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Data-Driven Remaining Useful Life Prognosis Techniques: Springer Series in Reliability Engineering

Autor Xiao-Sheng Si, Zheng-Xin Zhang, Chang-Hua Hu
en Limba Engleză Hardback – 9 feb 2017
This book introduces data-driven remaining useful life prognosis techniques, and shows how to utilize the condition monitoring data to predict the remaining useful life of stochastic degrading systems and to schedule maintenance and logistics plans. It is also the first book that describes the basic data-driven remaining useful life prognosis theory systematically and in detail.
The emphasis of the book is on the stochastic models, methods and applications employed in remaining useful life prognosis. It includes a wealth of degradation monitoring experiment data, practical prognosis methods for remaining useful life in various cases, and a series of applications incorporated into prognostic information in decision-making, such as maintenance-related decisions and ordering spare parts. It also highlights the latest advances in data-driven remaining useful life prognosis techniques, especially in the contexts of adaptive prognosis for linear stochastic degrading systems, nonlinear degradation modeling based prognosis, residual storage life prognosis, and prognostic information-based decision-making.
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Specificații

ISBN-13: 9783662540282
ISBN-10: 3662540282
Pagini: 448
Ilustrații: XVII, 430 p. 104 illus., 84 illus. in color.
Dimensiuni: 160 x 241 x 30 mm
Greutate: 0.83 kg
Ediția:1st edition 2017
Editura: Springer
Colecția Springer Series in Reliability Engineering
Seria Springer Series in Reliability Engineering

Locul publicării:Berlin, Heidelberg, Germany

Cuprins

From the Contents: Part I Introduction, Basic Concepts and Preliminaries.- Overview.- Advances in Data-Driven Remaining Useful Life Prognosis.- Part II Remaining Useful Life Prognosis for Linear Stochastic Degrading Systems.- Part III Remaining Useful Life Prognosis for Nonlinear Stochastic Degrading Systems.- Part IV Applications of Prognostics in Decision Making.- Variable Cost-based Maintenance Model from Prognostic Information.

Textul de pe ultima copertă

This book introduces data-driven remaining useful life prognosis techniques, and shows how to utilize the condition monitoring data to predict the remaining useful life of stochastic degrading systems and to schedule maintenance and logistics plans. It is also the first book that describes the basic data-driven remaining useful life prognosis theory systematically and in detail.
The emphasis of the book is on the stochastic models, methods and applications employed in remaining useful life prognosis. It includes a wealth of degradation monitoring experiment data, practical prognosis methods for remaining useful life in various cases, and a series of applications incorporated into prognostic information in decision-making, such as maintenance-related decisions and ordering spare parts. It also highlights the latest advances in data-driven remaining useful life prognosis techniques, especially in the contexts of adaptive prognosis for linear stochastic degrading systems, nonlinear degradation modeling based prognosis, residual storage life prognosis, and prognostic information-based decision-making.

Caracteristici

Describes the basic data-driven remaining useful life prognosis theory systematically and in detail Includes a wealth of degradation monitoring experiment data, practical prognosis methods, and various decision-making applications that employ prognostic information Highlights new findings on remaining useful life prognosis techniques for linear/nonlinear systems Provides a complete picture of prognostic information-based decision-making applications Includes supplementary material: sn.pub/extras