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    • 3. 发明授权
    • Data network with aggregate flow monitoring
    • 具有汇总流量监控的数据网络
    • US08817622B1
    • 2014-08-26
    • US13533034
    • 2012-06-26
    • David A. MillerDaniel E. Mazuk
    • David A. MillerDaniel E. Mazuk
    • H04J1/16H04L12/28
    • H04L49/351H04L12/413H04L49/206H04L49/254
    • Each switch of the data network includes a number of switch ingress ports for receiving arrival data flow. An aggregate flow monitor is operatively associated with each ingress port for monitoring the aggregate arrival data flow in defined traffic constraint envelopes containing frames. An eligibility time computation mechanism computes an eligibility time at which arriving frames to an ingress port will be conformant to the defined traffic envelope to the ingress port given past frame arrivals. A holding mechanism holds the arriving frames to the ingress port until the eligibility time is reached. A release mechanism releases the arriving frames for forwarding at the eligibility time. The aggregate flow monitor, the eligibility time computation mechanism, the holding mechanism, and the release mechanism cooperate to provide an aggregate traffic shaping function, thus allowing the switch to enforce the traffic constraint envelope for each ingress port.
    • 数据网络的每个交换机包括多个用于接收到达数据流的交换机入口端口。 聚合流量监视器与每个入口端口可操作地相关联,用于监视包含帧的定义的业务约束信封中的聚合到达数据流。 资格时间计算机制计算到达入口端的到达帧将符合给定过去帧到达的入口端口的定义的业务信封的资格时间。 保持机构将到达的帧保存到入口端口,直到达到资格时间。 释放机制在合格时间内释放到达的框架进行转发。 汇总流监视器,资格时间计算机制,保持机制和释放机制协作提供聚合流量整形功能,从而允许交换机为每个入口端口强制实施流量约束包络。
    • 6. 发明授权
    • Data network with “per flow” flow monitoring
    • 数据网络采用“每流”流量监控
    • US08958297B1
    • 2015-02-17
    • US13533572
    • 2012-06-26
    • David A. MillerDaniel E. Mazuk
    • David A. MillerDaniel E. Mazuk
    • H04L12/815
    • H04L47/564H04L47/215H04L47/22H04L49/3018
    • A ‘per flow’ flow monitor is operatively associated with each ingress port of the switch of the data network, for monitoring the arrival data flow on each flow in defined traffic constraint envelopes containing frames. An eligibility time computation mechanism computes an eligibility time at which arriving frames on each flow will be conformant to the defined traffic envelope to the ingress port given past frame arrivals on that same flow. A holding mechanism holds the arriving frames on each flow until the eligibility time is reached. A release mechanism releases the arriving frames on a flow at the eligibility time. The flow monitor, computation mechanism, holding mechanism, and release mechanism cooperate to provide an ‘per flow’ traffic shaping function in conformance with delay and delay-jitter bound, frame loss probability, and bandwidth provisioning requirements, thus allowing the switch to enforce the traffic constraint envelope for each flow.
    • “每流”流量监视器与数据网络的交换机的每个入口端口可操作地相关联,用于监视包含帧的定义的业务约束包络中的每个流的到达数据流。 资格时间计算机制计算出每个流程上的到达帧将符合定义的流量包络的资格时间,以确定给定过去帧流到同一流程的入口端口。 保持机构将到达的帧保持在每个流程上,直到达到资格时间。 释放机制在合格时间内将流动的框架释放。 流量监测器,计算机制,保持机制和释放机制协同提供符合延迟抖动约束,帧丢失概率和带宽配置要求的“每流”流量整形功能,从而允许交换机强制执行 每个流量的流量约束包络。
    • 7. 发明授权
    • Passive optical avionics network
    • 被动光电航空网络
    • US08078055B1
    • 2011-12-13
    • US12151249
    • 2008-05-05
    • Daniel E. MazukPeter J. MorganDavid A. MillerNicholas H. BloomMark A. Kovalan
    • Daniel E. MazukPeter J. MorganDavid A. MillerNicholas H. BloomMark A. Kovalan
    • H04B10/20
    • H04B10/272
    • The present disclosure is directed to a passive optical avionics network system and method.A passive avionics network may comprise: (a) an optical line terminal (OLT); (b) at least one optical network unit (ONU); (c) a fiber optic bus operably coupling the OLT and the ONU; and (d) an avionics module operably coupled to the ONU.An integrated modular avionics (IMA) system may comprise: (a) a line-replaceable unit (LRU), the LRU comprising: (i) a processing unit; and (ii) an optical line terminal (OLT); (b) at least one optical network unit (ONU); (c) a fiber optic bus operably coupling the LRU and the ONU; and (d) an avionics module operably coupled to the ONU.A method for avionics network communication may comprise: (a) providing avionics data; (b) transmitting the avionics data via a fiber optic network; (c) receiving the avionics data; and (d) controlling functionality of an avionics module according to the avionics data.
    • 本公开涉及无源光学航空电子网络系统和方法。 被动航空电子网络可以包括:(a)光线路终端(OLT); (b)至少一个光网络单元(ONU); (c)可操作地耦合OLT和ONU的光纤总线; 和(d)可操作地耦合到所述ONU的航空电子模块。 集成模块化航空电子(IMA)系统可以包括:(a)线路可替换单元(LRU),所述LRU包括:(i)处理单元; 和(ii)光线路终端(OLT); (b)至少一个光网络单元(ONU); (c)可操作地耦合LRU和ONU的光纤总线; 和(d)可操作地耦合到所述ONU的航空电子模块。 航空电子网络通信的方法可以包括:(a)提供航空电子数据; (b)通过光纤网络发送航空电子数据; (c)接收航空电子数据; 以及(d)根据航空电子数据来控制航空电子模块的功能。
    • 9. 发明授权
    • Passive optical avionics network including optical repeater
    • 无源光学航空电子网络,包括光中继器
    • US08306421B1
    • 2012-11-06
    • US12220014
    • 2008-07-21
    • Daniel E. MazukDavid A. MillerMark A. Kovalan
    • Daniel E. MazukDavid A. MillerMark A. Kovalan
    • H04B10/20
    • H04B10/272H04B10/0793
    • The present disclosure is directed to a passive optical avionics network system and method.A avionics network system may comprise: (a) a passive optical network, the passive optical network comprising an optical repeater; and (b) an avionics module operably coupled to the passive optical network.An integrated modular avionics (IMA) system may comprise: (a) a line-replaceable unit (LRU), the LRU comprising: (i) a processing unit; and (ii) an optical line terminal (OLT); (b) an optical repeater; (c) at least one optical network unit (ONU); and an avionics module operably coupled to the at least one ONU.A method for avionics network communication may comprise: (a) receiving optical avionics data signals; (b) monitoring the optical avionics data signals for compliance with a communications protocol; and (c) regulating transmission of the optical avionics data signals according to compliance with the communications protocol.
    • 本公开涉及无源光学航空电子网络系统和方法。 航空电子网络系统可以包括:(a)无源光网络,所述无源光网络包括光中继器; 和(b)可操作地耦合到无源光网络的航空电子模块。 集成模块化航空电子(IMA)系统可以包括:(a)线路可替换单元(LRU),所述LRU包括:(i)处理单元; 和(ii)光线路终端(OLT); (b)光中继器; (c)至少一个光网络单元(ONU); 以及可操作地耦合到所述至少一个ONU的航空电子模块。 航空电子网络通信的方法可以包括:(a)接收光学航空电子数据信号; (b)监视光学航空电子数据信号以符合通信协议; (c)根据通信协议的规定调整光学航空电子数据信号的传输。