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    • 3. 发明授权
    • Power saving hardware
    • 省电硬件
    • US09104410B2
    • 2015-08-11
    • US12984060
    • 2011-01-04
    • Kin-Yee WongJoseph Rorai
    • Kin-Yee WongJoseph Rorai
    • H04L12/56G06F1/32H04L12/931G06F13/38H04L12/933
    • G06F1/3203G06F13/387H04L49/10H04L49/70
    • A method and apparatus are provided which allow telecommunication equipment to adjust its power consumption. By replicating the functionality of a standard component for processing traffic on a general purpose CPU, traffic can be routed within the equipment to the general purpose CPU for processing instead of the component under certain conditions. If the maximum bandwidth supported by the functionality on the general purpose CPU is less than the maximum bandwidth supported by the component, then the component can be powered down during times of low traffic and the traffic routed to the general purpose CPU instead. Since the maximum bandwidth supported by the functionality on the general purpose CPU is less than the maximum bandwidth supported by the component, less power is necessary to operate the telecommunication equipment and hence cost is reduced.
    • 提供了允许电信设备调整其功耗的方法和装置。 通过复制用于在通用CPU上处理流量的标准组件的功能,在特定条件下,流量可以在设备内被路由到通用CPU来处理而不是组件。 如果通用CPU上的功能所支持的最大带宽小于组件支持的最大带宽,则可以在低流量时将该组件关闭,并将流量路由到通用CPU。 由于通用C​​PU上的功能支持的最大带宽小于组件支持的最大带宽,所以操作电信设备需要较少的功率,因此降低了成本。
    • 6. 发明申请
    • Real-Time Power Cost Feed
    • 实时电力成本饲料
    • US20120173660A1
    • 2012-07-05
    • US12984026
    • 2011-01-04
    • Joseph RoraiKin-Yee Wong
    • Joseph RoraiKin-Yee Wong
    • G06F15/16G06F1/26
    • G06Q50/06G06F15/16
    • A method and apparatus are provided in which a new input to a telecommunications node is provided, namely the real-time cost of power. By providing this information, the node may make more informed decisions as to power cost of various options. For example, the node may alter its operating parameters based on the current cost of power to implement various features. The real-time cost of power is provided to the node by the power provider. The real-time cost of the power is provided to the node using any method, such as by packets through a dedicated interface of the node, packets through a UDP port, or as packets over the electricity grid. The telecommunications node is just one example of end user equipment, and the real-time cost of power may be provided to any power-consuming equipment.
    • 提供了一种方法和装置,其中提供了对电信节点的新输入,即电力的实时成本。 通过提供这些信息,节点可以对各种选项的功率成本作出更明智的决定。 例如,节点可以基于当前的功率成本来改变其操作参数以实现各种特征。 电力供应商向节点提供电力的实时成本。 电力的实时成本使用任何方法提供给节点,例如通过节点的专用接口的分组,通过UDP端口的分组,或作为电网上的分组。 电信节点仅仅是最终用户设备的一个示例,并且可以向任何耗电设备提供电力的实时成本。
    • 7. 发明授权
    • Maintaining time-division multiplexing over pseudowire connections during network outages
    • 在网络中断期间维持伪线连接的时分复用
    • US08498199B2
    • 2013-07-30
    • US12485623
    • 2009-06-16
    • Joseph RoraiClaude Parent
    • Joseph RoraiClaude Parent
    • G01R31/08H04L12/28
    • H04J3/14H04J3/0605H04J3/0632H04L45/68
    • Various exemplary embodiments relate to a provider edge node and a related method. The provider edge node may include a receiver that receives at least one packet transmitted over a TDM pseudowire using a structure-agnostic transmission mechanism. The provider edge node may also include a physical interface configured to output frames to a corresponding customer edge (CE) device and a machine-readable storage medium that stores a TDM framing type corresponding to the physical interface. Finally, the provider edge node may include a circuit emulation engine that, during periods in which a network error has occurred, transmits a plurality of frames to the CE device over the physical interface. A TDM data payload of each frame may include an idle pattern, while a group of framing bits of the plurality of frames may define a framing pattern corresponding to the TDM framing type stored for the physical interface.
    • 各种示例性实施例涉及提供商边缘节点和相关方法。 提供商边缘节点可以包括接收器,其接收使用结构不可知传输机制通过TDM伪线发送的至少一个分组。 提供商边缘节点还可以包括被配置为向相应的客户边缘(CE)设备输出帧的物理接口和存储对应于物理接口的TDM成帧类型的机器可读存储介质。 最后,提供商边缘节点可以包括在发生网络错误的时段期间通过物理接口向CE设备发送多个帧的电路仿真引擎。 每个帧的TDM数据有效载荷可以包括空闲模式,而多个帧的一组成帧比特可以定义对应于为物理接口存储的TDM成帧类型对应的成帧模式。
    • 8. 发明申请
    • MAINTAINING TIME-DIVISION MULTIPLEXING OVER PSEUDOWIRE CONNECTIONS DURING NETWORK OUTAGES
    • 在网络使用期间维持连续的时分多路复用
    • US20100315941A1
    • 2010-12-16
    • US12485623
    • 2009-06-16
    • Joseph RoraiClaude Parent
    • Joseph RoraiClaude Parent
    • H04L12/24
    • H04J3/14H04J3/0605H04J3/0632H04L45/68
    • Various exemplary embodiments relate to a provider edge node and a related method. The provider edge node may include a receiver that receives at least one packet transmitted over a TDM pseudowire using a structure-agnostic transmission mechanism. The provider edge node may also include a physical interface configured to output frames to a corresponding customer edge (CE) device and a machine-readable storage medium that stores a TDM framing type corresponding to the physical interface. Finally, the provider edge node may include a circuit emulation engine that, during periods in which a network error has occurred, transmits a plurality of frames to the CE device over the physical interface. A TDM data payload of each frame may include an idle pattern, while a group of framing bits of the plurality of frames may define a framing pattern corresponding to the TDM framing type stored for the physical interface.
    • 各种示例性实施例涉及提供商边缘节点和相关方法。 提供商边缘节点可以包括接收器,其接收使用结构不可知传输机制通过TDM伪线发送的至少一个分组。 提供商边缘节点还可以包括被配置为向相应的客户边缘(CE)设备输出帧的物理接口和存储对应于物理接口的TDM成帧类型的机器可读存储介质。 最后,提供商边缘节点可以包括在发生网络错误的时段期间通过物理接口向CE设备发送多个帧的电路仿真引擎。 每个帧的TDM数据有效载荷可以包括空闲模式,而多个帧的一组成帧比特可以定义对应于为物理接口存储的TDM成帧类型对应的成帧模式。