TY - JOUR
T1 - Dynamic energy efficient virtual link resource reallocation approach for network virtualization environment
AU - Zhang, Shanming
AU - Sato, Takehiro
AU - Okamoto, Satoru
AU - Yamanaka, Naoaki
N1 - Funding Information:
This work was partly supported by JSPS KAKENHI Grant Number JP16K00139 and the Research Grant of Keio Leading-edge Laboratory of Science and Technology.
Publisher Copyright:
Copyright © 2018 The Institute of Electronics, Information and Communication Engineers.
PY - 2018/7
Y1 - 2018/7
N2 - The energy consumption of network virtualization environments (NVEs) has become a critical issue. In this paper, we focus on reducing the data switching energy consumption of NVE. We first analyze the data switching energy of NVE. Then, we propose a dynamic energy efficient virtual link resource reallocation (eEVLRR) approach for NVE. eEVLRR dynamically reallocates the energy efficient substrate resources (sresources) for virtual links with dynamic changes of embeddable s-resources to save the data switching energy. In order to avoid traffic interruptions while reallocating, we design a cross layer application-session-based forwarding model for eEVLRR that can identify and forward each data transmission flow along the initial specified substrate data transport path until end without traffic interruptions. The results of performance evaluations show that eEVLRR not only guarantees the allocated s-resources of virtual links are continuously energy efficient to save data switching energy but also has positive impacts on virtual network acceptance rate, revenues and s-resources utilization.
AB - The energy consumption of network virtualization environments (NVEs) has become a critical issue. In this paper, we focus on reducing the data switching energy consumption of NVE. We first analyze the data switching energy of NVE. Then, we propose a dynamic energy efficient virtual link resource reallocation (eEVLRR) approach for NVE. eEVLRR dynamically reallocates the energy efficient substrate resources (sresources) for virtual links with dynamic changes of embeddable s-resources to save the data switching energy. In order to avoid traffic interruptions while reallocating, we design a cross layer application-session-based forwarding model for eEVLRR that can identify and forward each data transmission flow along the initial specified substrate data transport path until end without traffic interruptions. The results of performance evaluations show that eEVLRR not only guarantees the allocated s-resources of virtual links are continuously energy efficient to save data switching energy but also has positive impacts on virtual network acceptance rate, revenues and s-resources utilization.
KW - Data switching energy
KW - Energy efficient
KW - Network virtualization
KW - Virtual network resource allocation
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U2 - 10.1587/transcom.2017EBP3260
DO - 10.1587/transcom.2017EBP3260
M3 - Article
AN - SCOPUS:85049408548
SN - 0916-8516
VL - E101B
SP - 1675
EP - 1684
JO - IEICE Transactions on Communications
JF - IEICE Transactions on Communications
IS - 7
ER -