Generalization of multicast encryption for Internet of Things deployment

被引:0
作者
Sharma, Payal [1 ]
Purushothama, B. R. [1 ]
机构
[1] Natl Inst Technol Goa, Dept Comp Sci & Engn, Ponda 403401, Goa, India
关键词
Multicast encryption; Multiple groups; Internet of Things; Provable security; GROUP KEY MANAGEMENT; SECURE MULTICAST; DISTRIBUTION PROTOCOL; GROUP COMMUNICATION; SCHEME; ESTABLISHMENT;
D O I
10.1016/j.jisa.2023.103571
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
The problem of multicast encryption has been a focus of attention in the Internet of Things environment for the last decade, in which one central server generates and securely distributes a common key designated for a group of IoT devices. These devices can establish secure communication by sending encrypted content within the group using the earlier established group key. It is crucial that the encrypted content can be decrypted only by the member devices. An issue arises when the number of multicast groups increases, and devices tend to be part of various groups simultaneously. Hence we consider a generalization of multicast encryption where multiple multicast groups exist in the IoT environment that are not independent. That means the involvement of an IoT device is not restricted to only one group, which was the case earlier. In our study, the parameters of interest are computational overhead per device, the number of keys stored, and the bandwidth required per transmission as a function of the total number of devices d and the number of groups m. As our main result, we considered two cases in framing efficient and secure solutions for the generalization of multicast encryption. Since several solutions are already proposed for simple multicast encryption techniques, first is the case where it is assumed that a prior optimal solution is already known for multicast encryption and how to build a multi-group scenario out of this. Second, if this situation is not there, we need to define the generalized problem for multicast encryption, which includes overlapped multiple multicast groups. Henceforth, this paper defines important security theorems and their proofs for both cases, along with security models and strong security definitions.
引用
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页数:15
相关论文
共 46 条
[1]   VerSAMI: Versatile and Scalable key management for Smart Grid AMI systems [J].
Benmalek, Mourad ;
Challal, Yacine ;
Derhab, Abdelouahid ;
Bouabdallah, Abdelmadjid .
COMPUTER NETWORKS, 2018, 132 :161-179
[2]  
Benmalek M, 2016, IEEE WCNC
[3]   eSKAMI: Efficient and Scalable multi-group Key management for Advanced Metering Infrastructure in Smart Grid [J].
Benmalek, Mourad ;
Challal, Yacine .
2015 IEEE TRUSTCOM/BIGDATASE/ISPA, VOL 1, 2015, :782-789
[4]   A secure key agreement protocol for dynamic group [J].
Bilal, Muhammad ;
Kang, Shin-Gak .
CLUSTER COMPUTING-THE JOURNAL OF NETWORKS SOFTWARE TOOLS AND APPLICATIONS, 2017, 20 (03) :2779-2792
[5]   Blockchain-Based Key Management Scheme in Fog-Enabled IoT Systems [J].
Chen, Tong ;
Zhang, Lei ;
Choo, Kim-Kwang Raymond ;
Zhang, Rui ;
Meng, Xinyu .
IEEE INTERNET OF THINGS JOURNAL, 2021, 8 (13) :10766-10778
[6]  
Chen YR, 2011, IEEE INFOCOM SER, P1952, DOI 10.1109/INFCOM.2011.5934999
[7]   Distributed Group Key Management for Event Notification Confidentiality Among Sensors [J].
Esposito, Christian ;
Ficco, Massimo ;
Castiglione, Aniello ;
Palmieri, Francesco ;
De Santis, Alfredo .
IEEE TRANSACTIONS ON DEPENDABLE AND SECURE COMPUTING, 2020, 17 (03) :566-580
[8]  
Fiat A., 1993, PROC ANN INT CRYPTOL, P480, DOI DOI 10.1007/3-540-48329-2
[9]   BAKMP-IoMT: Design of Blockchain Enabled Authenticated Key Management Protocol for Internet of Medical Things Deployment [J].
Garg, Neha ;
Wazid, Mohammad ;
Das, Ashok Kumar ;
Singh, Devesh Pratap ;
Rodrigues, Joel J. P. C. ;
Park, Youngho .
IEEE ACCESS, 2020, 8 :95956-95977
[10]   A Lightweight Key Generation Scheme for the Internet of Things [J].
Guo, Dengke ;
Cao, Kuo ;
Xiong, Jun ;
Ma, Dongtang ;
Zhao, Haitao .
IEEE INTERNET OF THINGS JOURNAL, 2021, 8 (15) :12137-12149