Enhancing Efficiency and Security in MTC Environments: A Novel Strategy for Dynamic Grouping and Streamlined Management

Main Article Content

Maloth Bhavsingh
K Samunnisa
A Mallareddy

Abstract

This study presents a new strategy to improve security and efficiency in Machine-Type Communication (MTC) networks, addressing the drawbacks of the existing Adaptive Hierarchical Group-based Mutual Authentication and Key Agreement (AHGMAKA) protocol. The AHGMAKA protocol, crucial for securing communication within groups of devices with limited resources, has been found to cause significant operational delays and inefficiencies. Our proposed solution integrates advanced cryptographic methods, including an optimized Authenticated Message Authentication Code (AMAC) and lightweight encryption, sophisticated optimization algorithms for dynamic grouping, and an efficient, lightweight group management protocol. It also introduces adaptive network management strategies to customize performance according to the needs of MTC networks. The effectiveness of this approach has been validated through empirical analysis, showing considerable improvements in operational performance and energy efficiency. These improvements mark a significant step toward achieving an optimal balance between efficiency and security for MTC networks. However, the research acknowledges ongoing challenges, including the trade-off between security and efficiency and the issue of compatibility with older devices, suggesting these as areas for future study. The paper outlines potential research paths, including using machine learning for better group management, adopting post-quantum cryptographic methods, applying hardware acceleration, and pushing to standardize these technologies. This work significantly advances the field of secure and efficient communication in MTC, a critical component of the growing Internet of Things (IoT) landscape, setting the stage for future breakthroughs.

Article Details

How to Cite
Bhavsingh, M., Samunnisa, K. ., & Mallareddy, A. . (2024). Enhancing Efficiency and Security in MTC Environments: A Novel Strategy for Dynamic Grouping and Streamlined Management. Emerging Technologies and Engineering Journal, 1(1), 43–56. https://doi.org/10.53898/etej2024114
Section
Articles

References

K. Krishna Jyothi and S. Chaudhari, "A secure cluster-based authentication and key management protocol for machine-type communication in the LTE network," International Journal of Computers and Applications, vol. 44, no. 12, pp. 1150-1160, 2022.

G. Singh and D. D. Shrimankar, "Dynamic group based efficient access authentication and key agreement protocol for MTC in LTE-A networks," Wireless Personal Communications, vol. 101, pp. 829-856, 2018.

D. Choi, H.-K. Choi, and S.-Y. Lee, "A group-based security protocol for machine-type communications in LTE-advanced," Wireless networks, vol. 21, pp. 405-419, 2015.

C. Lai, R. Lu, D. Zheng, H. Li, and X. Shen, "Toward secure large-scale machine-to-machine comm unications in 3GPP networks: chall enges and solutions," IEEE Communications Magazine, vol. 53, no. 12, pp. 12-19, 2015.

P. Roychoudhury, B. Roychoudhury, and D. K. Saikia, "Provably secure group authentication and key agreement for machine type communication using Chebyshev’s polynomial," Computer Communications, vol. 127, pp. 146-157, 2018.

K. K. Jyothi and S. Chaudhari, "Cluster-based authentication for machine type communication in LTE network using elliptic curve cryptography," International Journal of Cloud Computing, vol. 9, no. 2-3, pp. 258-284, 2020.

S. Basudan, "LEGA: a lightweight and efficient group authentication protocol for massive machine type communication in 5G networks," Journal of Communications and Information Networks, vol. 5, no. 4, pp. 457-466, 2020.

C. Lai, H. Li, R. Lu, R. Jiang, and X. Shen, "SEGR: A secure and efficient group roaming scheme for machine to machine communications between 3GPP and WiMAX networks," in 2014 IEEE International Conference on Communications (ICC), 2014: IEEE, pp. 1011-1016.

C. Lai, R. Lu, D. Zheng, H. Li, and X. S. Shen, "GLARM: Group-based lightweight authentication scheme for resource-constrained machine to machine communications," Computer Networks, vol. 99, pp. 66-81, 2016.

C. Lai, H. Li, X. Li, and J. Cao, "A novel group access authentication and key agreement protocol for machine‐type communication," Transactions on emerging telecommunications technologies, vol. 26, no. 3, pp. 414-431, 2015.

B. L. Parne, S. Gupta, and N. S. Chaudhari, "Segb: Security enhanced group based aka protocol for m2m communication in an iot enabled lte/lte-a network," IEEE Access, vol. 6, pp. 3668-3684, 2018.

N. H. Mahmood et al., "White paper on critical and massive machine type communication towards 6G," arXiv preprint arXiv:2004.14146, 2020.

K. K. Jyothi and S. Chaudhari, "Optimized neural network model for attack detection in LTE network," Computers & Electrical Engineering, vol. 88, p. 106879, 2020.

J. Li, M. Wen, and T. Zhang, "Group-based authentication and key agreement with dynamic policy updating for MTC in LTE-A networks," IEEE Internet of Things Journal, vol. 3, no. 3, pp. 408-417, 2015.