TY - GEN
T1 - Load-aware and congestion-free state management in network function virtualization
AU - Liu, Jinwei
AU - Shen, Haiying
AU - Hu, Hongxin
N1 - Publisher Copyright:
© 2017 IEEE.
PY - 2017/3/10
Y1 - 2017/3/10
N2 - Software-defined networks are constantly evolving due to the updates such as network function (NF) state updates, VM migrations. Network functions virtualization (NFV) with software-defined networking (SDN) has the capability of accurately monitoring and manipulating network traffic, and reducing operating cost. However, it cannot effectively handle the congestion and satisfy service level agreements (SLAs) on NF performance (e.g., throughput) while minimizing the operating cost in the scenarios of requirements for packet processing to be redistributed across a collection of NF instances simultaneously. Although OpenNF, a control plane architecture can allow quick, safe, and fine-grained reallocation of flows across NF instances, it neglects the congestion existing in practical scenarios for scheduling the updates, which can result in SLA violations. Also, it does not consider the load of links to schedule the updates for minimizing the operating cost. To address this problem, we adequately consider the congestion caused by the competition for limited resource (e.g., bandwidth) and utilize the load information to propose a load-aware and congestion-free state management (LCSM) strategy. LCSM can provide congestion-free scheduling of updates and minimize the operating cost. Extensive simulation results show the advantages of our proposed LCSM.
AB - Software-defined networks are constantly evolving due to the updates such as network function (NF) state updates, VM migrations. Network functions virtualization (NFV) with software-defined networking (SDN) has the capability of accurately monitoring and manipulating network traffic, and reducing operating cost. However, it cannot effectively handle the congestion and satisfy service level agreements (SLAs) on NF performance (e.g., throughput) while minimizing the operating cost in the scenarios of requirements for packet processing to be redistributed across a collection of NF instances simultaneously. Although OpenNF, a control plane architecture can allow quick, safe, and fine-grained reallocation of flows across NF instances, it neglects the congestion existing in practical scenarios for scheduling the updates, which can result in SLA violations. Also, it does not consider the load of links to schedule the updates for minimizing the operating cost. To address this problem, we adequately consider the congestion caused by the competition for limited resource (e.g., bandwidth) and utilize the load information to propose a load-aware and congestion-free state management (LCSM) strategy. LCSM can provide congestion-free scheduling of updates and minimize the operating cost. Extensive simulation results show the advantages of our proposed LCSM.
UR - https://www.scopus.com/pages/publications/85017384565
U2 - 10.1109/ICCNC.2017.7876144
DO - 10.1109/ICCNC.2017.7876144
M3 - Conference contribution
AN - SCOPUS:85017384565
T3 - 2017 International Conference on Computing, Networking and Communications, ICNC 2017
SP - 303
EP - 307
BT - 2017 International Conference on Computing, Networking and Communications, ICNC 2017
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2017 International Conference on Computing, Networking and Communications, ICNC 2017
Y2 - 26 January 2017 through 29 January 2017
ER -