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    • 1. 发明授权
    • Method and apparatus for real-time security verification of on-line services
    • 在线服务的实时安全验证方法和装置
    • US07841007B2
    • 2010-11-23
    • US10674878
    • 2003-09-29
    • David CurrieKenneth LeonardBenjamin Tyler
    • David CurrieKenneth LeonardBenjamin Tyler
    • G08B23/00
    • H04L63/1433G06F21/577G06Q40/04
    • A unique combination of several functions achieves a system by which consumers can validate the actual security status of a website before they decide to trust it, and therefore transact with it. In one example implementation, a security system includes a scanning engine that periodically and thoroughly scans the network and connected components of an on-line service such as a website. The results are stored and perhaps reported back to the service via alerts and the like. The website includes a “bug” which visitors can click on. The visual appearance of the “bug” can be altered (e.g. made invisible) in accordance with a determined level of security for the website. By clicking on the “bug,” the visitors can also be displayed web pages showing the security status of the website. Based on their review of such web pages, visitors can then decide whether to trust the website for further transactions.
    • 几个功能的独特组合实现了一个系统,消费者可以在确定网站的实际安全状态之前,确定它们的信任,从而与之进行交易。 在一个示例实现中,安全系统包括扫描引擎,其周期性地彻底地扫描网络和在线服务(诸如网站)的连接的组件。 结果被存储并且可能通过警报等报告回服务。 该网站包含访问者可以点击的“错误”。 根据网站的确定的安全级别,可以改变“错误”的视觉外观(例如使其不可见)。 通过点击“错误”,访问者还可以显示网页,显示网站的安全状态。 根据对这些网页的审查,访问者可以决定是否信任网站进行进一步的交易。
    • 8. 发明申请
    • Method and apparatus for real-time security verification of on-line services
    • 在线服务的实时安全验证方法和装置
    • US20050160286A1
    • 2005-07-21
    • US10674878
    • 2003-09-29
    • David CurrieKenneth LeonardBenjamin Tyler
    • David CurrieKenneth LeonardBenjamin Tyler
    • G06F11/30G06F21/00G06Q40/00H04L29/06H04L9/00
    • H04L63/1433G06F21/577G06Q40/04
    • A unique combination of several functions achieves a system by which consumers can validate the actual security status of a website before they decide to trust it, and therefore transact with it. In one example implementation, a security system includes a scanning engine that periodically and thoroughly scans the network and connected components of an on-line service such as a website. The results are stored and perhaps reported back to the service via alerts and the like. The website includes a “bug” which visitors can click on. The visual appearance of the “bug” can be altered (e.g. made invisible) in accordance with a determined level of security for the website. By clicking on the “bug,” the visitors can also be displayed web pages showing the security status of the website. Based on their review of such web pages, visitors can then decide whether to trust the website for further transactions.
    • 几个功能的独特组合实现了一个系统,消费者可以在确定网站的实际安全状态之前,确定它们的信任,从而与之进行交易。 在一个示例实现中,安全系统包括扫描引擎,其周期性地彻底地扫描网络和在线服务(诸如网站)的连接的组件。 结果被存储并且可能通过警报等报告回服务。 该网站包含访问者可以点击的“错误”。 根据网站的确定的安全级别,可以改变“错误”的视觉外观(例如使其不可见)。 通过点击“错误”,访问者还可以显示网页,显示网站的安全状态。 根据对这些网页的审查,访问者可以决定是否信任网站进行进一步的交易。
    • 10. 发明授权
    • Air supply system for an internal combustion engine
    • 内燃机供气系统
    • US07926473B2
    • 2011-04-19
    • US12209423
    • 2008-09-12
    • David CurrieIvan Lazich
    • David CurrieIvan Lazich
    • F02B47/08F02B29/00
    • F02M26/34F02M26/02F02M26/05
    • An air supply system for a reciprocating internal combustion engine includes an air inlet and a mixing volute for receiving charge air from the air inlet. The mixing volute is configured to impart swirl in a first direction to charge air passing from the air inlet and into the volute. An EGR injector introduces exhaust gas into charge air passing through the mixing volute, with the EGR injector being configured to impart swirl in a direction which is opposite to the swirl produced by the mixing volute. This causes the EGR gases and the charge air to become thoroughly mixed within a very short path length through the mixing volute.
    • 用于往复式内燃机的空气供应系统包括空气入口和用于从进气口接收增压空气的混合蜗壳。 混合蜗壳构造成在第一方向上施加涡流以对从入口进入并进入蜗壳的空气进行加压。 EGR喷射器将废气引入通过混合蜗壳的增压空气中,EGR喷射器构造成在与由混合蜗壳产生的涡流相反的方向上施加涡流。 这使得EGR气体和增压空气通过混合蜗壳在非常短的路径长度内完全混合。