Security-SLA-guaranteed service function chain deployment in cloud-fog computing networks

被引:0
|
作者
Dongcheng Zhao
Long Luo
Hongfang Yu
Victor Chang
Rajkumar Buyya
Gang Sun
机构
[1] University of Electronic Science and Technology of China,Key Lab of Optical Fiber Sensing and Communications (Ministry of Education)
[2] Peng Cheng Laboratory,School of Computing, Engineering and Digital Technologies
[3] Teesside University,Cloud Computing and Distributed Systems (CLOUDS) Laboratory, School of Computing and Information Systems
[4] The University of Melbourne,undefined
[5] Agile and Intelligent Computing Key Laboratory of Sichuan Province,undefined
来源
Cluster Computing | 2021年 / 24卷
关键词
Service function chain; Network function virtualization; Deployment; Security; Fog-cloud computing;
D O I
暂无
中图分类号
学科分类号
摘要
Network function virtualization (NFV) has gained prominence in next-generation cloud computing, such as the fog-based radio access network, due to their ability to support better QoS in network service provision. However, most of the current service function chain (SFC) deployment researches do not consider the Security-Service-Level-Agreement (SSLA) in the deployment solution. Therefore, in this work, we introduce the SSLA into SFC deployment to defend attacks. Firstly, we formulate the SSLA guaranteed SFC deployment problem by using linear programming. Then, we propose the Maximal-security SFC deployment algorithm (MS) to maximize the security of the SFC deployment. However, the MS algorithm results in a high deployment cost. To reduce the deployment cost, we propose the Minimal-cost and SSLA-guaranteed SFC deployment algorithm (MCSG) to minimize the deployment while satisfying the SSLA. In order to reduce the blocking ratio caused by MCSG, the Minimal-cost and SSLA-guaranteed SFC deployment algorithm with feedback adjustment (MCSG-FA) is proposed. Finally, we evaluate our proposed algorithms through simulations. The simulation results show that the blocking ratio and the deployment cost of our algorithms are better than that of the existing algorithm when meeting the SSLAs.
引用
收藏
页码:2479 / 2494
页数:15
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