Other Risk, Reliability and Maintenance Decision Problems
Adiel Teixeira Almeida,
Cristiano Alexandre Virgínio Cavalcante,
Marcelo Hazin Alencar,
Rodrigo José Pires Ferreira,
Adiel Teixeira Almeida-Filho and
Thalles Vitelli Garcez
Additional contact information
Adiel Teixeira Almeida: Universidade Federal de Pernambuco
Cristiano Alexandre Virgínio Cavalcante: Universidade Federal de Pernambuco
Marcelo Hazin Alencar: Universidade Federal de Pernambuco
Rodrigo José Pires Ferreira: Universidade Federal de Pernambuco
Adiel Teixeira Almeida-Filho: Universidade Federal de Pernambuco
Thalles Vitelli Garcez: Universidade Federal de Pernambuco
Chapter Chapter 12 in Multicriteria and Multiobjective Models for Risk, Reliability and Maintenance Decision Analysis, 2015, pp 351-390 from Springer
Abstract:
Abstract: In this chapter, specific problems in risk, reliability and maintenance context are described, such as location of backup units, sequencing of maintenance activities, natural disasters, operation planning of a power system network, integrated production and maintenance scheduling, maintenance team sizing and reliability acceptance tests. This chapter presents a multicriteria decision model with an illustrative application for most of these problems. Amongst the MCDM/A approaches considered for the illustrative applications in this chapter are: Multi-attribute utility theory (MAUT), PROMETHEE II, NSGA-II. Regarding the reliability acceptance test an MCDM/A Bayesian approach is presented. For these problems, several aspects have been considered such as: size of population, degree of industrialization, the extent of health services (location of backup units); degree of damage, consumption, electric load, special clients, healthcare services, SAIDI and SAIFI (sequencing of maintenance activities); human, environmental, financial and infrastructure concerns (natural disasters); expected tardiness and maintenance costs (integrated production and maintenance scheduling); waiting time and cost of personnel (maintenance team sizing); probability of accepting equipment not in accordance with the reliability specified by the manufacturer; and delaying the project conclusion (reliability acceptance test). Finally, some aspects of multiobjective optimization are discussed.
Keywords: Natural Disaster; Preventive Maintenance; Maintenance Activity; Multiobjective Genetic Algorithm; Power Distribution Network (search for similar items in EconPapers)
Date: 2015
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Persistent link: https://EconPapers.repec.org/RePEc:spr:isochp:978-3-319-17969-8_12
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DOI: 10.1007/978-3-319-17969-8_12
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