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    • 1. 发明授权
    • Transceivers for testing networks and adapting to device changes
    • 收发器用于测试网络并适应设备更改
    • US08526821B2
    • 2013-09-03
    • US11966646
    • 2007-12-28
    • Gayle L. NobleLucy G. HoskingLuke M. Ekkizogloy
    • Gayle L. NobleLucy G. HoskingLuke M. Ekkizogloy
    • H04B10/00
    • H04B10/0775H04B10/0773
    • Test transceivers are disclosed for testing optical networks. The test transceivers generate one or more errors on a network in a specific, reproducible way, thereby enabling a tester to easily and readily identify whether network devices are operating properly, or prone to failure. A corrective transceiver is also disclosed. The corrective transceiver is configured to continually detect operating parameters of one or more network devices in a network. The corrective transceiver can identify the operating parameters through out-of-band communication with the one or more network devices. The corrective transceiver is further configured with one or more instructions to adjust its own operating parameters to re-sync with another network device as necessary to continue network communications during a failure of the network device.
    • 公开测试收发器用于测试光网络。 测试收发器以特定的,可再现的方式在网络上产生一个或多个错误,从而使得测试人员能够容易且容易地识别网络设备是否正常运行或易于发生故障。 还公开了一种校正收发器。 校正收发器被配置为连续地检测网络中的一个或多个网络设备的操作参数。 校正收发器可以通过与一个或多个网络设备的带外通信来识别操作参数。 校正收发器进一步配置有一个或多个指令以调整其自己的操作参数,以便在网络设备故障期间继续进行网络通信所必需的与另一网络设备重新同步。
    • 2. 发明授权
    • Fault analysis and monitoring applications using out-of-band based modules
    • 使用带外模块的故障分析和监控应用
    • US08364443B2
    • 2013-01-29
    • US13491468
    • 2012-06-07
    • Gayle L. NobleLucy G. HoskingLuke M. Ekkizogloy
    • Gayle L. NobleLucy G. HoskingLuke M. Ekkizogloy
    • H03F1/26
    • H04L41/00H04L43/50
    • One example embodiment includes a testing device. The testing device comprises a signal reception element, an out-of-band detector and testing logic. The signal reception element is configured to receive a physical layer signal from a communication module via a physical link and to produce an incoming double modulated signal, the incoming double modulated signal including a high-speed data signal and an out-of-band data signal. The out-of-band data signal comprises diagnostic data of the communication module. The out-of-band detector is coupled to the signal reception element and is configured to extract the out-of-band data signal from the incoming double modulated signal. The testing logic is coupled to the out-of-band detector and is configured to extract and analyze the diagnostic data from the out-of-band data signal.
    • 一个示例性实施例包括测试设备。 测试装置包括信号接收元件,带外检测器和测试逻辑。 信号接收元件被配置为经由物理链路从通信模块接收物理层信号并且产生输入的双调制信号,所述输入双调制信号包括高速数据信号和带外数据信号 。 带外数据信号包括通信模块的诊断数据。 带外检测器耦合到信号接收元件,并被配置为从输入的双调制信号中提取带外数据信号。 测试逻辑耦合到带外检测器,并且被配置为从带外数据信号中提取和分析诊断数据。
    • 3. 发明授权
    • Simulation of optical characteristics of an optical fiber
    • 模拟光纤的光学特性
    • US08290365B2
    • 2012-10-16
    • US12195251
    • 2008-08-20
    • Gayle L. NobleLucy G. HoskingLuke M. Ekkizogloy
    • Gayle L. NobleLucy G. HoskingLuke M. Ekkizogloy
    • H04B10/08
    • H04B10/2504
    • An optical communication apparatus that includes multiple optically communicative components positioned optically in series. Some of the optically communicative components may be optical fiber segments of perhaps different types. The optical channel represented by the series of optically communicative components and approximates a transfer function of an optical channel of a longer optical fiber. Accordingly, rather than deal with a lengthy optical fiber, an apparatus having a shorter optical channel may be used instead. The construction of the optical communicative components may be calculating an input transfer function. The construction would include an ordering of discrete optically communicative components that, when placed optically in series, simulates an estimation of a particular transfer function. Testing may then occur by actually passing an optical signal through the series construction of optically communicative components, rather than through the longer optical fiber.
