A Novel Multi-Party Authentication Scheme for FCN-based MIoT Systems in Natural Language Processing Environment

Author:

Meng Xiangwei1,Yang Ce2,Qi Yiren3,Liang Wei4,Xu Zisang5,Li Kuanching4,Deng Hai6

Affiliation:

1. Nanjing University of Aeronautics and Astronautics, China

2. Hunan University of Science and Technology, China

3. Columbia University, USA

4. Hunan University of Science and Technology, and Hunan Key Laboratory for Service computing and Novel Software Technology, China

5. Changsha University of Science and Technology, China

6. Florida International University, USA

Abstract

Natural language processing(NLP) assists to increase the efficiency of human andMultimedia Internet of Things(MIoT) interaction. Notably, large-scale NLP tasks can be offloaded from a cloud server to fog nodes closer to a mobile terminal device for lower response latency. But communication security is ongoing issues that need to be addressed. Effective mutual authentication among multiple entities is essential to ensure the security of MIoT systems based on a dynamicFog Computing Network(FCN). However, the existing schemes are unsuitable for the dynamic FCN due to the security vulnerabilities such as the linkable sessions. To solve this problem, anAnonymous Multi-Party Authentication(AMPA) scheme is proposed to address the challenges of secure FCN-based MIoT communications in this paper. The proposed scheme uses a bilinear pairing operation to realize the authentication between the fog nodes and cloud server and to establish the group key. Besides, the scheme allows cloud-authenticated terminal devices to be added to the FCN and reduces the need for the resource-limited terminal device to perform many authentication protocols. The security analysis is carried out to demonstrate that AMPA scheme can meet various safety requirements. Performance evaluations shown that the proposed AMPA scheme achieves satisfactory performance.

Publisher

Association for Computing Machinery (ACM)

Subject

General Computer Science

Reference45 articles.

1. Edge Computing: Vision and Challenges

2. Dynamic and leakage energy minimization with soft real-time loop scheduling and voltage assignment;Qiu Meikang;IEEE Transactions on Very Large Scale Integration (VLSI) Systems,2009

3. Ubiquitous transmission of multimedia sensor data in Internet of Things;Xu Gang;Future Generation Computer Systems,2017

4. Qingqing Wu , Wen Chen , Derrick Wing Kwan Ng, and Robert Schober . 2018 . Spectral and energy-efficient wireless powered IoT networks: NOMA or TDMA?IEEE Transactions on Vehicular Technology 67, 7 (2018), 6663–6667. Qingqing Wu, Wen Chen, Derrick Wing Kwan Ng, and Robert Schober. 2018. Spectral and energy-efficient wireless powered IoT networks: NOMA or TDMA?IEEE Transactions on Vehicular Technology 67, 7 (2018), 6663–6667.

5. Wei Liang , Jing Long , Kuan-Ching Li , Jianbo Xu , Nanjun Ma , and Xia Lei . 2021. A fast defogging image recognition algorithm based on bilateral hybrid filtering. ACM transactions on multimedia computing 17, 2 ( 2021 ), 1–16. Wei Liang, Jing Long, Kuan-Ching Li, Jianbo Xu, Nanjun Ma, and Xia Lei. 2021. A fast defogging image recognition algorithm based on bilateral hybrid filtering. ACM transactions on multimedia computing 17, 2 (2021), 1–16.

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