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An integration framework and a signaling protocol for MPLS/DiffServ/HMIP radio access networks.

机译:MPLS / DiffServ / HMIP无线访问网络的集成框架和信令协议。

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This thesis proposed a framework that integrates Multi-Protocol Label Switching (MPLS), Differentiated Services (DiffServ), and Hierarchical Mobile IPv6 (HMIPv6) in a Radio Access Network (RAN) and defined a supporting signaling protocol for the above framework. Two different paradigms for combining the connection-oriented static MPLS architecture with the connectionless and dynamic mobile IP protocol were proposed and examined. The overlay method improved on existing methods of MIP-MPLS interworking and defined an overlay framework based on HMIPv6. The main idea of this method is to substitute the tunnels required by the mobility protocol with paths created in the MPLS protocol, thus improving the forwarding times of data packets. The method was thoroughly examined and its inefficiencies were identified for improvement. The integrated method optimized the overlay interworking paradigm by defining different internal operations in combined MIP-MPLS nodes. The resultant integrated framework determined how to integrate MPLS/DiffServ and HMIPv6 to support mobile hosts in a RAN by combining the registration and tunneling procedures in HMIPv6 with the path setup and modification procedures in MPLS. It also included the use of new information bases and established different interactions for the combined nodes' control planes. The current MPLS signaling protocols (CR-LDP and RSVP-TE) were examined under both the overlay and integrated architectures and modifications were proposed to them to handle all the new capabilities of the integrated framework. The integrated framework was also combined with a traffic engineering algorithm and its ability to adapt to imposing requirements was proven by example.
机译:本文提出了一种在无线接入网络(RAN)中集成多协议标签交换(MPLS),区分服务(DiffServ)和分层移动IPv6(HMIPv6)的框架,并为上述框架定义了一种支持信令协议。提出并研究了将面向连接的静态MPLS体系结构与无连接和动态移动IP协议相结合的两种不同范例。覆盖方法是对现有MIP-MPLS互通方法的改进,并定义了基于HMIPv6的覆盖框架。此方法的主要思想是用MPLS协议中创建的路径替换移动协议所需的隧道,从而提高数据包的转发时间。对该方法进行了彻底检查,并确定了其效率低下以进行改进。该集成方法通过在组合的MIP-MPLS节点中定义不同的内部操作来优化覆盖交互工作范式。最终的集成框架通过将HMIPv6中的注册和隧道过程与MPLS中的路径设置和修改过程相结合,确定了如何集成MPLS / DiffServ和HMIPv6以支持RAN中的移动主机。它还包括使用新的信息库,并为组合节点的控制平面建立了不同的交互。当前的MPLS信令协议(CR-LDP和RSVP-TE)都在覆盖和集成架构下进行了检查,并提出了对它们的修改,以处理集成框架的所有新功能。该集成框架还与流量工程算法相结合,并通过示例证明了其适应强加要求的能力。

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