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Journal ArticleDOI

NIRA: a new inter-domain routing architecture

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TLDR
The design and evaluation of a new Internet routing architecture (NIRA) that gives a user the ability to choose the sequence of providers his packets take and shows that NIRA supports user choice with low overhead are presented.
Abstract
In today's Internet, users can choose their local Internet service providers (ISPs), but once their packets have entered the network, they have little control over the overall routes their packets take. Giving a user the ability to choose between provider-level routes has the potential of fostering ISP competition to offer enhanced service and improving end-to-end performance and reliability. This paper presents the design and evaluation of a new Internet routing architecture (NIRA) that gives a user the ability to choose the sequence of providers his packets take. NIRA addresses a broad range of issues, including practical provider compensation, scalable route discovery, efficient route representation, fast route fail-over, and security. NIRA supports user choice without running a global link-state routing protocol. It breaks an end-to-end route into a sender part and a receiver part and uses address assignment to represent each part. A user can specify a route with only a source and a destination address, and switch routes by switching addresses. We evaluate NIRA using a combination of network measurement, simulation, and analysis. Our evaluation shows that NIRA supports user choice with low overhead.

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Citations
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Rethinking Packet Forwarding Hardware.

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References
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A Border Gateway Protocol 4 (BGP-4)

Yakov Rekhter, +1 more
TL;DR: This document, together with its companion document, "Application of the Border Gateway Protocol in the Internet", define an inter- autonomous system routing protocol for the Internet.

OSPF Version 2

J. Moy
TL;DR: This memo documents version 2 of the OSPF protocol, a link-state routing protocol designed to be run internal to a single Autonomous System.
Proceedings ArticleDOI

Resilient overlay networks

TL;DR: It is found that forwarding packets via at most one intermediate RON node is sufficient to overcome faults and improve performance in most cases, demonstrating the benefits of moving some of the control over routing into the hands of end-systems.
Journal ArticleDOI

Resilient overlay networks

TL;DR: It is found that forwarding packets via at most one intermediate RON node is sufficient to overcome faults and improve performance in most cases, demonstrating the benefits of moving some of the control over routing into the hands of end-systems.
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