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    • 61. 发明申请
    • Efficient XML schema validation of XML fragments using annotated automaton encoding
    • 使用注释自动机编码的XML片段的高效XML模式验证
    • US20050177543A1
    • 2005-08-11
    • US10774594
    • 2004-02-10
    • Yao-Ching ChenFen-Ling LinNing WangGuogen Zhang
    • Yao-Ching ChenFen-Ling LinNing WangGuogen Zhang
    • G06F7/00G06F17/22G06F17/27
    • G06F17/2725G06F17/2229G06F17/2247Y10S707/99942Y10S707/99943
    • A method and system for Extensible Markup Language (XML) schema validation, includes: loading an XML document into a runtime validation engine, where the runtime validation engine includes an XML schema validation parser; loading an annotated automaton encoding (AAE) for an XML schema definition into the XML schema validation parser; and validating the XML document against the XML schema definition by the XML schema validation parser utilizing the annotated automaton encoding. Each XML schema definition is compiled once into the AAE format, rather than being compiled each time an XML document is validated, and thus significant time is saved. The code for the runtime validation engine is fixed and does not vary depending on the XML schema definition, rather than varying for each XML schema definition, and thus space overhead is minimized. Flexibility in the validation process is provided without compromising performance.
    • 可扩展标记语言(XML)模式验证的方法和系统包括:将XML文档加载到运行时验证引擎中,运行时验证引擎包含XML模式验证解析器; 将用于XML模式定义的带注释的自动机编码(AAE)加载到XML模式验证解析器中; 并通过使用带注释的自动机编码的XML模式验证解析器根据XML模式定义验证XML文档。 每个XML模式定义都被编译为AAE格式,而不是每次验证XML文档时被编译,因此节省了大量的时间。 运行时验证引擎的代码是固定的,并且不会根据XML模式定义而变化,而不是因为每个XML模式定义而变化,因此空间开销最小化。 提供验证过程中的灵活性,而不会影响性能。
    • 68. 发明授权
    • Systems and methods for packet filtering and switching
    • 分组过滤和切换的系统和方法
    • US08891527B2
    • 2014-11-18
    • US13365606
    • 2012-02-03
    • Ning Wang
    • Ning Wang
    • H04L12/28
    • H04L49/354H04L49/3009
    • A method of packet processing includes receiving a packet at one of a plurality of network ports at a switch device, tagging the packet with a first identification, tagging the packet with a second identification, using a first table to determine a first set of output port identifications based at least in part on the first identification, using a second table to determine a second set of output port identifications based at least in part on the second identification, and performing a logical operation using the first set of output port identifications and the second set of output port identifications to identify one or more of a plurality of output ports at the switch device.
    • 分组处理的方法包括:在交换设备处的多个网络端口之一处接收分组,用第一标识标记分组,用第二标识标记分组,使用第一表来确定第一组输出端口 至少部分地基于第一标识的标识,使用第二表至少部分地基于第二标识来确定第二组输出端口标识,以及使用第一组输出端口标识和第二标识执行逻辑操作 一组输出端口标识以识别交换设备上的多个输出端口中的一个或多个。
    • 69. 发明授权
    • Rapid response relative humidity sensor using anodic aluminum oxide film
    • 快速响应相对湿度传感器采用阳极氧化铝膜
    • US08783101B2
    • 2014-07-22
    • US13380053
    • 2010-12-22
    • Chun ZhangJianying MiaoNing Wang
    • Chun ZhangJianying MiaoNing Wang
    • G01N19/10G01N27/22
    • G01N27/223
    • A rapid response relative humidity sensor based on nano-structured aluminum oxide thin film is disclosed. The main body of the sensor is an anodic aluminum oxide thin film of about 2-20 μm thick formed from an Al substrate which serves as one electrode. A porous metal layer of about 20-200 nm thick is formed over the anodic aluminum oxide thin film and functions as a second electrode. The alumina thin film contains nano-sized channels of about 10-100 nm in diameter, serving as a capacitive relative humidity sensor having high sensitivity and short response time. Thermal annealing at elevated temperature improves the linearity of the capacitance versus humidity curve, giving a full range humidity sensing range. Hysteresis and degradation are negligible for the humidity sensors.
    • 公开了一种基于纳米结构氧化铝薄膜的快速响应相对湿度传感器。 传感器的主体是由作为一个电极的Al衬底形成的大约2-20μm厚的阳极氧化铝薄膜。 在阳极氧化铝薄膜上形成约20-200nm厚的多孔金属层,起第二电极的作用。 氧化铝薄膜包含直径约10-100nm的纳米尺寸的通道,用作具有高灵敏度和较短响应时间的电容式相对湿度传感器。 高温下的热退火可提高电容与湿度曲线的线性度,从而提供全范围湿度检测范围。 湿度传感器的滞后和退化可忽略不计。
    • 70. 发明申请
    • APPARATUS AND METHOD FOR PACKING A SOFTWARE PACKAGE OF VERSION UPGRADE
    • 用于包装版本升级的软件包的装置和方法
    • US20130132936A1
    • 2013-05-23
    • US13259159
    • 2010-11-23
    • Ning WangXudong JinXiao Zhang
    • Ning WangXudong JinXiao Zhang
    • G06F9/445
    • G06F8/65G06F21/57
    • The present invention discloses a method and an apparatus for packing a version upgrade software package. The method comprises: acquiring version upgrade software for upgrading a mobile terminal; encrypting the version upgrade software; generating version upgrade software information corresponding to the encrypted version upgrade software, wherein the version upgrade software information comprises a decryption flag, and the decryption flag is configured to indicate that the encrypted version upgrade software is decrypted within the version upgrade software package during process of upgrading mobile terminal; and packing to obtain the version upgrade software package of the mobile terminal, wherein the version upgrade software package comprises the encrypted version upgrade software, the version upgrade software information and a self-triggered unpacking program, and the self-triggered unpacking program is configured to start the version upgrade software and the version upgrade software information to upgrade the mobile terminal.
    • 本发明公开了一种用于打包版本升级软件包的方法和装置。 该方法包括:获取用于升级移动终端的版本升级软件; 加密版本升级软件; 生成与所述加密版本升级软件对应的版本升级软件信息,其中,所述版本升级软件信息包括解密标志,所述解密标志被配置为指示在升级过程中版本升级软件包内的加密版本升级软件被解密 移动终端; 并打包以获得移动终端的版本升级软件包,其中版本升级软件包包括加密版本升级软件,版本升级软件信息和自触发解包程序,并且自触发解包程序被配置为 启动版本升级软件和版本升级软件信息升级移动终端。