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    • 1. 发明申请
    • TEN GIGABIT ETHERNET PORT PROTECTION SYSTEMS AND METHODS
    • 十个GIGABIT以太网端口保护系统和方法
    • US20120092985A1
    • 2012-04-19
    • US12907165
    • 2010-10-19
    • Ross CairdMichael WatfordOnder YazarMarc Holness
    • Ross CairdMichael WatfordOnder YazarMarc Holness
    • G06F11/00
    • H04L45/22H04L41/0213H04L41/0663H04L43/0811H04L45/245H04L45/28Y02D50/30
    • The present disclosure provides protection systems and methods for Ethernet ports. In particular, the present invention may provide a form of facility protection for any two facilities, located on any two cards. The facilities are provisioned as a protected pair and using automatic ITU-T Y.1731 control frames for control. In an exemplary embodiment, provisioning includes creation of an L2 protection service and associating it to a pair of facilities. One facility is identified as a working facility and the other as a protection facility. Under normal conditions (i.e., no facility fault), the working facility is in an active state and not conditioning while the protection facility is in a standby state and transmitting conditioning to subtending equipment. If a facility fault is detected at the working facility, then the working facility transmits condition Remote Fault (RF) and the protection facility removes it's transmit conditioning and becomes the active facility.
    • 本公开提供了用于以太网端口的保护系统和方法。 特别地,本发明可以为位于任何两张卡上的任何两个设施提供一种设施保护形式。 这些设施被配置为受保护对,并使用自动的ITU-T Y.1731控制帧进行控制。 在示例性实施例中,供应包括创建L2保护服务并将其与一对设施相关联。 一个设施被确定为工作设施,另一个设施被确定为保护设施。 在正常情况下(即没有设备故障),工作设备处于活动状态,而不是在保护设备处于待机状态时进行调理,并且将调理传送到对准设备。 如果在工作场所检测到设备故障,则工作设备传送条件远程故障(RF),保护设备将其发送调理移除,成为主动设备。
    • 2. 发明授权
    • Ten gigabit Ethernet port protection systems and methods
    • 十个千兆以太网端口保护系统和方法
    • US08787147B2
    • 2014-07-22
    • US12907165
    • 2010-10-19
    • Ross CairdMichael WatfordOnder YazarMarc Holness
    • Ross CairdMichael WatfordOnder YazarMarc Holness
    • H04L12/437
    • H04L45/22H04L41/0213H04L41/0663H04L43/0811H04L45/245H04L45/28Y02D50/30
    • The present disclosure provides protection systems and methods for Ethernet ports. In particular, the present invention may provide a form of facility protection for any two facilities, located on any two cards. The facilities are provisioned as a protected pair and using automatic ITU-T Y.1731 control frames for control. In an exemplary embodiment, provisioning includes creation of an L2 protection service and associating it to a pair of facilities. One facility is identified as a working facility and the other as a protection facility. Under normal conditions (i.e., no facility fault), the working facility is in an active state and not conditioning while the protection facility is in a standby state and transmitting conditioning to subtending equipment. If a facility fault is detected at the working facility, then the working facility transmits condition Remote Fault (RF) and the protection facility removes it's transmit conditioning and becomes the active facility.
    • 本公开提供了用于以太网端口的保护系统和方法。 特别地,本发明可以为位于任何两张卡上的任何两个设施提供一种设施保护形式。 这些设施被配置为受保护对,并使用自动的ITU-T Y.1731控制帧进行控制。 在示例性实施例中,供应包括创建L2保护服务并将其与一对设施相关联。 一个设施被确定为工作设施,另一个设施被确定为保护设施。 在正常情况下(即没有设备故障),工作设备处于活动状态,而不是在保护设备处于待机状态时进行调理,并且将调理传送到对准设备。 如果在工作场所检测到设备故障,则工作设备传送条件远程故障(RF),保护设备将其发送调理移除,成为主动设备。
    • 6. 发明授权
    • Video transmission systems and methods over carrier ethernet
    • 视频传输系统和方法在运营商以太网上
    • US08667374B2
    • 2014-03-04
    • US13300944
    • 2011-11-21
    • Michael WatfordRoss Caird
    • Michael WatfordRoss Caird
    • H03M13/00
    • H04L1/08H03M13/373H03M13/6547H04L1/0041
    • The present disclosure provides video transmission systems and methods with video data flows transmitted over a Carrier Ethernet Network at Layer 2 with redundancy in order to provide hitless protection switching and uninterrupted video service delivery, such as during periods of asymmetric congestion or hard network failures. In an exemplary embodiment, the video transmission systems and methods provide the redundancy in a manner similar to 1+1 linear protection with hit-less protection switching. In another exemplary embodiment, the video transmission systems and methods provide encapsulated video signals over Ethernet using standardized Carrier Ethernet frames with additional sequencing information. Optionally, the video transmission systems and methods may also include packet-based forward error correction information for additional resiliency. These video transmission systems and methods provide uninterrupted and error-free video during broadcast despite network events such as fiber breaks, equipment failures, congestion, etc.
