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    • 1. 发明申请
    • System Detecting and Mitigating Frustration of Software User
    • 系统检测和减轻软件用户的挫折感
    • US20160180352A1
    • 2016-06-23
    • US14573056
    • 2014-12-17
    • Qing ChenRajpaul GrewalJuo Nung ShihBrett WakefieldChee WongJie Yu
    • Qing ChenRajpaul GrewalJuo Nung ShihBrett WakefieldChee WongJie Yu
    • G06Q30/02G06Q30/00G06F17/30
    • G06Q30/0201G06F11/3419G06F11/3438G06Q30/016
    • A software frustration detection system interposed between software and a user, receives interactions indicative of user frustration (e.g., a user accessing in-product help, a user performing a sequence of actions but not clicking “submit”, a user canceling operations, etc.). Due to privacy concerns, the system may not gain access to substantive data of the interaction. Based upon characteristics of detected interaction(s), the system is configured calculate a frustration score, and then provide user support based upon that score. In particular, a support subsystem may locate various possible sources of support (e.g., user blogs, demonstrations, IT department contact), connect to those support services, and then provide appropriate support to a user. The system may operate in an iterative manner, with increasing frustration revealed by subsequent user actions, being met with an escalating intensity of support provided. Certain embodiments may operate based upon active user feedback to the provided support.
    • 插入在软件和用户之间的软件挫败检测系统接收指示用户沮丧的交互(例如,用户访问产品内帮助,执行一系列动作但不点击“提交”的用户,用户取消操作等) )。 由于隐私问题,系统可能无法访问交互的实质数据。 根据检测到的交互特征,系统配置计算失败得分,然后根据该分数提供用户支持。 特别地,支持子系统可以定位各种可能的支持来源(例如,用户博客,演示,IT部门联系人),连接到那些支持服务,然后为用户提供适当的支持。 该系统可以以迭代的方式操作,随着用户的后续操作显示出越来越多的挫折,满足提供的不断增加的支持强度。 某些实施例可以基于对所提供的支持的主动用户反馈来操作。
    • 2. 发明授权
    • Sensing method and circuit for use with capacitive sensing devices
    • 用于电容式感测装置的感应方法和电路
    • US09442609B2
    • 2016-09-13
    • US13588612
    • 2012-08-17
    • Jie YuJames Zhang
    • Jie YuJames Zhang
    • G01R27/26G06F3/044G06F3/041
    • G06F3/044G06F3/0416
    • A sensing method is used for a capacitive sensing device, wherein the capacitive sensing device has a plurality of capacitive sensing components, each of which is charged or discharged by a charging component respectively. The sensing method comprises the steps of: a first sampling step of sampling at least one of charging or discharging time of a capacitive sensing component of the plurality of capacitive sensing components to determine a first sample time for the component sampled, wherein the component sampled and at least one another component of the plurality of capacitive sensing components are charged or discharged simultaneously during the first sampling step; a first comparing step of comparing the first sample time for the component sampled with a reference time; and an outputting step of outputting a trigger signal in the event that the first sample time exceeds the reference time.
    • 感测方法用于电容感测装置,其中电容性感测装置具有多个电容感测部件,每个电容感测部件分别由充电部件充电或放电。 感测方法包括以下步骤:第一采样步骤,对多个电容感测组件的电容感测组件的充电或放电时间中的至少一个进行采样,以确定采样组件的第一采样时间, 所述多个电容感测部件中的至少另一个部件在所述第一采样步骤期间同时充电或放电; 第一比较步骤,用于将采样的分量的第一采样时间与参考时间进行比较; 以及在第一采样时间超过基准时间的情况下输出触发信号的输出步骤。
    • 6. 发明授权
    • Image classification using range information
    • 图像分类使用范围信息
    • US08270731B2
    • 2012-09-18
    • US12543684
    • 2009-08-19
    • Sen WangJie Yu
    • Sen WangJie Yu
    • G06K9/00
    • G06K9/629G06K9/00664
    • A method of identifying an image classification for an input digital image comprising receiving an input digital image for a captured scene; receiving a range map which represents range information associated with the input digital image, wherein the range information represents distances between the captured scene and a known reference location; identifying the image classification using both the range map and the input digital image; and storing the image classification in association with the input digital image in a processor-accessible memory system.
    • 一种识别输入数字图像的图像分类的方法,包括接收用于所捕获的场景的输入数字图像; 接收与所述输入数字图像相关联的范围信息的范围图,其中,所述范围信息表示所捕获场景与已知参考位置之间的距离; 使用范围图和输入数字图像来识别图像分类; 以及将图像分类与输入的数字图像相关联地存储在处理器可访问存储器系统中。
    • 8. 发明授权
    • Disk drive comprising slanted line servo burst sets offset radially
    • 磁盘驱动器包括倾斜线伺服脉冲串组件径向偏移
    • US07746594B1
    • 2010-06-29
    • US12240374
    • 2008-09-29
    • Guoxiao GuoJie Yu
    • Guoxiao GuoJie Yu
    • G11B5/596
    • G11B5/59688G11B5/59655
    • A disk drive is disclosed comprising a disk having servo data defining a plurality of servo tracks. The servo data comprises a preamble, and a plurality of slanted line servo bursts recorded at a tilt angle with respect to the preamble. The slanted line servo bursts comprises a first plurality of slanted line servo bursts and a second plurality of slanted line servo bursts, wherein the second plurality of slanted line servo bursts are offset radially from the first plurality of slanted line servo bursts. A position error signal (PES) is generated in response to a phase difference when reading the preamble and the slanted line servo bursts.
    • 公开了一种磁盘驱动器,其包括具有定义多个伺服磁道的伺服数据的磁盘。 伺服数据包括相对于前导码以倾斜角度记录的前导码和多个斜线伺服脉冲串。 斜线伺服脉冲串包括第一多个倾斜线伺服突发和第二多个倾斜线伺服突发,其中第二多个倾斜线伺服突发从第一多个倾斜线伺服脉冲串径向偏移。 响应于读取前导码和斜线伺服脉冲串时的相位差产生位置误差信号(PES)。
    • 10. 发明授权
    • System and method for identifying track squeeze errors (TSEs) of a disk of a disk drive
    • 用于识别磁盘驱动器的磁盘的磁道挤压误差(TSE)的系统和方法
    • US07663835B1
    • 2010-02-16
    • US11770554
    • 2007-06-28
    • Jie YuGuoxiao Guo
    • Jie YuGuoxiao Guo
    • G11B5/596
    • G11B5/59627G11B19/045
    • A system and method for efficiently identifying track squeeze errors (TSEs) of a disk of a disk drive during a testing process for the disk drive is disclosed. The method includes reading servo bursts from a track of the disk, utilizing a modeled scan variable, and determining a gain comprising a ratio of a first matrix A and a second matrix B. TSEs associated with the SWEs of the servo bursts are determined for the track. The TSEs are determined as a product of the gain and a measured scan variable wherein the measured scan variable is calculated as being the difference between a measured scan value and an estimated nominal scan value.
    • 公开了一种用于在磁盘驱动器的测试过程期间有效地识别磁盘驱动器的磁盘的磁道挤压错误(TSE)的系统和方法。 该方法包括从盘的轨道读取伺服脉冲串,利用建模的扫描变量,以及确定包括第一矩阵A和第二矩阵B的比率的增益。与伺服脉冲串的SWE相关联的TSE被确定为 跟踪。 TSE被确定为增益和测量的扫描变量的乘积,其中测量的扫描变量被计算为测量的扫描值和估计的标称扫描值之间的差。