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    • 1. 发明授权
    • Method, system and computer program product for improving system reliability
    • 方法,系统和计算机程序产品,用于提高系统可靠性
    • US07278048B2
    • 2007-10-02
    • US10620527
    • 2003-07-16
    • James C. ClarkDaniel R. JeskeOmar H. SalvadorKazem A. SohrabyXuemei Zhang
    • James C. ClarkDaniel R. JeskeOmar H. SalvadorKazem A. SohrabyXuemei Zhang
    • G06F11/00
    • G06F11/0751G06F11/0706G06F11/0754
    • A method and system for improving the reliability of a system, such as a software system, is disclosed. “Service measurements” that are routinely measured and monitored in connection with the operation of systems (e.g., QOS (Quality Of Service) measurements) are utilized in the reliability architecture of the system. Service measurements include a number of alternative data types, such as transactions completed, messages received, messages sent, calls completed, bytes transmitted, jobs processed, etc. Any operations of the system that are typically monitored for other purposes can be utilized in the reliability architecture of the present invention. Most systems track these types of statistics as, for example, part of their billing procedures or part of their performance bench-marking or QOS processes. Since these statistics are already kept, it is very simple to analyze the statistics to create the historical signatures, and then monitor the statistics of the currently operating system to perform the signature checking process.
    • 公开了一种用于提高诸如软件系统的系统的可靠性的方法和系统。 在系统的可靠性架构中使用与系统操作(例如,QOS(服务质量)测量)相关的常规测量和监视的“服务测量”)。 服务测量包括许多替代数据类型,例如完成的事务,接收到的消息,已发送的消息,已完成的呼叫,发送的字节,处理的作业等。通常被监视用于其他目的的系统的任何操作都可以用于可靠性 本发明的结构。 大多数系统跟踪这些类型的统计数据,例如,它们的计费程序的一部分或其绩效基准标记或QOS流程的一部分。 由于这些统计信息已被保存,因此分析统计信息以创建历史签名非常简单,然后监视当前操作系统的统计信息,以执行签名检查过程。
    • 4. 发明申请
    • Transformations and White Point Constraint Solutions for a Novel Chromaticity Space
    • 用于新型色彩空间的变换和白点约束解决方案
    • US20130093914A1
    • 2013-04-18
    • US13342873
    • 2012-01-03
    • Yingjun BaiXuemei Zhang
    • Yingjun BaiXuemei Zhang
    • H04N9/73G06K9/00
    • H04N1/608H04N9/045H04N9/735
    • A novel chromaticity space is disclosed that may be used as a framework to implement an auto-white balance solution or other color image processing solutions that take advantage of the particular properties of the novel chromaticity space. The chromaticity space may be defined by using a series of mathematical transformations having parameters that are optimized to adapt to specific sensors' spectral sensitivities. The unique properties of the novel chromaticity space provide a conscious white point constraining strategy with clear physical meaning. In this chromaticity space, the ranges of possible white points under different kinds of lighting conditions can be defined by polygons. Because of the physical meaning the chromaticity space, the projection that is needed to bring an initially “out-of-bounds” white point back into the polygon also carries physical meaning, making the definition of projection behavior and its consequences conceptually clean and predictable.
    • 公开了一种新的色度空间,其可以用作实现自动白平衡解决方案或利用新颖色度空间的特定特性的其他彩色图像处理解决方案的框架。 色度空间可以通过使用具有优化以适应特定传感器的光谱灵敏度的参数的一系列数学变换来定义。 新颖色彩空间的独特性质提供了清晰的物理意义的白点约束策略。 在该色度空间中,可以通过多边形来定义不同种类的照明条件下可能的白点的范围。 由于色度空间的物理含义,将最初“超出界限”的白点带回多边形所需的投影也带有物理意义,从而使投射行为及其后果的定义在概念上清晰可预测。
    • 5. 发明授权
    • Arranging graphic objects on a page with text
    • 在带有文本的页面上布置图形对象
    • US08161384B2
    • 2012-04-17
    • US12428599
    • 2009-04-23
    • C. Brian AtkinsXuemei Zhang
    • C. Brian AtkinsXuemei Zhang
    • G06F17/00
    • G06F17/212
    • A candidate layout of frames on a page is ascertained, where the frames define respective size dimensions and positions of respective views of the graphic objects (including at least one block of text) on the page. If the target size dimensions are not accommodated by the size dimensions of the frame of the text block presentation, the candidate layout is modified by changing the size dimensions of the frame of the text block presentation to accommodate the target size dimensions and adjusting the size dimensions of the other frames in the candidate layout based on the changed size dimensions of the frame of the text block presentation. Also, different layouts of the frames on a page are determined from a different respective set of aspect ratios and nominal sizes subject to a set of layout constraints.
    • 确定页面上的帧的候选布局,其中帧定义页面上的图形对象(包括至少一个文本块)的各个视图的相应大小尺寸和位置。 如果目标尺寸尺寸不被文本块呈现的框架的尺寸尺寸所适应,则通过改变文本块呈现的框架的尺寸尺寸来修改候选布局,以适应目标尺寸尺寸并调整尺寸尺寸 基于文本块呈现的帧的改变的大小尺寸来选择候选布局中的其他帧。 而且,页面上的帧的不同布局根据一组布局约束从不同的相应组的宽高比和标称尺寸确定。
    • 8. 发明授权
    • System for determining pointer position, movement, and angle
    • 用于确定指针位置,运动和角度的系统
    • US07557799B2
    • 2009-07-07
    • US10870881
    • 2004-06-17
    • Richard L. BaerRamakrishna KakaralaDietrich W. VookXuemei ZhangIzhak BaharavPaul L. Corredoura
    • Richard L. BaerRamakrishna KakaralaDietrich W. VookXuemei ZhangIzhak BaharavPaul L. Corredoura
    • G09G5/08
    • G06F3/03544G06F3/0321G06F3/0395
    • An a data input system includes an encoded pad having position encoding and a data input device adapted to image a portion of the encoded pad to determine position and orientation of the data input device relative to the encoded pad. The encoding pad includes a plurality of correlation windows. Each correlation window includes a primary encoding marker in form of vertical line segment and a set of secondary encoding markers in form of diagonal line segments, at least one diagonal line segment intersecting the vertical line segment at an intersection angle. Spacing of the diagonal line segments encodes the X-axis position of the input device relative to the encoding pad. Intersection angle encodes the Y-axis position of the input device relative to the encoding pad. Angle of the primary encoding marker vertical line segment within the frame of the captured image encodes the angular orientation of the input device relative to the axes of the encoded pad.
    • 数据输入系统包括具有位置编码的编码焊盘和适于对编码焊盘的一部分进行成像以确定数据输入装置相对于编码焊盘的位置和方位的数据输入装置。 编码块包括多个相关窗口。 每个相关窗口包括垂直线段形式的主编码标记和以对角线段形式的一组次级编码标记,至少一个与交叉角相交的垂直线段的对角线段。 对角线段的间距编码输入设备相对于编码区的X轴位置。 交叉角度相对于编码垫编码输入装置的Y轴位置。 捕获图像的帧内的主编码标记垂直线段的角度编码输入设备相对于编码的焊盘的轴的角度取向。