Applying Security-by-Design Principles in Next-Generation Network Architectures: Implications for the United States and Global Cybersecurity Ecosystems

Authors

  • Akeem Ogundipe 5230 S M L King Jr Pkwy, Beaumont, TX 77705, Lamar University, United States

DOI:

https://doi.org/10.54536/ajet.v5i4.7688

Keywords:

5G Networks, Cloud Security, Cybersecurity Policy, Edge Computing, ENISA Guidelines, Global Security Frameworks, ISO/IEC 27001, Network Security, NIST Framework, Secure Network Architecture, Security-By-Design, Zero Trust Architecture

Abstract

The rapid growth of the digital ecosystem—driven by technologies such as 5G, cloud-native systems, edge computing, and the Internet of Things (IoT)—has introduced both significant opportunities and complex cybersecurity challenges. As modern networks become increasingly interconnected, traditional reactive security approaches are proving inadequate against evolving and sophisticated cyber threats. In this context, Security-by-Design (SbD) has emerged as a proactive approach that embeds security considerations into system architecture and throughout the development lifecycle.
This study examines the implementation of Security-by-Design principles in the United States and compares them with practices across Europe, the Asia-Pacific region, and Africa. The analysis draws on a combination of academic literature, policy documents, and established security frameworks, including NIST SP 800-207, CISA’s Zero Trust initiatives, ENISA guidelines, and ISO/IEC 27001 standards.
The findings indicate that the United States leads in aligning Zero Trust architecture with Security-by-Design principles, largely supported by federal mandates and national cybersecurity strategies. In contrast, other regions demonstrate strong governance frameworks, enhanced data protection regulations, and context-specific technological adaptations. The paper concludes by identifying ongoing global challenges, outlining future research directions, and recommending strategies to improve international collaboration in securing next-generation network infrastructures.

Downloads

Download data is not yet available.

References

Alcaraz, C., & Zeadally, S. (2015). Critical infrastructure protection: Requirements and challenges for the 21st century. International Journal of Critical Infrastructure Protection, 8, 53–66. https://doi.org/10.1016/j.ijcip.2014.12.002

Adu-Gyimah, S., Kufour Boansi, O., Asante, G., & Addo, P. C. (2025). Academic trust betrayed: Unravelling the factors behind lecturers’ vulnerability to social engineering attacks. American Journal of Education and Technology, 4(3), 53–61. https://doi.org/10.54536/ajet.v4i3.4773

Alharkan, I., & Aslam, N. (2021). Zero trust in cloud computing: A systematic review. IEEE Access, 9, 160027–160047. https://doi.org/10.1109/ACCESS.2021.3132025

Badr, Y., Chbeir, R., & Abraham, A. (2020). Security and resilience of next-generation cyber-physical systems. Future Generation Computer Systems, 108, 360–361. https://doi.org/10.1016/j.future.2020.03.044

Cisco. (2023). Zero-trust and secure-by-design networking: Architecture white paper. https://www.cisco.com

Cybersecurity and Infrastructure Security Agency. (2021). Zero trust maturity model. https://www.cisa.gov

European Union Agency for Cybersecurity. (2021). Access control and identity management guidelines. https://www.enisa.europa.eu

Fazil, A. W., Hakimi, M., Sajid, S., Quchi, M. M., & Khaliqyar, K. Q. (2023). Enhancing internet safety and cybersecurity awareness among secondary and high school students in Afghanistan: A case study of Badakhshan Province. American Journal of Education and Technology, 2(4), 50–61. https://doi.org/10.54536/ajet.v2i4.2248

Forrester Research. (2010). No more chewy centers: Introducing the Zero Trust model of information security (J. Kindervag).

Green, M., & Smith, M. (2016). Developers are not the enemy!: The need for usable security-by-design. IEEE Security & Privacy, 14(5), 40–46. https://doi.org/10.1109/MSP.2016.88

Hu, V. C., Ferraiolo, D., Kuhn, R., Schnitzer, A., Sandlin, K., Miller, R., & Scarfone, K. (2014). Guide to attribute-based access control (ABAC): Definitions and considerations (NIST SP 800-162). National Institute of Standards and Technology. https://doi.org/10.6028/NIST.SP.800-162

International Organization for Standardization. (2022). ISO/IEC 27001: Information security management systems—Requirements.

Kissel, R., Scholl, M., & Stine, K. (2012). Security considerations in the system development life cycle (NIST SP 800-64 Rev. 2). National Institute of Standards and Technology. https://doi.org/10.6028/NIST.SP.800-64r2

Li, F., Hadjieleftheriou, M., Kollios, G., & Reyzin, L. (2005). Dynamic authenticated index structures for outsourced databases. The VLDB Journal, 14(4), 438–463. https://doi.org/10.1007/s00778-005-0168-2

National Institute of Standards and Technology. (2013). Security and privacy controls for federal information systems and organizations (NIST SP 800-53 Rev. 4). https://doi.org/10.6028/NIST.SP.800-53r4

National Institute of Standards and Technology. (2020). Zero trust architecture (NIST SP 800-207). https://doi.org/10.6028/NIST.SP.800-207

Roman, R., Zhou, J., & Lopez, J. (2013). On the features and challenges of security and privacy in distributed internet of things. Computer Networks, 57(10), 2266–2279. https://doi.org/10.1016/j.comnet.2012.12.018

Saltzer, J. H., & Schroeder, M. D. (1975). The protection of information in computer systems. Proceedings of the IEEE, 63(9), 1278–1308. https://doi.org/10.1109/PROC.1975.9939

Schneier, B. (2018). Click here to kill everybody: Security and survival in a hyper-connected world. W. W. Norton.

Srinivas, J., Das, A. K., & Kumar, N. (2019). Secure access control techniques in cloud computing: A comprehensive survey. Security and Communication Networks, 2019, 1–30. https://doi.org/10.1155/2019/8671864

Stallings, W. (2020). Network security essentials: Applications and standards (7th ed.). Pearson.

Sullivan, C., & Burger, E. (2017). Cybersecurity: A human-centric approach. American Journal of Law & Medicine, 43(2–3), 365–381. https://doi.org/10.1177/0098858817738222

UK National Cyber Security Centre. (2020). Principles for Zero Trust architecture. https://www.ncsc.gov.uk

U.S. Executive Office of the President. (2021). Executive Order 14028: Improving the nation’s cybersecurity. https://www.whitehouse.gov

Voigt, P., & von dem Bussche, A. (2017). The EU General Data Protection Regulation (GDPR): A practical guide. Springer. https://doi.org/10.1007/978-3-319-57959-7

Zetter, K. (2015). Countdown to zero day: Stuxnet and the launch of the world’s first digital weapon. Crown Publishing.

Downloads

Published

2026-10-01

How to Cite

Ogundipe, A. . (2026). Applying Security-by-Design Principles in Next-Generation Network Architectures: Implications for the United States and Global Cybersecurity Ecosystems. American Journal of Education and Technology, 5(4), 24-30. https://doi.org/10.54536/ajet.v5i4.7688

Similar Articles

21-30 of 88

You may also start an advanced similarity search for this article.