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    • 62. 发明授权
    • Method and node for detecting subframe sequence error in inverse multiplexing
    • 用于检测逆多路复用中子帧序列错误的方法和节点
    • US09571375B2
    • 2017-02-14
    • US14768243
    • 2014-02-08
    • ZTE Corporation
    • Xihua FuXinling Zhang
    • H04L12/26H04B10/07H04J3/16H04J14/08H04L12/939H04Q11/00
    • H04L43/10H04B10/07H04J3/1652H04J14/08H04J2203/0094H04L49/552H04Q11/0066H04Q2011/0083
    • Disclosed are a method and a node for detecting subframe misordering, including that: a receiving node receives subframes from a transmitting node, and judges whether a trail trace identifier carried in each subframe received is same with a desired trail trace identifier of a subframe to be received; when the trail trace identifier carried in each subframe received is same with the desired trail trace identifier of the subframe to be received, judges whether a subframe number value carried in each subframe belongs to a range of desired subframe number values of the subframe to be received, and if it has been judged that the subframe number value carried in the received subframe does not belong to the range of desired subframe number values of the subframe to be received, determines that there is subframe misordering.
    • 公开了一种用于检测子帧错排列的方法和节点,包括:接收节点从发送节点接收子帧,并判断接收的每个子帧中承载的跟踪跟踪标识符是否与要被存储的子帧的所需跟踪标识符相同 收到 当接收到的每个子帧中承载的跟踪跟踪标识符与要接收的子帧的期望的跟踪跟踪标识符相同时,判断每个子帧中承载的子帧号码是否属于要接收的子帧的期望子帧号值的范围 并且如果已经判定接收到的子帧中承载的子帧号码不属于要接收的子帧的期望子帧号码的范围,则确定存在子帧错误。
    • 63. 发明授权
    • System and method for calibration of an optical module
    • 用于校准光学模块的系统和方法
    • US09553663B1
    • 2017-01-24
    • US14860548
    • 2015-09-21
    • INPHI CORPORATION
    • Todd Rope
    • H04B10/08H04B10/07
    • H04B10/0775H04B10/07955H04B10/07957H04B10/40
    • A system and method for calibrating an optical module. The optical module including a microprocessor with non-volatile memory is provided at a calibration station for measuring calibrated value of a device parameter against raw values starting from minimum value in each of multiple zones of a primary parameter with one or more secondary parameters at least being set to a basis calibration point to determine coefficients for generating a N-spline function for the multiple zones and multiple multipliers for each zone corresponding to multiple calibration points. The coefficients and multiple multipliers are stored in the non-volatile memory and reused respectively for calculating a basis calibrated value based on any current raw value of the primary parameter a N-spline function in particular zone and for determining a final multiplier by interpolation of the multiple multipliers associated with the one or more secondary parameters, leading to a calibrated value for any condition.
    • 一种用于校准光学模块的系统和方法。 包括具有非易失性存储器的微处理器的光学模块被提供在校准站处,用于根据原始值测量设备参数的校准值,从原始参数的多个区域的每个区域中的最小值开始,其中一个或多个次要参数至少为 设置为基准校准点,以确定用于为多个区域生成N样条函数的系数和对应于多个校准点的每个区域的多个乘法器。 系数和多乘法器被分别存储在非易失性存储器中并重新用于基于主要参数的任何当前原始值,特定区域中的N样条函数的计算基准校准值,并且用于通过插值来确定最终乘数 与一个或多个次要参数相关联的多个乘法器,导致任何条件的校准值。
    • 64. 发明授权
    • Method and device for processing a communication network
    • 用于处理通信网络的方法和设备
    • US09473238B2
    • 2016-10-18
    • US14239919
    • 2011-08-22
    • Michael FrantzJoerg Reichert
    • Michael FrantzJoerg Reichert
    • H04B10/07H04L12/24
    • H04B10/07H04L41/145
    • Method and device for processing a communication network A method and a device for processing a communication network are provided, wherein (a) a first performance parameter of the communication network is determined; (b) a third performance parameter is determined based on the first performance parameter and a second performance parameter, which second performance parameter was previously determined, wherein the second performance parameter comprises a forecast of an expected network performance over time until the end of the scheduled lifetime of the communication network; and (c) the communication network is processed based on the third performance parameter. Furthermore, an according computer program product is suggested.
