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    • 11. 发明授权
    • Method and system for level detector calibration for accurate transmit power control
    • 用于电平检测器校准的方法和系统,用于精确的发射功率控制
    • US08670729B2
    • 2014-03-11
    • US12725185
    • 2010-03-16
    • Arya Behzad
    • Arya Behzad
    • H04B1/04H03C1/62H04B17/00H01Q11/12
    • H03G3/3042H03F3/45183H04B17/13H04B2001/0416H04W52/52
    • Methods and systems for level detector calibration are disclosed and may comprise calibrating a level detector integrated on-chip to eliminate an associated zero input offset voltage utilizing a replica bias circuit with no input ac voltage at the level detector or the replica bias circuit. The offset voltages of the level detector and the replica bias circuit may be combined to eliminate the associated zero input offset voltage of the level detector. The output signal may be generated by a difference of output signals from the level detector and the replica bias circuit. The level detector and the replica bias circuit may be biased utilizing a similar bias voltage. A plurality of known input voltages may be utilized to generate a corresponding plurality of output voltages of the level detector, generating a corrected transfer function that may be used to accurately set a transmitter power level.
    • 公开了用于电平检测器校准的方法和系统,并且可以包括校准集成在片上的电平检测器,以利用在电平检测器或复制偏置电路处没有输入交流电压的复制偏置电路来消除相关的零输入偏移电压。 可以组合电平检测器和复制偏置电路的偏移电压以消除电平检测器的相关联的零输入偏移电压。 输出信号可以由来自电平检测器和复制偏置电路的输出信号的差产生。 电平检测器和复制偏置电路可以利用类似的偏置电压来偏置。 可以利用多个已知的输入电压来产生电平检测器的对应的多个输出电压,产生校正的传递函数,该传递函数可用于精确地设定发射机功率电平。
    • 13. 发明授权
    • Method and system for an atomizing function of a mobile device
    • 移动设备雾化功能的方法和系统
    • US08442015B2
    • 2013-05-14
    • US11864562
    • 2007-09-28
    • Arya BehzadMark BuerJeyhan KaraoguzAlexander MacinnisThomas QuigleyJohn Walley
    • Arya BehzadMark BuerJeyhan KaraoguzAlexander MacinnisThomas QuigleyJohn Walley
    • H04W4/00
    • G06F9/5044H04L67/10H04L67/16
    • Methods and systems for an atomizing function for a mobile device are disclosed and may include discovering available resources via a handheld wireless communication device (HWCD) and assessing respective cost functions for processing tasks by the HWCD and/or the discovered resources. The tasks may be apportioned for local and/or remote execution by the HWCD and/or the discovered resources based on the assessed cost functions. The assessed cost functions may be dependent on factors comprising communication bandwidth, memory space, CPU processing power, and battery power, which may be weighted. The cost functions may be dynamically assessed, enabling dynamic reapportioning of the tasks, which may be apportioned based on latency, quality of service (QoS), priority and/or user preferences associated with the local and/or remote execution. The apportioning of the processing of the tasks may be based on the assessed cost functions, and a priority and/or a QoS associated with the task.
    • 公开了用于移动设备的雾化功能的方法和系统,并且可以包括经由手持式无线通信设备(HWCD)发现可用资源并且评估由HWCD和/或所发现的资源处理任务的相应成本函数。 这些任务可以由HWCD和/或基于评估的成本函数发现的资源进行本地和/或远程执行分配。 评估的成本函数可以取决于可以被加权的因素,包括通信带宽,存储器空间,CPU处理能力和电池功率。 可以动态评估成本函数,使得可以基于与本地和/或远程执行相关联的延迟,服务质量(QoS),优先级和/或用户偏好来分摊任务的动态重新分配。 处理任务的分配可以基于评估的成本函数,以及与该任务相关联的优先级和/或QoS。
    • 14. 发明授权
    • Method and system for utilizing context data tags to catalog data in wireless system
    • 利用上下文数据标签对无线系统中的数据进行编目的方法和系统
    • US08355706B2
    • 2013-01-15
    • US11968560
    • 2008-01-02
    • Thomas QuigleyAlexander G. MacInnisArya BehzadJeyhan KaraoguzJohn WalleyMark Buer
    • Thomas QuigleyAlexander G. MacInnisArya BehzadJeyhan KaraoguzJohn WalleyMark Buer
    • H04L29/06
    • G06F17/30997G06F17/30867H04L67/306
    • A Wireless mobile communication (WMC) device may maintain user preference information, which is unique to the WMC device capabilities and the device user. The WMC device may modify and/or update the user preference information based on device use and information ascertained from applications running on the WMC device itself; for example scheduling applications. The user preference information may be utilized to create context data tags for generated data on the WMC device. Context data tags may comprise such information as time/date stamping, subject information, and/or location information. The context data tags may be utilized to tag the generated data, enabling continuous and improved cataloging. Improved cataloging may enable improved searchability of tagged data. Tagged data alternatively and/or additionally may be transferred and stored in a remote device for improved and secure back-up storage. The remote device may utilize context data tags for cataloging and storing received data.
