Method for processing forward error correction, FEC, data, device and system thereof
    1.
    发明授权
    Method for processing forward error correction, FEC, data, device and system thereof 有权
    用于处理前向纠错,FEC,数据,设备及其系统的方法

    公开(公告)号:US08707124B2

    公开(公告)日:2014-04-22

    申请号:US13536633

    申请日:2012-06-28

    申请人: Jin Xu Xin Xu Qiong Lei

    发明人: Jin Xu Xin Xu Qiong Lei

    IPC分类号: H03M13/00 H04L1/06 H03M13/03

    摘要: A method for processing Forward Error Correction, FEC, data, which includes: a sender encapsulates the FEC data to be a Transport Stream, TS, message, sets FEC identification information in the TS message, and encapsulates the TS message to be a Real-time Transport Protocol, RTP, message; then sends the RTP message to a terminal side. The reception end receives the RTP message; if the reception end has a function for FEC decoding, the reception end identifies the FEC data according to the FEC identification information in the TS message of the received RTP message, and recovers the missed media message according to the FEC data; if the reception end does not have the function for FEC decoding, the reception end processes the RTP message after removing the message header. The embodiments of the present invention also provide a transmission and processing device.

    摘要翻译: 一种用于处理前向纠错,FEC,数据的方法,包括:发送方将FEC数据封装为传输流,TS消息,在TS消息中设置FEC标识信息,并将TS消息封装为实时 时间传输协议,RTP,消息; 然后将RTP消息发送到终端侧。 接收端收到RTP消息; 如果接收端具有用于FEC解码的功能,则接收端根据接收的RTP消息的TS消息中的FEC识别信息来识别FEC数据,并根据FEC数据恢复丢失的媒体消息; 如果接收端不具有用于FEC解码的功能,则接收端在移除消息报头之后处理RTP消息。 本发明的实施例还提供一种传输和处理装置。

    Measurement and reconstruction of the golf launching scene in 3D

    公开(公告)号:US20200282283A1

    公开(公告)日:2020-09-10

    申请号:US16424408

    申请日:2019-05-28

    IPC分类号: A63B69/36 A63B71/06 A63B24/00

    摘要: A golf launching monitoring arrangement allows equipment to be placed at a position behind the player (i.e., behind the golf ball), to measure both club and ball movement. A 3D scan of the club head before the play serves two purposes: 1) 3D registration that enables accurate measurement of the club head position and orientation for the camera system measuring the club movement from the back; 2) for reconstruction of the launching scene. With a 3D model of the club head, a simple 3D model of the golf ball and accurate measurement of their movement during the play, a full 3D golf launching scene can be reconstructed authentically. With this reconstruction, the movement of both the club head and the resulting ball movement can be replayed at any viewing angle, with any frame rate and at whatever resolution for the players or the coaches to view and analyze.

    Bending-resistant large core diameter high numerical aperture multimode fiber
    3.
    发明授权
    Bending-resistant large core diameter high numerical aperture multimode fiber 有权
    抗弯大芯径高数值孔径多模光纤

    公开(公告)号:US09052435B2

    公开(公告)日:2015-06-09

    申请号:US13997950

    申请日:2012-03-13

    IPC分类号: G02B6/036 G02B6/028 G02B6/02

    摘要: A bending-resistant large core diameter high numerical aperture multimode fiber includes a core and a cladding surrounding the core. The core has a radius R1 in a range of 28 to 50 microns, a refractive index profile of a parabola shape with α being in a range of 1.9 to 2.2, and a maximum relative refractive index difference Δ1% max being in a range of 1.9% to 2.5%. The cladding includes an inner cladding and/or a trench cladding, and an outer cladding disposed from the inner to the outer in sequence. The radius R2 of the inner cladding is in a range of 28 to 55 microns, and the relative refractive index difference Δ2% is −0.1% to 0.1%. The radius R3 of the trench cladding is in a range of 28 to 60 microns, and the relative refractive index difference Δ3% is in a range of −0.15% to −0.8%.

    摘要翻译: 耐弯曲的大芯径高数值孔径多模光纤包括芯和围绕芯的包层。 芯的半径R1在28至50微米的范围内,抛物线形状的折射率分布具有α在1.9至2.2的范围内,最大相对折射率差Dgr; 1%max在一个范围内 为1.9%至2.5%。 包层包括内包层和/或沟槽包层,以及从内层到外层依次设置的外包层。 内包层的半径R2在28至55微米的范围内,相对折射率差Dgr; 2%为-0.1%至0.1%。 沟槽包层的半径R3在28至60微米的范围内,相对折射率差Dgr 3%在-0.15%至-0.8%的范围内。

    METHOD AND BASE STATION FOR DETERMINING SIZE OF TRANSMISSION BLOCKS IN SUBFRAME
    4.
    发明申请
    METHOD AND BASE STATION FOR DETERMINING SIZE OF TRANSMISSION BLOCKS IN SUBFRAME 有权
    用于确定子帧中传输块大小的方法和基站

    公开(公告)号:US20140355558A1

    公开(公告)日:2014-12-04

    申请号:US14369771

    申请日:2012-03-20

    IPC分类号: H04L5/00 H04W72/04

    摘要: A method and a base station for determining a size of transmission blocks in a sub-frame. The method comprises: acquiring a physical resource block allocation number N′PRB and a transmission block size index I′TBS; determining a conversion relationship, and converting N′PRB and I′TBS, according to a conversion relationship, respectively into NPRB and ITBS used in existing calculation for the size of a transmission blocks; and according to NPRB and ITBS, calculating the size of the transmission blocks.

