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    • 1. 发明授权
    • Method and apparatus for testing of business processes for web services
    • 用于测试Web服务业务流程的方法和设备
    • US07954091B2
    • 2011-05-31
    • US11710121
    • 2007-02-23
    • Zhong Jie LiBin DuWei Sun
    • Zhong Jie LiBin DuWei Sun
    • G06F9/44G06F15/177G06F9/45
    • G06F8/24G06F9/4488G06F11/3664G06F11/3684G06F11/3696
    • A method for unit testing of business processes for Web services, including steps of mapping the Web service description language (WSDL) elements of a process under test and its partner processes into equivalent Object-Oriented language (OO) elements, and performing testing on the process under test based on Object-Oriented unit testing frameworks. Each Web service interface of the process under test and its partner processes is mapped into an equivalent OO interface, partner stubs are generated on basis of the OO interfaces of the partner processes, WSDL binding and service port information are defined for the generated partner stubs, test cases are formed which contain test logic describing the service invocations between the process under test and its partner processes, and the test cases are executed, wherein the partner stub and its associated mock object collectively implement the service of a corresponding partner process.
    • 一种用于Web服务的业务流程的单元测试的方法,包括将待测进程的Web服务描述语言(WSDL)元素及其伙伴进程映射到等效的面向对象语言(OO)元素的步骤,并对 基于面向对象的单元测试框架的测试过程。 被测进程的每个Web服务接口及其伙伴进程被映射到等效的OO接口中,根据合作伙伴进程的OO接口生成伙伴存根,为生成的伙伴存根定义WSDL绑定和服务端口信息, 形成测试用例,其中包含描述被测进程和其伙伴进程之间的服务调用的测试逻辑,并执行测试用例,其中伙伴存根及其相关联的模拟对象共同实现相应的伙伴进程的服务。
    • 2. 发明申请
    • Method and apparatus for testing of business processes for Web services
    • 用于测试Web服务业务流程的方法和设备
    • US20070277158A1
    • 2007-11-29
    • US11710121
    • 2007-02-23
    • Zhong Jie LiBin DuWei Sun
    • Zhong Jie LiBin DuWei Sun
    • G06F9/44
    • G06F8/24G06F9/4488G06F11/3664G06F11/3684G06F11/3696
    • A method for unit testing of business processes for Web services, including steps of mapping the Web service description language (WSDL) elements of a process under test and its partner processes into equivalent Object-Oriented language (OO) elements, and performing testing on the process under test based on Object-Oriented unit testing frameworks. Each Web service interface of the process under test and its partner processes is mapped into an equivalent OO interface, partner stubs are generated on basis of the OO interfaces of the partner processes, WSDL binding and service port information are defined for the generated partner stubs, test cases are formed which contain test logic describing the service invocations between the process under test and its partner processes, and the test cases are executed, wherein the partner stub and its associated mock object collectively implement the service of a corresponding partner process.
    • 一种用于Web服务的业务流程的单元测试的方法,包括将待测进程的Web服务描述语言(WSDL)元素及其伙伴进程映射到等效的面向对象语言(OO)元素的步骤,并对 基于面向对象的单元测试框架的测试过程。 被测进程的每个Web服务接口及其伙伴进程被映射到等效的OO接口中,根据合作伙伴进程的OO接口生成伙伴存根,为生成的伙伴存根定义WSDL绑定和服务端口信息, 形成测试用例,其中包含描述被测进程和其伙伴进程之间的服务调用的测试逻辑,并执行测试用例,其中伙伴存根及其相关联的模拟对象共同实现相应的伙伴进程的服务。
    • 8. 发明授权
    • Method for privacy-preserving order selection of encrypted element
    • 加密元素隐私保护顺序选择方法
    • US08891762B2
    • 2014-11-18
    • US12965066
    • 2010-12-10
    • Shantanu RaneWei Sun
    • Shantanu RaneWei Sun
    • H04L29/06H04L9/08
    • H04L9/0819H04L9/008H04L2209/46
    • A system and a method select an encrypted element in an encrypted vector according to an order of the encrypted element in the encrypted vector. The selecting is performed in a privacy-preserving manner. Values of the elements of the encrypted vector are scaled, such that the order of the elements in the encrypted vector is preserved, and then permuted to produce a scaled permuted vector. Information in the encrypted domain indicative of an order of elements in the scaled permuted vector is provided to a second processor having a private key. The second processor decrypts the information to determine the index of the encrypted element based on the order of the elements. The encrypted element is obliviously selected based on the index.
