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Production Management

Code: EM0129     Acronym: GP

Keywords
Classification Keyword
OFICIAL Management

Instance: 2017/2018 - 1S

Active? Yes
Responsible unit: Department of Industrial Engineering and Management
Course/CS Responsible: Master in Mechanical Engineering

Cycles of Study/Courses

Acronym No. of Students Study Plan Curricular Years Credits UCN Credits ECTS Contact hours Total Time
MIEM 48 Syllabus since 2006/2007 5 - 6 45,5 162
Mais informaçõesLast updated on 2017-07-20.

Fields changed: Learning outcomes and competences, Métodos de ensino e atividades de aprendizagem, Componentes de Avaliação e Ocupação, Provas e trabalhos especiais, Melhoria de classificação, Fórmula de cálculo da classificação final

Teaching language

English

Objectives

The aim of this course is to provide the students an integrated vision of important concepts, techniques and strategies of the Production Management. One expects that the students acquire a global vision of the concepts, problems and available tools, enabling them to take better decisions. The students are expected to better analyze production situations, recognizing “trade-offs” between Cost, Quality, Time and Flexibility in devising solutions for competitive systems. 

Learning outcomes and competences

Understand the importance of OM to obtain competitive advantages; Know methods to deal with problems faced to manage the production organization.

Students will better understand the connections between Product and Process design, taking in account the production volume and the economic implications of the decisions made at the start of the project.

The use of simulations during the practical sessions and the “digital production simulator” provides experience in solving production problems.

Working method

Presencial

Pre-requirements (prior knowledge) and co-requirements (common knowledge)

Material                                 Source

Statistical Distributions           Statistics

Linear Programming               Operational Research

Program

Introduction to the field of study: Operations Strategy and Competitive Dimensions: Cost, Quality, Time and Flexibility (and its Trade-Offs).

Process Analysis.

Facility Layout (including assembly-line balancing).

Aggregate Sales and Operations Planning.

TPS (Toyota Production System), with special reference to the techniques of setup-time reduction (SMED).

Lot sizing: Variable Demand Deterministic models (including Silver-Meal heuristic and the Algorithm of Wagner-Whitin – Dynamic Programming). Optimization using MIP.

Material Requirements Planning.

Operations Scheduling: Gantt Charts. Priority Rules;

Synchronous Manufacturing and Theory of Constraints (Goldratt).

Mandatory literature

F. Robert Jacobs, Richard B. Chase ; contributor Rhonda R. Lummus; Operations and supply chain management. ISBN: 978-0-07-122090-3 (14TH EDITION)

Complementary Bibliography

Hopp, Wallace J.; Factory physics. ISBN: 0-07-116378-6
Eliyahu M. Goldratt; Production the TOC way. ISBN: 0-88427-175-7

Teaching methods and learning activities

The theoretical concepts and techniques will be transmitted using presentations during the lectures, promoting some debate and discussion of issues related to the scope of the course.

The practical application of knowledge will be promoted through exercises, case studies and problem solving in computer simulators. Computers, "data show" and whiteboard are used as supporting tools for learning.

The production workshop promotes the application of acquired knowledge and allows you to experiment with alternatives in a computer simulator. The ability to work as a team is promoted.

Software

Microsoft EXCEL
Simulador de Produção
LEKIN

keywords

Technological sciences > Engineering > Industrial engineering

Evaluation Type

Distributed evaluation without final exam

Assessment Components

Designation Weight (%)
Teste 80,00
Trabalho laboratorial 20,00
Total: 100,00

Amount of time allocated to each course unit

Designation Time (hours)
Estudo autónomo 117,00
Frequência das aulas 45,00
Total: 162,00

Eligibility for exams

Not to exceed nº limit of absences.

Calculation formula of final grade

i)Workshop: 20%. ii)2 Tests (each 40%): 80% . Minimum note in each Test: 6,0; Average Tests >= 9,0 values in 20. To validate a grade >=18, you must take an oral examination.

Examinations or Special Assignments

2 full days workshop (computer simulation of a plant) is mandatory and does contribute 20% for final grade. 

Special assessment (TE, DA, ...)

A final exam  (100%).

Classification improvement

It can be done in the final exam of the same semester (80%) or in the next occurrence of the course, taking the intermediate tests or by means of a final exam, in the exam schedule proposed by FEUP (80%) plus the grade obtained in the Workshop (20%)

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