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    • 111. 发明授权
    • Tracking area reconfiguration based on sector load
    • 基于扇区负载的跟踪区重新配置
    • US08804566B1
    • 2014-08-12
    • US13558054
    • 2012-07-25
    • Jasinder P. SinghSachin R. VargantwarMaulik K. ShahDeveshkumar Rai
    • Jasinder P. SinghSachin R. VargantwarMaulik K. ShahDeveshkumar Rai
    • G01R31/08
    • H04W60/00
    • A method and corresponding system is provided to help mitigate sector congestion. In one embodiment of the method, a RAN entity evaluates load among sectors of a tracking area and determines that the load is at least a threshold level of load. In response, the RAN entity enlarges the tracking area. In another embodiment of the method, when the RAN entity makes a decision to reconfigure a tracking area, it may consider one or more factors when determining how to reconfigure. In one example, the RAN entity may identify a particular border sector that has at least a threshold level of load or is a border sector in another network. Responsively, the RAN may reconfigure the tracking area such that the identified border sector is no longer a border sector. Other examples are possible.
    • 提供了一种方法和相应的系统来帮助减轻扇区拥塞。 在该方法的一个实施例中,RAN实体评估跟踪区域的扇区之间的负载,并确定负载至少为阈值的负载水平。 作为响应,RAN实体放大跟踪区域。 在该方法的另一个实施例中,当RAN实体作出重新配置跟踪区域的决定时,在确定如何重新配置​​时可以考虑一个或多个因素。 在一个示例中,RAN实体可以标识具有至少一个阈值负载水平或者是另一个网络中的边界扇区的特定边界扇区。 响应地,RAN可以重新配置跟踪区域,使得所识别的边界扇区不再是边界扇区。 其他的例子也是可以的。
    • 113. 发明授权
    • Reverse power control parameter adjustment based on subscriber distribution of two protocol versions
    • 基于两种协议版本的用户分配的反向功率控制参数调整
    • US08385266B1
    • 2013-02-26
    • US12699362
    • 2010-02-03
    • Sachin R. VargantwarDeveshkumar RaiBhagwan KhankaManoj Shetty
    • Sachin R. VargantwarDeveshkumar RaiBhagwan KhankaManoj Shetty
    • H04W4/00
    • H04W52/281H04L69/18H04W52/12H04W88/06
    • A method and system is disclosed for dynamic adaptation of reverse-link power control based on the distribution of ATs implementing different protocol versions. An access terminal in a wireless communication system that includes a base station may operate in a first state in which, at least, the access terminal uses a first protocol for determining and adjusting transmission power on a reverse link of an air interface with the base station. While operating in the first state, responsive to receiving a protocol version message from the base station on a forward link of the air interface, the access terminal will transition to operating in a second state in which, at least, the access terminal uses a second protocol for determining and adjusting transmission power on the reverse link of the air interface with the base station. The first protocol is different from the second protocol.
    • 公开了一种基于实现不同协议版本的AT的分布的反向链路功率控制的动态适配的方法和系统。 在包括基站的无线通信系统中的接入终端可以在第一状态下操作,其中至少接入终端使用第一协议来确定和调整与基站的空中接口的反向链路上的发射功率 。 当在第一状态下操作时,响应于在空中接口的前向链路上从基站接收到协议版本消息,接入终端将转换到在第二状态下操作,其中至少接入终端使用第二状态 用于确定和调整与基站的空中接口的反向链路上的传输功率的协议。 第一个协议与第二个协议不同。
    • 115. 发明授权
    • Dynamically adjusting a power level
    • 动态调整功率水平
    • US08229493B1
    • 2012-07-24
    • US13154094
    • 2011-06-06
    • Siddharth OroskarSachin R. VargantwarManoj ShettyDeveshkumar N. RaiDebasish Sarkar
    • Siddharth OroskarSachin R. VargantwarManoj ShettyDeveshkumar N. RaiDebasish Sarkar
    • H04B7/00
    • H04W52/50H04W28/18H04W52/146H04W52/267H04W72/0446
    • Systems and methods for dynamically adjusting a metric that influences power management of an access terminal are provided. Initially, an access node is configured to distribute reverse-activity bits (RAB's) to the access terminal, which conveys data, at a particular rate, to the access node. Adjusting the dynamic metric involves establishing a number of slots allocated for a filtered reverse-activity bit (FRAB) window and a hybrid reverse-activity bit (HRAB) window, wherein each of the slots are allocated to accept a RAB. The RAB's accepted to the slots of the FRAB window and the HRAB window are recursively averaged to derive a FRAB parameter and an HRAB parameter, respectively. The dynamic metric is adjusted by incorporating either the FRAB parameter or an HRAB parameter therein based on whether ramping conditions are satisfied. The rate of data conveyed from the access terminal is controlled based on the adjusted dynamic metric.
    • 提供了用于动态调整影响接入终端的功率管理的度量的系统和方法。 最初,接入节点被配置为向接入终端分发反向活动比特(RAB),该接入终端以特定速率向接入节点传送数据。 调整动态度量包括建立分配给经滤波的反向活动比特(FRAB)窗口和混合反向活动比特(HRAB))窗口的多个时隙,其中每个时隙被分配用于接受RAB。 接收到FRAB窗口和HRAB窗口的RAB被递归地平均以分别导出FRAB参数和HRAB参数。 基于是否满足斜坡条件,通过结合FRAB参数或其中的HRAB参数来调整动态度量。 基于调整后的动态度量来控制从接入终端传送的数据速率。
    • 120. 发明授权
    • Wireless tune away based upon wireless device location
    • 基于无线设备位置无线调出
    • US08731605B1
    • 2014-05-20
    • US12758190
    • 2010-04-12
    • Manoj ShettySachin R. VargantwarDeveshkumar Narendrapratap RaiBhagwan Singh Khanka
    • Manoj ShettySachin R. VargantwarDeveshkumar Narendrapratap RaiBhagwan Singh Khanka
    • H04M1/00
    • H04W48/18H04L69/28H04W4/023H04W88/06
    • What is disclosed is a method of operating a wireless communication device. The method includes, while at an initial location, entering a first wireless communication mode that requires tuning to a first frequency spectrum. In response to entering the first wireless communication mode, the method includes setting a timer for monitoring a second wireless communication mode. When the timer expires, the method includes determining if a present location of the wireless communication device is beyond a threshold distance from the initial location. If the present location is beyond the threshold distance from the initial location, then the method includes tuning away from the first frequency spectrum to a second frequency spectrum for the second wireless communication mode and monitoring information for the second wireless communication mode, and if the present location is not beyond the threshold distance from the initial location, then resetting the timer for monitoring the second wireless communication mode.
    • 公开的是一种操作无线通信设备的方法。 该方法包括在初始位置时,进入需要调谐到第一频谱的第一无线通信模式。 响应于进入第一无线通信模式,该方法包括设置用于监视第二无线通信模式的定时器。 当定时器到期时,该方法包括确定无线通信设备的当前位置是否超出距离初始位置的阈值距离。 如果当前位置超出距离初始位置的阈值距离,则该方法包括从第一频谱调谐到用于第二无线通信模式的第二频谱和用于第二无线通信模式的监视信息,并且如果存在 位置不超出距离初始位置的阈值距离,然后重置用于监视第二无线通信模式的定时器。