TARU PUBLICATIONS
Journal of Discrete Mathematical Sciences and Cryptography cover
Open Access ·Peer-reviewed·ISSN (Online): 2169-0065·ISSN (Print): 0972-0529

Monthly Journal: Publishes theoretical and applied research in all areas of Discrete Mathematical Sciences, Cryptography, Combinatorics, Elliptic Curves and Information Security.

Issues up to 2022 co-published with and available at:Taylor & Francis Online
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Open Access Research Article

Analyzing the impact of network topology on cryptographic security and data integrity in IoT applications

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* Corresponding author · click or hover a name for details

pp. 1813–1824Vol. 28Issue 5-AAugust 2025DOI: 10.47974/JDMSC-2181 Crossmark XML
Received:
06 Nov 2024
Published Online:
30 Aug 2025
Article type:
Research Article
Language:
EN
Article no.:
JDMSC-2181
Pages:
1813–1824

Abstract

Guaranteeing solid security and information judgment is basic within the fast-changing field of Web of Things (IoT) applications. The complex interrelationship between information keenness components, cryptographic calculations, and arrange topology in Web of Things settings is investigated in this work. We explore, by careful investigation, the execution of three organize topologies ring, mesh, and star, alongside two cryptographic calculations and a special information keenness component. Throughput, inactivity, vitality utilization, parcel misfortune, preparing overhead, and security level are among the parameters whose impacts on the common astuteness and security of Web of Things frameworks are evaluated. This work clarifies, by recreation and experimentation, how well different setups anticipate conceivable assaults and protect information astuteness and privacy. The comes about give quick data for making strong and secure Web of Things frameworks suited to a assortment of utilize cases.

Keywords

Subject Classifications

68M12

References

[1] A. Lohachab, A. Lohachab, and A. Jangra, “A comprehensive survey of prominent cryptographic aspects for securing communication in post-quantum IoT networks,” Internet of Things, vol. 9, p. 100174 (2020), doi: https://doi.org/10.1016/j.iot.2020.100174.
[2] Mohammad K. Hasan, Muhammad Shafiq, Shayla Islam, Bishwajeet Pandey, Yousef A. Baker El‑Ebiary, Nazmus Shaker Nafi, R. Ciro Rodriguez, DMohammad K. Hasan, Muhammad Shafiq, Shayla Islam, Bishwajeet Pandey, Yousef A. Baker El‑Ebiary, Nazmus Shaker Nafi, R. Ciro Rodriguez, Doris Esenarro Vargas, and Atif Khan,oris Esenarro Vargas, and Atif Khan, “Lightweight Cryptographic Algorithms for Guessing Attack Protection in Complex Internet of Things Applications,” Complexity, vol. 2021, p. 5540296 (2021), doi: 10.1155/2021/5540296.
[3] I. Bhardwaj, A. Kumar, and M. Bansal, “A review on lightweight cryptography algorithms for data security and authentication in IoTs,” in 2017 4th International Conference on Signal Processing, Computing and Control (ISPCC), pp. 504–509 (2017), doi: 10.1109/ISPCC.2017.8269731.
[4] K. Mabodi, M. Yusefi, S. Zandiyan, L. Irankhah, and R. Fotohi, “Multi-level trust-based intelligence schema for securing of internet of things (IoT) against security threats using cryptographic authentication,” J. Supercomput., vol. 76, no. 9, pp. 7081–7106 (2020), doi: 10.1007/s11227-019-03137-5.
[5] S. Surendran, A. Nassef, and B. D. Beheshti, “A survey of cryptographic algorithms for IoT devices,” in 2018 IEEE Long Island Systems, Applications and Technology Conference (LISAT), pp. 1–8 (2018), doi: 10.1109/LISAT.2018.8378034.
[6] N. Li, D. Liu, and S. Nepal, “Lightweight Mutual Authentication for IoT and Its Applications,” IEEE Trans. Sustain. Comput., vol. 2, no. 4, pp. 359–370 (2017), doi: 10.1109/TSUSC.2017.2716953.
[7] A. Oracevic, S. Dilek, and S. Ozdemir, “Security in internet of things: A survey,” in 2017 International Symposium on Networks, Computers and Communications (ISNCC), pp. 1–6 (2017), doi: 10.1109/ISNCC.2017.8072001.
[8] V. Hassija, V. Chamola, V. Saxena, D. Jain, P. Goyal, and B. Sikdar, “A Survey on IoT Security: Application Areas, Security Threats, and Solution Architectures,” IEEE Access, vol. 7, pp. 82721–82743 (2019), doi: 10.1109/ACCESS.2019.2924045.
[9] S. Zeadally, A. K. Das, and N. Sklavos, “Cryptographic technologies and protocol standards for Internet of Things,” Internet of Things, vol. 14, p. 100075 (2021), doi: https://doi.org/10.1016/j.iot.2019.100075.
[10] S. S. Dhanda, B. Singh, and P. Jindal, “Lightweight Cryptography: A Solution to Secure IoT,” Wirel. Pers. Commun., vol. 112, no. 3, pp. 1947–1980 (2020), doi: 10.1007/s11277-020-07134-3.
[11] B. Seok, J. C. Sicato, T. Erzhena, C. Xuan, Y. Pan, and J. H. Park, “Secure D2D Communication for 5G IoT Network Based on Lightweight Cryptography,” Applied Sciences, vol. 10, no. 1 (2020), doi: 10.3390/app10010217.
[12] N. Alassaf, A. Gutub, S. A. Parah, and M. Al Ghamdi, “Enhancing speed of SIMON: A light-weight-cryptographic algorithm for IoT applications,” Multimed. Tools Appl., vol. 78, no. 23, pp. 32633–32657 (2019), doi: 10.1007/s11042-018-6801-z.
[13] A. A. A. El‑Latif, B. Abd‑El‑Atty, S. E. Venegas‑Andraca, H. Elwahsh, M. J. Piran, A. K. Bashir, O.‑Y. Song, and W. Mazurczyk, “Providing End-to-End Security Using Quantum Walks in IoT Networks,” IEEE Access, vol. 8, pp. 92687–92696 (2020), doi: 10.1109/ACCESS.2020.2992820.
[14] M. N. Khan, A. Rao, and S. Camtepe, “Lightweight Cryptographic Protocols for IoT-Constrained Devices: A Survey,” IEEE Internet Things J., vol. 8, no. 6, pp. 4132–4156 (2021), doi: 10.1109/JIOT.2020.3026493.
[15] M. H. Saračević, S. Ž. Adamović, V. A. Miškovic, M. Elhoseny, N. D. Maček, M. M. Selim, and K. Shankar, “Data Encryption for Internet of Things Applications Based on Catalan Objects and Two Combinatorial Structures,” IEEE Trans. Reliab., vol. 70, no. 2, pp. 819–830 (2021), doi: 10.1109/TR.2020.3010973.
[16] S. Sridhar and S. Smys, “Intelligent security framework for iot devices cryptography based end-to-end security architecture,” in 2017 International Conference on Inventive Systems and Control (ICISC), pp. 1–5 (2017), doi: 10.1109/ICISC.2017.8068718.
[17] M. Rana, Q. Mamun, and R. Islam, “Lightweight cryptography in IoT networks: A survey,” Futur. Gener. Comput. Syst., vol. 129, pp. 77–89 (2022), doi: https://doi.org/10.1016/j.future.2021.11.011.

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