    • 一种光通信装置,其包括以光学方式串联定位的多个光学通信组件。 一些光通信组件可以是可能不同类型的光纤段。 该光通道由一系列光学通信组件表示,并且近似于较长光纤的光通道的传递函数。 因此,可以代替使用具有较短光通道的装置,而不是处理冗长的光纤。 光学通信组件的构造可以是计算输入传递函数。 该结构将包括离散光学通信组件的顺序,当光学地串联放置时,模拟特定传递函数的估计。 然后可以通过实际上将光信号通过光学通信组件的串联结构而不是通过较长的光纤而进行测试。
    • 4. 发明申请
    • SIMULATION OF OPTICAL CHARACTERISTICS OF AN OPTICAL FIBER
    • 光纤光学特性的仿真
    • US20100046943A1
    • 2010-02-25
    • US12195251
    • 2008-08-20
    • Gayle L. NobleLucy G. HoskingLuke M. Ekkizogloy
    • Gayle L. NobleLucy G. HoskingLuke M. Ekkizogloy
    • G02B6/26H04B10/08
    • H04B10/2504
    • An optical communication apparatus that includes multiple optically communicative components positioned optically in series. Some of the optically communicative components may be optical fiber segments of perhaps different types. The optical channel represented by the series of optically communicative components and approximates a transfer function of an optical channel of a longer optical fiber. Accordingly, rather than deal with a lengthy optical fiber, an apparatus having a shorter optical channel may be used instead. The construction of the optical communicative components may be calculating an input transfer function. The construction would include an ordering of discrete optically communicative components that, when placed optically in series, simulates an estimation of a particular transfer function. Testing may then occur by actually passing an optical signal through the series construction of optically communicative components, rather than through the longer optical fiber.
    • 一种光通信装置,其包括以光学方式串联定位的多个光学通信组件。 一些光通信组件可以是可能不同类型的光纤段。 该光通道由一系列光学通信组件表示,并且近似于较长光纤的光通道的传递函数。 因此,可以代替使用具有较短光通道的装置,而不是处理冗长的光纤。 光学通信组件的构造可以是计算输入传递函数。 该结构将包括离散光学通信组件的顺序,当光学地串联放置时,模拟特定传递函数的估计。 然后可以通过实际上将光信号通过光学通信组件的串联结构而不是通过较长的光纤而进行测试。
    • 5. 发明申请
    • FAULT ANALYSIS AND MONITORING APPLICATIONS USING OUT-OF-BAND BASED MODULES
    • 使用带外模块进行故障分析和监测应用
    • US20120243866A1
    • 2012-09-27
    • US13491468
    • 2012-06-07
    • Gayle L. NobleLucy G. HoskingLuke M. Ekkizogloy
    • Gayle L. NobleLucy G. HoskingLuke M. Ekkizogloy
    • H04B17/00H04B3/36H04B10/08
    • H04L41/00H04L43/50
    • One example embodiment includes a testing device. The testing device comprises a signal reception element, an out-of-band detector and testing logic. The signal reception element is configured to receive a physical layer signal from a communication module via a physical link and to produce an incoming double modulated signal, the incoming double modulated signal including a high-speed data signal and an out-of-band data signal. The out-of-band data signal comprises diagnostic data of the communication module. The out-of-band detector is coupled to the signal reception element and is configured to extract the out-of-band data signal from the incoming double modulated signal. The testing logic is coupled to the out-of-band detector and is configured to extract and analyze the diagnostic data from the out-of-band data signal.
