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    • 92. 发明授权
    • In-situ digital inking for applications
    • 原位数字上墨用于应用
    • US06867786B2
    • 2005-03-15
    • US10206597
    • 2002-07-29
    • Charlton E. LuiJustin Garrett Tolmer
    • Charlton E. LuiJustin Garrett Tolmer
    • G06F3/033G06F3/048G06F17/24G09G5/00G09G5/02G06K5/56
    • G06F17/242G06F3/0488
    • A digital ink environment is provided for non-native ink application programs to create independent ink services for sharing between different application programs and transmission. The digital ink environment is provided for interacting with embedded or linked ink words or other ink data in a compound ink document. The user is provided with the freedom to input digital ink so they can write anywhere in the ink environment, in any orientation, and using any desired stroke size provided by the ink environment. The ink environment is provided in an activated state for in-situ user interaction and manipulation in a computing environment, for example a pen-based environment.
    • 为非本机墨水应用程序提供数字墨水环境,以创建用于在不同应用程序和传输之间共享的独立墨水服务。 提供数字墨水环境用于与复合墨水文档中的嵌入或连接的墨水字或其他墨水数据进行交互。 用户被提供了输入数字墨水的自由度,使得它们可以以任何方向在墨水环境中的任何地方写入,并且使用由墨水环境提供的任何期望的笔触尺寸。 墨水环境被提供在激活状态,用于在计算环境(例如基于笔的环境)中进行现场用户交互和操纵。
    • 93. 发明授权
    • Regulating real-time data capture rates to match processor-bound data consumption rates
    • 调节实时数据捕获速率以匹配处理器限制的数据消耗速率
    • US06865627B2
    • 2005-03-08
    • US10330389
    • 2002-12-27
    • Yee J. Wu
    • Yee J. Wu
    • G06F3/06G06F13/00G06F15/16G11B19/04G11B20/10G11C7/02
    • G11B20/10527G11B19/04G11B2020/1074
    • Systems and methods to regulate real-time data capture rates to match processor-bounded data consumption operations are described. In one aspect, a computer system is connected to a data source. A first transition time is determined for the data source to change from a first mode to a second mode. A second transition time is determined for the data source to change from the second mode to the first mode. Based on the first and second transition times, the data source is set into respective ones of the first and second modes. This is performed such that real-time capture of data from the data source is regulated by the computer system to substantially match processor-bound data consumption rates of an application consuming the data.
    • 描述了用于调节实时数据捕获速率以匹配处理器有限数据消耗操作的系统和方法。 在一个方面,计算机系统连接到数据源。 确定数据源从第一模式变为第二模式的第一转换时间。 确定数据源从第二模式改变到第一模式的第二转换时间。 基于第一和第二转换时间,将数据源设置为第一和第二模式中的相应的数据源。 执行这样的操作,使得来自数据源的数据的实时捕获由计算机系统调节以基本上匹配消耗数据的应用的处理器绑定的数据消耗速率。
    • 95. 发明授权
    • System for data compression of an image using a JPEG compression circuit
modified for filtering in the frequency domain
    • 使用修改为频域滤波的JPEG压缩电路对图像进行数据压缩的系统
    • US5706216A
    • 1998-01-06
    • US508745
    • 1995-07-28
    • Michael L. Reisch
    • Michael L. Reisch
    • G06T9/00H03H17/02H04N1/41H04N7/26H04N7/30G06F17/00
    • H03H17/0202H04N19/126H04N19/48H04N19/527H04N19/80H04N19/86H04N19/90H04N19/124H04N19/60
    • A system for filtering an image during data compression using a standard JPEG compression/decompression chip typically requires a separate spatial filter external to the chip. The spatial filter is composed of numerous shift registers, flip-flops, multipliers and at least one adder. In contrast, an image filtering system which filters in the frequency domain using the inventive JPEG compression chip modified for filtering in the frequency domain does not require the separate spatial filter and its many components. The modified JPEG chip includes a raster to block converter which converts an image signal into 8.times.8 blocks, a DCT processor which converts the 8.times.8 blocks into DCT coefficients, a multiplier which generates filtered DCT coefficients by multiplying predetermined filtering coefficients times the DCT coefficients, a quantizer which generates quantized blocks to a predetermined level stored in a visibility table by quantizing the filtered coefficients, a zigzag scanner which generates a vector having the same number of elements as the quantized blocks, a run-length coder for determining the appropriate run-length according to entropy encoding received from a preloaded Huffman table, and a variable length code packer/unpacker for compressing the entropy encoded vector. A block to raster converter is included to reformat decompressed data.
    • 在使用标准JPEG压缩/解压缩芯片的数据压缩期间过滤图像的系统通常需要在芯片外部的单独的空间滤波器。 空间滤波器由多个移位寄存器,触发器,乘法器和至少一个加法器组成。 相比之下,使用修改为频域滤波的本发明JPEG压缩芯片对频域进行滤波的图像滤波系统不需要单独的空间滤波器及其许多分量。 经修改的JPEG芯片包括将图像信号转换为8×8块的光栅到块转换器,将8×8块转换为DCT系数的DCT处理器,通过将预定滤波系数乘以DCT系数产生滤波DCT系数的乘法器,量化器 其通过量化滤波后的系数将量化块产生到存储在可见度表中的预定水平;生成具有与量化块相同数量的元素的向量的锯齿形扫描器,用于根据量化块确定适当游程长度的游程长度编码器 对从预加载的霍夫曼表接收的熵编码以及用于压缩熵编码向量的可变长度代码封装器/解包器。 包括块到光栅转换器以重新格式化解压缩数据。
    • 98. 发明授权
    • Enhancing personal data search with information from social networks
    • 通过社交网络的信息增强个人数据搜索
    • US08805833B2
    • 2014-08-12
    • US12954247
    • 2010-11-24
    • Suman Kumar NathDouglas Christopher Burger
    • Suman Kumar NathDouglas Christopher Burger
    • G06F17/30
    • G06F17/30867G06Q30/0282G06Q50/01
    • The personal data search technique uses data input by users for a given user's personal data on a social networking site to enrich the given user's personal data. The technique annotates personal data stored on a personal computing device or in a computing cloud with data obtained from social networking sites (for example, tags, comments, likes/dislikes and so forth) provided by friends/other users in the given user's social network or networks. Such annotations can later are used by search engine to enhance the search functionality and/or to improve the ranking of search results. Since the data is entered by actual human users it is very accurate and since the data is already readily available on social networks the cost to obtain it is very inexpensive.
    • 个人数据搜索技术使用用户在社交网站上给定用户的个人数据输入的数据,以丰富给定用户的个人数据。 该技术使用从给定用户的社交网络中的朋友/其他用户提供的社交网站(例如,标签,评论,喜欢/不喜欢等)获得的数据来注释存储在个人计算设备或计算云中的个人数据 或网络。 这样的注释可以稍后被搜索引擎用来增强搜索功能和/或提高搜索结果的排名。 由于数据是由实际的人类用户输入的,因此这是非常准确的,由于数据已经在社交网络上已经很容易获得,因此获得成本非常便宜。