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    • 3. 发明申请
    • Traffic management for a passive optical network terminal
    • 无源光网络终端的流量管理
    • US20060013247A1
    • 2006-01-19
    • US11157438
    • 2005-06-21
    • Christopher KochDavid Cleary
    • Christopher KochDavid Cleary
    • H04J3/16
    • H04L47/26H04J3/1694H04L12/18H04L47/15H04L47/70H04L47/745H04L47/765H04L47/788H04L47/806H04L49/357H04Q11/0067H04Q2011/0064H04Q2011/0086
    • Techniques are described for managing traffic flow to an optical network terminal (ONT) on a passive optical network (PON) to prevent an individual ONT from being overrun. Specifically, the techniques involve reducing a transmission rate of a unique traffic flow and selectively denying access to a common traffic flow. By reducing the transmission rate of the unique traffic flow, sufficient bandwidth may be released to receive the unique traffic flow and the common traffic flow without overflowing the ONT. For example, the ONT or, alternatively, the OLT may send the requested common traffic flow without reducing the transmission rate of the unique traffic flow when sufficient bandwidth is available, send the common traffic flow but reduce the transmission rate of unique traffic flow by an appropriate amount, or deny access to the common traffic flow altogether without reducing the transmission rate of the unique traffic flow.
    • 描述了用于管理到无源光网络(PON)上的光网络终端(ONT)的流量的技术,以防止个体ONT超出。 具体地说,这些技术涉及降低唯一业务流的传输速率并且选择性地拒绝访问公共业务流。 通过降低唯一业务流的传输速率,可以释放足够的带宽以接收独特的业务流和公共业务流,而不会溢出ONT。 例如,ONT或者替代地,OLT可以在足够的带宽可用的情况下发送所请求的公共业务流而不降低唯一业务流的传输速率,发送公共业务流,但是减少唯一业务流的传输速率 适当的数量,或拒绝访问公共业务流,而不降低唯一业务流的传输速率。
    • 5. 发明申请
    • Control strategy for lean NOx trap regeneration
    • 贫NOx吸收再生控制策略
    • US20050222748A1
    • 2005-10-06
    • US10812467
    • 2004-03-30
    • Sanjeev NaikDavid Cleary
    • Sanjeev NaikDavid Cleary
    • F01N9/00F02D41/02F02D41/14F02D41/30G06F7/00
    • F02D41/0275F02D41/1456F02D41/3029F02D2200/0806
    • A method for controlling regeneration of a lean NOx trap includes estimating an accumulated NOx in the lean NOx trap; determining whether the estimated NOx exceeds a first threshold value or a second threshold value; estimating the temperature of the lean NOx trap; determining whether the estimated temperature exceeds a threshold temperature; determining a desired air-fuel ratio for initiating a regeneration event, the desired air-fuel ratio being determined based upon the estimated NOx and the estimated temperature of the lean NOx trap; hastening the occurrence of a regeneration event when the estimated NOx exceeds the first threshold value through active control of engine operating regimes; and initiating a regeneration event when the estimated NOx exceeds the second threshold value or when the estimated temperature exceeds the threshold temperature by forcing homogenous operation of the engine at the desired air-fuel ratio.
    • 用于控制稀薄NOx捕集器的再生的方法包括:估计贫NOx捕集器中累积的NOx; 确定估计的NOx是否超过第一阈值或第二阈值; 估计贫NOx捕集器的温度; 确定估计温度是否超过阈值温度; 确定用于启动再生事件的期望的空燃比,基于所估计的NOx和所述贫NOx收集器的估计温度来确定所述空燃比; 通过主动控制发动机运转状态,当估计的NOx超过第一阈值时,加速再生事件的发生; 以及当所述估计的NOx超过所述第二阈值时或者当所述估计温度超过所述阈值温度时,通过迫使所述发动机以期望的空燃比的均匀运行来启动再生事件。
    • 8. 发明授权
    • Managing network elements
    • 管理网络元素
    • US08762511B2
    • 2014-06-24
    • US13254669
    • 2009-03-06
    • David ClearyLiam Fallon
    • David ClearyLiam Fallon
    • G06F15/173H04L12/24H04W24/00
    • H04L41/0233H04L41/022H04W24/00
    • A method for use in management of network elements in a communications network performed by a network element of said network. The method comprises receiving by an agent operating in said network element a request to execute a first function, wherein said first function relates to management of at least one network element; sending to said first function a message corresponding to said request and executing said first function. Said request being from a predefined set of requests and said first function being from a predefined set of functions. Said first function is implemented in a network element where it is to be executed.
    • 一种用于在由所述网络的网络元件执行的通信网络中的网元的管理中使用的方法。 该方法包括由在所述网络元件中操作的代理接收执行第一功能的请求,其中所述第一功能涉及至少一个网络元件的管理; 向所述第一功能发送与所述请求对应的消息并执行所述第一功能。 所述请求来自预定义的一组请求,并且所述第一功能来自预定义的一组功能。 所述第一功能在要执行的网络元件中实现。