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TR

MODELING AND SIMULATION

Course
BIME415 - MODELING AND SIMULATION
Department
Biomedical Engineering - English - Undergraduate
Course Type
Course
Status
Required
Language
English
Credit
3
ECTS
4
T+P+L
2 + 0 + 2
Course Coordinator(s)
Asst. Prof. Dr. Hüseyin NASIFOĞLU
Prerequisite
-
Keywords

Course Description

The course will introduce the basic concepts of computation through modeling and simulation that are increasingly being used by architects, planners, and engineers to shorten design cycles, innovate new products, and evaluate designs and simulate the impacts of alternative approaches. Students will use MATLAB to explore a range of programming and modeling concepts while acquiring those skills. They will then undertake a final project that analyzes one of a variety of scientific problems by designing a representative model, implementing the model, completing a verification and validation process of the model, reporting on the model in oral and written form, and changing the model to reflect corrections, improvements and enhancements.

MODELING AND SIMULATION

Evaluation Tools (Active Term)

Item Type Weight (%)
Midterm Exam Midterm 40
Final Exam Final 50
Presentation Presentation 10
Total 100

Course outcomes

No course outcomes have been defined yet.

Course Syllabus

Week Topic
Week 1 Introduction to Modeling and Simulation
Week 2 Conceptual Models
Week 3 Mathematical Models I
Week 4 Mathematical Models II
Week 5 Measurement Systems
Week 6 Biosignal Processing
Week 7 Biomedical Image Reconstruction I
Week 8 Midterm Week
Week 9 Midterm Week
Week 10 Biomedical Image Reconstruction II
Week 11 Bioimage Modeling
Week 12 Revision
Week 13 Student Presentations
Week 14 Student Presentations
Week 15 Student Presentations

Reference Books & Course Materials

  1. 01 Averill M. Law – Simulation Modeling and Analysis
  2. 02 William J. Palm III – Modeling, Analysis, and Control of Dynamic Systems
  3. 03 Steven T. Karris – Introduction to Simulink with Engineering Applications

Learning Outcomes

  1. L01 Explain conceptual and mathematical models representing physiological and biomedical systems. SOLO 4
  2. L02 Evaluate the measurement systems and errors for biomedical recordings. SOLO 5
  3. L03 Describe the basic use of MATLAB for modeling and simulation, including its relevance to biomedical and physical system representations. SOLO 3
  4. L04 Interpret biosignal processing, bioimage modeling and biomedical images through computational modeling techniques. SOLO 5

Program Outcomes

  1. P01 Should have sufficient knowledge in mathematics, science, and subjects specific to the relevant engineering discipline.
  2. P02 Should have the ability to use theoretical and applied knowledge in mathematics, science, and related engineering disciplines in complex engineering problems.
  3. P03 Should have the ability to detect, define, formulate, and solve complex engineering problems.
  4. P04 Should have the ability to select and apply appropriate analysis and modeling methods to solve complex engineering problems.
  5. P05 Should have the ability to design a complex system, process, device, or product to meet specific requirements under realistic constraints and conditions.
  6. P06 Should have the ability to apply modern design methods.
  7. P07 Should have the ability to develop, select, and use modern techniques and tools necessary for the analysis and solution of complex problems encountered in engineering applications.
  8. P08 Should have the ability to use information technologies effectively.
  9. P09 Should have the ability to design experiments, for the study of complex problems or discipline-specific research topics.
  10. P10 Should have the ability to conduct experiments, collect data, analyze and interpret results for the study of complex problems or discipline-specific research topics.
  11. P11 Should have the ability to work in intradisciplinary teams.
  12. P12 Should have the ability to work in interdisciplinary teams.
  13. P13 Should have the skills to work individually.
  14. P14 Should have the ability to communicate effectively verbally and in writing.
  15. P15 Should have the knowledge of at least one foreign language.
  16. P16 Should be able to write effective reports, understand written reports, and prepare design and production reports.
  17. P17 Should have the ability to make effective presentations.
  18. P18 Should have the ability to give and have clear and understandable instructions.
  19. P19 Should gain consciousness (awareness) about the necessity of lifelong learning.
  20. P20 Should have the ability to access information.
  21. P21 Should have the ability to follow developments in science and technology and constantly renew himself/herself.
  22. P22 Should gain the awareness of professional and ethical responsibility and should act in accordance with ethical principles.
  23. P23 Should gain knowledge about the standards used in engineering applications.
  24. P24 Should gain knowledge about project management, risk management, and change management practices in business life.
  25. P25 Should gain awareness about entrepreneurship, and innovation.
  26. P26 Should gain knowledge about development in sustainability.
  27. P27 Should gain knowledge about the effects of engineering practices on health, environment, and security at universal and social dimensions and the problems of the age reflected in the field of engineering.
  28. P28 Awareness should be gained about the legal consequences of engineering solutions.

Po-Lo Matrix

LO P01 P02 P03 P04 P05 P06 P07 P08 P09 P10 P11 P12 P13 P14 P15 P16 P17 P18 P19 P20 P21 P22 P23 P24 P25 P26 P27 P28 Average
L01 5 5 5 5 5 5 5 0 5 5 0 5 5 5 5 5 5 5 5 5 5 5 5 0 0 0 5 0 3.93
L02 5 5 5 5 5 0 5 0 5 5 0 5 5 5 5 5 5 5 5 5 5 5 5 5 0 0 5 0 3.93
L03 5 5 5 5 5 5 5 0 5 5 0 5 5 5 5 5 5 5 5 5 5 5 5 0 0 0 5 0 3.93
L04 5 5 5 5 5 0 5 0 5 5 0 5 5 5 5 5 5 5 5 5 5 5 5 0 0 0 5 0 3.75