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    • 204. 发明授权
    • Method and apparatus for providing group context sensing and inference
    • 用于提供组语境感知和推理的方法和装置
    • US09414183B2
    • 2016-08-09
    • US14375415
    • 2012-03-20
    • Wei WangHuanhuan CaoJilei TianXia Wang
    • Wei WangHuanhuan CaoJilei TianXia Wang
    • H04W4/00H04W8/24H04W4/02H04W4/08
    • H04W4/38H04W4/02H04W4/08H04W8/24
    • An approach is provided for providing group context sensing and inference. The group context platform determines at least one group of one or more devices that have one or more group contexts that are at least substantially similar, at least substantially correlated, or a combination thereof. Next, the group context platform causes, at least in part, a distribution of one or more context sensing tasks among the one or more devices of the at least one group. Then, the group context platform processes and/or facilitates a processing of one or more results of the one or more context sensing tasks to (a) modify the one or more group contexts; (b) enhance the one or more group contexts; (c) determine one or more other group contexts; or (d) a combination thereof.
    • 提供了一种用于提供组语境感知和推理的方法。 组上下文平台确定具有一个或多个组上下文至少基本相似,至少基本相关或其组合的一个或多个设备的至少一组。 接下来,组上下文平台至少部分地导致至少一个组中的一个或多个设备中的一个或多个上下文感测任务的分布。 然后,组上下文平台处理和/或促进对一个或多个上下文感测任务的一个或多个结果的处理,以(a)修改一个或多个组上下文; (b)加强一个或多个团体背景; (c)确定一个或多个其他组背景; 或(d)其组合。
    • 208. 发明授权
    • Battery charging circuit with serial connection of MOSFET and an enhancement mode JFET configured as reverse blocking diode with low forward voltage drop
    • 具有串联连接MOSFET的电池充电电路和增强型JFET配置为具有低正向压降的反向阻塞二极管
    • US09246347B2
    • 2016-01-26
    • US14101529
    • 2013-12-10
    • Sik LuiWei Wang
    • Sik LuiWei Wang
    • H01L29/66H02J7/00H01L27/06
    • H02J7/0072H01L27/0629H02J7/0052
    • A semiconductor die with integrated MOSFET and diode-connected enhancement mode JFET is disclosed. The MOSFET-JFET die includes common semiconductor substrate region (CSSR) of type-1 conductivity. A MOSFET device and a diode-connected enhancement mode JFET (DCE-JFET) device are located upon CSSR. The DCE-JFET device has the CSSR as its DCE-JFET drain. At least two DCE-JFET gate regions of type-2 conductivity located upon the DCE-JFET drain and laterally separated from each other with a DCE-JFET gate spacing. At least a DCE-JFET source of type-1 conductivity located upon the CSSR and between the DCE-JFET gates. A top DCE-JFET electrode, located atop and in contact with the DCE-JFET gate regions and DCE-JFET source regions. When properly configured, the DCE-JFET simultaneously exhibits a forward voltage Vf substantially lower than that of a PN junction diode while the reverse leakage current can be made comparable to that of a PN junction diode.
    • 公开了具有集成MOSFET和二极管连接的增强型JFET的半导体管芯。 MOSFET-JFET管芯包括类型1导电性的公共半导体衬底区域(CSSR)。 MOSFET器件和二极管连接的增强型JFET(DCE-JFET)器件位于CSSR上。 DCE-JFET器件具有CSSR作为其DCE-JFET漏极。 至少两个DCE-JFET栅极区域,位于DCE-JFET漏极上,并以DCE-JFET栅极间隔彼此横向分离。 至少一个位于CSSR上和DCE-JFET门之间的类型1电导率的DCE-JFET源。 位于顶部并与DCE-JFET栅极区域和DCE-JFET源极区域接触的顶部DCE-JFET电极。 当正确配置时,DCE-JFET同时呈现基本上低于PN结二极管的正向电压Vf,而反向漏电流可以与PN结二极管的相反。
    • 210. 发明授权
    • Scalable and embedded codec for speech and audio signals
    • 用于语音和音频信号的可扩展和嵌入式编解码器
    • US09047865B2
    • 2015-06-02
    • US11889332
    • 2007-08-10
    • Joseph Gerard AguilarDavid A. CampanaJuin-Hwey ChenRobert B. DunnRobert J. McAulayXiaoquin SunWei WangCraig WatkinsRobert W. Zopf
    • Joseph Gerard AguilarDavid A. CampanaJuin-Hwey ChenRobert B. DunnRobert J. McAulayXiaoquin SunWei WangCraig WatkinsRobert W. Zopf
    • G10L19/18G10L19/093G10L19/24
    • G10L19/002G10L19/093G10L19/24
    • A system and method for processing of audio and speech signals is disclosed, which provide compatibility over a range of communication devices operating at different sampling frequencies and/or bit rates. The analyzer of the system divides the input signal in different portions, at least one of which carries information sufficient to provide intelligible reconstruction of the input signal. The analyzer also encodes separate information about other portions of the signal in an embedded manner, so that a smooth transition can be achieved from low bit-rate to high bit-rate applications. Accordingly, communication devices operating at different sampling rates and/or bit-rates can extract corresponding information from the output bit stream of the analyzer. In the present invention embedded information generally relates to separate parameters of the input signal, or to additional resolution in the transmission of original signal parameters. Non-linear techniques for enhancing the overall performance of the system are also disclosed. Also disclosed is a novel method of improving the quantization of signal parameters. In a specific embodiment the input signal is processed in two or more modes dependent on the state of the signal in a frame. When the signal is determined to be in a transition state, the encoder provides phase information about N sinusoids, which the decoder end uses to improve the quality of the output signal at low bit rates.
    • 公开了一种用于处理音频和语音信号的系统和方法,其提供了在不同采样频率和/或比特率下操作的通信设备的范围上的兼容性。 系统的分析器将输入信号分成不同的部分,其中至少一个传送足以提供输入信号的可理解的重建的信息。 分析器还以嵌入的方式编码关于信号的其他部分的单独信息,从而可以从低比特率到高比特率应用实现平滑的转换。 因此,以不同的采样率和/或比特率工作的通信设备可以从分析器的输出比特流中提取相应的信息。 在本发明中,嵌入信息通常涉及输入信号的单独参数,或者涉及原始信号参数传输中的附加分辨率。 还公开了用于增强系统的整体性能的非线性技术。 还公开了一种改进信号参数量化的新方法。 在具体实施例中,输入信号以两个或更多个模式被处理,这取决于帧中的信号的状态。 当信号被确定为处于转换状态时,编码器提供关于N个正弦曲线的相位信息,解码器端用于以低比特率提高输出信号的质量。