CELL DEPLOYMENT METHOD AND DEVICE FOR REPLACING PCELLS
    41.
    发明申请
    CELL DEPLOYMENT METHOD AND DEVICE FOR REPLACING PCELLS 审中-公开
    细胞部署方法和替代PC细胞的装置

    公开(公告)号:US20130165124A1

    公开(公告)日:2013-06-27

    申请号:US13638433

    申请日:2011-08-11

    申请人: Jing Liang Haitao Li

    发明人: Jing Liang Haitao Li

    IPC分类号: H04W36/08

    摘要: A cell deployment method and device for replacing PCells, used for enabling PCell replacement in a carrier aggregation system. Said method comprises: a User Equipment (UE) obtains PCell and SCell deployment information via a PCell replacement command; UE obtains target PCell and target SCell deployment information by combining the obtained PCell and SCell deployment information with saved original PCell and SCell deployment information, and hands over from the original PCell and original SCell to the target PCell and target SCell. A device used to carry out the method is also disclosed.

    摘要翻译: 用于替代PCell的小区部署方法和设备,用于在载波聚合系统中实现PCell替换。 所述方法包括:用户设备(UE)通过PCell替换命令获取PCell和SCell部署信息; UE通过将获得的PCell和SCell部署信息与保存的原始PCell和SCell部署信息相结合,获得目标PCell和目标SCell部署信息,并从原始PCell和原始SCell转移到目标PCell和目标SCell。 还公开了用于执行该方法的装置。

    MEASUREMENT CONFIGURATION METHOD OF MULTI-CARRIER SYSTEM AND EQUIPMENT THEREOF
    42.
    发明申请
    MEASUREMENT CONFIGURATION METHOD OF MULTI-CARRIER SYSTEM AND EQUIPMENT THEREOF 有权
    多载波系统的测量配置方法及其设备

    公开(公告)号:US20130100841A1

    公开(公告)日:2013-04-25

    申请号:US13695430

    申请日:2011-04-18

    申请人: Jing Liang Haitao Li

    发明人: Jing Liang Haitao Li

    IPC分类号: H04W36/30

    摘要: The present invention discloses Measurement configuration method of multi-carrier system and equipment thereof, and the method comprises the following steps: the terminal determines whether the frequency of target PCC exists in the measurement configuration after inter-frequency handover or inter-frequency RRC connection re-establishment is completed successfully, exchanges relevant measurement configuration of source PCC with that of target PCC when that of target PCC exists in the determined measurement configuration; and, deletes or reserves relevant measurement configuration of SCC, or exchanges relevant measurement configuration of source SCC with that of target SCC. The present invention solves the problem of measurement exchange and configuration of terminal under CA working condition when RRC connection re-establishment and handover of inter-frequency are completed successfully, saves air interface signaling and reduces the realization complexity.

    摘要翻译: 本发明公开了多载波系统及其设备的测量配置方法,该方法包括以下步骤:终端确定频间切换或频间间无线资源控制连接后的测量配置中是否存在目标PCC的频率 建立成功,在目标PCC存在于确定的测量配置中时,将源PCC与目标PCC的相关测量配置进行交换; 删除或保留SCC的相关测量配置,或者将源SCC的相关测量配置与目标SCC的相关测量配置进行交换。 本发明解决了当无线资源控制连接重建和跨频交换成功完成后,CA工作状态下终端的测量交换和配置问题,节省了空中接口信令,降低了实现的复杂度。

    SECONDARY CREDENTIALS FOR BATCH SYSTEM
    44.
    发明申请
    SECONDARY CREDENTIALS FOR BATCH SYSTEM 审中-公开
    批量系统的二级证书

    公开(公告)号:US20120072972A1

    公开(公告)日:2012-03-22

    申请号:US12885622

    申请日:2010-09-20

    IPC分类号: H04L9/32

    摘要: A batch job system may create a second set of credentials for a user and associate the second set of credentials with the user in an authentication server. The second set of credentials may allow computers running the batch jobs to have user-level authentication for execution and reporting of results. The second set of credentials may be a single sign on type of credential, and may consist of a virtual smartcard that each worker computer may use for authentication. In some embodiments, authentication requests may be routed to a virtual or physical Hardware Security Module.

