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    • 27. 发明授权
    • Beacon transmit power schemes
    • 信标发射功率方案
    • US09301264B2
    • 2016-03-29
    • US14253714
    • 2014-04-15
    • QUALCOMM Incorporated
    • Leonard Henry GrokopMehmet Yavuz
    • H04W52/26H04W52/32H04W24/02H04W36/04H04W52/24H04W84/04
    • H04W52/265H04W24/02H04W36/04H04W52/242H04W52/325H04W84/045
    • In a multi-level power transmission scheme, an access point transmits at one power level, while repeatedly transmitting at a burst power level for short periods of time. For example, a femto cell may transmit a beacon with periodic high power bursts of short duration, while the femto cell transmit power also undergoes high power bursts aligned with the beacon bursts. In a network listen-based power control scheme, an access point listens for one or more parameters sent over-the-air by the network and then defines transmit power based on the received parameter(s). In some aspects, beacon transmit power may be set based on a defined outage radius parameter and the total received signal power on a channel. In some aspects, access point transmit power may be set based on a defined coverage parameter and the received energy associated with signals from access points of a certain type.
    • 在多级电力传输方案中,接入点以一个功率电平发射,同时以突发功率电平重复发射短时间。 例如,毫微微小区可以发送具有短持续时间的周期性高功率突发的信标,而毫微微小区发射功率也经历与信标突发对准的高功率突发。 在基于网络侦听的功率控制方案中,接入点监听由网络通过空中发送的一个或多个参数,然后基于所接收的参数来定义发射功率。 在一些方面,可以基于定义的中断半径参数和信道上的总接收信号功率来设置信标发射功率。 在一些方面,接入点发射功率可以基于定义的覆盖参数和与特定类型的接入点的信号相关联的接收能量来设置。
    • 30. 发明申请
    • APPLICATION-CONTROLLED GRANULARITY FOR POWER-EFFICIENT CLASSIFICATION
    • 用于功率有效分类的应用控制格式
    • US20140279786A1
    • 2014-09-18
    • US13835596
    • 2013-03-15
    • QUALCOMM INCORPORATED
    • Leonard Henry GrokopEdward Harrison Teague
    • G06N5/02
    • G06N7/005G06F1/3234H04M1/72569Y02D70/1262Y02D70/142Y02D70/144Y02D70/146Y02D70/164
    • Systems and methods for providing application-controlled, power-efficient context (state) classification are described herein. An apparatus for performing context classification with adjustable granularity as described herein includes a classifier controller configured to receive a request for a context classification and a granularity input associated with the request; and a context classifier communicatively coupled to the classifier controller and configured to receive the request and the granularity input from the classifier controller, to select a resource usage level for the context classification based on the granularity input, wherein a granularity input indicating a higher granularity level is associated with a higher resource usage level and a granularity input indicating a lower granularity level is associated with a lower resource usage level, and to perform the context classification at the selected resource usage level.
    • 在此描述用于提供应用控制的,功率高效的上下文(状态)分类的系统和方法。 用于执行如本文所述的具有可调颗粒度的上下文分类的装置包括:分类器控制器,被配置为接收与上述请求相关联的上下文分类和粒度输入的请求; 以及上下文分类器,其通信地耦合到所述分类器控制器并且被配置为从所述分类器控制器接收所述请求和所述粒度输入,以基于所述粒度输入来选择所述上下文分类的资源使用级别,其中指示较高粒度级别的粒度输入 与更高的资源使用级别相关联,并且指示较低粒度级别的粒度输入与较低的资源使用级别相关联,并且在所选择的资源使用级别执行上下文分类。