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This licentiate thesis by Daniel Eriksson focuses on the design and analysis of Fault Detection and Isolation (FDI) systems for uncertain systems. The research aims to enhance the reliability and performance of technical systems by improving fault detectability and isolability, particularly in systems with model uncertainties and measurement noise. The thesis introduces a quantitative measure for fault performance and applies it to engine misfire detection, showcasing methods to optimize sensor placement and test selection. Targeting engineers and researchers in vehicular systems and electrical engineering, the work emphasizes the importance of robust diagnosis systems to prevent severe consequences in complex machinery.
Faultfinding. --- Engineering systems. --- Faultfinding --- Engineering systems
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Propulsion systems --- Systems, Propulsion --- Engineering systems
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Propulsion systems. --- Systems, Propulsion --- Engineering systems
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Propulsion systems. --- Systems, Propulsion --- Engineering systems
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Life-Cycle of Structures and Infrastructure Systems contains the lectures and papers presented at IALCCE 2023- The Eighth International Symposium on Life-Cycle Civil Engineering, held at Politecnico di Milano, Milan, Italy, 2-6 July, 2023. This book contains the full papers of 514 contributions presented at IALCCE 2023, including the Fazlur R. Khan Plenary Lecture, nine Keynote Lectures, and 504 technical papers from 45 countries. The papers cover recent advances and cutting-edge research in the field of life-cycle civil engineering, including emerging concepts and innovative applications related to life-cycle design, assessment, inspection, monitoring, repair, maintenance, rehabilitation, and management of structures and infrastructure systems under uncertainty. Major topics covered include life-cycle safety, reliability, risk, resilience and sustainability, life-cycle damaging processes, life-cycle design and assessment, life-cycle inspection and monitoring, life-cycle maintenance and management, life-cycle performance of special structures, life-cycle cost of structures and infrastructure systems, and life-cycle-oriented computational tools, among others. This Open Access Book provides both an up-to-date overview of the field of life-cycle civil engineering and significant contributions to the process of making more rational decisions to mitigate the life-cycle risk and improve the life-cycle reliability, resilience, and sustainability of structures and infrastructure systems exposed to multiple natural and human-made hazards in a changing climate. It will serve as a valuable reference to all concerned with life-cycle of civil engineering systems, including students, researchers, practicioners, consultants, contractors, decision makers, and representatives of managing bodies and public authorities from all branches of civil engineering.
Civil engineering --- Engineering systems --- Sustainable engineering
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Large scale systems --- Systems, Large scale --- Engineering systems --- System analysis
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