会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Systems and methods for scaling DSLAM deployments
    • 用于缩放DSLAM部署的系统和方法
    • US09332327B2
    • 2016-05-03
    • US13434801
    • 2012-03-29
    • Kevin W. SchneiderArlynn Wayne Wilson
    • Kevin W. SchneiderArlynn Wayne Wilson
    • H04Q11/04H04M11/06
    • H04Q11/04H04M11/062H04Q2213/13003H04Q2213/13039H04Q2213/13298
    • A system for scaling vectored DSLAM deployments has a DSLAM interfaced with a cross-connect apparatus. The DSLAM receives POTS signals from at least one bridge connection assembly. When a DSLAM is added at the cross-connect facility, at least one connector of the bridge connection assembly is disconnected from an existing DSLAM and is interfaced with the newly-added DSLAM. By moving the connector to the newly-added DSLAM, a batch of downstream distribution pairs (which are preferably bound by a single distribution cable) are effectively moved from the existing DSLAM to the new DSLAM without having to reconfigure the jumpers of the cross-connect apparatus. Accordingly, it is possible to scale the cross-connect facility to any number of vectored DSLAMs while limiting vector group sizes, thereby reducing the complexity of vectoring operations, without having to perform complex reconfigurations of the cross-connect apparatus.
    • 用于缩放矢量DSLAM部署的系统具有与交叉连接装置接口的DSLAM。 DSLAM从至少一个桥连接组件接收POTS信号。 当在交叉连接设施中添加DSLAM时,桥接器连接组件的至少一个连接器与现有的DSLAM断开连接,并且与新添加的DSLAM接口。 通过将连接器移动到新添加的DSLAM,一批下游分发对(其优选地由单个分配电缆绑定)被有效地从现有DSLAM移动到新的DSLAM,而不必重新配置交叉连接的跳线 仪器。 因此,可以将交叉连接设施扩展到任何数量的向量DSLAM,同时限制向量组大小,从而降低矢量化操作的复杂性,而不必执行交叉连接设备的复杂重新配置。
    • 2. 发明授权
    • Systems and methods for moving DSL launch points
    • 移动DSL发射点的系统和方法
    • US09247328B2
    • 2016-01-26
    • US13434808
    • 2012-03-29
    • Kevin W. SchneiderArlynn Wayne Wilson
    • Kevin W. SchneiderArlynn Wayne Wilson
    • H04Q11/04H04M11/06
    • H04Q11/04H04M11/062H04Q2213/13003H04Q2213/13039H04Q2213/13298
    • A system for scaling vectored DSLAM deployments has a DSLAM interfaced with a cross-connect apparatus. The DSLAM receives POTS signals from at least one bridge connection assembly. When a DSLAM is added at the cross-connect facility, at least one connector of the bridge connection assembly is disconnected from an existing DSLAM and is interfaced with the newly-added DSLAM. By moving the connector to the newly-added DSLAM, a batch of downstream distribution pairs (which are preferably bound by a single distribution cable) are effectively moved from the existing DSLAM to the new DSLAM without having to reconfigure the jumpers of the cross-connect apparatus. Accordingly, it is possible to scale the cross-connect facility to any number of vectored DSLAMs while limiting vector group sizes, thereby reducing the complexity of vectoring operations, without having to perform complex reconfigurations of the cross-connect apparatus.
    • 用于缩放矢量DSLAM部署的系统具有与交叉连接装置接口的DSLAM。 DSLAM从至少一个桥连接组件接收POTS信号。 当在交叉连接设施中添加DSLAM时,桥接器连接组件的至少一个连接器与现有的DSLAM断开连接,并且与新添加的DSLAM接口。 通过将连接器移动到新添加的DSLAM,一批下游分发对(其优选地由单个分配电缆绑定)被有效地从现有DSLAM移动到新的DSLAM,而不必重新配置交叉连接的跳线 仪器。 因此,可以将交叉连接设施扩展到任何数量的向量DSLAM,同时限制向量组大小,从而降低矢量化操作的复杂性,而不必执行交叉连接设备的复杂重新配置。
    • 6. 发明申请
    • SYSTEMS AND METHODS FOR MOVING DSL LAUNCH POINTS
    • 移动DSL启动点的系统和方法
    • US20120250492A1
    • 2012-10-04
    • US13434808
    • 2012-03-29
    • Kevin W. SchneiderArlynn Wayne Wilson
    • Kevin W. SchneiderArlynn Wayne Wilson
    • H04J3/10
    • H04Q11/04H04M11/062H04Q2213/13003H04Q2213/13039H04Q2213/13298
    • A system for scaling vectored DSLAM deployments has a DSLAM interfaced with a cross-connect apparatus. The DSLAM receives POTS signals from at least one bridge connection assembly. When a DSLAM is added at the cross-connect facility, at least one connector of the bridge connection assembly is disconnected from an existing DSLAM and is interfaced with the newly-added DSLAM. By moving the connector to the newly-added DSLAM, a batch of downstream distribution pairs (which are preferably bound by a single distribution cable) are effectively moved from the existing DSLAM to the new DSLAM without having to reconfigure the jumpers of the cross-connect apparatus. Accordingly, it is possible to scale the cross-connect facility to any number of vectored DSLAMs while limiting vector group sizes, thereby reducing the complexity of vectoring operations, without having to perform complex reconfigurations of the cross-connect apparatus.
