In this work we study the impact of energy-aware routing algorithms on IP backbone networks, focusing on the routing protocol transients due to network reconfiguration. We first propose the Green Partial Exportation (GPE) algorithm, which is fully compatible with the OSPF protocol and targets the reduction of the number of changed paths in the network; we also realize a green software router by integrating GPE in the Quagga routing suite. Then we define an experimental methodology to evaluate the effects of a green routing strategy on the network behavior, in terms of delay increase and packet loss. Finally, we evaluate our solution on an emulated testbed from a national telecom operator. Our results show a maximum increment of 320 ms for the RTT and a packet loss of 1.45% during the network transients. Moreover, GPE can be safely applied in the network with a time granularity of less than one minute.

In this work we study the impact of energy-aware routing algorithms on IP backbone networks, focusing on the routing protocol transients due to network reconfiguration. We first propose the Green Partial Exportation (GPE) algorithm, which is fully compatible with the OSPF protocol and targets the reduction of the number of changed paths in the network; we also realize a green software router by integrating GPE in the Quagga routing suite. Then we define an experimental methodology to evaluate the effects of a green routing strategy on the network behavior, in terms of delay increase and packet loss. Finally, we evaluate our solution on an emulated testbed from a national telecom operator. Our results show a maximum increment of 320 ms for the RTT and a packet loss of 1.45% during the network transients. Moreover, GPE can be safely applied in the network with a time granularity of less than one minute.

Implementing energy-aware algorithms in backbone networks: A transient analysis / Chiaraviglio, Luca; Cianfrani, Antonio; Listanti, Marco; Mignano, Luigi; Polverini, Marco. - STAMPA. - 2015-:(2015), pp. 142-148. (Intervento presentato al convegno IEEE International Conference on Communications, ICC 2015 tenutosi a London; United Kingdom nel June 2015) [10.1109/ICC.2015.7248312].

Implementing energy-aware algorithms in backbone networks: A transient analysis

CHIARAVIGLIO, LUCA;CIANFRANI, Antonio;LISTANTI, Marco;MIGNANO, LUIGI;POLVERINI, MARCO
2015

Abstract

In this work we study the impact of energy-aware routing algorithms on IP backbone networks, focusing on the routing protocol transients due to network reconfiguration. We first propose the Green Partial Exportation (GPE) algorithm, which is fully compatible with the OSPF protocol and targets the reduction of the number of changed paths in the network; we also realize a green software router by integrating GPE in the Quagga routing suite. Then we define an experimental methodology to evaluate the effects of a green routing strategy on the network behavior, in terms of delay increase and packet loss. Finally, we evaluate our solution on an emulated testbed from a national telecom operator. Our results show a maximum increment of 320 ms for the RTT and a packet loss of 1.45% during the network transients. Moreover, GPE can be safely applied in the network with a time granularity of less than one minute.
2015
IEEE International Conference on Communications, ICC 2015
In this work we study the impact of energy-aware routing algorithms on IP backbone networks, focusing on the routing protocol transients due to network reconfiguration. We first propose the Green Partial Exportation (GPE) algorithm, which is fully compatible with the OSPF protocol and targets the reduction of the number of changed paths in the network; we also realize a green software router by integrating GPE in the Quagga routing suite. Then we define an experimental methodology to evaluate the effects of a green routing strategy on the network behavior, in terms of delay increase and packet loss. Finally, we evaluate our solution on an emulated testbed from a national telecom operator. Our results show a maximum increment of 320 ms for the RTT and a packet loss of 1.45% during the network transients. Moreover, GPE can be safely applied in the network with a time granularity of less than one minute.
Transient analysis; routing; routing protocols; IP networks; software; time measurement; algorithm design and analysis
04 Pubblicazione in atti di convegno::04b Atto di convegno in volume
Implementing energy-aware algorithms in backbone networks: A transient analysis / Chiaraviglio, Luca; Cianfrani, Antonio; Listanti, Marco; Mignano, Luigi; Polverini, Marco. - STAMPA. - 2015-:(2015), pp. 142-148. (Intervento presentato al convegno IEEE International Conference on Communications, ICC 2015 tenutosi a London; United Kingdom nel June 2015) [10.1109/ICC.2015.7248312].
File allegati a questo prodotto
File Dimensione Formato  
Chiaraviglio_Implementing-energy-aware_2015.pdf

solo utenti autorizzati

Tipologia: Versione editoriale (versione pubblicata con il layout dell'editore)
Licenza: Tutti i diritti riservati (All rights reserved)
Dimensione 554.67 kB
Formato Adobe PDF
554.67 kB Adobe PDF   Contatta l'autore

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/808477
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 15
  • ???jsp.display-item.citation.isi??? 12
social impact