    • 系统和方法根据加密向量中加密元素的顺序选择加密向量中的加密元素。 以隐私保护的方式执行选择。 加密矢量的元素的值被缩放,使得保存加密矢量中的元素的顺序,然后被排列以产生缩放的置换向量。 将表示缩放置换向量中的元素的顺序的加密域中的信息提供给具有私钥的第二处理器。 第二处理器根据元素的顺序解密信息以确定加密元素的索引。 基于索引忽略加密元素。
    • 9. 发明授权
    • Glass suitable for chemical tempering and chemically tempered glass thereof
    • 玻璃适用于化学回火和化学钢化玻璃
    • US08828545B2
    • 2014-09-09
    • US13258939
    • 2009-07-16
    • Wei SunChuncai SongXiaoli ChenNing ChenJun XiaoChang Li
    • Wei SunChuncai SongXiaoli ChenNing ChenJun XiaoChang Li
    • C03C3/091C03C3/093C03C21/00C03C23/00
    • C03C3/091C03C3/093C03C21/002C03C23/007Y10T428/315
    • The invention provides a silica-alumina-sodium oxide glass easy to melt and suitable for a low temperature ion exchange process. The glass is suitable for chemical tempering and consists of 55-60 wt % of SiO2, 0.1-2.5 wt % of B2O3, 11-16 wt % of Al2O3, 14-17 wt % of Na2O, 1-8 wt % of K2O, 0-8 wt % of ZrO2, 0-5 wt % of CaO, 0-5 wt % of MgO and 0-1 wt % of Sb2O3. By reasonably setting the composition, the difficulty in glass production decreases and the glass melting temperature is reduced obviously, which is favorable to reduce energy consumption and improve yield of products. Under the condition that tempering temperature is 380□-500□ and tempering time is 4-12 h, the surface compressive stress can be 610-1100 Mpa, the depth of a stress layer can be 31-80 μm, and the glass is reinforced and has high shock resistance. The glass of the invention has high wear resistance and can be used as a protective glass material of high-grade electronic display products such as mobile phones and PDAs.
    • 本发明提供一种容易熔融并适用于低温离子交换工艺的二氧化硅 - 氧化铝 - 氧化钠玻璃。 该玻璃适用于化学回火,由55-60重量%的SiO2,0.1-2.5重量%的B2O3,11-16重量%的Al2O3,14-17重量%的Na2O,1-8重量%的K2O组成, 0-8重量%的ZrO 2,0-5重量%的CaO,0-5重量%的MgO和0-1重量%的Sb 2 O 3。 通过合理设定组成,玻璃生产难度降低,玻璃熔融温度明显降低,有利于降低能耗,提高产品产量。 在回火温度为380〜-500℃,回火时间为4-12h的条件下,表面压应力可达610-1100Mpa,应力层深度可达31-80μm,玻璃加强 并具有高抗冲击性。 本发明的玻璃具有高耐磨性,可用作高级电子显示产品如手机和PDA的保护玻璃材料。
    • 10. 发明授权
    • Mining generalized spatial association rule
    • 挖掘广义空间关联规则
    • US08819065B2
    • 2014-08-26
    • US13179125
    • 2011-07-08
    • Wei Shan DongArun HampapurZhong Bo JiangHongfei LiXuan LiuWei Sun
    • Wei Shan DongArun HampapurZhong Bo JiangHongfei LiXuan LiuWei Sun
    • G06F7/00G06F17/30
    • G06F17/30241G06F17/30592
    • A system, method and computer program product for mining a rule including spatial information and non-spatial information by using a SAR (Spatial Association Rule) mining tool. The computing system is configured to construct an expanded spatial predicate transaction table for reference spatial objects and a generalized taxonomy for task-relevant spatial objects. The computing system is configured to run the SAR mining tool with the constructed expanded spatial predicate transaction and the generalized taxonomy. The computing system outputs, from the SAR mining tool, a set of generalized spatial association rules for the reference spatial objects. The generalized spatial association rule includes the spatial information and non-spatial information, associated with both the reference spatial objects and the task-relevant spatial objects.
    • 一种用于通过使用SAR(空间关联规则)挖掘工具挖掘包括空间信息和非空间信息的规则的系统,方法和计算机程序产品。 计算系统被配置为构建用于参考空间对象的扩展空间谓词事务表和用于任务相关空间对象的广义分类法。 计算系统配置为运行SAR挖掘工具,其中构建了扩展的空间谓词事务和广义分类法。 计算系统从SAR挖掘工具输出一组用于参考空间对象的广义空间关联规则。 广义空间关联规则包括与参考空间对象和任务相关的空间对象相关联的空间信息和非空间信息。