    • 无线移动通信(WMC)设备可以维护用户偏好信息,这是WMC设备能力和设备用户唯一的。 WMC设备可以基于设备使用和从在WMC设备本身上运行的应用确定的信息修改和/或更新用户偏好信息; 例如调度应用程序。 用户偏好信息可用于为WMC设备上的生成​​数据创建上下文数据标签。 上下文数据标签可以包括诸如时间/日期戳,主题信息和/或位置信息之类的信息。 上下文数据标签可以用于标记所生成的数据,从而实现连续和改进的编目。 改进的编目可以提高标记数据的可搜索性。 可替换地和/或另外地将标签数据传送并存储在远程设备中,以改进和安全的备份存储。 远程设备可以利用用于对接收到的数据进行编目和存储的上下文数据标签。
    • 18. 发明申请
    • Method and System for Using a Multi-RF Input Receiver for Diversity Selection
    • 使用多RF输入接收机进行分集选择的方法和系统
    • US20120224618A1
    • 2012-09-06
    • US13471651
    • 2012-05-15
    • Arya BehzadAli AfsahiMark Gonikberg
    • Arya BehzadAli AfsahiMark Gonikberg
    • H04B17/00H04B1/06
    • H04B7/0811
    • A method for processing signals in a receiver includes receiving a plurality of wireless signals via a plurality of M receive antennas coupled to M corresponding signal amplifiers. The method may also include measuring corresponding signal strengths of M signals generated when each of M phase-shifters is coupled to each of the M receive antennas, while one or more of the M signal amplifiers are disabled. One of the M generated signals may be selected for processing without the use of an antenna switch, where the selecting may be based on the measured signal strength. Each of the plurality of received wireless signals may be amplified prior to the measuring. One or both of an in-phase (I) component and/or a quadrature (Q) component may be generated for each of the M generated signals.
    • 用于在接收机中处理信号的方法包括经由耦合到M个相应信号放大器的多个M个接收天线接收多个无线信号。 该方法还可以包括当M个移相器中的每一个耦合到M个接收天线中的每一个时产生的M个信号的相应信号强度,而一个或多个M个信号放大器被禁用。 可以选择M个生成的信号中的一个用于处理而不使用天线开关,其中选择可以基于测量的信号强度。 多个接收的无线信号中的每一个可以在测量之前被放大。 可以为M个生成的信号中的每一个产生同相(I)分量和/或正交(Q)分量中的一个或两个。
    • 19. 发明申请
    • System and Method Providing Concurrent Multimode Communication
    • 提供并行多模通信的系统和方法
    • US20120202562A1
    • 2012-08-09
    • US13451914
    • 2012-04-20
    • Ahmadreza RofougaranArya Behzad
    • Ahmadreza RofougaranArya Behzad
    • H04W88/02H04M1/00
    • H04W88/06H04W72/1215
    • A system and method providing concurrent multimode communication through multimode signal multiplexing. Various aspects of the present invention may comprise, during a first time period, transmitting a first portion of a first communication in a first communication mode in a serial wireless transmission stream. During a second time period after the first time period, a first portion of a second communication may be transmitted in a second communication mode in the serial wireless transmission stream. Also, during a third time period after the second time period, a second portion of the first communication may be transmitted in the first communication mode in the serial wireless transmission stream. In an exemplary scenario, prior to communicating various communications, transmission time may be allocated between the first and second communication modes. In another exemplary scenario, transmission may be switched between a plurality of communication modes in response to detected communication conditions.
    • 一种通过多模信号复用提供并发多模通信的系统和方法。 在第一时间段期间,本发明的各个方面可以包括在串行无线传输流中以第一通信模式发送第一通信的第一部分。 在第一时间段之后的第二时间段期间,可以在串行无线传输流中以第二通信模式发送第二通信的第一部分。 此外,在第二时间段之后的第三时间段期间,可以在串行无线传输流中以第一通信模式发送第一通信的第二部分。 在示例性场景中,在传送各种通信之前,可以在第一和第二通信模式之间分配传输时间。 在另一示例性场景中,响应于检测到的通信条件,可以在多个通信模式之间切换传输。