US11857146

    申请日:2007-09-18

    Applicant: Chunyan MA Bin YU

    Inventor: Chunyan MA Bin YU

    Abstract: A method for implementing an IP Multimedia Subsystem (IMS) registration, includes: a Home Subscriber Server (HSS) recording a current registration state of a User Equipment (UE) in response to receiving a Multimedia Authentication Request (MAR) initiated by a Service Call Session Control Function (S-CSCF) selected for the UE when a first Register request is sent by the UE; in response to receiving a second Register request initiated by an Interrogating Call Session Control Function (I-CSCF), the HSS sends the S-CSCF Name to the I-CSCF when the current registration state of the UE is an assigned S-CSCF state. By the scheme, a same S-CSCF is ensured to be used in the two User Authentication Request/User Authentication Answer (UAR/UAA) procedures of the initial IMS registration procedure, and the initial IMS registration of the UE is implemented successfully.

    Abstract translation: 一种用于实现IP多媒体子系统(IMS)注册的方法,包括:响应于接收到由服务呼叫发起的多媒体认证请求(MAR)来记录用户设备(UE)的当前注册状态的归属订户服务器(HSS) 当UE发送第一个Register请求时为UE选择的会话控制功能(S-CSCF); 响应于接收到由询问呼叫会话控制功能(I-CSCF)发起的第二寄存器请求,当UE的当前注册状态是分配的S-CSCF状态时,HSS向I-CSCF发送S-CSCF名称 。 通过该方案,确保在初始IMS注册过程的两个用户认证请求/用户认证应答(UAR / UAA)过程中使用相同的S-CSCF,并且成功实现了UE的初始IMS注册。

    DOUBLE AND TRIPLE GATE MOSFET DEVICES AND METHODS FOR MAKING SAME
    2.
    发明申请
    DOUBLE AND TRIPLE GATE MOSFET DEVICES AND METHODS FOR MAKING SAME 有权
    双和三极门MOSFET器件及其制造方法

    公开(公告)号:US20120252193A1

    公开(公告)日:2012-10-04

    申请号:US13523603

    申请日:2012-06-14

    CPC classification number: H01L29/785 H01L29/42384 H01L29/66795 H01L29/66818

    Abstract: A double gate metal-oxide semiconductor field-effect transistor (MOSFET) includes a fin, a first gate and a second gate. The first gate is formed on top of the fin. The second gate surrounds the fin and the first gate. In another implementation, a triple gate MOSFET includes a fin, a first gate, a second gate, and a third gate. The first gate is formed on top of the fin. The second gate is formed adjacent the fin. The third gate is formed adjacent the fin and opposite the second gate.

    Abstract translation: 双栅极金属氧化物半导体场效应晶体管(MOSFET)包括鳍状物,第一栅极和第二栅极。 第一个门形成在鳍的顶部。 第二个门围绕翅片和第一个门。 在另一实施方案中,三栅极MOSFET包括鳍片,第一栅极,第二栅极和第三栅极。 第一个门形成在鳍的顶部。 第二个门形成在翅片附近。 第三栅极形成在翅片附近并与第二栅极相对。

    DATA TRANSMISSION METHOD, BASE STATION, AND TERMINAL
    3.
    发明申请
    DATA TRANSMISSION METHOD, BASE STATION, AND TERMINAL 有权
    数据传输方法,基站和终端

    公开(公告)号:US20150289292A1

    公开(公告)日:2015-10-08

    申请号:US14679465

    申请日:2015-04-06

    Applicant: Pengfei SUN Bin YU

    Inventor: Pengfei SUN Bin YU

    Abstract: A data transmission method is provided. The method includes obtaining configuration information, wherein the configuration information indicates transmission resources of a random access preamble and payload data corresponding to the random access preamble, transmitting the random access preamble and the payload data at the transmission resources, modulating the payload data using a modulation scheme supporting asynchronous transmission, and receiving feedback information, wherein the feedback information comprises an indication which indicates whether the payload data is successfully received. Various examples of the present disclosure also describe a method for receiving data with space multiplexing which is applied to a base station side, and further describe a terminal and a base station. Employing the examples of the present disclosure, transmission efficiency of long duty cycle and sporadic small data packets of a large number of devices in the Internet of Things in future communication systems can be improved.

    Abstract translation: 提供了一种数据传输方法。 该方法包括获取配置信息,其中配置信息指示随机接入前同步码的发送资源和对应于随机接入前导码的有效载荷数据,在传输资源处发送随机接入前同步码和有效载荷数据,使用调制 支持异步传输的方案和接收反馈信息,其中反馈信息包括指示有效载荷数据是否被成功接收的指示。 本公开的各种示例还描述了一种应用于基站侧的用于接收具有空间复用的数据的方法,并且进一步描述了终端和基站。 采用本公开的实例,可以改进物联网中大量设备的长占空比的传输效率和散列的小数据分组。

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