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    • 2. 发明申请
    • MOBILE DEVICE LOCATION ESTIMATION USING ENVIRONMENTAL INFORMATION
    • 使用环境信息的移动设备位置估计
    • WO2012048027A1
    • 2012-04-12
    • PCT/US2011/054962
    • 2011-10-05
    • QUALCOMM IncorporatedKIM, TaesuYOU, KisunLEE, Te-Won
    • KIM, TaesuYOU, KisunLEE, Te-Won
    • H04L29/08H04W4/02
    • H04W4/043G01S5/0036G01S5/18G06Q30/0261G06Q30/0267H04W4/70
    • Estimating a location of a mobile device is performed by comparing environmental information, such as environmental sound, associated with the mobile device with that of other devices to determine if the environmental information is similar enough to conclude that the mobile device is in a comparable location as another device. The devices may be in comparable locations in that they are in geographically similar locations (e.g., same store, same street, same city, etc.). The devices may be in comparable locations even though they are located in geographically dissimilar locations because the environmental information of the two locations demonstrates that the devices are in the same perceived location. With knowledge that the devices are in comparable locations, and with knowledge of the location of one of the devices, certain actions, such as targeted advertising, may be taken with respect to another device that is within a comparable location.
    • 通过将与移动设备相关联的环境信息与其他设备的环境信息进行比较来确定移动设备的位置是否足够相似,以确定移动设备处于可比较的位置, 另一个设备。 这些设备可以在可比较的位置,因为它们在地理上相似的位置(例如,相同的商店,相同的街道,相同的城市等)。 即使这些设备位于地理位置不同的位置,设备也可处于可比较的位置,因为两个位置的环境信息表明设备处于相同的感知位置。 知道设备处于可比较的位置,并且了解设备之一的位置,可以针对在可比较的位置内的另一设备采取诸如定向广告的某些动作。
    • 4. 发明申请
    • METHOD AND APPARATUS FOR IDENTIFYING MOBILE DEVICES IN SIMILAR SOUND ENVIRONMENT
    • 用于识别类似声环境中移动设备的方法和装置
    • WO2012121855A1
    • 2012-09-13
    • PCT/US2012/025464
    • 2012-02-16
    • QUALCOMM INCORPORATEDKIM, TaesuLEE, Te-Won
    • KIM, TaesuLEE, Te-Won
    • H04L29/08H04W4/04H04W4/08
    • H04L67/18H04W4/023H04W4/043H04W4/08H04W4/21
    • A method for identifying mobile devices in a similar sound environment is disclosed. Each of at least two mobile devices captures an input sound and extracts a sound signature from the input sound. Further, the mobile device extracts a sound feature from the input sound and determines a reliability value based on the sound feature. The reliability value may refer to a probability of a normal sound class given the sound feature. A server receives a packet including the sound signatures and reliability values from the mobile devices. A similarity value between sound signatures from a pair of the mobile devices is determined based on corresponding reliability values from the pair of mobile devices. Specifically, the sound signatures are weighted by the corresponding reliability values. The server identifies mobile devices in a similar sound environment based on the similarity values.
    • 公开了一种用于识别类似声音环境中的移动设备的方法。 至少两个移动设备中的每一个捕获输入声音并从输入声音提取声音签名。 此外,移动设备从输入声音提取声音特征,并且基于声音特征确定可靠性值。 可靠性值可以指给定声音特征的正常声级的概率。 服务器从移动设备接收包括声音签名和可靠性值的数据包。 来自一对移动设备的声音签名之间的相似度值是基于来自该对移动设备的相应的可靠性值来确定的。 具体地说,声音特征被相应的可靠性值加权。 服务器根据相似性值识别类似声音环境中的移动设备。
    • 7. 发明申请
    • AUGMENTED REALITY PROCESSING BASED ON EYE CAPTURE IN HANDHELD DEVICE
    • 基于手持设备中的眼睛捕获的现实加工
    • WO2012083087A1
    • 2012-06-21
    • PCT/US2011/065294
    • 2011-12-15
    • QUALCOMM IncorporatedLEE, Te-Won
    • LEE, Te-Won
    • G06K9/22
    • G06K9/228G06F3/013G06F3/147G09G2340/12
    • This disclosure describes techniques that can improve and possibly accelerate the generation of augmented reality (AR) information with respect to objects that appear in images of a video sequence. To do so, the techniques of this disclosure capture and use information about the eyes of a user of a video device. The video device may include two different cameras. A first camera is oriented to capture a sequence of images (e.g., video) outward from a user. A second camera is oriented to capture images of the eyes of the user when the first camera captures images outward from the user. The eyes of the user, as captured by one or more images of the second camera, may be used to generate a probability map, and the probability map may be used to prioritize objects in the first image for AR processing.
