ETHICS AND ISSUES IN EMBEDDED AND REAL-TIME SOFTWARE ENGINEERING | IJCSE Volume 9 – Issue 6 | IJCSE-V9I6P46

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International Journal of Computer Science Engineering Techniques

ISSN: 2455-135X
Volume 9, Issue 6  |  Published:
Author

Abstract

Embedded and real-time software Engineering is a very important area of study that supports crucial systems in many sectors, like transportation, healthcare, industrial automation, and aerospace. This AI software is implemented with high precision and safety, which makes them reliable and adds good performance. The designing part of this type of system is more than its technicality. The engineer needs to learn about social, ethical, environmental, and regulatory aspects in detail. This study highlights the importance of systems, with an emphasis on professional and ethical obligations that govern their design. It looks into their concerns, like algorithmic bias, data privacy, general regulatory compliance, and sustainability. In this research, a real-life case study, in addition to the Boeing 737 MAX crashes and Volkswagen’s emission issues, was evaluated to show the damage of ethical lapses in embedded systems. This aids in reinforcing the importance of ethical design methods by the use of testing, obeying regulatory rules, and sustainability planning in system Implementation. The study suggests a good and forward-thinking solution to the new issues in the industry, which employs development principles that are clear and understandable, supporting interdisciplinary collaboration, and deploying a sustainable framework in the system lifecycle. Furthermore, it explains why accountability, training in ethics, and strong governance are important. The aim is to suggest a guild that not only handles present issues but also prepares real-time system developers for the future needs of this important field.

Keywords

ADAS, Boeing 737 MAX, Pacemakers, Dieselgate, AOA sensor, MCAS system, AI Bias, Internet of Things Devices (IOT), carbon footprints, GDPR, Modular Programming, ensemble model boosting, Waterfall Model, and radar.

Conclusion

Embedded and real-time software systems are critically analyzed in this work with comments made with respect to the challenges, which are ethical, social, sustainability, and regulatory. It looks at real-life case studies such as Boeing 737 MAX crashes to show the disastrous outcomes of poor design, systems, transparency, and poor regulation. The article is a critique of the inappropriate paradigms of development, such as the Waterfall and code-first paradigms in safety-critical software. Surveillance, digital inequality, and e-waste are also discussed in it. The suggestions are to include the iterative design, ethical compliance, and following the international standards on safety in the future to enhance embedded systems.

References

Arandia, N., Garate, J.I. and Mabe, J. (2022) Embedded sensor systems in medical devices: requisites and challenges ahead. Sensors, [Online] 22 (24), pp. 9917 Available from: https://www.mdpi.com/1424-8220/22/24/9917.[Accessed:23 June 2025]. Broy, M., Kruger, I.H., Pretschner, A. and Salzmann, C. (2007) Engineering automotive software. Proceedings of the IEEE, [Online] 95 (2), pp. 356–373 Available from:https://doi.org/10.1109/JPROC.2006.888386. [Accessed:21 June 2025]. Diwaker, S.K., Chaurasia, P.K. and Khaliq, M. (2024) Pathways for Security of Embedded System: Issues and Challenges. In: . , [Online] Available from: [Accessed:21 June 2025]. Frey, C.B. and Osborne, M.A. (2017) The future of employment: How susceptible are jobs to computerisation? Technological forecasting and social change, [Online] 114 , pp. 254–280 Available from: https://doi.org/10.1016/j.techfore.2016.08.019.[Accessed:21 June 2025]. Gungor, V.C., Lu, B. and Hancke, G.P. (2010) Opportunities and challenges of wireless sensor networks in smart grid. IEEE Transactions on Industrial Electronics, [Online] 57 (10), pp. 3557–3564 Available from: https://doi.org/10.1109/tie.2009.2039455. [Accessed:20 June 2025]. Henzinger, T.A. and Sifakis, J. (2006) The embedded systems design challenge. In: . , [Online] Available from: http://mtc.epfl.ch/~tah/Publications/the_embedded_systems_design_challenge.pdf [Accessed:18 June 2025]. Immadisetty, A. Data Engineering with a Focus on Scalable Platforms and Real-Time Analytics. , [Online] , pp. Available from: https:// . [Accessed:25 June 2025]. Kumar, A., Holuszko, M. and Espinosa, D.C.R. (2017) E-waste: An overview on generation, collection, legislation and recycling practices. Resources, Conservation and Lauder, R. and Coe, D. (2024) An Ethical Examination: Dieselgate. , [Online] , pp. Available from: https:// . [Accessed:19 June 2025]. Lyon, D. (2014) Surveillance, Snowden, and big data: Capacities, consequences, critique. Big data & society, [Online] 1 (2), pp. 2053951714541861 Available from: https://doi.org/10.1177/2053951714541861. [Accessed:19 June 2025]. Marwedel, P. (2021) Embedded system design: embedded systems foundations of cyber-physical systems, and the internet of things. ed. [Online] : Springer Nature. Available from: https://link.springer.com/book/10.1007/978-3-030-63264-5.[Accessed:19 June 2025]. Raza, S., Wallgren, L. and Voigt, T. (2013) SVELTE: Real-time intrusion detection in the Internet of Things. Ad hoc networks, [Online] 11 (8), pp. 2661–2674 Available from: https://doi.org/10.1016/j.adhoc.2013.04.014.[Accessed:27 June 2025]. Roman, R., Zhou, J. and Lopez, J. (2013) On the features and challenges of security and privacy in distributed internet of things. Computer networks, [Online] 57 (10), pp. 2266–2279 Available from:https://doi.org/10.1016/j.comnet.2012.12.018 . [Accessed:27 June 2025]. Sanchez, T.W., Brenman, M. and Ye, X. (2025). The ethical concerns of artificial intelligence in urban planning. Journal of the American Planning Association, [Online] 91 (2), pp. 294–307 Available from: https:// . [Accessed:26 June 2025]. Thompson, D. (2024) Boeing 737 Max Crisis of 2018–2019: A Content Analysis. In: . , [Online] Available from: https://rais.education/wp-content/uploads/2024/10/0440.pdf.[Accessed:26 June 2025]. Vahid, F. and Givargis, T.D. (2001) Embedded system design: a unified hardware/software introduction. ed. [Online] : John Wiley & Sons. Available from: https:// . [Accessed:29 June 2025]. Velez, G. and Otaegui, O. (2015) Embedded platforms for computer vision-based advanced driver assistance systems: a survey. arXiv preprint arXiv:1504.07442, [Online] , pp.231-325 Available from: https://arxiv.org/abs/1504.07442. [Accessed:29 June 2025]. Yu, L. (2006) Understanding information inequality: Making sense of the literature of the information and digital divides. Journal of librarianship and information science, [Online] 38 (4), pp. 229–252 Available from: https://eric.ed.gov/?id=EJ845509. [Accessed:28 June 2025]. Zhou, Q. and Tan, F. (2024) Avionics of Electric Vertical Take-off and Landing in the Urban Air Mobility: A Review. IEEE Aerospace and Electronic Systems Magazine, [Online], Available from: https://. [Accessed:28 June 2025].
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