    • 一个示例性实施例包括测试设备。 测试装置包括信号接收元件,带外检测器和测试逻辑。 信号接收元件被配置为经由物理链路从通信模块接收物理层信号并且产生输入的双调制信号,所述输入双调制信号包括高速数据信号和带外数据信号 。 带外数据信号包括通信模块的诊断数据。 带外检测器耦合到信号接收元件,并被配置为从输入的双调制信号中提取带外数据信号。 测试逻辑耦合到带外检测器,并且被配置为从带外数据信号中提取和分析诊断数据。
    • 6. 发明申请
    • FAULT ANALYSIS AND MONITORING APPLICATIONS USING OUT-OF-BAND BASED MODULES
    • 使用带外模块进行故障分析和监测应用
    • US20090265142A1
    • 2009-10-22
    • US12426092
    • 2009-04-17
    • Cheng LiuGayle L. NobleLucy G. HoskingLuke M. Ekkizogloy
    • Cheng LiuGayle L. NobleLucy G. HoskingLuke M. Ekkizogloy
    • G06F15/00
    • H04L41/00H04L43/50
    • One example embodiment includes a testing device. The testing device comprises a signal reception element, an out-of-band detector and testing logic. The signal reception element is configured to receive a physical layer signal from a communication module via a physical link and to produce an incoming double modulated signal, the incoming double modulated signal including a high-speed data signal and an out-of-band data signal. The out-of-band data signal comprises diagnostic data of the communication module. The out-of-band detector is coupled to the signal reception element and is configured to extract the out-of-band data signal from the incoming double modulated signal. The testing logic is coupled to the out-of-band detector and is configured to extract and analyze the diagnostic data from the out-of-band data signal.
    • 一个示例性实施例包括测试设备。 测试装置包括信号接收元件,带外检测器和测试逻辑。 信号接收元件被配置为经由物理链路从通信模块接收物理层信号并且产生输入的双调制信号,所述输入双调制信号包括高速数据信号和带外数据信号 。 带外数据信号包括通信模块的诊断数据。 带外检测器耦合到信号接收元件,并被配置为从输入的双调制信号中提取带外数据信号。 测试逻辑耦合到带外检测器,并且被配置为从带外数据信号中提取和分析诊断数据。
    • 7. 发明申请
    • TRANSCEIVERS FOR TESTING NETWORKS AND ADAPTING TO DEVICE CHANGES
    • 用于测试网络的收发器并适应设备更改
    • US20080159737A1
    • 2008-07-03
    • US11966646
    • 2007-12-28
    • Gayle L. NobleLucy G. HoskingLuke M. Ekkizogloy
    • Gayle L. NobleLucy G. HoskingLuke M. Ekkizogloy
    • H04B10/08H04B17/00
    • H04B10/0775H04B10/0773
    • Test transceivers are disclosed for testing optical networks. The test transceivers generate one or more errors on a network in a specific, reproducible way, thereby enabling a tester to easily and readily identify whether network devices are operating properly, or prone to failure. A corrective transceiver is also disclosed. The corrective transceiver is configured to continually detect operating parameters of one or more network devices in a network. The corrective transceiver can identify the operating parameters through out-of-band communication with the one or more network devices. The corrective transceiver is further configured with one or more instructions to adjust its own operating parameters to re-sync with another network device as necessary to continue network communications during a failure of the network device.
    • 公开测试收发器用于测试光网络。 测试收发器以特定的,可再现的方式在网络上产生一个或多个错误,从而使得测试人员能够容易且容易地识别网络设备是否正常运行或容易发生故障。 还公开了一种校正收发器。 校正收发器被配置为连续地检测网络中的一个或多个网络设备的操作参数。 校正收发器可以通过与一个或多个网络设备的带外通信来识别操作参数。 校正收发器进一步配置有一个或多个指令以调整其自己的操作参数,以便在网络设备故障期间继续进行网络通信所必需的与另一网络设备重新同步。