    摘要翻译: 一种用于确定子帧中的传输块的大小的方法和基站。 该方法包括:获取物理资源块分配数N'PRB和传输块大小索引I'TBS; 确定转换关系,并根据转换关系将N'PRB和I'TBS分别转换为用于传输块大小的现有计算中使用的NPRB和ITBS; 并根据NPRB和ITBS计算传输块的大小。

    Multipurpose sensor fixing device
    5.
    发明授权
    Multipurpose sensor fixing device 有权
    多功能传感器固定装置

    公开(公告)号:US08869619B2

    公开(公告)日:2014-10-28

    申请号:US13455918

    申请日:2012-04-25

    IPC分类号: G01N29/14 G01N29/22 G01N33/38

    摘要: A multipurpose sensor fixing device includes a radial positioning mechanism, a supporting mechanism, a base, a mounting mechanism, and a parallelism adjusting member. The supporting mechanism comprises a main supporting arm and an auxiliary supporting arm, with one end of the auxiliary supporting arm connected to the main supporting arm and the other end comprising kink shaft members. The main supporting arm is connected to an end of the radial positioning mechanism to locate the auxiliary supporting arm at the inner side of the main supporting arm. The kink shaft member of the auxiliary supporting arm is inserted into a plughole of the base to form a revolute pair with the auxiliary supporting arm. The mounting mechanism is mounted at the base. The parallelism adjusting member is mounted on the main supporting arm.

    摘要翻译: 多用途传感器固定装置包括径向定位机构,支撑机构,基座,安装机构和平行度调节构件。 支撑机构包括主支撑臂和辅助支撑臂,辅助支撑臂的一端连接到主支撑臂,另一端包括扭结轴构件。 主支撑臂连接到径向定位机构的端部,以将辅助支撑臂定位在主支撑臂的内侧。 辅助支撑臂的扭结轴构件插入到基座的插孔中以与辅助支撑臂形成旋转对。 安装机构安装在底座上。 平行度调节构件安装在主支撑臂上。

    Encoding method, encoding device, decoding method and decoding device for low density generator matrix codes
    6.
    发明授权
    Encoding method, encoding device, decoding method and decoding device for low density generator matrix codes 有权
    编码方法,编码装置,低密度发生器矩阵码的解码方法和解码装置

    公开(公告)号:US08527830B2

    公开(公告)日:2013-09-03

    申请号:US12746756

    申请日:2008-04-16

    IPC分类号: H03M13/00

    摘要: An encoding method, encoding device, decoding method and decoding device for low density generator matrix codes (LDGC) are disclosed. Wherein, the encoding method comprises: construct an LDGC mother code set using P LDGC with code rate R0 and different code lengths, wherein the LDGC mother code set has a uniform basic matrix Gbuniform wherein, R 0 = k b n b , kb denotes the number of rows and nb denotes the number of columns in the basic matrix; obtain length L of an intermediate variant according to length K of an information bit sequence to be encoded in the LDGC mother code set; modify and expand the basic matrix to obtain a generator matrix Gldgc using the length L of the intermediate variant and the number kb of rows in the basic matrix; and encode the information bit sequence to be encoded using a matrix Gldgc (1:L,1:N+L−K) composed of L rows and the front N+L−K columns of the generator matrix, wherein N denotes the length of the encoded information.

    摘要翻译: 公开了一种用于低密度发电机矩阵码(LDGC)的编码方法,编码装置,解码方法和解码装置。 其编码方法包括:使用代码率R0和不同代码长度的P LDGC构建LDGC母码集,其中LDGC母码组具有均匀的基本矩阵,其中,R 0 = kbnb,kb表示行数 而nb表示基本矩阵中的列数; 根据要编码在LDGC母码组中的信息比特序列的长度K获得中间变体的长度L; 修改和扩展基本矩阵,以使用中间变体的长度L和基本矩阵中的行的数量kb来获得生成矩阵Gldgc; 并使用由L行组成的矩阵Gldgc(1:L,1:N + L-K)对生成矩阵的前N + L-K列进行编码的信息比特序列进行编码,其中,N表示编码信息的长度。

    ACOUSTIC EMISSION TEST SENSOR FIXING DEVICE
    7.
    发明申请
    ACOUSTIC EMISSION TEST SENSOR FIXING DEVICE 有权
    声发射测试传感器固定装置

