Model-Based Reliability Systems Engineering [electronic resource] / by Yi Ren, Cheng Qian, Dezhen Yang, Qiang Feng, Bo Sun, Zili Wang.

Por: Ren, Yi [author.]Colaborador(es): Qian, Cheng [author.] | Yang, Dezhen [author.] | Feng, Qiang [author.] | Sun, Bo [author.] | Wang, Zili [author.] | SpringerLink (Online service)Tipo de material: TextoTextoEditor: Singapore : Springer Nature Singapore : Imprint: Springer, 2024Edición: 1st ed. 2024Descripción: XIII, 338 p. 216 illus., 34 illus. in color. online resourceTipo de contenido: text Tipo de medio: computer Tipo de portador: online resourceISBN: 9789819902750Tema(s): Industrial engineering | Production engineering | Control engineering | Robotics | Automation | Industrial and Production Engineering | Control, Robotics, AutomationFormatos físicos adicionales: Printed edition:: Sin título; Printed edition:: Sin título; Printed edition:: Sin títuloClasificación CDD: 670 Clasificación LoC:T55.4-60.8Recursos en línea: Libro electrónicoTexto
Contenidos:
Development phase of reliability systems engineering -- Fundamentals of model based reliability systems engineering (MBRSE) -- MBRSE unified model and global evolution method -- System fault identification and control method based on functional model -- Fault identification and control method based on physical model -- MBRSE R&D process model -- Integrated design platform of model based reliability systems engineering -- MBRSE engineering application case -- MBRSE future outlook.
En: Springer Nature eBookResumen: This book introduces a new Model-Based Reliability System Engineering (MBRSE) methodology, including its concept connotation, basic theory and technologies, framework of integrated platform and engineering application cases. Different from traditional Reliability System Engineering (RSE) methods that mainly rely on the management of documents, MBRSE is model centric method, with which the design for hexability (including "reliability, maintainability, testability, supportability, environmental adaptability and safety") is performed by the revolution of united models in complete R&D fields and the process of closed- loop failure mitigation. This method can integrate all techniques and approaches of reliability engineering into the main process of R&D, and therefore is considered as a generalized hexability design and analysis tool. Furthermore, the future perspectives in the development of MBRSE are also presented through the combination of Digital Twin technology. The main objective of the book is to provide the readers who have engaged in theoretical and technical researches, project management and engineering design applications of reliability engineering, as well as for teachers, senior undergraduates and postgraduates in colleges and universities working on reliability engineering and system engineering.
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Development phase of reliability systems engineering -- Fundamentals of model based reliability systems engineering (MBRSE) -- MBRSE unified model and global evolution method -- System fault identification and control method based on functional model -- Fault identification and control method based on physical model -- MBRSE R&D process model -- Integrated design platform of model based reliability systems engineering -- MBRSE engineering application case -- MBRSE future outlook.

This book introduces a new Model-Based Reliability System Engineering (MBRSE) methodology, including its concept connotation, basic theory and technologies, framework of integrated platform and engineering application cases. Different from traditional Reliability System Engineering (RSE) methods that mainly rely on the management of documents, MBRSE is model centric method, with which the design for hexability (including "reliability, maintainability, testability, supportability, environmental adaptability and safety") is performed by the revolution of united models in complete R&D fields and the process of closed- loop failure mitigation. This method can integrate all techniques and approaches of reliability engineering into the main process of R&D, and therefore is considered as a generalized hexability design and analysis tool. Furthermore, the future perspectives in the development of MBRSE are also presented through the combination of Digital Twin technology. The main objective of the book is to provide the readers who have engaged in theoretical and technical researches, project management and engineering design applications of reliability engineering, as well as for teachers, senior undergraduates and postgraduates in colleges and universities working on reliability engineering and system engineering.

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