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    • 104. 发明授权
    • Methods and systems to reroute data in a data network
    • 在数据网络中重新路由数据的方法和系统
    • US08547830B2
    • 2013-10-01
    • US13547474
    • 2012-07-12
    • William TaylorDavid MassengillJohn Hollingsworth
    • William TaylorDavid MassengillJohn Hollingsworth
    • H04L12/26
    • H04L49/557H04L41/0659H04L45/00H04L45/10H04L45/22H04L45/28H04L45/302H04L45/3065
    • A disclosed example method involves determining a first quality of service parameter associated with a failed logical circuit, and a second quality of service parameter associated with a logical failover circuit. When the first quality of service parameter is equal to or less than the second quality of service parameter, data from the failed logical circuit is rerouted to the logical failover circuit without requiring authorization from a customer to communicate the data at the second quality of service parameter. When the second quality of service parameter is a lower level of quality than the first quality of service parameter, the customer is prompted for authorization to communicate the data via the logical failover circuit at the second quality of service parameter. When authorization is received, the data is rerouted to the logical failover circuit. When authorization is denied, the data is not rerouted to the logical failover circuit.
    • 公开的示例性方法涉及确定与故障逻辑电路相关联的第一服务质量参数以及与逻辑故障转移电路相关联的第二服务质量参数。 当第一服务质量参数等于或小于第二服务质量参数时,来自故障逻辑电路的数据被重新路由到逻辑故障转移电路,而不需要客户授权以在第二服务质量参数 。 当第二服务质量参数比第一服务质量参数低的质量水平时,提示客户通过第二服务质量参数通过逻辑故障切换电路传送数据的授权。 当接收到授权时,将数据重新路由到逻辑故障转移电路。 当授权被拒绝时,数据不会重新路由到逻辑故障转移电路。
    • 107. 发明申请
    • METHODS AND SYSTEMS FOR AUTOMATICALLY IDENTIFYING A LOGICAL CIRCUIT FAILURE IN A DATA NETWORK
    • 用于自动识别数据网络中的逻辑电路故障的方法和系统
    • US20120224475A1
    • 2012-09-06
    • US13472244
    • 2012-05-15
    • William TaylorDavid MassengillJohn Hollingsworth
    • William TaylorDavid MassengillJohn Hollingsworth
    • H04L12/24H04L12/26
    • H04L43/0817H04L41/0233
    • A disclosed example method to identify a failure in a logical circuit involves receiving non-requested trap data from a plurality of switches forming a logical circuit. The logical circuit spans first, second, and third logical networks. The example method also involves polling first and second switches of the logical circuit exclusive of others of the plurality of switches of the logical circuit. The first switch forms a first network-to-network interface between the first logical network and the second logical network. The second switch forms a second network-to-network interface between the second logical network and the third logical network. The first and second switches are selected for polling based on the trap data indicating a problem at the first and second switches. The example method also involves identifying a failure of the logical circuit without manual intervention based on the polling.
    • 用于识别逻辑电路中的故障的公开示例方法涉及从形成逻辑电路的多个开关接收未请求的陷阱数据。 逻辑电路跨越第一,第二和第三逻辑网络。 该示例性方法还涉及轮询逻辑电路的第一和第二开关,而不是逻辑电路的多个开关中的其他开关。 第一交换机在第一逻辑网络和第二逻辑网络之间形成第一网络到网络接口。 第二交换机在第二逻辑网络和第三逻辑网络之间形成第二网络到网络接口。 基于指示第一和第二开关处的问题的陷阱数据,选择第一和第二开关进行轮询。 该示例方法还涉及基于轮询来识别逻辑电路的故障而无需手动干预。
    • 108. 发明授权
    • Method and system for prioritized rerouting of logical circuit data in a data network
    • 数据网络中逻辑电路数据优先重路由的方法和系统
    • US08223632B2
    • 2012-07-17
    • US10744555
    • 2003-12-23
    • William TaylorDavid MassengillJohn Hollingsworth
    • William TaylorDavid MassengillJohn Hollingsworth
    • H04L12/26
    • H04L49/557H04L41/0659H04L45/00H04L45/10H04L45/22H04L45/28H04L45/302H04L45/3065
    • A method and system are provided for prioritized rerouting of logical circuit data in a data network. A logical circuit failure is identified in the data network. Following the identification of the logical circuit failure, a quality of service parameter for the communication of data in the failed logical circuit is determined. The quality of service parameter may include a traffic descriptor indicating the quality of the data communicated in the logical circuit. Then, a logical failover circuit comprising an alternate communication path for communicating the data in the failed logical circuit is identified. Next, a quality of service parameter for the communication of data in the logical failover circuit is determined. If the quality of service parameter for the failed logical circuit is equal to the quality of service parameter for the logical failover circuit, then the data from the failed logical circuit is rerouted to the logical failover circuit. In this manner, the quality of the data in the logical failover circuit is communicated at the same level of service provisioned for the failed logical circuit.
    • 提供了一种用于在数据网络中优先重新路由逻辑电路数据的方法和系统。 逻辑电路故障在数据网络中被识别。 在逻辑电路故障的识别之后,确定故障逻辑电路中的数据通信的服务质量参数。 服务质量参数可以包括指示在逻辑电路中传送的数据的质量的业务描述符。 然后,识别包括用于在故障逻辑电路中传送数据的备用通信路径的逻辑故障转移电路。 接下来,确定逻辑故障切换电路中的数据通信的服务质量参数。 如果故障逻辑电路的服务质量参数等于逻辑故障转移电路的服务质量参数,则将故障逻辑电路的数据重新路由到逻辑故障转移电路。 以这种方式,逻辑故障转移电路中的数据的质量在为故障逻辑电路提供的相同服务级别上传送。
    • 109. 发明申请
    • ANIMAL POWER GENERATOR
    • 动物发电机
    • US20110266091A1
    • 2011-11-03
    • US12921394
    • 2009-03-09
    • William Taylor
    • William Taylor
    • F03G5/02
    • F03G7/04
    • A treadmill power generator (10) comprises an upwardly inclined treadmill (2) having an entry end (16c) and a feed end (16b). A belt constitutes the treadmill and rotates around rollers (8,12). Side barriers (16a) prevent an animal on the belt from exiting the treadmill sideways. A releasable brake holds the belt in a fixed position. A detector (22) detects the head of an animal entering the feed end (16b) and releases the brake, whereby the animal must continue to walk in order for its head to remain at the feed end. Its walking drives the belt and rotates the roller against the resistance of a generator (50) to generate electricity, or other farm equipment mechanical or hydraulic load.
    • 跑步机发电机(10)包括具有入口端(16c)和进给端(16b)的向上倾斜的跑步机(2)。 皮带构成跑步机并围绕辊子(8,12)旋转。 侧障碍物(16a)防止皮带上的动物侧向离开跑步机。 可释放的制动器将带固定在固定位置。 检测器(22)检测进入进给端(16b)的动物的头部并释放制动器,由此动物必须继续行走以使其头保持在进给端。 其行走驱动皮带并使滚子抵抗发电机(50)的电阻转动,以产生电力或其他农业设备的机械或液压负载。