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    • 51. 发明申请
    • DISTRIBUTED ANTENNA SYSTEM USING POWER-OVER-ETHERNET
    • 分布式天线系统使用功率超级以太网
    • US20120317426A1
    • 2012-12-13
    • US13491849
    • 2012-06-08
    • Roger A. Hunter, JR.Donald Robert McAllisterChristopher G. RansonThomas Kummetz
    • Roger A. Hunter, JR.Donald Robert McAllisterChristopher G. RansonThomas Kummetz
    • G06F1/26
    • G06F1/28H04L12/10H04L12/40045H04L41/0833
    • A system is provided for adjusting power provided to a device. The system can include power sourcing equipment and a sub-system. The power sourcing equipment can provide power to a powered device via a channel. The sub-system can determine an amount by which to increase the power based on a resistance of the channel. The power sourcing equipment or the powered device can adjust the power (or load) responsive to a command from the sub-system. The sub-system can include a measurement device and a processor. The measurement device can measure an output voltage of the power sourcing equipment, an input voltage of the powered device, and a current on the channel. The processor can determine the resistance of the channel based on the output voltage, the input voltage, and the current. The processor can output a command specifying an increase or decrease in power supplied by the power sourcing equipment.
    • 提供一种用于调节提供给设备的功率的系统。 该系统可以包括电源设备和子系统。 电源设备可以通过通道为有源设备提供电力。 子系统可以基于通道的电阻来确定增加功率的量。 电源设备或有源设备可以响应于来自子系统的命令来调整功率(或负载)。 子系统可以包括测量装置和处理器。 测量装置可以测量供电设备的输出电压,受电设备的输入电压和通道上的电流。 处理器可以基于输出电压,输入电压和电流来确定通道的电阻。 处理器可以输出指定由电源设备提供的电力的增加或减少的命令。
    • 52. 发明申请
    • OPTIMIZING ENERGY CONSUMPTION UTILIZED FOR WORKLOAD PROCESSING IN A NETWORKED COMPUTING ENVIRONMENT
    • 网络计算环境中的工作量处理优化能源消耗
    • US20120290862A1
    • 2012-11-15
    • US13106905
    • 2011-05-13
    • Gene L. BrownBrendan F. CoffeyChristopher J. DawsonClifford V. Harris
    • Gene L. BrownBrendan F. CoffeyChristopher J. DawsonClifford V. Harris
    • G06F1/32
    • H04L41/0833G06F1/329G06Q10/0631Y02D10/24
    • Embodiments of the present invention provide an approach for optimizing energy consumption utilized for workload processing in a networked computing environment (e.g., a cloud computing environment). Specifically, when a workload is received, an energy profile (e.g., contained in a computerized data structure) associated with the workload is identified. Typically, the energy profile identifies a set of computing resources needed to process the workload (e.g., storage requirements, server requirements, processing requirements, network bandwidth requirements, etc.), energy consumption attributes of the set of computing resources, and a proposed duration of the workload. Based on the information contained in the energy profile (and resource availability) a schedule (e.g., time, location, etc.) for processing the workload will be determined so as to optimize energy consumption associated with the processing of the workload. In a typical embodiment, the schedule will be determined such that a total cost for processing the workload can be minimized and/or to any budgeted amount/costs can be met.
    • 本发明的实施例提供了一种用于优化在网络计算环境(例如,云计算环境)中用于工作负载处理的能量消耗的方法。 具体地,当接收到工作负载时,识别与工作负载相关联的能量简档(例如,包含在计算机化的数据结构中)。 通常,能量简档识别处理工作负载所需的一组计算资源(例如,存储需求,服务器要求,处理要求,网络带宽要求等),该组计算资源的能量消耗属性以及建议的持续时间 的工作量。 基于能量简档中包含的信息(和资源可用性),将确定用于处理工作负载的时间表(例如,时间,位置等),以便优化与工作负载的处理相关联的能量消耗。 在典型的实施例中,将确定时间表,使得可以最小化处理工作量的总成本和/或可以满足任何预算的金额/成本。
    • 54. 发明申请
    • DEEP SLEEP MODE MANAGEMENT FOR A NETWORK SWITCH
    • 网络开关的深度休眠模式管理
    • US20120120958A1
    • 2012-05-17
    • US13384977
    • 2010-02-01
    • Priya MahadevanPuneet SharmaSujata Banerjee
    • Priya MahadevanPuneet SharmaSujata Banerjee
    • H04L12/56
    • H04L12/12G06F1/3209H04L41/0833Y02D50/20Y02D50/40
    • A switch (100) connected to a network is configured to have one or more components that can be placed in a deep sleep mode. The switch (100) includes a management circuit (150) that is configured to wake up the components in deep sleep mode. The management circuit (150) includes a port (151) that receives packets and a wake-up circuit (152) that determines whether a packet received via the port (151) is a magic packet including a unique ID for the port (151) or the switch (100). If the packet is the magic packet including the unique ID for the port (151) or the switch (100), the wake-up circuit (151) is configured to send a wake-up signal to components in the switch (100) to wake up from the deep sleep mode.
    • 连接到网络的交换机(100)被配置为具有可以被置于深度睡眠模式的一个或多个组件。 开关(100)包括管理电路(150),其被配置为以深睡眠模式唤醒组件。 管理电路(150)包括接收分组的端口(151)和确定经由所述端口(151)接收的分组是否是包括所述端口(151)的唯一ID的魔术分组的唤醒电路(152) 或开关(100)。 如果分组是包括端口(151)或交换机(100)的唯一ID的魔术分组,则唤醒电路(151)被配置为向开关(100)中的组件发送唤醒信号到 从深度睡眠模式唤醒。
    • 56. 发明申请
    • CONTROL SYSTEM, CONTROL DEVICE, COMPOSITE SWITCH DEVICE, AND CONTROL METHOD
    • 控制系统,控制装置,复合开关装置和控制方法
    • US20110228688A1
    • 2011-09-22
    • US13049127
    • 2011-03-16
    • Akiko YAMADA
    • Akiko YAMADA
    • H04L12/26
    • H04L41/0833H04L12/10H04L12/12H04L49/351Y02D50/30Y02D50/40
    • A control system and method thereof is provided. The control system includes switch devices that operate on supplied power, each switch device includes multiple switch-side ports and a communication processing unit for relaying data, input to any of the switch-side ports on a basis of destination information set for the data, a relay device that includes first ports coupled to corresponding switch-side ports of the switch devices and second ports selectively coupled to the first ports and that relays the data, input to any of the second ports, to any of the first ports, and a control device that controls the switch devices and the relay device, where the control device includes a port monitoring unit, a port-assignment control unit, and a power control unit.
    • 提供了一种控制系统及其方法。 控制系统包括以供电供电的开关装置,每个开关装置包括多个开关侧端口和用于中继数据的通信处理单元,基于为该数据设定的目的地信息输入到任何一个开关侧端口, 中继设备,其包括耦合到交换机设备的对应交换机侧端口的第一端口和选择性地耦合到第一端口的第二端口,并且将数据,输入到任何第二端口中继到任何第一端口,以及 控制装置,其控制开关装置和中继装置,其中控制装置包括端口监视单元,端口分配控制单元和电源控制单元。