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    • 1. 发明申请
    • ALLOCATING BANDWIDTH BETWEEN NETWORK COMPUTING DEVICES FOR PUSHING DATA TO A CLIENT COMPUTING DEVICE
    • 在网络计算设备之间分配数据到客户计算设备的带宽分配
    • WO2017172372A1
    • 2017-10-05
    • PCT/US2017/022704
    • 2017-03-16
    • CISCO TECHNOLOGY, INC.
    • PRIETO, Alberto GonzalezCLEMM, AlexanderVOIT, Eric
    • H04L12/801H04L12/825
    • Allocating bandwidth technique comprises determining a first bandwidth share to be available for a first device to send data to a client during a first future period of time; determining a first rate at which the first device is to send data to the client during the first future period of time; determining that the first rate is less than the first bandwidth share to be available for the first device to send data to the client during the first future period of time by a first delta; receiving, from a second device, a first request for additional rate allocation; sending, to the second device, a first rate allocation that is equal to or less than the first delta; sending data during the first future period of time at a first actual rate that is less than or equal to the first rate minus the first rate allocation.
    • 分配带宽技术包括确定第一设备在第一未来时间段期间可用于向客户端发送数据的第一带宽份额; 确定所述第一设备在所述第一未来时间段期间将数据发送到所述客户端的第一速率; 确定所述第一速率小于所述第一设备在所述第一未来时间段期间向所述客户端发送数据第一增量可用的所述第一带宽份额; 从第二设备接收对额外费率分配的第一请求; 向第二设备发送等于或小于第一增量的第一速率分配; 在第一个未来时间段内以小于或等于第一个速率减去第一个速率分配的第一个实际速率发送数据。
    • 3. 发明申请
    • DISTRIBUTED STATELESS INFERENCE OF HOP-WISE DELAYS AND ROUND-TRIP TIME FOR INTERNET PROTOCOL TRAFFIC
    • 分布式无状态因特网协议流量的HOP-WISE延迟和R-TRIP时间
    • WO2017184299A1
    • 2017-10-26
    • PCT/US2017/024296
    • 2017-03-27
    • CISCO TECHNOLOGY, INC.
    • CLEMM, AlexanderCHANDRAMOULI, MouliSUDHAAKAR, Raghuram
    • H04L12/26
    • H04L43/0864H04B1/7143H04L5/0055H04L43/0858H04L43/087H04L43/10H04L61/2007H04L61/6063
    • In an embodiment, a computer implemented method for determining network delay values comprises receiving, by a management server that is communicatively coupled via one or more networks or internetworks to a first router and a second router, two or more first timestamp values from the first router at first times at which two or more packets associated with a particular packet flow are received at the first router; receiving by the management server two or more second timestamp values from the second router at second times at which the same two or more packets associated with the same particular packet flow are received at the second router; determining one or more of: a one-way delay time in which the particular packet flow travels between the first router and the second router based on the first timestamp values and the second timestamp values; an inferred round-trip time.
    • 在一个实施例中,用于确定网络延迟值的计算机实现的方法包括通过经由一个或多个网络或互联网络可通信地耦合到第一路由器和第二路由器的管理服务器接收两个或 在第一路由器处接收来自第一路由器的更多的第一时间戳值,在所述第一路由器处接收与特定分组流相关联的两个或更多个分组; 在所述第二路由器处接收与所述相同的特定分组流相关联的相同的两个或更多个分组的第二时间,由所述管理服务器接收来自所述第二路由器的两个或更多个第二时间戳值; 基于所述第一时间戳值和所述第二时间戳值确定所述特定分组流在所述第一路由器与所述第二路由器之间行进的单向延迟时间; 推断的往返时间。
    • 4. 发明申请
    • MONITORING OF SYSTEMS ALONG A PATH
    • 监控系统的路径
    • WO2012008977A1
    • 2012-01-19
    • PCT/US2010/054349
    • 2010-10-27
    • CISCO TECHNOLOGY, INC.CLEMM, AlexanderJIANG, YuquanCHANG, SteveLIN, Shyyunn
    • CLEMM, AlexanderJIANG, YuquanCHANG, SteveLIN, Shyyunn
    • G06F11/34H04L12/26
    • H04L43/08H04L43/02H04L43/04H04L43/06H04L43/12
    • In an embodiment, a method comprises initiating a monitoring session for a communication path including creating and storing monitoring session state data; sending, to a first responder computer of the communication path, a first request to initiate a first state servlet that is configured to monitor continuously during the monitoring session one or more characteristics of one or more processes that the first responder computer may perform; sending, to the first responder computer, monitoring instructions to monitor the one or more characteristics of the one or more processes; while the monitoring session is active and the first responder computer is in the communication path, receiving and collecting monitored information from the first responder computer; in response to determining that the first responder computer is not in the communication path or that the monitoring session has become inactive, automatically and autonomously ending the monitoring session.
    • 在一个实施例中,一种方法包括启动用于通信路径的监视会话,包括创建和存储监视会话状态数据; 向所述通信路径的第一应答计算机发送启动被配置为在所述监视会话期间连续监视所述第一响应计算机可执行的一个或多个进程的一个或多个特征的第一状态小服务程序的第一请求; 向所述第一响应者计算机发送监视指令以监视所述一个或多个进程的所述一个或多个特征; 同时监视会话是活动的,并且第一响应者计算机处于通信路径中,从第一应答计算机接收和收集监视的信息; 响应于确定第一响应者计算机不在通信路径中或者监视会话已经变得不活动,自动且自主地结束监视会话。