    • 本公开描述了可以改进并且可能加速相对于出现在视频序列的图像中的对象的增强现实(AR)信息的生成的技术。 为此,本公开的技术捕获和使用关于视频设备的用户的眼睛的信息。 视频设备可以包括两个不同的相机。 第一相机被定向为从用户向外捕获图像序列(例如,视频)。 当第一相机从用户向外捕获图像时,第二相机被定向为捕获用户的眼睛的图像。 由第二相机的一个或多个图像拍摄的用户的眼睛可以用于生成概率图,并且可以使用概率图来优先排列第一图像中的对象用于AR处理。
    • 8. 发明申请
    • TOUCHLESS SENSING AND GESTURE RECOGNITION USING CONTINUOUS WAVE ULTRASOUND SIGNALS
    • 使用连续波超声信号进行无感应感知和姿态识别
    • WO2012006189A2
    • 2012-01-12
    • PCT/US2011/042452
    • 2011-06-29
    • QUALCOMM IncorporatedLI, RenLEE, Te-WonNELSON, Hui-ya, L.GUPTA, Samir, K.
    • LI, RenLEE, Te-WonNELSON, Hui-ya, L.GUPTA, Samir, K.
    • G06F3/01
    • G06F3/011G01S7/5273G01S15/325G01S15/50G01S15/876G06F3/017
    • The embodiments provide systems and methods for touchless sensing and gesture recognition using continuous wave sound signals. Continuous wave sound, such as ultrasound, emitted by a transmitter may reflect from an object, and be received by one or more sound receivers. Sound signals may be temporally encoded. Received sound signals may be processed to determine a channel impulse response or calculate time of flight. Determined channel impulse responses may be processed to extract recognizable features or angles. Extracted features may be compared to a database of features to identify a user input gesture associated with the matched feature. Angles of channel impulse response curves may be associated with an input gesture. Time of flight values from each receiver may be used to determine coordinates of the reflecting object. Embodiments may be implemented as part of a graphical user interface. Embodiments may be used to determine a location of an emitter.
    • 这些实施例提供了使用连续波声信号的无接触感测和手势识别的系统和方法。 由发射器发射的连续波声,如超声波,可能会从物体反射,并由一个或多个声音接收器接收。 声音信号可能是时间编码的。 可以处理接收的声音信号以确定信道脉冲响应或计算飞行时间。 可以处理确定的信道脉冲响应以提取可识别的特征或角度。 提取的特征可以与特征数据库进行比较,以识别与匹配特征相关联的用户输入手势。 信道脉冲响应曲线的角度可以与输入手势相关联。 可以使用来自每个接收机的飞行时间值来确定反射对象的坐标。 实施例可以被实现为图形用户界面的一部分。 实施例可以用于确定发射器的位置。
    • 10. 发明申请
    • VOICE ACTIVITY DETECTION BASED ON PLURAL VOICE ACTIVITY DETECTORS
    • 基于多个语音活动检测器的语音活动检测
    • WO2011106065A1
    • 2011-09-01
    • PCT/US2010/060363
    • 2010-12-14
    • QUALCOMM IncorporatedLEE, Te-Won
    • LEE, Te-Won
    • G10L11/02
    • G10L25/78
    • A voice activity detection (VAD) system includes a first voice activity detector, a second voice activity detector and control logic. The first voice activity detector is included in a device and produces a first VAD signal. The second voice activity detector is located externally to the device and produces a second VAD signal. The control logic combines the first and second VAD signals into a VAD output signal. Voice activity may be detected based on the VAD output signal. The second VAD signal can be represented as a flag included in a packet containing digitized audio. The packet can be transmitted to the device from the externally located VAD over a wireless link.
    • 语音活动检测(VAD)系统包括第一语音活动检测器,第二语音活动检测器和控制逻辑。 第一语音活动检测器被包括在设备中并产生第一VAD信号。 第二语音活动检测器位于设备外部并产生第二VA​​D信号。 控制逻辑将第一和第二VAD信号组合成VAD输出信号。 可以基于VAD输出信号检测语音活动。 第二VAD信号可以被表示为包含在包含数字化音频的分组中的标志。 该分组可以通过无线链路从外部定位的VAD发送到设备。