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    • 92. 发明授权
    • Method and apparatus for generating pre-coding matrix codebook
    • 用于生成预编码矩阵码本的方法和装置
    • US08553798B2
    • 2013-10-08
    • US13411160
    • 2012-03-02
    • Jian WangJianming WuYi WangHua ZhouJun Tian
    • Jian WangJianming WuYi WangHua ZhouJun Tian
    • H04B7/02H04L1/02
    • H04B7/0426H04L25/03898
    • This disclosure relates a method and apparatus for generating pre-coding matrix codebook. The method for generating pre-coding matrix codebook, comprising: acquiring a universal set of pre-coding matrixes in a first format; acquiring a universal set of pre-coding matrixes in a second format; selecting a first predetermined number of pre-coding matrixes in the first format from the universal set of pre-coding matrixes in the first format; and selecting a second predetermined number of pre-coding matrixes in the second format from the universal set of pre-coding matrixes in the second format, according to the selected first predetermined number of pre-coding matrixes in the first format.
    • 本公开涉及一种用于生成预编码矩阵码本的方法和装置。 一种用于产生预编码矩阵码本的方法,包括:以第一格式获取通用的预编码矩阵集合; 以第二格式获取通用的预编码矩阵集合; 从第一格式的预编码矩阵的通用集合中选择第一格式的第一预定数量的预编码矩阵; 以及根据所选择的第一格式的第一预定数量的预编码矩阵,从第二格式的通用预编码矩阵集中选择第二格式的第二预定数量的预编码矩阵。
    • 93. 发明授权
    • Base station, multi-antenna communication system and communication method thereof
    • 基站,多天线通信系统及其通信方法
    • US08472549B2
    • 2013-06-25
    • US13438480
    • 2012-04-03
    • Yuantao ZhangJianming WuJun TianHua Zhou
    • Yuantao ZhangJianming WuJun TianHua Zhou
    • H04B7/02
    • H04L27/3488H04B7/0452H04L1/0003H04L1/0026H04L1/0031H04L1/0656
    • A User equipment selecting first user equipment in a mode of precoding transmission and second user equipment in a mode of diversity transmission; a parameter determining a modulation mode, the number of transmission layers and a precoding matrix according to channel quality information, precoding matrix information and number of transmission layers sent from the first user equipment and channel quality information and number of transmission layers sent from the second user equipment; according to the modulation mode and the number of transmission layers, generating first and second symbol sequence from first and second source data; hierarchically modulating the first and the second symbol sequence to generate a mixed symbol sequence; layer mapping and precoding for the mixed symbol sequence to generate transmission signals; and transmitting the precoding matrix and the number of transmission layers to the second user equipment; sending the transmission signals to the first and second user equipments.
    • A用户设备以分集传输模式以预编码传输和第二用户设备的模式选择第一用户设备; 根据信道质量信息确定调制模式,传输层数和预编码矩阵的参数,从第一用户设备发送的预编码矩阵信息和传输层数,以及从第二用户发送的信道质量信息和传输层数 设备; 根据调制方式和发送层数,从第一和第二源数据生成第一和第二符号序列; 分级调制第一和第二符号序列以产生混合符号序列; 用于混合符号序列的层映射和预编码以产生传输信号; 以及将所述预编码矩阵和所述传输层的数量发送到所述第二用户设备; 将发送信号发送到第一和第二用户设备。
    • 94. 发明授权
    • Uniform turnover mechanism and method for controlling the same
    • 统一的周转机制及其控制方法
    • US08306653B2
    • 2012-11-06
    • US12488374
    • 2009-06-19
    • Xiaohong ChenShanzhi HuangHua Zhou
    • Xiaohong ChenShanzhi HuangHua Zhou
    • G06F7/00
    • F16M13/02A61B6/4233F16M11/10F16M11/18
    • A uniform turnover apparatus comprises a turnover body, a linear advance device, and a fixed base. The linear advance device has a fixed end and a movable end. The fixed end is turnably provided on the fixed base by a first fulcrum. The turnover body is movably connected with the movable end of the linear advance device by a second fulcrum. The turnover body is turnably provided on the fixed base by a third fulcrum. The first, the second, and the third fulcra form a triangle. The uniform turnover apparatus comprises a control device connected with the linear advance device. The control device acquires an actual angular velocity at which the turnover body is turned, and compares the actual angular velocity with a set angular velocity, and according to the comparison, adjusts the linear velocity of the linear advance device in real time, so that the actual angular velocity of the turnover body approximates or equals to the set angular velocity. The apparatus can make the turnover body turn placidly and effectively reduce the impact force during turning over.
