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Reliability Analysis Using MINITAB and Python, Hwang, J


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Цена: 104010.00T
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Автор: Hwang, J
Название:  Reliability Analysis Using MINITAB and Python
ISBN: 9781119870760
Издательство: Wiley
Классификация:

ISBN-10: 1119870763
Обложка/Формат: Hardback
Страницы: 240
Вес: 0.43 кг.
Дата издания: 27.10.2022
Язык: English
Размер: 229 x 152 x 14
Читательская аудитория: Professional & vocational
Ссылка на Издательство: Link
Рейтинг:
Поставляется из: Англии
Описание: The Wiley Study Guides for the Level II CFA exam are proven to help candidates understand, retain, and master the CFA Program Curriculum, complete with color-coded Study Guides and coverage of every Learning Outcome Statement on the exam.

Dynamic System Reliability: Modeling and Analysis of Dynamic and Dependent Behaviors

Автор: Liudong Xing, Gregory Levitin, Chaonan Wang
Название: Dynamic System Reliability: Modeling and Analysis of Dynamic and Dependent Behaviors
ISBN: 1119507634 ISBN-13(EAN): 9781119507635
Издательство: Wiley
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Цена: 111880.00 T
Наличие на складе: Невозможна поставка.
Описание:

Offers timely and comprehensive coverage of dynamic system reliability theory

This book focuses on hot issues of dynamic system reliability, systematically introducing the reliability modeling and analysis methods for systems with imperfect fault coverage, systems with function dependence, systems subject to deterministic or probabilistic common-cause failures, systems subject to deterministic or probabilistic competing failures, and dynamic standby sparing systems. It presents recent developments of such extensions involving reliability modelling theory, reliability evaluation methods, and features numerous case studies based on real-world examples. The presented dynamic reliability theory can enable a more accurate representation of actual complex system behavior, thus more effectively guiding the reliable design of real-world critical systems.

Dynamic System Reliability: Modelling and Analysis of Dynamic and Dependent Behaviors begins by describing the evolution from the traditional static reliability theory to the dynamic system reliability theory, and provides a detailed investigation of dynamic and dependent behaviors in subsequent chapters. Although written for those with a background in basic probability theory and stochastic processes, the book includes a chapter reviewing the fundamentals that readers need to know in order to understand contents of other chapters which cover advanced topics in reliability theory and case studies.

  • The first book systematically focusing on dynamic system reliability modelling and analysis theory
  • Provides a comprehensive treatment on imperfect fault coverage (single-level/multi-level or modular), function dependence, common cause failures (deterministic and probabilistic), competing failures (deterministic and probabilistic), and dynamic standby sparing
  • Includes abundant illustrative examples and case studies based on real-world systems
  • Covers recent advances in combinatorial models and algorithms for dynamic system reliability analysis
  • Offers a rich set of references, providing helpful resources for readers to pursue further research and study of the topics

Dynamic System Reliability: Modelling and Analysis of Dynamic and Dependent Behaviors is an excellent book for undergraduate and graduate students, and engineers and researchers in reliability and related disciplines.


Modern Industrial Statistics, Third Edition

Автор: Kenett Ron S., Zacks Shelemyahu
Название: Modern Industrial Statistics, Third Edition
ISBN: 1119714907 ISBN-13(EAN): 9781119714903
Издательство: Wiley
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Цена: 81260.00 T
Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: Modern Industrial Statistics

The new edition of the prime reference on the tools of statistics used in industry and services, integrating theoretical, practical, and computer-based approaches

Modern Industrial Statistics is a leading reference and guide to the statistics tools widely used in industry and services. Designed to help professionals and students easily access relevant theoretical and practical information in a single volume, this standard resource employs a computer-intensive approach to industrial statistics and provides numerous examples and procedures in the popular R language and for MINITAB and JMP statistical analysis software. Divided into two parts, the text covers the principles of statistical thinking and analysis, bootstrapping, predictive analytics, Bayesian inference, time series analysis, acceptance sampling, statistical process control, design and analysis of experiments, simulation and computer experiments, and reliability and survival analysis. Part A, on computer age statistical analysis, can be used in general courses on analytics and statistics. Part B is focused on industrial statistics applications.

The fully revised third edition covers the latest techniques in R, MINITAB and JMP, and features brand-new coverage of time series analysis, predictive analytics and Bayesian inference. New and expanded simulation activities, examples, and case studies--drawn from the electronics, metal work, pharmaceutical, and financial industries--are complemented by additional computer and modeling methods. Helping readers develop skills for modeling data and designing experiments, this comprehensive volume:

  • Explains the use of computer-based methods such as bootstrapping and data visualization
  • Covers nonstandard techniques and applications of industrial statistical process control (SPC) charts
  • Contains numerous problems, exercises, and data sets representing real-life case studies of statistical work in various business and industry settings
  • Includes access to a companion website that contains an introduction to R, sample R code, csv files of all data sets, JMP add-ins, and downloadable appendices
  • Provides an author-created R package, mistat, that includes all data sets and statistical analysis applications used in the book

Part of the acclaimed Statistics in Practice series, Modern Industrial Statistics with Applications in R, MINITAB, and JMP, Third Edition, is the perfect textbook for advanced undergraduate and postgraduate courses in the areas of industrial statistics, quality and reliability engineering, and an important reference for industrial statisticians, researchers, and practitioners in related fields. The mistat R-package is available from the R CRAN repository.

Probabilistic Reliability Analysis of Power Systems: A Student`s Introduction

Автор: Tuinema Bart W., Rueda Torres Josй L., Stefanov Alexandru I.
Название: Probabilistic Reliability Analysis of Power Systems: A Student`s Introduction
ISBN: 3030435008 ISBN-13(EAN): 9783030435004
Издательство: Springer
Цена: 60550.00 T
Наличие на складе: Есть у поставщика Поставка под заказ.
Описание:

Introduction.- Power System Failures.- Reliability Models of Components.- Reliability Models of Small Systems.- Reliability Models of Large Systems.- Probabilistic Optimal Power Flow.- Conclusion.


Reliability Modeling and Analysis of Smart Power Systems

Автор: Rajesh Karki; Roy Billinton; Ajit Kumar Verma
Название: Reliability Modeling and Analysis of Smart Power Systems
ISBN: 8132229088 ISBN-13(EAN): 9788132229087
Издательство: Springer
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Цена: 104480.00 T
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Описание: The volume presents the research work in understanding, modeling and quantifying the risks associated with different ways of implementing smart grid technology in power systems in order to plan and operate a modern power system with an acceptable level of reliability.

Probabilistic Reliability Analysis of Power Systems: A Student`s Introduction

Автор: Tuinema Bart W., Rueda Torres Josй L., Stefanov Alexandru I.
Название: Probabilistic Reliability Analysis of Power Systems: A Student`s Introduction
ISBN: 3030434974 ISBN-13(EAN): 9783030434977
Издательство: Springer
Рейтинг:
Цена: 60550.00 T
Наличие на складе: Есть у поставщика Поставка под заказ.
Описание:

Introduction.- Power System Failures.- Reliability Models of Components.- Reliability Models of Small Systems.- Reliability Models of Large Systems.- Probabilistic Optimal Power Flow.- Conclusion.



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