2 research outputs found

    Gender diversity and sustainability performance in the banking industry

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    AbstractThis study analyses the impact of female directors and managers on sustainability performance in the banking industry. Drawing on prior studies, we attempt to frame gender diversity, its determinants, and its consequences with respect to financial, social, and environmental performance. Our sample includes 880 bank‐year observations from 48 countries over the period 2011–2019. We conduct OLS and probit regressions on the panel data sample. The results show that increasing the proportion of female directors also improves the financial and environmental performance; female managers are keener on the social dimension and in engaging with stakeholders, than female directors. This study extends the current literature in the context of the banking industry, suggesting that banks should focus their efforts on establishing the right combination of female directors and managers. Furthermore, practical implications that encourage gender diversity among policy makers and regulators arise from this research

    Parametric Electromagnetic Analysis of Radar-Based Advanced Driver Assistant Systems

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    Efficient and optimal design of radar-based Advanced Driver Assistant Systems (ADAS) needs the evaluation of many different electromagnetic solutions for evaluating the impact of the radome on the electromagnetic wave propagation. Because of the very high frequency at which these devices operate, with the associated extremely small wavelength, very fine meshes are needed to accurately discretize the electromagnetic equations. Thus, the computational cost of each numerical solution for a given choice of the design or operation parameters, is high (CPU time consuming and needing significant computational resources) compromising the efficiency of standard optimization algorithms. In order to alleviate the just referred difficulties the present paper proposes an approach based on the use of reduced order modeling, in particular the construction of a parametric solution by employing a non-intrusive formulation of the Proper Generalized Decomposition, combined with a powerful phase-angle unwrapping strategy for accurately addressing the electric and magnetic fields interpolation, contributing to improve the design, the calibration and the operational use of those systems
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