| B. Quoitin, et al. Interdomain traffic engineering with BGP. IEEE Commun. Mag., 9(3):280--292, May 2003. |
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B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, O. Bonaventure, Interdomain traffic engineering with BGP, IEEE Communications Magazine, May 2003.
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B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O. Bonaventure. Interdomain traffic engineering with BGP. IEEE Communications Magazine, May 2003.
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B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O. Bonaventure. Interdomain traffic engineering with BGP. IEEE Communications Magazine, Internet Technologies Series, May 2003.
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B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O. Bonaventure. Interdomain traffic engineering with BGP. IEEE Communications Magazine, May 2003.
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B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O. Bonaventure, "Interdomain traffic engineering with BGP," IEEE Communications Magazine, May 2003.
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B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O. Bonaventure. Interdomain traffic engineering with BGP. IEEE Communications Magazine, Internet Technology Series, May 2003.
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B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O.Bonaventure. Interdomain Traffic Engineering with BGP. IEEE Communications Magazine, May 2003.
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B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O.Bonaventure. Interdomain Traffic Engineering with BGP. IEEE Communications Magazine, May 2003.
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B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O. Bonaventure. Interdomain traffic engineering with BGP. IEEE Communications Magazine, Internet Technology Series, May 2003.
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B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O. Bonaventure, "Interdomain traffic engineering with BGP," IEEE Communications Magazine, May 2003.
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B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O. Bonaventure, "Interdomain traffic engineering with BGP," IEEE Communications Magazine, Internet Technologies Series, May 2003.
No context found.
B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O. Bonaventure. Interdomain traffic engineering with BGP. IEEE Communications Magazine, Internet Technology Series, May 2003.
No context found.
B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O. Bonaventure. Interdomain traffic engineering with BGP. IEEE Communications Magazine, Internet Technology Series, May 2003.
No context found.
B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O. Bonaventure. Interdomain traffic engineering with BGP. IEEE Communications Magazine, Internet Technologies Series, May 2003.
No context found.
B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O. Bonaventure. Interdomain traffic engineering with BGP. IEEE Communications Magazine, Internet Technology Series, May 2003.
No context found.
B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O. Bonaventure. Interdomain traffic engineering with BGP. IEEE Communications Magazine, Internet Technologies Series, May 2003.
No context found.
B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O. Bonaventure. Interdomain traffic engineering with bgp. IEEE Communications Magazine, 2003.
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B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O. Bonaventure. Interdomain traffic engineering with BGP. IEEE Communications Magazine, Internet Technology Series, May 2003.
....their internal network. These techniques are of very limited use for smaller IP networks that constitute most of the Internet today [2] For these networks, the costly resource that needs to be optimized is usually their interdomain connectivity. Although some BGP based techniques are used today ([3,4]) it is difficult t use them to efficiently control the flow of the incoming interdomain traffic. In this paper, we propose a deployable technique that can be used to provide useful traffic engineering capabilities targeted at, but not limited to, those small stubs. This document is organized as ....
....The control of the outgoing traffic is often a requirement for content providers that wish to optimize the distribution of their content. For this, they can rely on the local pref attribute to control the routes that will be chosen for the packets that leave each BGP router of the content provider [4]. The actual distribution of the outgoing traffic will depend on the quality of the setting of the local pref on the BGP routers of the AS. The setting of this parameter can be done manually based on the knowledge of the interdomain links or automatically with tools that rely on traffic ....
[Article contains additional citation context not shown here]
B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O. Bonaventure. Interdomain traffic engineering with BGP. IEEE Communications Magazine, 2003.
No context found.
B. Quoitin, et al. Interdomain traffic engineering with BGP. IEEE Commun. Mag., 9(3):280--292, May 2003.
No context found.
B. Quoitin and et. al., "Interdomain traffic engineering with BGP," IEEE Communications Magazine, Internet Technology Series, 2003.
No context found.
B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O. Bonaventure, "Interdomain traffic engineering with BGP," IEEE Communications Magazine, pp. 122--128, May 2003.
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B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O. Bonaventure, "Interdomain traffic engineering with BGP," IEEE Communications Magazine, pp. 122--128, May 2003.
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Bruno Quoitin, Steve Uhlig, Cristel Pelsser, Louis Swinnen, and Olivier Bonaventure. Interdomain traffic engineering with bgp. IEEE Communications Magazine, may 2003.
No context found.
B. Quoitin, S. Uhlig, C. Pelsser, L. Swinnen, and O. Bonaventure, "Interdomain traffic engineering with BGP," IEEE Communications Magazine, pp. 122--128, May 2003.
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