    公开(公告)号:US20100313662A1

    公开(公告)日:2010-12-16

    申请号:US12690655

    申请日:2010-01-20

    IPC分类号: G01N29/14

    摘要: An acoustic emission test sensor fixing device, comprising a radial positioning mechanism, supporting mechanisms, bases, acoustic emission test sensor mounting mechanisms, and parallelism adjusting members, wherein the supporting mechanism comprises a main supporting arm and an auxiliary supporting arm, with one end of the auxiliary supporting arm is fixedly connected to or hinged with the main supporting arm and the other end is provided with kink shaft members which are symmetrical about the auxiliary supporting arm; and the bases are provided with plugholes which form revolute pairs with the auxiliary supporting arm. The above components are assembled as follows: the main supporting arms of the two sets of supporting mechanisms are connected to the two free ends of the radial positioning mechanism respectively in the way that the auxiliary supporting arms of the two sets of supporting mechanisms are located at the inner sides of the main supporting arms respectively and are arranged axis symmetrically with respect to the central line of the radial positioning mechanism, and the kink shaft members of the two auxiliary supporting arms are respectively inserted into the plugholes of the two bases to form revolute pairs, the two sets of acoustic emission test sensor mounting mechanisms are respectively mounted at the two bases, and the two sets of parallelism adjusting members are respectively mounted on the two main supporting arms and correspond to the positions of the bases.

    摘要翻译: 一种声发射测试传感器固定装置,包括径向定位机构,支撑机构,底座,声发射测试传感器安装机构和平行度调节构件,其中支撑机构包括主支撑臂和辅助支撑臂, 辅助支撑臂与主支撑臂固定连接或铰接,另一端设置有关于辅助支撑臂对称的扭结轴构件; 并且基部设置有与辅助支撑臂形成旋转对的插孔。 上述部件组装如下:两组支撑机构的主支撑臂分别与径向定位机构的两个自由端连接,使得两组支撑机构的辅助支撑臂位于 主支撑臂的内侧分别相对于径向定位机构的中心线对称地布置,并且两个辅助支撑臂的扭结轴构件分别插入两个基座的插孔中以形成旋转 两组声发射测试传感器安装机构分别安装在两个基座上,两组平行度调节构件分别安装在两个主支撑臂上,对应于基座的位置。

    METHOD AND DEVICE FOR ENCODING THE LOW DENSITY GENERATOR MATRIX CODE
    8.
    发明申请
    METHOD AND DEVICE FOR ENCODING THE LOW DENSITY GENERATOR MATRIX CODE 有权
    用于编码低密度发生器矩阵码的方法和装置

    公开(公告)号:US20100185915A1

    公开(公告)日:2010-07-22

    申请号:US12666454

    申请日:2008-06-02

    IPC分类号: H03M13/07 G06F11/10

    CPC分类号: H03M13/3761 H03M13/11

    摘要: A method and system for encoding the low density generator matrix code are disclosed. The encoding method includes the following steps: S102, constructing a generator matrix Gldgc with L rows and N+L−K columns, wherein a phalanx Gldgc(1:L, 1:L) which consists of L rows and the first L columns of the generator matrix Gldgc is an upper triangular matrix or a lower triangular matrix, the K, L and N being positive integers, and K

    摘要翻译: 公开了一种用于编码低密度发生器矩阵码的方法和系统。 该编码方法包括以下步骤:S102,构造具有L行和N + L-K列的生成矩阵Gldgc,其中由L行和第L列组成的指骨Gldgc(1:L,1:L) 生成矩阵Gldgc是上三角矩阵或下三角矩阵,K,L和N是正整数,K

    Method and apparatus for measuring distance between a target and a receiver in a ranging system
    9.
    发明授权
    Method and apparatus for measuring distance between a target and a receiver in a ranging system 失效
    用于测量测距系统中目标和接收机之间的距离的方法和装置

    公开(公告)号:US07683825B2

    公开(公告)日:2010-03-23

    申请号:US11810132

    申请日:2007-06-04

    IPC分类号: G01S13/08

    CPC分类号: G01S7/28 G01S13/103

    摘要: A method of measuring distance between a target and a receiver in a ranging system may comprise transmitting a first pulse at a first time determined by a sampling clock in a receiver, receiving the first pulse, sampling the first pulse at a predetermined amplitude threshold using the sampling clock and determining the time of arrival of the first pulse in terms of a number of periods of the sampling clock after the first pulse was transmitted. This may be repeated for a second pulse and the average times of arrival of the first and second pulses are determined to obtain an averaged estimated time of arrival. The distance between the target and the receiver may be determined by multiplying the averaged estimated time of arrival by the speed of propagation of the transmitted pulses. There is also disclosed an apparatus for measuring distance.

    摘要翻译: 一种测量测距系统中的目标和接收机之间的距离的方法可以包括在接收机中由采样时钟确定的第一时间发射第一脉冲,接收第一脉冲,使用第一脉冲以预定的幅度阈值采样第一脉冲 采样时钟,并且根据发送第一脉冲之后的采样时钟的周期数来确定第一脉冲的到达时间。 这可以针对第二脉冲重复,并且确定第一和第二脉冲的平均到达次数以获得平均的估计到达时间。 目标和接收机之间的距离可以通过将平均的估计到达时间乘以传输脉冲的传播速度来确定。 还公开了一种用于测量距离的装置。