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    • 1. 发明授权
    • Ingress traffic flow control in a data communications system
    • 数据通信系统中的入口流量控制
    • US08130649B2
    • 2012-03-06
    • US11907871
    • 2007-10-18
    • John MadsenJoey ChowDion Pike
    • John MadsenJoey ChowDion Pike
    • G01R31/08G06F11/00
    • H04L47/10H04L47/2441H04L47/263H04L47/29
    • Embodiments of the invention provide flow control of incoming data packets to data processing resources via a controller that can receive and react to advanced backpressure messages. These advanced backpressure messages are used to rate limit the data packets based one or more of the following factors: traffic class, traffic priority, destination port. The controller can also generate a traffic preference message to an upstream source of the data packets to inform the upstream unit of the most appropriate type of data that should be transmitted downstream at that time, thereby improving the likelihood of the transmitted data being processed in a proper and timely manner by the downstream data processing resources. Embodiments of the invention can improve the performance of a communications system during periods of congestion by ensuring that high-priority traffic has precedence over traffic of lower priority while maximizing utilization of the ingress data path bandwidth.
    • 本发明的实施例提供了通过可以接收并对高级背压消息做出反应的控制器将输入数据分组流控制到数据处理资源。 这些高级背压消息用于基于以下一个或多个因素来对数据分组进行速率限制:流量类别,流量优先级,目的端口。 控制器还可以向数据分组的上游源生成流量优先消息,以向上游单元通知应该在该时间向下游发送的最合适类型的数据,从而提高所发送的数据在 适时及时地通过下游资料处理资源。 本发明的实施例可以通过确保高优先级流量优先于较低优先级的业务,同时最大限度地利用入口数据路径带宽来改善通信系统在拥塞期间的性能。
    • 2. 发明申请
    • Ingress traffic flow control in a data communications system
    • 数据通信系统中的入口流量控制
    • US20090103434A1
    • 2009-04-23
    • US11907871
    • 2007-10-18
    • John MadsenJoey ChowDion Pike
    • John MadsenJoey ChowDion Pike
    • H04J1/16
    • H04L47/10H04L47/2441H04L47/263H04L47/29
    • Embodiments of the invention provide flow control of incoming data packets to data processing resources via a controller that can receive and react to advanced backpressure messages. These advanced backpressure messages are used to rate limit the data packets based one or more of the following factors: traffic class, traffic priority, destination port. The controller can also generate a traffic preference message to an upstream source of the data packets to inform the upstream unit of the most appropriate type of data that should be transmitted downstream at that time, thereby improving the likelihood of the transmitted data being processed in a proper and timely manner by the downstream data processing resources. Embodiments of the invention can improve the performance of a communications system during periods of congestion by ensuring that high-priority traffic has precedence over traffic of lower priority while maximizing utilization of the ingress data path bandwidth.
    • 本发明的实施例提供了通过可以接收并对高级背压消息做出反应的控制器将输入数据分组流控制到数据处理资源。 这些高级背压消息用于基于以下一个或多个因素来对数据分组进行速率限制:流量类别,流量优先级,目的端口。 控制器还可以向数据分组的上游源生成流量优先消息,以向上游单元通知应该在该时间向下游发送的最合适类型的数据,从而提高所发送的数据在 适时及时地通过下游资料处理资源。 本发明的实施例可以通过确保高优先级流量优先于较低优先级的业务,同时最大限度地利用入口数据路径带宽来改善通信系统在拥塞期间的性能。
    • 4. 发明申请
    • INGRESS TRAFFIC FLOW CONTROL IN A DATA COMMUNICATIONS SYSTEM
    • 数据通信系统中的吞吐量流量控制
    • US20120127862A1
    • 2012-05-24
    • US13360310
    • 2012-01-27
    • John MadsenJoey ChowDion Pike
    • John MadsenJoey ChowDion Pike
    • H04L12/26
    • H04L47/10H04L47/2441H04L47/263H04L47/29
    • Embodiments of the invention provide flow control of incoming data packets to data processing resources via a controller that can receive and react to advanced backpressure messages. These advanced backpressure messages are used to rate limit the data packets based one or more of the following factors: traffic class, traffic priority, destination port. The controller can also generate a traffic preference message to an upstream source of the data packets to inform the upstream unit of the most appropriate type of data that should be transmitted downstream at that time, thereby improving the likelihood of the transmitted data being processed in a proper and timely manner by the downstream data processing resources. Embodiments of the invention can improve the performance of a communications system during periods of congestion by ensuring that high-priority traffic has precedence over traffic of lower priority while maximizing utilization of the ingress data path bandwidth.
    • 本发明的实施例提供了通过可以接收并对高级背压消息做出反应的控制器将输入数据分组流控制到数据处理资源。 这些高级背压消息用于基于以下一个或多个因素来对数据分组进行速率限制:流量类别,流量优先级,目的端口。 控制器还可以向数据分组的上游源生成流量优先消息,以向上游单元通知应该在该时间向下游发送的最合适类型的数据,从而提高发送的数据在 适时及时地通过下游资料处理资源。 本发明的实施例可以通过确保高优先级流量优先于较低优先级的业务,同时最大限度地利用入口数据路径带宽来改善通信系统在拥塞期间的性能。
    • 5. 发明申请
    • Configurable chassis guidance system and method
    • 可配置的底盘引导系统和方法
    • US20070086175A1
    • 2007-04-19
    • US11437965
    • 2006-05-19
    • Simon DavisMark MegarityJoey ChowDion Pike
    • Simon DavisMark MegarityJoey ChowDion Pike
    • H05K7/14H05K1/00
    • H05K7/1435H05K7/186
    • A configurable chassis guidance system and method are described. The system may be practiced as a chassis and/or a module or an element thereof (e.g., a mating guide). The system and method allow reconfiguration of multiple modules of various module widths without the need for removal or reinstallation of module guides mounted on the chassis. As an example, a single-width module may be removed and replaced by a double-width module or quadruple-width module without removing module guides used to engage the single-width module. As another example, a double-width module or quadruple-width module may be removed and replaced by a single-width module without removing module guides used to engage the double-width module or quadruple-width module. The system and method may be practiced so as not to impair compatibility of modules with card edge module guides that engage an edge of a circuit board of a module.
    • 描述了可配置的底盘引导系统和方法。 该系统可以实现为底盘和/或模块或其元件(例如,配合引导件)。 该系统和方法允许重新配置各种模块宽度的多个模块,而无需拆卸或重新安装安装在机箱上的模块导板。 作为示例,单宽模块可以被移除并由双宽度模块或四倍宽度模块代替,而不去除用于接合单宽度模块的模块引导件。 作为另一示例,双宽度模块或四倍宽度模块可以被移除并由单宽度模块代替,而不去除用于接合双宽度模块或四倍宽度模块的模块引导件。 该系统和方法可以被实践为不损害与接合模块的电路板的边缘的卡边缘模块引导件的模块的兼容性。