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Younes Aoues

Researcher at Intelligence and National Security Alliance

Publications -  41
Citations -  676

Younes Aoues is an academic researcher from Intelligence and National Security Alliance. The author has contributed to research in topics: Reliability (statistics) & Turbine. The author has an hindex of 8, co-authored 37 publications receiving 504 citations. Previous affiliations of Younes Aoues include International Facility Management Association & Institut national des sciences appliquées.

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Benchmark study of numerical methods for reliability-based design optimization

TL;DR: The reliability-based design optimization (RBDO) seeks for the best compromise between cost and safety, by considering system uncertainties as mentioned in this paper, which can be classified into three main approaches, namely the two-level approach, the single loop approach and the decoupled approach.
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Reliability-based optimization of structural systems by adaptive target safety – Application to RC frames

TL;DR: In this paper, a methodology for system reliability-based design optimization (SRBDO) is proposed, which aims to find the best compromise between satisfying the target system reliability and optimizing the component performance.
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Probabilistic fatigue damage estimation of embedded electronic solder joints under random vibration

TL;DR: Numerical random vibration analysis with finite element method of an embedded electronic device is used to estimate the stresses Power Spectral Density (PSD) and the effectiveness of sub-modelling techniques in the random vibrations analysis is shown.
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Reliability based design optimization of wire bonding in power microelectronic devices

TL;DR: In this article, a reliability-based design optimization method for microelectronic device structures is presented, where the objective is to design structures which should be both economical and reliable where the solution reduces the structural weight in uncritical regions.
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Reliability assessment and updating of notched timber components subjected to environmental and mechanical loading

TL;DR: A methodology for reliability assessment and updating of notched timber components based on mechanical (A-integral formulation) and reliability (simulation and Bayesian networks) methods, and experimental data is proposed.