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    • 5. 发明申请
    • Device and method for bandwidth optimization using a local cache
    • 使用本地缓存进行带宽优化的设备和方法
    • US20050081252A1
    • 2005-04-14
    • US10686284
    • 2003-10-14
    • Thomas ChefalasSteven MastrianniAjay Mohindra
    • Thomas ChefalasSteven MastrianniAjay Mohindra
    • G06F15/00G06F17/00G06F17/21G06F17/24H04N7/025H04N7/10H04N7/16
    • H04N21/4331H04N7/163H04N21/23424H04N21/44016H04N21/812H04N21/8455
    • A device 60 for time-shifting a first signal set with respect to a second signal set, as compared to the time sequence in which they were received, includes a receiver 44B, 46B, a storage means 44C, 46C, 70, a central processing unit 66, and a user interface 72. The first signal set 38 bears a cache marker 34 that directs the CPU to store it in a local storage. The second signal set 40 bears a recall marker 36 that uniquely identifies the first signal set 38 through the cache marker 34, and that determines a sequence in which the first and second signal sets are to be output. The CPU uses the recall marker and cache marker to sequence the first and second signal sets relative to one another in time that differs from the timed relation in which they were received. By storing the first signal set in a local storage, it need be broadcast or transmitted only once, eliminating the need to re-broadcast recurring commercial advertisements and conserving bandwidth.
    • 与其接收的时间序列相比,用于相对于第二信号集合对第一信号集合进行时移的装置60包括接收器44B,46B,存储装置44C,46C,70,中央处理 单元66和用户接口72.第一信号组38具有指示CPU将其存储在本地存储器中的高速缓存标记34。 第二信号组40具有通过高速缓存标识器34唯一地识别第一信号组38并且确定要在其中输出第一和第二信号组的序列的调用标记36。 CPU使用召回标记和高速缓存标记来对时间上的第一和第二信号组相对于它们被接收的定时关系进行排序。 通过将第一信号集合存储在本地存储器中,需要仅广播或传输一次,从而不需要重新播放经常性商业广告并节省带宽。
    • 8. 发明授权
    • Method and apparatus for security-aware elasticity of application and services
    • 应用和服务的安全感知弹性的方法和装置
    • US08793766B2
    • 2014-07-29
    • US13419037
    • 2012-03-13
    • Ashish KunduAjay MohindraSambit Sahu
    • Ashish KunduAjay MohindraSambit Sahu
    • G06F21/00H04L29/06G06F9/50
    • G06F21/604G06F2209/5019
    • In a method for scaling up/down security (non-functional) components of an application, determine (a) types of interactions and a number of each type of interaction each non-security (functional) component has with security components for a plurality of requests. Determine, based on (a) and an expected number of incoming requests to the application, (b) types of requests to and interactions with the security components involving the non-security components and (c) a number of requests to and interactions with the security components involving non-security components for each type of request to the security components involving non-security components. Determine, for each security component, a capacity required for each type of request involving the non-security components and a capacity required for each type of interaction involving the non-security components. Change the capacities of the security components to new capacities, wherein the new capacities are based on (a), (c) and the determined capacities.
    • 在用于扩展/降低应用程序的安全性(非功能))组件的方法中,确定(a)每个非安全(功能)组件具有的多个交互的安全组件的交互类型和每种类型的交互的数量, 要求。 根据(a)和对应用程序的传入请求的预期数量确定(b)与涉及非安全组件的安全组件的请求类型和与其相互作用,以及(c)与 涉及非安全组件的安全组件,用于针对涉及非安全组件的安全组件的每种请求类型。 为每个安全组件确定涉及非安全组件的每种类型的请求所需的容量以及涉及非安全组件的每种类型的交互所需的容量。 将安全组件的能力改变为新能力,其中新能力基于(a),(c)和确定的能力。