Course title
B04909003
System Engineering

hirose toshiya Click to show questionnaire result at 2019
Course description
We need a system allowing comprehensive evaluation in the complex society we live in today. The system is treated in the field of politics, society, economics, ecology, and engineering. We understand, have an insight into, simulate, design make a decision about and operate it. Through this course, you can learn simulation, optimization and evaluation of management engineering, industrial engineering and control engineering including global environment. This course refers to human factors of pollution and safety which they face while mechanical engineers develop, design, and operate.
Purpose of class
This course can learn simulation, optimization and evaluation of management engineering, industrial engineering and control engineering including global environment.
Goals and objectives
  1. To summarize your opinion from the standpoint of mechanical engineering including global environmental issues
  2. To understand and calculate linear programming and PERT programming as system planning.
  3. To generate a block diagram with multi inputs in the system control.
  4. To understand system evaluation
Language
Japanese
Class schedule

Class schedule HW assignments (Including preparation and review of the class.) Amount of Time Required
1. System concept・historical background of the system・System engineering and the contents To review the syllabus 190minutes
2. Simulation and modeling・purpose of simulation・Types of model・Simulator To review prints to get more understand 190minutes
3. Mathematical programming・Linear programming To prepare for linear programming 190minutes
4. Mathematical programming・Queuing theory To prepare for queuing theory 190minutes
5. Mathematical programming・PERT planning To review handout and quiz to get more understand 190minutes
6. System and environment・global environmental issues To write about global environmental issues for an assignment 190minutes
7. System control (1)・Block diagram and transfer function・Multi-input characteristics To review prints to get more understand 190minutes
8. System control (2)・Signal-flow graph To review prints to get more understand 190minutes
9. Fuzzy modeling・Fuzzy set・Fuzzy control To review prints to get more understand 190minutes
10. Method of creative engineering To review prints to get more understand 190minutes
11. Safety of system・Reliability To review prints to get more understand 190minutes
12. Safety of system(1)
Example of automated driving system
To review the last class 190minutes
13. Safety of system(2)
Example of automated driving system
To review the last class 190minutes
14. Final examination To review class schedule from 1 to 13 190minutes
Total. - - 2660minutes
Relationship between 'Goals and Objectives' and 'Course Outcomes'

Final examination Report Examination(1) Examination(2) Total.
1. 0% 20% 0% 0% 20%
2. 20% 0% 10% 0% 30%
3. 20% 0% 0% 10% 30%
4. 20% 0% 0% 0% 20%
Total. 60% 20% 10% 10% -
Evaluation method and criteria
Report 20%
Examination(1) 10%
Examination(2) 10%
Final examination 60%

Pass at 60% or more points
Textbooks and reference materials
Prints for each theme
Prerequisites
It is preferable to take control engineering 1 at the same time.
Office hours and How to contact professors for questions
  • Tuesday lunch time (It is preferable to contact in advance)
Regionally-oriented
Non-regionally-oriented course
Development of social and professional independence
  • Course that cultivates an ability for utilizing knowledge
Active-learning course
More than one class is interactive
Course by professor with work experience
Work experience Work experience and relevance to the course content if applicatable
Applicatable I have a work experience about a construction of safety vehicle system, this class explain about knowledge for a safety system.
Education related SDGs:the Sustainable Development Goals
  • 3.GOOD HEALTH AND WELL-BEING
  • 12.RESPONSIBLE CONSUMPTION & PRODUCTION
Last modified : Sat Mar 21 12:10:49 JST 2020