Risk management for the development of critical systems projects

Keywords: Critical Systems, Risks, Risk Managment, Software

Abstract

Today we can find different critical systems in different fields such as health, military, space, security, etc., where the lives and economy of many people are in danger due to the consequences that may arise from a failure in these systems. For this reason, it is essential to identify, analyze and treat the risks related to critical systems projects and typical risk management processes. In this article, we show and explore different techniques and models applied in different environments, such as medicine and the military field, recognizing concepts and similarities in critical systems and risk management. Finally, determining that there are no defined methodologies for risk management in these systems, in many cases necessary to apply hybrid and dynamic options.

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References

Knight, J. C. (2002, May). Safety critical systems: challenges and directions. In Proceedings of the 24th international conference on software engineering (pp. 547-550).

Oh, H. J., & Hong, J. P. (2012). A Study of Software Hazard Analysis for Safety Critical Function in Military Aircraft. Journal of IKEEE, 16(2), 145-152.

Gatouillat, A., Badr, Y., Massot, B., & Sejdić, E. (2018). Internet of medical things: A review of recent contributions dealing with cyber-physical systems in medicine. IEEE internet of things journal, 5(5), 3810-3822.

Albee, A., Battel, S., Brace, R., Burdick, G., Casani, J., Lavell, J., ... & Dipprey, D. (2000). Report on the loss of the Mars Polar Lander and Deep Space 2 missions.

Biro, M., Mashkoor, A., Sametinger, J., & Seker, R. (2017). Software safety and security risk mitigation in cyber-physical systems. IEEE Software, 35(1), 24-29.

Guide, A. (2001). Project management body of knowledge (pmbok® guide). In Project Management Institute (Vol. 11, pp. 7-8).

Knight, J. C., & Strunk, E. A. (2004). Achieving critical system survivability through software architectures. In Architecting Dependable Systems II (pp. 51-78). Springer, Berlin, Heidelberg.

Lions, J. L., Luebeck, L., Fauquembergue, J. L., Kahn, G., Kubbat, W., Levedag, S., ... & O’Halloran, C. (1996). Ariane 5 flight 501 failure report by the inquiry board.

Albee, A., Battel, S., Brace, R., Burdick, G., Casani, J., Lavell, J., ... & Dipprey, D. (2000). Report on the loss of the Mars Polar Lander and Deep Space 2 missions.

Board, M. I. (1999). Mars Climate Orbiter Mishap Investigation Board Phase I Report November 10, 1999.

Neumann, P. G. (1994). Computer-related risks. Addison-Wesley Professional.

McNally, K. M., Page, M. A., & Sunderland, V. B. (1997). Failure-mode and effects analysis in improving a drug distribution system. American Journal of Health-System Pharmacy, 54(2), 171-177.

Gatouillat, A., Badr, Y., Massot, B., & Sejdić, E. (2018). Internet of medical things: A review of recent contributions dealing with cyber-physical systems in medicine. IEEE internet of things journal, 5(5), 3810-3822.

Rao, A., Carreón, N., Lysecky, R., & Rozenblit, J. (2017). Probabilistic threat detection for risk management in cyber-physical medical systems. IEEE Software, 35(1), 38-43.

Received: 2022-07-18
Accepted: 2022-09-02
Published: 2022-09-30
How to Cite
[1]
G. J. Aleman Zambrano, M. I. Del Carpio Lazo, D. G. Mendiguri Chávez, and D. C. Vílchez Silva, “Risk management for the development of critical systems projects”, Innov. softw., vol. 3, no. 2, pp. 132-139, Sep. 2022.
Section
Journal papers