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    • 1. 发明授权
    • Physical layer network coding using forward error correction codes
    • 使用前向纠错码的物理层网络编码
    • US09088351B2
    • 2015-07-21
    • US14005730
    • 2012-03-16
    • Weimin LiuRui YangPhilip J. Pietraski
    • Weimin LiuRui YangPhilip J. Pietraski
    • H04B15/00H04B7/155H04L1/00H04B7/15
    • H04B15/00H04B7/15H04B7/15521H04L1/0076
    • Two network nodes may exchange messages through a relay using physical-layer network coding combined with forward error correction coding (FEC). The relay determines a prime field order based on the channel condition and communicates the field order to the network nodes. Each network node encodes an outgoing message with linear codes over a field such as finite field of the field order, and transmits a signal carrying the encoded outgoing message. The relay receives a composite signal carrying the summation of the messages from the two network nodes. The relay decodes the composite signal and extracts a composite message with linear codes over finite field of field order, and broadcasts a signal carrying the composite message. Each network node receives the signal from the relay and extracts the message intended for it using linear subtraction over finite field of field order.
    • 两个网络节点可以使用结合前向纠错编码(FEC)的物理层网络编码通过中继交换消息。 继电器基于信道条件确定主场顺序,并将该场顺序传送到网络节点。 每个网络节点通过诸如场顺序的有限域的字段编码具有线性码的输出消息,并且发送携带编码的输出消息的信号。 继电器接收携带来自两个网络节点的消息总和的复合信号。 中继解码复合信号,并通过有限场场顺序提取具有线性码的复合消息,并广播携带复合消息的信号。 每个网络节点接收来自中继器的信号,并通过有限场域顺序使用线性减法提取预期的消息。
    • 3. 发明申请
    • PHYSICAL LAYER NETWORK CODING USING FORWARD ERROR CORRECTION CODES
    • 物理层网络编码使用前向纠错码
    • US20140086283A1
    • 2014-03-27
    • US14005730
    • 2012-03-16
    • Weimin LiuRui YangPhilip J. Pietraski
    • Weimin LiuRui YangPhilip J. Pietraski
    • H04B15/00H04B7/15
    • H04B15/00H04B7/15H04B7/15521H04L1/0076
    • Two network nodes may exchange messages through a relay using physical-layer network coding combined with forward error correction coding (FEC). The relay determines a prime field order based on the channel condition and communicates the field order to the network nodes. Each network node encodes an outgoing message with linear codes over a field such as finite field of the field order, and transmits a signal carrying the encoded outgoing message. The relay receives a composite signal carrying the summation of the messages from the two network nodes. The relay decodes the composite signal and extracts a composite message with linear codes over finite field of field order, and broadcasts a signal carrying the composite message. Each network node receives the signal from the relay and extracts the message intended for it using linear subtraction over finite field of field order.
    • 两个网络节点可以使用结合前向纠错编码(FEC)的物理层网络编码通过中继交换消息。 继电器基于信道条件确定主场顺序,并将该场顺序传送到网络节点。 每个网络节点通过诸如场顺序的有限域的字段编码具有线性码的输出消息,并且发送携带编码的输出消息的信号。 继电器接收携带来自两个网络节点的消息总和的复合信号。 中继解码复合信号,并通过有限场场顺序提取具有线性码的复合消息,并广播携带复合消息的信号。 每个网络节点接收来自中继器的信号,并通过有限场域顺序使用线性减法提取预期的消息。
    • 4. 发明申请
    • METHOD AND APPARATUS FOR A TWO-WAY RELAYING SCHEME WITH PHYSICAL LAYER NETWORK CODING
    • 用于物理层网络编码的双向中继方案的方法和装置
    • US20120300692A1
    • 2012-11-29
    • US13503258
    • 2010-10-22
    • Sana SfarWeimin LiuPhilip J. PietraskiRui YangZhemin Xu
    • Sana SfarWeimin LiuPhilip J. PietraskiRui YangZhemin Xu
    • H04J3/08H04W88/02
    • H04L27/34H04B7/15521H04B7/2606H04B7/2656H04L1/1607H04L2001/0097
    • A two-way relay wireless communication method and device may combine multiple bit steams, for one source node and two target nodes, and broadcasting a network coded combined bit sequence to reduce the number of time slots for transmission. A first device may receive a signal from the source node and a target node simultaneously in a time slot. The first device may receive subsequent signals from the source node and multiple target nodes simultaneously in successive time slots. Hierarchical modulation may be applied to the received signals. The first device may decode the received signals and generate a plurality of intermediate bit sequences (IBS)s for a broadcast transmission. The generated IBSs may be grouped according to a channel condition. A second device may be configured to receive the broadcast transmission and decode a portion of the broadcast transmission that is intended for the second device.
    • 双向中继无线通信方法和装置可以对一个源节点和两个目标节点组合多个比特流,并且广播网络编码的组合比特序列以减少用于传输的时隙数量。 第一设备可以在时隙中同时从源节点和目标节点接收信号。 第一设备可以在连续的时隙中同时从源节点和多个目标节点接收后续信号。 可以对接收的信号应用分层调制。 第一设备可以对接收的信号进行解码,并生成用于广播传输的多个中间比特序列(IBS)。 所生成的IBS可以根据信道条件进行分组。 第二设备可以被配置为接收广播传输并解码旨在用于第二设备的广播传输的一部分。
    • 10. 发明授权
    • Method and device for authenticating MS that has an R-UIM by using CAVE algorithm
    • 使用CAVE算法对具有R-UIM的MS进行认证的方法和装置
    • US07649995B2
    • 2010-01-19
    • US11068186
    • 2005-02-28
    • Weimin LiuHuajun CaoGuang Yang
    • Weimin LiuHuajun CaoGuang Yang
    • H04L12/22H04L12/56
    • H04W12/06H04L63/0853H04W88/06
    • A method and device for authenticating a MS has an R-UIM by using CAVE Algorithm are provided. The hardware structure of the device includes a cdma2000/HRPD dual-mode chip, a User Identity Module supporting the CAVE algorithm. The dual-mode terminal forms the NAI value with the domain name stored in a memory of the dual-mode terminal in advance by the IMSI. The dual-mode terminal extracts a RAND that is necessary for the calculation of an authentication parameter1 from the Random values included in a Chap Challenge message, instructs the R-UIM card to use the CAVE algorithm to calculate the authentication parameter1 with the RAND and an existing SSD_A in the R-UIM card, and bears the authentication parameter1 by the Result domain of a Chap Response message. With the present invention, the wastes caused by the replacement of R-UIM cards can be avoided.
    • 用于认证MS的方法和设备具有使用CAVE算法的R-UIM。 该设备的硬件结构包括cdma2000 / HRPD双模芯片,支持CAVE算法的用户识别模块。 双模终端由IMSI预先形成存储在双模终端的存储器中的域名的NAI值。 双模终端从Chap Challenge消息中包含的Random值提取认证参数1计算所需的RAND,指示R-UIM卡使用CAVE算法计算出RAND的认证参数1, 在R-UIM卡中存在SSD_A,并通过Chap响应消息的Result域承载认证参数1。 利用本发明,可以避免由更换R-UIM卡引起的废物。