In some scenarios, the MPLS label can be directly integrated with other Layer 2 protocol headers.
在某些情况下,mpls标签可直接与其他第二层协议的报头结合起来。
In this article, the MPLS label space and its usage are analysed. The methods of calculation the label space requirements on each link are given.
对标签空间及其使用进行了分析,并给出了标签空间的度量方法。
The design process for MPLS networks has much in common with design of any IP networks, but dimension the MPLS label space is one of the specific to MPLS networks.
多协议标记交换技术(MPLS)是对现有IP组网模式的革新,在设计规划网络时它们的主要步骤有许多共同之处,但是对标签空间的度量则是MPLS所特有的。
The MPLS network technology data retransmission relies on label.
MPLS网络技术的数据转发依赖于标签。
The core of MPLS is the LDP protocol, LDPprovides the means for plentiful label distribute and relevant function process by its core mechanism.
MPLS的核心技术即是LDP协议。LD P可通过一套简单的核心机制来提供丰富的标记分发及相关处理功能。
The data transmission in MPLS network is led by label.
MPLS网络中数据的传输靠标签引导。
This paper introduces and analyses a new mechanism which adopts label aggregation to realize IP multicast in MPLS.
介绍了一种引入标记聚集的新机制来实现多协议标记交换(MPLS)中的IP组播,并分析了该机制。
An end-to-end adaptive multi-protocol label switching(MPLS)-based fast handover method for mobile IP(MIP) was proposed to improve the flexibility and scalability of MIP over MPLS.
提出了基于多协议标记交换(MPLS)的端到端自适应移动IP(MIP)快速切换技术,旨在提高基于MPLS移动IP的灵活性与可扩展性。
The label analysis and processing, and the packet forwarding based on it are performed by LSR, which is the cell of MPLS network and combines the advantages of both conventional router and exchange.
对标签的分析、处理和根据标签内容进行包转发是在标签交换路由器LSR上完成的。
The multiple protocol label switching (MPLS) technology is introduced into the multi-service transport platform (MSTP) in order to enhance the capabilities of routing, exchange and QoS management.
为了提高多业务传送平台(MSTP)组网的路由能力、交换能力和服务质量(Q oS)处理能力,需要将多协议标签交换(MPLS)的固有优势引入M STP。
Multiprotocol label Switching (MPLS) is far away to be a nature technology. It is being standardized by Internet Engineering Task Force (IETF).
多协议标记交换还是一项非常不成熟的技术,它目前正在由IETF进行标准化。
MPLS (Multiprotocol Label Switching) is "key" that opens the door of entering the new VPN technique of century.
多协议标记交换是打开进入新世纪VPN技术之门的“钥匙”。
Labeled Optical Burst Switching (LOBS) network, combing the Multi Protocol Label Switch (MPLS) and OBS technologies, has the advantage of high flexibility and high efficiency.
标签光突发交换(LOBS)技术将多协议标签交换(MPLS)和光突发交换(OBS)技术结合起来,具有更高的灵活性和效率。
There exists a waste of bandwidth resources due to the heuristic algorithms for the preemption in multi-protocol label-switching (MPLS) networks.
目前多协议标签交换(MPLS)网络中大多采用启发式算法进行抢占,造成了带宽资源的浪费。
When we attempted to combine the advantages of IP and ATM, Multiprotocol Label Switching (MPLS) appeared.
在将IP与ATM进行优势互补的种种尝试中,多协议标签交换(MPLS)应运而生了。
Multiprotocol Label switching (MPLS) combines the efficiency and simplicity of IP routing together with the high-speed switching of ATM.
多协议标签交换(MPLS)融合了A TM快速交换中的高效性和简单性。
This paper discusses various solution schemes of the IP Over ATM and the architecture of MultiProtocol Label Switching (MPLS).
本文就IP与ATM结合技术及其各种解决方案与多协议标记交换(MPLS)技术的体系结构等方面进行了讨论。
MPLS, which stands for Multi-Protocol Label Switch, is the new generation standard for network layer routing on IP-based backbone network.
即多协议标记交换是新一代IP骨干网络的交换标准。
Packet Transport Network (PTN) technology includes the Transport Multi-Protocol Label Switching (T-MPLS) and Provider Backbone Transmission (PBT).
分组传送网(PTN)技术包括传送多协议标签交换(T - MPLS)和运营商骨干传送(PBT)。
Absrtact: the BGP MPLS VPN network structure, functions in the double-label and the distribution process of double label is analysed carefully.
摘要:对BGPMPLSVPN网络的体结构、网络层面中双层标签的功能及双层标签的分发过程进行认真分析。
Service providers now have the ability with Multiprotocol Label Switching (MPLS) traffic Engineering to constrain network traffic to certain paths.
现在服务提供商可以使用多协议标签交换(MPLS)流量工程将网络流量限制在特定路径中。
Now, MPLS (MultiProtocol Label Switching) as a new switching technique for the Next Generation Network is currently a popular research topic.
目前,多协议标签交换技术作为下一代网络中的一项交换技术,正受到越来越多的人的关注。
Where and how Forwarding Information Base (FIB) and Label FIB (LFIB) tables fit in a MPLS VPN environment is one of the key elements to successful troubleshooting.
了解转发信息库(FIB)和标签FIB (LFIB)表如何适应MPLSVPN环境,是成功排除故障的重要基础。
Where and how Forwarding Information Base (FIB) and Label FIB (LFIB) tables fit in a MPLS VPN environment is one of the key elements to successful troubleshooting.
了解转发信息库(FIB)和标签FIB (LFIB)表如何适应MPLSVPN环境,是成功排除故障的重要基础。
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