System of Human Activity Systems : A Novel Way to Visualize Invisible Risks / by Takafumi Nakamura
Por: Nakamura, Takafumi, autor
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Tipo de material:
E-bookSeries (Translational Systems Sciences, 2197-8840 ;; 37).Editor: Singapore : Springer International Publishing, 2023Edición: 1st ed 2023.Descripción: 1 recurso en línea.ISBN: 9789819951345.Tema: Gestión del riesgo
| Tipo de ítem | Biblioteca actual | Colección | Signatura topográfica | Estado | Fecha de vencimiento | Código de barras | Reserva de ítems | |
|---|---|---|---|---|---|---|---|---|
LIBRO-E NO PRÉSTAMO
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Valencia Digital Acceso Electrónico (UEV) | Ciencias Sociales | HD61 2023 EB (Navegar estantería(Abre debajo)) | Acceso electrónico | eBook16022657 |
Navegando Valencia Digital estanterías, Ubicación en estantería: Acceso Electrónico (UEV) Cerrar el navegador de estanterías (Oculta el navegador de estanterías)
| HD60.7 .G35 2019EB Revenue management and pricing analytics | HD61 2023 EB Risk Management Practices in Construction: A Global View | HD61 2023 EB Enterprise Risk Management Models: Focus on Sustainability | HD61 2023 EB System of Human Activity Systems : A Novel Way to Visualize Invisible Risks | HD61 .E84 2020 EB Ethics, Governance and Risk Management in Organizations | HD61 .G67 2020 EB Risk profile contingent analysis of management control systems : evidence from the mechanical engineering industry | HD61 .K56 2020 EB Knowledge risk management : from theory to praxis |
Chapter 1: Introduction -- Chapter 2: Survey for current methodologies -- Chapter 3: Proposal of new methodology to overcome current methodological shortcomings -- Chapter 4: Risk quantification/visualization methodology -- Chapter 5: Discussion -- Chapter 6: Conclusion.
This book has unique features that set it apart from conventional books on the prevention of system failures in that it provides a method that views human activities from a meta-methodological perspective based upon an inter-disciplinary understanding of human activities. With these characteristics, the book also proposes a common methodological basis to apply to various problems surrounding society today such as an aging social infrastructure; the safety of food, medicine, and public transportation; and the creation of sustainable electricity and cybersecurity. Furthermore, since the failure of human activities is expressed in a three-dimensional space and the topological metrics are implemented, the failure trajectories can be quantitatively monitored in time series to take effective preventive measures. Considering the implementation of the topological metrics, the causes of each failure are classified into two dimensions of the degree of coupling between system elements and the interaction between the target system and the external environment. Owing to the nature of the introduction of topological metrics, all individual and diverse systems can share general topological metrics. Consequently, understanding various failures over cross-industries is possible with the use of common meta-systemic language and mutual learning between different industries, and the solution of social problems can be effectively achieved. A system of system failures (SOSF) proposed and confirmed the effectiveness of this meta-methodology for information and communication technologies (ICT) systems and the SOSF is extended to human activity systems (SOHAS: system of human activity systems) as a whole. Therefore, the SOHAS becomes an academic foundation for theoretical research on meta-methodology, and it has an impact on practitioners to prevent system failures by accumulating knowledge of failures and learning from other industries.
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