    • 提供了一种用于处理通信网络的方法和设备。一种用于处理通信网络的方法和设备,其中(a)确定所述通信网络的第一性能参数; (b)基于第一性能参数和第二性能参数确定第三性能参数,第二性能参数是先前确定的第二性能参数,其中第二性能参数包括预期的网络性能随时间的预测,直到调度结束 通信网络的生命周期; 和(c)基于第三性能参数来处理通信网络。 此外,还提出了一种计算机程序产品。
    • 66. 发明授权
    • Active optical cable assemblies and methods for thermal testing thereof
    • 有源光缆组件及其热测试方法
    • US09419710B2
    • 2016-08-16
    • US14465921
    • 2014-08-22
    • CORNING OPTICAL COMMUNICATIONS LLC
    • Sören BöldickeDavide Domenico FortusiniRebecca Kayla SchaevitzMartin SpreemannEric Stephan ten Have
    • H04B10/07H04B10/079H04B10/25
    • H04B10/0795H04B10/0731H04B10/25
    • Active optical cable assemblies and methods for thermally testing active optical cable assemblies are disclosed. In one embodiment, a method of thermally testing an active optical cable assembly includes providing electrical signals to an optical transmission module within a first connector that converts the electrical signals into optical signals for transmission over one or more optical fibers of the active optical cable assembly, and applying heat to the first connector as the electrical signals are provided to the optical transmission module. The method further includes detecting electrical signals at a second connector of the active optical cable assembly. The detected electrical signals are converted from the optical signals by an optical receiver module within the second connector. The method further includes determining if the optical transmission module satisfies a benchmark at a threshold temperature of the optical transmission module based on the electrical signals detected at the second connector.
    • 公开了用于热测试有源光缆组件的主动光缆组件和方法。 在一个实施例中,热测试有源光缆组件的方法包括向第一连接器内的光传输模块提供电信号,该第一连接器将电信号转换成光信号,以在有源光缆组件的一个或多个光纤上传输, 并且当电信号被提供给光传输模块时,向第一连接器施加热量。 该方法还包括在有源光缆组件的第二连接器处检测电信号。 检测到的电信号通过第二连接器内的光接收器模块从光信号转换。 该方法还包括基于在第二连接器处检测到的电信号来确定光传输模块是否满足在光传输模块的阈值温度下的基准。
    • 68. 发明授权
    • Method and device for optimizing performance of an optical module
    • 用于优化光模块性能的方法和装置
    • US09379811B2
    • 2016-06-28
    • US13864803
    • 2013-04-17
    • Huawei Technologies Co., Ltd.
    • Changjun ZhangBo WangJianmin TangLeiying Pan
    • H04B10/69H04B10/07
    • H04B10/07H04B10/695H04B10/697
    • Embodiments of the present invention provide a method and device for optimizing performance of an optical module. The optical module includes: an optical receiver, configured to receive an optical signal from an optical network, convert the optical signal into a first electrical signal, and process the first electrical signal according to a set control parameter for performance optimization, so as to obtain a second electrical signal; a connector, configured to send the second electrical signal obtained by the optical receiver to a host connected to the optical module, so that the host obtains bit error information according to the second electrical signal, and configured to receive the bit error information delivered by the host; and a processor, configured to adjust, according to the bit error information of the connector, the control parameter for performance optimization of the optical receiver.
    • 本发明的实施例提供了一种用于优化光学模块的性能的方法和装置。 该光模块包括:光接收器,被配置为从光网络接收光信号,将光信号转换为第一电信号,并根据设定的控制参数处理第一电信号以进行性能优化,以获得 第二电信号; 连接器,被配置为将由所述光接收器获得的所述第二电信号发送到连接到所述光模块的主机,使得所述主机根据所述第二电信号获得位错误信息,并且被配置为接收由所述光接收器发送的位错误信息 主办; 以及处理器,被配置为根据所述连接器的位错误信息调整用于所述光接收器的性能优化的控制参数。
    • 69. 发明申请
    • SYSTEM AND METHOD FOR INTERCONNECTING OBJECTS WITH OPTICAL FIBERS
    • 用光纤连接对象的系统和方法
    • US20160173193A1
    • 2016-06-16
    • US14906146
    • 2014-07-11
    • TYCO ELECTRONICS (SHANGHAI) CO. LTD.
    • Huaisheng ZHUZhaoyang TONGWeili ZHANG
    • H04B10/07H04Q11/00H04Q1/02
    • H04B10/07G02B6/3895G02B6/44H04Q1/02H04Q1/138H04Q11/0003
    • A system for interconnecting at least a pair of objects with optical fibers, comprising: optical fibers each having a first end provided with a first tag and a second end provided with a second tag, the optical fibers each is disposed between a pair of objects with the first end near one of the pair of objects and the second end near the other of the pair of objects; a plurality of readers for reading the matching codes from the tags of the optical fibers inserted into respective ports; a plurality of indicators for indicating state of respective ports; and a server management device for processing data read from the objects and controlling the states of the indicators. Before inserting the optical fiber, the server management device builds up a correct one-to-one correlation among the ports of the pair of objects and controls all ports to switch into a first indication state; operations of randomly inserting the ends of the optical fibers into the ports are performed simultaneously.
    • 一种用于将至少一对物体与光纤互连的系统,包括:光纤,每个光纤具有设置有第一标签的第一端和设置有第二标签的第二端,所述光纤各自设置在一对物体之间, 靠近一对物体之一的第一端和靠近另一对物体的第二端; 多个读取器,用于从插入到各个端口中的光纤的标签读取匹配代码; 用于指示各个端口的状态的多个指示符; 以及用于处理从对象读取的数据并控制指示符的状态的服务器管理装置。 在插入光纤之前,服务器管理设备在对象的端口之间建立正确的一对一关联,并控制所有端口切换到第一指示状态; 将光纤端部随机插入端口的操作同时进行。