    • 用于缩放矢量DSLAM部署的系统具有与交叉连接装置接口的DSLAM。 DSLAM从至少一个桥连接组件接收POTS信号。 当在交叉连接设施中添加DSLAM时,桥接器连接组件的至少一个连接器与现有的DSLAM断开连接,并且与新添加的DSLAM接口。 通过将连接器移动到新添加的DSLAM,一批下游分发对(其优选地由单个分配电缆绑定)被有效地从现有DSLAM移动到新的DSLAM,而不必重新配置交叉连接的跳线 仪器。 因此,可以将交叉连接设施扩展到任何数量的向量DSLAM,同时限制向量组大小,从而降低矢量化操作的复杂性,而不必执行交叉连接设备的复杂重新配置。
    • 7. 发明申请
    • SYSTEMS AND METHODS FOR HANDLING CROSSTALK VECTORING FAILURES IN MULTI-CARD VECTORING GROUPS
    • 用于处理多卡片组合中的波形变形失真的系统和方法
    • US20120224674A1
    • 2012-09-06
    • US13411053
    • 2012-03-02
    • Richard GoodsonArlynn Wayne WilsonFred Chu
    • Richard GoodsonArlynn Wayne WilsonFred Chu
    • H04M9/08H04M3/22
    • H04M3/18H04B3/32H04L27/2601H04L2012/5675H04M3/306H04M3/34H04W24/02
    • A communication system comprises a plurality of line cards having transceivers coupled to a plurality of subscriber lines. Each line card has at least one active transceiver within the same vectoring group, and each line card also has vector logic capable of cancelling crosstalk induced by an active transceiver that is a member of the vectoring group. In the event of a vectoring fault that prevents a line card from receiving vectoring information from at least on other line card, the vector logic is configured to disable vectoring for the interferers affected by the error in order to prevent vectoring operations based on obsolete vectoring coefficients from adversely affecting the quality of the communicated signals. The transceivers communicating signals affected by the suspended vectoring operations are also configured to adjust their constellation density profiles, thereby reducing their data rates, to accommodate the increased noise level resulting from the loss of vectoring. By handling the vectoring fault in such manner, communication can continue without requiring a retrain.
    • 通信系统包括具有耦合到多个用户线的收发器的多个线路卡。 每个线路卡在相同的向量组内具有至少一个有源收发信机,并且每个线路卡还具有能够消除由作为向量组的成员的有源收发信机所引起的串扰的向量逻辑。 在矢量故障的情况下,阻止线卡从至少在其他线路卡上接收矢量信息,向量逻辑被配置为禁止受该误差影响的干扰源的矢量化,以便防止基于过时向量系数的矢量化操作 从不利地影响通信信号的质量。 传送受暂停引导操作影响的信号的收发信机也被配置为调整其星座密度分布,从而降低其数据速率,以适应由矢量化损失引起的增加的噪声电平。 通过以这种方式处理向量故障,通信可以继续而不需要重新训练。
    • 8. 发明授权
    • Systems and methods for mitigating radio frequency interference
    • 减轻射频干扰的系统和方法
    • US08855177B1
    • 2014-10-07
    • US12950377
    • 2010-11-19
    • Arlynn Wayne WilsonKent E. DarziPhilip David Williams
    • Arlynn Wayne WilsonKent E. DarziPhilip David Williams
    • H04B1/38
    • H04B3/32
    • Embodiments of the present disclosure generally pertain to systems and methods for reducing RF interference in communication systems. A communication system in accordance with an exemplary embodiment of the present disclosure comprises an element management system (EMS) communicating through a network with a plurality of network access devices. The EMS is configured to manage at least one network access device such that the device refrains from communicating data or reduces a data rate within a frequency range of a nearby interferer during time periods when interfering activity of the interferer is increased. Accordingly, the effects of RF interference for signals communicated by the device is reduced and degradation of service is prevented to an extent.
    • 本公开的实施例通常涉及用于减少通信系统中的RF干扰的系统和方法。 根据本公开的示例性实施例的通信系统包括通过网络与多个网络接入设备通信的元件管理系统(EMS)。 EMS被配置为管理至少一个网络接入设备,使得该设备在干扰源的干扰活动增加的时间段内避免通信数据或降低附近干扰源的频率范围内的数据速率。 因此,减少了由设备传送的信号的RF干扰的影响,并且在一定程度上防止了服务的劣化。