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    • 1. 发明授权
    • Application based access selection
    • 基于应用的访问选择
    • US08588062B1
    • 2013-11-19
    • US11679290
    • 2007-02-27
    • James J. PanClaudio R. Lima
    • James J. PanClaudio R. Lima
    • G01R31/08
    • H04L47/2475H04L69/14H04L69/18H04W4/00
    • An access selection system comprises an interface system configured to receive a plurality of traffic and transfer a first traffic of the plurality of traffic over a first access link of a plurality of access links wherein the plurality of traffic is generated by a plurality of applications. The access system further comprises a processing system coupled to the interface system and configured to process the first traffic of the plurality of traffic to determine a first application of the plurality of applications that generated the first traffic and select the first access link from the plurality of access links based on the first application.
    • 接入选择系统包括被配置为接收多个业务并且通过多个接入链路的第一接入链路传送多个业务的第一业务的接口系统,其中多个业务由多个应用产生。 所述接入系统还包括耦合到所述接口系统并且被配置为处理所述多个业务的所述第一业务的处理系统,以确定生成所述第一业务的所述多个应用的​​第一应用,并从所述多个业务中选择所述第一接入链路 根据第一个应用程序访问链接。
    • 3. 发明授权
    • Transmitting error correction information
    • 发送纠错信息
    • US07966540B1
    • 2011-06-21
    • US11743435
    • 2007-05-02
    • Claudio R. LimaRenxiang HuangJames J. Pan
    • Claudio R. LimaRenxiang HuangJames J. Pan
    • G08C25/02
    • H04L1/1812H04L2001/0093
    • A method of operating a communication system to communicate with a plurality of wireless devices comprises determining a first shape for a first wireless signal to reach the plurality of wireless devices, transmitting the first wireless signal encoded with a first communication to the plurality of wireless devices, receiving an acknowledgment from a first device of the plurality of wireless devices indicating that the first device received and decoded the first communication, determining a second shape for a second wireless signal to reach a second device of the plurality of wireless devices, and transmitting the second wireless signal encoded with error correction information for the first communication to the second device of the plurality of wireless devices.
    • 一种操作通信系统以与多个无线设备进行通信的方法包括:确定用于第一无线信号的第一形状以到达所述多个无线设备,将通过第一通信编码的第一无线信号发送到所述多个无线设备, 从所述多个无线设备的第一设备接收指示所述第一设备接收并解码所述第一通信的确认,确定第二无线信号的第二形状以到达所述多个无线设备中的第二设备,以及发送所述第二设备 无线信号用第一通信的纠错信息编码到多个无线设备中的第二设备。
    • 5. 发明授权
    • Optimizing PMD measurements based on temperature for installed fibers
    • 根据已安装光纤的温度优化PMD测量
    • US07203385B1
    • 2007-04-10
    • US11005697
    • 2004-12-07
    • David Lindel HarrisJames J. Pan
    • David Lindel HarrisJames J. Pan
    • G02B6/00G01N21/00H04J14/02
    • H04B10/07951G01M11/336H04B10/2569
    • Methods and networks are disclosed for optimizing PMD measurements on an installed span of fiber. For a method of the invention, a light system transmits light over the installed fiber. A PMD measurement system measures PMD on the fiber over a time period based on the light. A temperature measurement system measures ambient temperatures of the fiber over the time period. The PMD measurements and the ambient temperature measurements are then processed to determine an optimal temperature range for performing future PMD measurements on the fiber. The optimal temperature range indicates the best temperatures to perform measurements, the best time of day to perform measurements, the best time of year to perform measurements (such as summer or winter), etc.
    • 公开了用于在安装的纤维跨度上优化PMD测量的方法和网络。 对于本发明的方法,光系统在所安装的光纤上透射光。 PMD测量系统基于光线在一段时间内测量光纤上的PMD。 温度测量系统测量光纤在这段时间内的环境温度。 然后处理PMD测量和环境温度测量以确定用于在光纤上执行未来PMD测量的最佳温度范围。 最佳温度范围表示进行测量的最佳温度,进行测量的最佳时间,进行测量的最佳时间(如夏季或冬季)等。
    • 6. 发明授权
    • Intelligent and automatic calling process
    • 智能自动呼叫过程
    • US08472613B1
    • 2013-06-25
    • US11556475
    • 2006-11-03
    • James J. PanJames D. BlackMinh Khuc
    • James J. PanJames D. BlackMinh Khuc
    • H04M1/53
    • H04M1/53H04M1/274575H04M1/56H04M3/424H04M3/432H04M3/44
    • Ways for facilitating an automated calling process are described. An embodiment includes receiving a start indication to start recording events associated with a call process, starting a timing reference, receiving data provided by a user, storing information suitable to reproduce the received data based on the timing reference, and repeating the receiving step and the storing step until a stop indication to stop recording events is received. Redialing can occur without user intervention by retrieving a first indication of an information-providing event associated with a dialing process, providing data to satisfy the information-providing event, determining whether a subsequent information-providing event is to be expected, waiting for a correct time or for a prompt to provide additional data to satisfy the subsequent information-providing event, providing additional data to satisfy the subsequent information-providing event, and without user interaction, repeating the determining, waiting, and providing steps until the call is connected or until there is no additional data to provide.
