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    • 1. 发明授权
    • Systems and methods of sharing information between protocol layers
    • 在协议层之间共享信息的系统和方法
    • US07693181B2
    • 2010-04-06
    • US11771221
    • 2007-06-29
    • Umakishore RamachandranRajnish KumarCharles Albert Reiss
    • Umakishore RamachandranRajnish KumarCharles Albert Reiss
    • H04J3/16
    • H04L69/32
    • An exemplary device comprises a first and second protocol layer, and an information exchange service (IES) in communication with the first and the second protocol layers. The IES is configured to share control information between the protocol layers. A protocol layer is capable of adapting behavior based on the control information shared by the IES. An exemplary method is presented for communicating between publishing and subscribing layers in a protocol stack. The method comprises, in the publishing layer, specifying a selected attribute and an associated value to be shared with the subscribing layer. The method further comprises storing the specified attribute and associated value, and receiving a subscribe request from the requesting layer. The request specifies the published attribute. The method further comprises, in response to the request, providing the associated value to a subscribing layer, and in the subscribing layer, adapting behavior based on the shared control information.
    • 示例性设备包括第一和第二协议层以及与第一和第二协议层通信的信息交换服务(IES)。 IES被配置为在协议层之间共享控制信息。 协议层能够根据IES共享的控制信息调整行为。 呈现了用于在协议栈中的发布和订阅层之间进行通信的示例性方法。 该方法包括在发布层中指定要与订阅层共享的所选择的属性和相关联的值。 该方法还包括存储指定的属性和相关联的值,以及从请求层接收订阅请求。 该请求指定已发布的属性。 该方法还包括响应于该请求,向订阅层提供相关联的值,并且在订阅层中,基于共享控制信息调整行为。
    • 2. 发明申请
    • Systems and Methods of Sharing Information Between Protocol Layers
    • 协议层之间共享信息的系统和方法
    • US20080002740A1
    • 2008-01-03
    • US11771221
    • 2007-06-29
    • Umakishore RamachandranRajnish KumarCharles Reiss
    • Umakishore RamachandranRajnish KumarCharles Reiss
    • H04J3/16
    • H04L69/32
    • An exemplary device comprises a first and second protocol layer, and an information exchange service (IES) in communication with the first and the second protocol layers. The IES is configured to share control information between the protocol layers. A protocol layer is capable of adapting behavior based on the control information shared by the IES. An exemplary method is presented for communicating between publishing and subscribing layers in a protocol stack. The method comprises, in the publishing layer, specifying a selected attribute and an associated value to be shared with the subscribing layer. The method further comprises storing the specified attribute and associated value, and receiving a subscribe request from the requesting layer. The request specifies the published attribute. The method further comprises, in response to the request, providing the associated value to a subscribing layer, and in the subscribing layer, adapting behavior based on the shared control information.
    • 示例性设备包括第一和第二协议层以及与第一和第二协议层通信的信息交换服务(IES)。 IES被配置为在协议层之间共享控制信息。 协议层能够根据IES共享的控制信息调整行为。 呈现了用于在协议栈中的发布和订阅层之间进行通信的示例性方法。 该方法包括在发布层中指定要与订阅层共享的所选择的属性和相关联的值。 该方法还包括存储指定的属性和相关联的值,以及从请求层接收订阅请求。 该请求指定已发布的属性。 该方法还包括响应于该请求,向订阅层提供相关联的值,并且在订阅层中,基于共享控制信息调整行为。
    • 3. 发明授权
    • Dead timestamp identification and elimination
    • 死时间戳识别和消除
    • US07139784B2
    • 2006-11-21
    • US10629357
    • 2003-07-29
    • Kathleen KnobeUmakishore Ramachandran
    • Kathleen KnobeUmakishore Ramachandran
    • G06F17/30
    • G06F12/0269Y10S707/99957
    • The performance of an application is improved by identifying and eliminating items with dead time-stamps and eliminating work on items with irrelevant time-stamps. An algorithm executing in each node of a task graph computes and propagates guarantees which are used to eliminate both items with dead time-stamps and irrelevant computation on dead time-stamps. A continuous garbage collector eliminates items with dead time-stamps while the node continues to process received items. Unnecessary computations are reduced by automatically discerning the interest set of downstream modules for time-stamps and feeding the interest set back to upstream modules.
    • 通过识别和消除带有死时戳的物品,消除对不合时宜的物品的工作,可以提高应用程序的性能。 在任务图的每个节点中执行的算法计算和传播保证,其用于消除具有死时戳的两个项目以及对死时间戳的不相关的计算。 连续的垃圾收集器消除了具有死区时间戳的项目,同时节点继续处理收到的项目。 通过自动识别下游模块对时间戳的兴趣集,将兴趣集合回馈给上游模块,可以减少不必要的计算。