    • 本公开提供了具有在具有冗余的第2层上的运营商以太网网络上传输的视频数据流的视频传输系统和方法,以便提供无中断的保护切换和不间断的视频服务传递,例如在非对称拥塞或硬网络故障期间。 在示例性实施例中,视频传输系统和方法以类似于1 + 1线性保护的方式提供冗余,具有无命中保护切换。 在另一示例性实施例中,视频传输系统和方法使用具有附加排序信息的标准化载波以太网帧在以太网上提供封装视频信号。 可选地,视频传输系统和方法还可以包括用于附加弹性的基于分组的前向纠错信息。 这些视频传输系统和方法在广播期间提供不间断和无差错的视频,尽管诸如光纤断裂,设备故障,拥塞等网络事件。
    • 7. 发明授权
    • Protection switching with transmitter compensation function
    • 带变送器补偿功能的保护开关
    • US08160453B1
    • 2012-04-17
    • US11392908
    • 2006-03-30
    • James HarleyGerard SwinkelsMichael Watford
    • James HarleyGerard SwinkelsMichael Watford
    • H04B10/04
    • H04B10/0775H04B10/032H04B10/0777H04B2210/254
    • A method of protection switching between first and second transceivers where dispersion compensation is effected electrically in the transmitters. The method includes detecting, at the second transceiver, a signal failure of a signal transmitted from the first transceiver and, upon detecting the signal failure, signalling the first transceiver to change its compensation function. The signalling can be done by encoding overhead bits in a signal transmitted from the second to the first transceiver. Another method of protection switching includes both transceivers toggling alternate reception paths upon detecting a signal failure and changing their dispersion compensation function to that of their respective alternate path.
    • 一种保护在第一和第二收发器之间切换的方法,其中色散补偿在发射机中进行电气化。 该方法包括在第二收发器处检测从第一收发器发送的信号的信号故障,并且在检测到信号故障时,发信号通知第一收发器改变其补偿功能。 可以通过对从第二收发器发送的信号中的开销比特进行编码来完成信令。 保护切换的另一种方法包括两个收发器在检测到信号故障时切换交替接收路径,并将它们的色散补偿功能改变为它们各自的备选路径的方法。
    • 8. 发明授权
    • Protection switching with transmitter compensation function
    • 带变送器补偿功能的保护开关
    • US08682179B1
    • 2014-03-25
    • US13446278
    • 2012-04-13
    • James HarleyGerard SwinkelsMichael Watford
    • James HarleyGerard SwinkelsMichael Watford
    • H04B10/077
    • H04B10/0775H04B10/032H04B10/0777H04B2210/254
    • A method of protection switching between first and second transceivers where dispersion compensation is effected electrically in the transmitters. The method includes detecting, at the second transceiver, a signal failure of a signal transmitted from the first transceiver and, upon detecting the signal failure, signalling the first transceiver to change its compensation function. The signalling can be done by encoding overhead bits in a signal transmitted from the second to the first transceiver. Another method of protection switching includes both transceivers toggling alternate reception paths upon detecting a signal failure and changing their dispersion compensation function to that of their respective alternate path.
    • 一种保护在第一和第二收发器之间切换的方法,其中色散补偿在发射机中进行电气化。 该方法包括在第二收发器处检测从第一收发器发送的信号的信号故障,并且在检测到信号故障时,发信号通知第一收发器改变其补偿功能。 可以通过对从第二收发器发送的信号中的开销比特进行编码来完成信令。 保护切换的另一种方法包括两个收发器在检测到信号故障时切换交替接收路径,并将它们的色散补偿功能改变为它们各自的备选路径的方法。
    • 9. 发明授权
    • Method and system for synchronous high speed Ethernet GFP mapping over an optical transport network
    • 通过光传输网络同步高速以太网GFP映射的方法和系统
    • US07873073B2
    • 2011-01-18
    • US12037514
    • 2008-02-26
    • Edward FrlanMichael Watford
    • Edward FrlanMichael Watford
    • H04J3/06
    • H04J3/1658H04J3/0673H04J3/0688H04L12/2885
    • An interworking device, method and system distribute reference timing between at least two communication networks. The interworking device includes a first communication interface operable to communicate with a first communication network operating using a first communication protocol and a second communication interface operable to communicate with a second communication network operating using a second communication protocol. The interworking device also includes a client generic framing procedure/optical transport network (“GFP/OTN”) mapping block in communication with the first communication interface and the second communication interface. The client GFP/OTN mapping block recovers a first reference timing signal from data received from the first communication network. At least one hybrid synchronous equipment timing source transforms the first reference timing signal into a second reference timing signal that is phase and frequency locked to the first reference timing signal, and supplies the second reference timing signal to the client GFP/OTN mapping block to clock the second communication network.
    • 交互设备,方法和系统在至少两个通信网络之间分配参考定时。 交互设备包括可操作以与使用第一通信协议操作的第一通信网络通信的第一通信接口和可操作以与使用第二通信协议操作的第二通信网络进行通信的第二通信接口。 互通设备还包括与第一通信接口和第二通信接口通信的客户端通用成帧过程/光传输网络(“GFP / OTN”)映射块。 客户端GFP / OTN映射块从第一通信网络接收的数据中恢复第一参考定时信号。 至少一个混合同步设备定时源将第一参考定时信号变换成第二参考定时信号,该第二参考定时信号被相位和频率锁定到第一参考定时信号,并将第二参考定时信号提供给客户端GFP / OTN映射块到时钟 第二个通信网络。