Limitations of ISO26262 in addressing nonlinear dynamics in highly automated driving systems
Rasulov, Samir
Bakucz, Péter
Lukács, Judit
Horváth, Richárd
Lukács, Judit
Stadler, Róbert Gábor
Varga, Viktória Annamária
2026-06-30T06:55:42Z
2026-06-30T06:55:42Z
2024
http://hdl.handle.net/20.500.14044/39305
Ensuring the functional safety of highly automated driving (HAD) systems introduces challenges
that extend beyond the scope of existing standards. ISO26262, the leading framework for
automotive electrical and electronic (E/E) systems, rests on assumptions of determinism,
linearity, and modular fault containment. However, HAD systems inherently exhibit emergent
phenomena, bifurcations, sensitivity to initial conditions, nonlinear dynamics, and temporal
instability. These characteristics undermine the predictability and modular reasoning that
ISO26262 depends on, rendering traditional safety analysis methods such as FMEA, FTA, and
V&V insufficient. This study explores the fundamental limitations of ISO26262 when applied to
nonlinear dynamic systems. By drawing on concepts from low-dimensional attractor analysis
and chaos theory, it demonstrates how small perturbations, even in the absence of component
failures, can lead to significant and unpredictable system-level risks. The findings highlight an
urgent need to rethink safety frameworks to better address the dynamic and emergent behavior
of HAD systems.
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Limitations of ISO26262 in addressing nonlinear dynamics in highly automated driving systems
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Open access
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Óbudai Egyetem
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2024. November 14.
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Budapest
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Bánki Donát Gépész és Biztonságtechnikai Mérnöki Kar
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Óbudai Egyetem
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Műszaki tudományok - közlekedés- és járműtudományok
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functional safety
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iso26262
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highly automated driving
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nonlinear systems
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Konferenciaközlemény
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Mérnöki Szimpózium a Bánkin (Proceeding of the Engineering Symposium at Bánki)