    • 均匀的翻转装置包括翻转体,线性前进装置和固定基座。 线性前进装置具有固定端和可动端。 固定端部通过第一支点可转动地设置在固定基座上。 翻转体通过第二支点与线性前进装置的可动端可移动地连接。 翻转体通过第三支点可转动地设置在固定基座上。 第一,第二和第三个支点形成一个三角形。 均匀翻转装置包括与线性前进装置连接的控制装置。 控制装置获取翻转体转动的实际角速度,并将实际角速度与设定的角速度进行比较,并且根据比较,实时调整线性前进装置的线速度,使得 周转体的实际角速度近似于或等于设定的角速度。 该装置可以使翻转体平稳地转动,有效地减少翻转时的冲击力。
    • 95. 发明授权
    • Transmission resource assigning method, feedback method and processing method for response signals
    • 传输资源分配方法,反馈信号的反馈方法和处理方法
    • US08265008B2
    • 2012-09-11
    • US12537903
    • 2009-08-07
    • Yuantao ZhangHua ZhouJun Tian
    • Yuantao ZhangHua ZhouJun Tian
    • H04K1/10
    • H04L1/1692H04J13/0048H04J13/0059H04L1/1671H04L1/1861H04L5/0007H04L5/0048H04L5/0053
    • The present invention discloses a transmission resource assignment method for response signals, a feedback method of response signals and a processing method of response signals. The transmission resource assignment method for response signals according to the present invention includes the steps of: determining a list of mobile stations required to transmit response signals currently; determining the number of the response signals required to be transmitted by each mobile station; and assigning a frequency-domain sequence and a time-domain sequence for each mobile station to transmit the response signals; wherein for multiple mobile stations assigned with the same frequency-domain sequence, the time-domain sequence assigned to the mobile station required to transmit multiple response signal groups is divided into multiple subsequences to be used to transmit the multiple response signal groups of the mobile station respectively; and parts of the time-domain sequences of different mobile stations corresponding to the multiple subsequences are orthogonal to each other respectively.
    • 本发明公开了一种用于响应信号的传输资源分配方法,响应信号的反馈方法和响应信号的处理方法。 根据本发明的用于响应信号的传输资源分配方法包括以下步骤:确定当前发送响应信号所需的移动站列表; 确定每个移动台需要发送的响应信号的数量; 以及为每个移动站分配频域序列和时域序列以发送响应信号; 其中对于分配了相同频域序列的多个移动站,分配给发送多个响应信号组所需的移动站的时域序列被划分为多个子序列,用于发送移动站的多个响应信号组 分别; 并且与多个子序列相对应的不同移动站的时域序列的部分分别彼此正交。
    • 97. 发明申请
    • METHOD FOR NETWORK INTERFACE SHARING AMONG MULTIPLE VIRTUAL MACHINES
    • 多种虚拟机网络接口共享方法
    • US20110314469A1
    • 2011-12-22
    • US12819948
    • 2010-06-21
    • Yi QianHua ZhouFujin HuangMichael A. RothmanVincent J. Zimmer
    • Yi QianHua ZhouFujin HuangMichael A. RothmanVincent J. Zimmer
    • G06F9/455G06F12/02
    • H04L49/9057
    • In a computing system, sharing a physical NIC device among multiple virtual machines may be implemented by a customer virtual machine by receiving, by a virtual network interface card (NIC) driver of a customer operating system (OS) running in the customer virtual machine on a computing system, a customer OS request packet for transmission by a physical NIC driver over a network coupled to the computing system, and copying at least a portion of the customer OS request packet into a free block of shared memory of the computing system and appending the block to a transmission queue in the shared memory. Next, a service virtual machine may support the implementation by fetching the block from the transmission queue by a virtual NIC driver of a service OS running in a service virtual machine and packaging the portion into a service OS request packet, passing the service OS request packet to a service OS network stack component of the service OS, routing the service OS request packet, by a bridge driver of the service OS network stack component, to the physical NIC driver, and sending the service OS request packet over the network by the physical NIC driver.
    • 在计算系统中,可以由客户虚拟机通过由在客户虚拟机中运行的客户操作系统(OS)的虚拟网络接口卡(NIC)驱动器接收来在多个虚拟机之间共享物理NIC设备, 计算系统,用于由物理NIC驱动器通过耦合到计算系统的网络传输的客户OS请求分组,以及将至少一部分客户OS请求分组复制到计算系统的共享存储器的空闲块中并附加 该块到共享存储器中的传输队列。 接下来,服务虚拟机可以通过在服务虚拟机中运行的服务OS的虚拟NIC驱动器从传输队列获取块来支持该实现,并将该部分打包成服务OS请求分组,将服务OS请求分组 到服务OS的服务OS网络栈组件,通过服务OS网络栈组件的桥驱动器将服务OS请求分组路由到物理NIC驱动器,并通过物理网络通过网络发送服务OS请求分组 网卡驱动。