会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 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。
    • 5. 发明授权
    • Method for improved congestion detection and control in a wireless telecommunications systems
    • 用于改善无线电信系统中的拥塞检测和控制的方法
    • US08000249B2
    • 2011-08-16
    • US12516519
    • 2006-11-28
    • Zoltan NagySandor RaczSzilveszter NadasPeter Lundh
    • Zoltan NagySandor RaczSzilveszter NadasPeter Lundh
    • H04L12/26
    • H04L47/10H04L47/11H04L47/12H04L47/125H04L47/14
    • The invention discloses a method for detecting and controlling traffic congestion in a wireless telecommunications system (100, 300, 400) comprising at least a first node (130, 330, 430) such as a Radio Base Station, and at least one second node (110, 310, 410) such as a Radio Network Controller, the system also comprising a Transport Network, TN (120, 320, 420), for conveying traffic between said first and second nodes, in which system (100, 300, 400) the traffic can comprise one or more flow. The method comprises the use of one flow control function (315, 415) per each of said flows, said one flow control function (315, 415) comprising a congestion detection and control function. In addition, the congestion detection function acts to reduce the traffic on said flow before the system becomes congested.
    • 本发明公开了一种用于检测和控制无线电信系统(100,300,400)中的业务拥塞的方法,所述无线电信系统包括至少第一节点(130,330,430),诸如无线电基站和至少一个第二节点 110,310,410),诸如无线电网络控制器,该系统还包括传输网络TN(120,320,420),用于在所述第一和第二节点之间传送业务,其中系统(100,300,400) 业务可以包括一个或多个流。 该方法包括对每个所述流量使用一个流量控制功能(315,415),所述一个流量控制功能(315,415)包括拥塞检测和控制功能。 此外,拥塞检测功能用于在系统变得拥塞之前减少所述流量的流量。
    • 7. 发明授权
    • Efficient flow control in a radio network controller (RNC)
    • 无线网络控制器(RNC)中的高效流量控制
    • US08369221B2
    • 2013-02-05
    • US12740499
    • 2008-10-29
    • Sandor RaczZoltan C. NagySzilveszter NadasPeter Lundh
    • Sandor RaczZoltan C. NagySzilveszter NadasPeter Lundh
    • H04J1/16
    • H04W28/0284H04L1/1825H04L1/1832H04L47/10H04L47/11H04L47/12H04L47/14H04L47/225H04L47/25H04W28/12
    • A mechanism is provided to resolve the Iub transport network congestion efficiently for HSDPA by dynamic adjustment of the transmit window of the RLC. The RLC protocol is extended with congestion control functionality. The Iub TN and Uu congestion detection method in the Node-B (120) signals the congestion to the RNC (110), and this congestion indication is used by RLC to react on the congestion situation. In the RNC (110), the transmission window of the RLC is adjusted to control the flow rate. When congestion is detected, the RLC transmission window size is decreased. When there is no congestion, then the RLC transmission window size is increased automatically. Different types of congestion are distinguished and are handled in different ways. Alternatively, congestion control is achieved without any modification in the RLC layer from the existing standard. Here, RLC STATUS PDUs are used to change the RLC transmission window size.
    • 提供了通过RLC的发送窗口的动态调整来有效解决HSDPA的Iub传输网络拥塞的机制。 RLC协议通过拥塞控制功能扩展。 NodeB(120)中的Iub TN和Uu拥塞检测方法向RNC(110)发出拥塞信令,并且使用该拥塞指示对拥塞情况作出反应。 在RNC(110)中,调整RLC的发送窗口以控制流量。 当检测到拥塞时,RLC传输窗口大小减小。 当没有拥塞时,RLC传输窗口大小自动增加。 区分不同类型的拥塞,并以不同的方式处理。 或者,实现拥塞控制,而无需RLC层中的任何修改与现有标准。 这里,RLC状态PDU用于改变RLC传输窗口大小。