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Traffic Analysis of MPLS and Non MPLS Network including MPLS Signaling Protocols and Traffic distribution in OSPF and MPLS

机译:MPLS和非MPLS网络的交通分析,包括OSPF和MPLS中的MPLS信令协议和流量分布

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Multi-Protocol Label Switching (MPLS) is rapidly emerging technology, which plays a key role in next generation networks by delivering QoS and traffic engineering features. MPLS is helpful in managing traffic when some links or paths are under and/or over utilized. In MPLS a look - up in switching table is certainly less complex and time consuming than a corresponding routing table look - up in an IP router. This paper present a analysis of MPLS signaling protocols for traffic engineering, shows the capability of providing traffic engineering in MPLS compared to the conventional routing protocol, and explains the MPLS LSR operations based on the basic LSR functionality of classification, queue, and scheduling. The comparisons of CR-LDP, RSVP, and RSVP-TE are conducted based on the aspects of LSP reliability and LSP adaptability. In addition, this paper also presents a comparative analysis of MPLS and non-MPLS network and shows that MPLS provides improved network performance for heavy traffic environments.
机译:多协议标签交换(MPLS)是快速的新兴技术,通过提供QoS和流量工程功能,在下一代网络中发挥着关键作用。当某些链路或路径在和/或过度使用时,MPLS有助于管理流量。在MPLS中,切换表中的查找肯定比IP路由器中的相应路由表查找更不重要和耗时。本文对流量工程的MPLS信号传导协议进行了分析,显示了与传统路由协议相比,在MPLS中提供交通工程的能力,并根据分类,队列和调度的基本LSR功能解释了MPLS LSR操作。 CR-LDP,RSVP和RSVP-TE的比较是基于LSP可靠性和LSP适应性的方面进行的。此外,本文还提出了对MPLS和非MPLS网络的比较分析,并表明MPLS为繁忙的交通环境提供了改进的网络性能。

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