    摘要翻译: 批处理作业系统可以为用户创建第二组凭证,并将第二组凭证与认证服务器中的用户相关联。 第二组凭据可能允许运行批处理作业的计算机具有用于执行和报告结果的用户级身份验证。 第二组凭证可以是凭证类型的单一符号,并且可以由每个工作计算机可用于验证的虚拟智能卡组成。 在一些实施例中,认证请求可以被路由到虚拟或物理硬件安全模块。

    Method for Detecting Symbol Timing of Multi-Antenna Radio Communication System
    47.
    发明申请
    Method for Detecting Symbol Timing of Multi-Antenna Radio Communication System 审中-公开
    多天线无线电通信系统符号定时检测方法

    公开(公告)号:US20070291632A1

    公开(公告)日:2007-12-20

    申请号:US11575831

    申请日:2005-09-22

    申请人: Haitao Li Jifeng Li

    发明人: Haitao Li Jifeng Li

    IPC分类号: H04J11/00 H04B7/005

    摘要: There is provided a method for detecting a symbol timing of a multi-antenna radio communication system. The method can significantly reduce a calculation amount in a space division multiplex OFDM system as compared to the conventional method, can detect an accurate symbol timing, and can easily be realized. In this method, at the symbol timing stage, a transmission side transmits a timing training sequence only from the first antenna. A reception side has a symbol timing divided into a rough timing stage and an accurate timing stage. In the rough timing stage, a phase correlation value between the reception signal of each antenna and its delay is calculated. The correlation value outputs of the respective antenna terminals are combined to decide the rough timing window. In the accurate timing stage, a convolution calculation is performed by using a real part of the reception symbol and a symbol of a real part of the training sequence. The convolution outputs of the respective antenna terminals are combined to obtain a plurality of output peak values. Within the rough timing window, the last convolution peak value is searched, thereby realizing the highly accurate timing of the symbol.

    摘要翻译: 提供了一种用于检测多天线无线电通信系统的符号定时的方法。 与常规方法相比,该方法可以显着减少空分复用OFDM系统中的计算量,可以检测准确的符号定时,并且可以容易地实现。 在该方法中,在符号定时阶段,发送侧仅从第一天线发送定时训练序列。 接收侧具有划分为粗略定时级和准确定时级的符号定时。 在粗略定时阶段,计算每个天线的接收信号与其延迟之间的相位相关值。 各个天线端子的相关值输出被组合以决定粗略的定时窗口。 在准确的定时阶段,通过使用接收符号的实部和训练序列的实部的符号来进行卷积计算。 各天线端子的卷积输出被组合以获得多个输出峰值。 在粗略定时窗口内,搜索最后一个卷积峰值,从而实现高精度的符号定时。

    Method and Apparatus for Manufacturing a Silica Gel Glove

    公开(公告)号:US20180146725A1

    公开(公告)日:2018-05-31

    申请号:US15619596

    申请日:2017-06-12

    摘要: The method comprises of placing the palm side of a glove mold facing up, and raising the fingers portion of glove mold up, in such a way that the glove mold is tilting up at 15°-45° in relative to horizontal position. The first pouring process is carried out by pouring silica gel liquid on the fingers portion of glove mold. Then adjust the glove mold to horizontal position, and rotate the glove mold by using its length as axis. Continue pouring silica gel liquid on the glove mold surface to carry out second pouring process. Let the silica gel liquid to be coated on the whole glove mold surface forming a semi-finished glove. Upon completion, let the glove mold to go through a dripping procedure for dripping treatment. After the dripping treatment, carry out vulcanization and cooling to obtain the corresponding silica gel glove.