    • 描述了促进自动呼叫过程的方法。 一个实施例包括接收开始指示以开始记录与呼叫过程相关联的事件,开始定时参考,接收由用户提供的数据,存储适合于基于定时参考再现接收到的数据的信息,以及重复接收步骤和 存储步骤直到停止指示停止记录事件为止。 通过检索与拨号过程相关联的提供信息的事件的第一指示,提供数据以满足信息提供事件,确定是否期望提供后续的信息提供事件,等待正确的信息提供事件,可以在没有用户干预的情况下进行重拨 时间或提示提供额外的数据以满足后续的信息提供事件,提供额外的数据以满足后续的信息提供事件,并且在没有用户交互的情况下,重复确定,等待和提供步骤直到呼叫被连接或 直到没有提供额外的数据。
    • 7. 发明授权
    • Fault recovery for communication networks
    • 通信网络的故障恢复
    • US07453795B1
    • 2008-11-18
    • US10960591
    • 2004-10-07
    • James J. PanBoris RabinovichJames D. BlackRenxiang Huang
    • James J. PanBoris RabinovichJames D. BlackRenxiang Huang
    • H04J3/14
    • H04L41/0663H04J2203/0053H04J2203/0055H04J2203/006H04J2203/0073
    • A control system for a communication network stores a plurality of fault recovery plans that are respectively associated with a plurality of links. The control system processes a first control signal from the communication network indicating that one of the links has a fault, and in response, identifies one of the fault recovery plans that is associated with the one link having the fault and implements the one fault recovery plan. The control system receives a second control signal from the communication network indicating network information, and in response, recalculates the fault recovery plans. The recalculated fault recovery plans implement link-based fault recovery, sub-path based fault recovery, and path-based fault recovery. The recalculated fault recovery plans group links constituents into groups by QoS requirements and assign the groups to back-up routes based on the QoS requirements and the performance of the back-up routes.
    • 用于通信网络的控制系统存储分别与多个链路相关联的多个故障恢复计划。 控制系统处理来自通信网络的第一控制信号,指示其中一个链路具有故障,并且作为响应,识别与具有故障的一个链路相关联的故障恢复计划之一并且实现一个故障恢复计划 。 控制系统从通信网络接收指示网络信息的第二控制信号,作为响应,重新计算故障恢复计划。 重新计算的故障恢复计划实现基于链路的故障恢复,基于子路径的故障恢复和基于路径的故障恢复。 重新计算的故障恢复方案组根据QoS要求将组成部分组成组,并根据QoS要求和备用路由的性能将组分配给备份路由。
    • 9. 发明授权
    • Communication network route tracing
    • 通信网络路由跟踪
    • US07843838B1
    • 2010-11-30
    • US11095833
    • 2005-03-31
    • Renxiang HuangIan M. WhiteJames J. Pan
    • Renxiang HuangIan M. WhiteJames J. Pan
    • H04L12/26
    • H04L41/0681H04L43/10
    • A method for tracing a communication route through a network coupling a first device with a second device is provided. A first signal is transferred from the first device to the second device to cause a plurality of intermediate devices to report first information concerning the first signal. The first information is processed to identify the intermediate devices as defining the communication route. The intermediate devices are configured so that a second signal, when transferred from the first device toward the second device, causes a subset of the intermediate devices to report second information concerning the second signal. The second signal is transferred from the first device toward the second device. The second information is processed to identify the subset of the intermediate devices as a portion of a sequence of the intermediate devices defining the communication route.
    • 提供了一种用于跟踪通过耦合第一设备与第二设备的网络的通信路由的方法。 第一信号从第一设备传送到第二设备,以使多个中间设备报告关于第一信号的第一信息。 处理第一信息以将中间设备识别为定义通信路由。 中间设备被配置为使得当从第一设备向第二设备传送时,第二信号使得中间设备的子集报告关于第二信号的第二信息。 第二信号从第一设备传送到第二设备。 处理第二信息以将中间设备的子集识别为定义通信路由的中间设备的序列的一部分。
    • 10. 发明授权
    • Network connection verification in optical communication networks
    • 光通信网络中的网络连接验证
    • US07623784B1
    • 2009-11-24
    • US10838798
    • 2004-05-04
    • James J. PanIan M. White
    • James J. PanIan M. White
    • H04B10/20
    • H04B10/07
    • A method and a communication system are disclosed for automatically verifying the identity of a network connection in an optical communication network. Each network component of the optical communication network stores an identification code. For the method, one step includes positioning a read system proximate to one of the network components. With the read system in the proper position, another step of the method includes reading the identification code stored on the network component. Another step of the method includes verifying the identity of a network connection based on the identification code read from the network component by the read system. Another step of the method includes indicating the results of the verification using the read system. Based on the results of the verification, a field technician may verify the identity of a network connection before connecting or disconnecting a fiber optic cable or otherwise handling the network component.
    • 公开了一种用于自动验证光通信网络中的网络连接的身份的方法和通信系统。 光通信网络的每个网络组件存储识别码。 对于该方法,一个步骤包括将读取系统定位成靠近一个网络组件。 在读取系统处于正确位置的情况下,该方法的另一步骤包括读取存储在网络组件上的识别码。 该方法的另一步骤包括基于从读取系统从网络组件读取的识别码来验证网络连接的身份。 该方法的另一步骤包括使用读取系统指示验证的结果。 基于验证结果,现场技术人员可以在连接或断开光纤电缆或以其他方式处理网络组件之前验证网络连接的身份。