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    • 1. 发明授权
    • Session admission control in a communications network
    • 通信网络中的会话接纳控制
    • US08203948B2
    • 2012-06-19
    • US12602620
    • 2007-06-01
    • Norbert KissGergely PongraczGergely Seres
    • Norbert KissGergely PongraczGergely Seres
    • H04L12/26H04L12/66
    • H04L47/822H04L47/27H04L47/70H04L47/76H04L47/805
    • There is provided a en edge node and a method of controlling session admission in a communications network. The method comprises measuring a Quality of Service parameter between an edge node and a corresponding edge node and, on the basis of the measured Quality of Service parameter, calculating a target window size. The target window size relates to the maximum rate of data that can be sent from the edge node to the corresponding edge node while retaining a predetermined Quality of Service. A current window size is determined on the basis of existing established sessions between the two edge nodes. When a request for session admission is received, the current window size is compared with the target window size and, on the basis of the comparison, a determination is made whether to admit the request for session admission.
    • 提供了边缘节点和控制通信网络中的会话准入的方法。 该方法包括:测量边缘节点和对应边缘节点之间的服务质量参数,并且基于测量的服务质量参数来计算目标窗口大小。 目标窗口大小涉及可以在保留预定服务质量的同时从边缘节点发送到相应边缘节点的最大数据速率。 基于两个边缘节点之间现有已建立的会话来确定当前窗口大小。 当接收到会话准入的请求时,将当前窗口大小与目标窗口尺寸进行比较,并且基于比较,确定是否允许会话准入请求。
    • 4. 发明授权
    • Load control in a communication network
    • 通信网络中的负载控制
    • US08040805B2
    • 2011-10-18
    • US12445060
    • 2006-10-09
    • Gergely PongraczDaniel Krupp
    • Gergely PongraczDaniel Krupp
    • H04L12/26
    • H04L47/10G06F9/50H04L47/11H04L47/263H04L67/1002
    • A gateway apparatus for interfacing an access network 1 to a service network 3, the apparatus comprising an input for receiving access requests from the access network at a first flow rate, an output for forwarding access requests to a gateway controller at a second flow rate, and a flow controller for controlling the flow of access requests from said input to said output. The flow controller comprises a receiver for receiving a restrict ion value from the gateway controller, first processing means for determining whether the received restriction value is more restrictive than any currently in use restriction value and, if so, for determining a leak rate on the basis of the received restriction value and the current second flow rate, and second processing means for allowing access requests to pass to said output at a rate up to the determined leak rate at least until a further restriction value is received.
    • 一种用于将接入网络1接入服务网络3的网关设备,该设备包括用于以第一流量从接入网络接收接入请求的输入,用于以第二流量向网关控制器转发接入请求的输出, 以及流量控制器,用于控制从所述输入到所述输出的访问请求流。 流量控制器包括:接收器,用于从网关控制器接收限制值;第一处理装置,用于确定所接收的限制值是否比任何当前使用的限制值更严格,如果是,则基于 接收到的限制值和当前第二流量,以及第二处理装置,用于允许访问请求以至少达到确定的泄漏率的速率传递到所述输出,直到接收到另外的限制值。
    • 8. 发明申请
    • LOAD CONTROL IN A COMMUNICATION NETWORK
    • 通信网络中的负载控制
    • US20100165844A1
    • 2010-07-01
    • US12445060
    • 2006-10-09
    • Gergely PongraczDaniel Krupp
    • Gergely PongraczDaniel Krupp
    • H04L12/56
    • H04L47/10G06F9/50H04L47/11H04L47/263H04L67/1002
    • A gateway apparatus for interfacing an access network 1 to a service network 3, the apparatus comprising an input for receiving access requests from the access network at a first flow rate, an output for forwarding access requests to a gateway controller at a second flow rate, and a flow controller for controlling the flow of access requests from said input to said output. The flow controller comprises a receiver for receiving a restrict ion value from the gateway controller, first processing means for determining whether the received restriction value is more restrictive than any currently in use restriction value and, if so, for determining a leak rate on the basis of the received restriction value and the current second flow rate, and second processing means for allowing access requests to pass to said output at a rate up to the determined leak rate at least until a further restriction value is received.
    • 一种用于将接入网络1接入服务网络3的网关设备,该设备包括用于以第一流量从接入网络接收接入请求的输入,用于以第二流量向网关控制器转发接入请求的输出, 以及流量控制器,用于控制从所述输入到所述输出的访问请求流。 流量控制器包括:接收器,用于从网关控制器接收限制值;第一处理装置,用于确定所接收的限制值是否比任何当前使用的限制值更严格,如果是,则基于 接收到的限制值和当前第二流量,以及第二处理装置,用于允许访问请求以至少达到确定的泄漏率的速率传递到所述输出,直到接收到另外的限制值。
    • 9. 发明授权
    • Dynamic control of air interface throughput
    • 空中接口吞吐量的动态控制
    • US08565091B2
    • 2013-10-22
    • US12914161
    • 2010-10-28
    • Gergely PongraczZoltan Richard TuranyiSandor RaczSzilveszter Nadas
    • Gergely PongraczZoltan Richard TuranyiSandor RaczSzilveszter Nadas
    • H04L12/26
    • H04L47/2441H04L47/14H04L47/2408H04L47/2416H04L47/2483H04L47/2491H04L69/22H04W28/0252H04W28/0268H04W28/10
    • A system, method, and network node for dynamically controlling throughput over an air interface between a mobile terminal and a radio telecommunication system. A Gateway GPRS Service Node (GGSN) receives a plurality of traffic flows for the mobile terminal and uses a Deep Packet Inspection (DPI) module to determine a target delay class for each traffic flow. The GGSN signals the target delay class of each traffic flow to a Radio Network Controller (RNC) utilizing per-packet marking within a single radio access bearer (RAB). The RNC defines a separate virtual queue for each delay class on a per-RAB basis, and instructs a Node B serving the mobile terminal to do the same. The Node B services the queues according to packet transmission delays associated with each queue. A flow control mechanism in the Node B sets a packet queue length for each queue to optimize transmission performance.
    • 一种用于动态地控制移动终端和无线电信系统之间的空中接口的吞吐量的系统,方法和网络节点。 网关GPRS服务节点(GGSN)为移动终端接收多个业务流,并且使用深度分组检测(DPI)模块来确定每个业务流的目标延迟类别。 GGSN使用单个无线电接入承载(RAB)内的每个分组标记将每个业务流的目标延迟类别发送到无线电网络控制器(RNC)。 RNC在每个RAB基础上为每个延迟类定义单独的虚拟队列,并指示为移动终端服务的节点B执行相同操作。 节点B根据与每个队列相关联的分组传输延迟来服务队列。 节点B中的流控制机制为每个队列设置分组队列长度,以优化传输性能。