CEN405 Introduction to Robotics

6 ECTS - 3-0 Duration (T+A)- 7. Semester- 3 National Credit

Information

Unit FACULTY OF ENGINEERING
COMPUTER ENGINEERING PR. (ENGLISH)
Code CEN405
Name Introduction to Robotics
Term 2019-2020 Academic Year
Semester 7. Semester
Duration (T+A) 3-0 (T-A) (17 Week)
ECTS 6 ECTS
National Credit 3 National Credit
Teaching Language İngilizce
Level Lisans Dersi
Type Normal
Label E Elective
Mode of study Yüz Yüze Öğretim
Catalog Information Coordinator Prof. Dr. RAMAZAN ÇOBAN
Course Instructor Prof. Dr. RAMAZAN ÇOBAN (Güz) (A Group) (Ins. in Charge)


Course Goal / Objective

To be able to solve linear and inverse kinematics problems of robot arms.

Course Content

General concepts, Transformations, Advanced kinematics, Inverse kinematics, Jacobian, Orbit Planning

Course Precondition

Resources

Notes



Course Learning Outcomes

Order Course Learning Outcomes
LO01 To be able to solve the kinematic problems of robot arms.
LO02 To solve the inverse kinematics problems of robot arms.
LO03 Finding Jacobians.
LO04 Transformations
LO05 Advanced kinematics
LO06 Orbit planning
LO07 General Robotics


Relation with Program Learning Outcome

Order Type Program Learning Outcomes Level
PLO01 - Has capability in the fields of mathematics, science and computer that form the foundations of engineering 1
PLO02 - Identifies, formulates, and solves engineering problems, selects and applies appropriate analytical methods and modeling techniques, 1
PLO03 - Analyzes a system, its component, or process and designs under realistic constraints to meet the desired requirements,gains the ability to apply the methods of modern design accordingly. 5
PLO04 - Ability to use modern techniques and tools necessary for engineering practice and information technologies effectively. 1
PLO05 - Ability to design and to conduct experiments, to collect data, to analyze and to interpret results 3
PLO06 - Has ability to work effectively as an individual and in multi-disciplinary teams, take sresponsibility and builds self-confidence 3
PLO07 - Can access information,gains the ability to do resource research and uses information resources 3
PLO08 - Awareness of the requirement of lifelong learning, to follow developments in science and technology and continuous self-renewal ability 2
PLO09 - Ability to communicate effectively orally and in writing, and to read and understand technical publications in at least one foreign language 2
PLO10 - Professional and ethical responsibility, 3
PLO11 - Awareness about project management, workplace practices, employee health, environmental and occupational safety, and the legal implications of engineering applications, 4
PLO12 - Becomes aware of universal and social effects of engineering solutions and applications, entrepreneurship and innovation, and knowledge of contemporary issues 4


Week Plan

Week Topic Preparation Methods
1 Concepts Homeworks
2 General Concepts Homeworks
3 Transformations Homeworks
4 Matrix Transformations Homeworks
5 Space Transformations Homeworks
6 Axis Transformations Homeworks
7 kinematics Homeworks
8 Mid-Term Exam Homeworks
9 Advanced kinematics Homeworks
10 Manupulator kinematics Homeworks
11 Inverse kinematics Homeworks
12 Velocity Jacobian Homeworks
13 force Jacobian Homeworks
14 static force Jacobian Homeworks
15 Orbit planning Homeworks
16 Term Exams Homeworks
17 Term Exams Homeworks


Assessment (Exam) Methods and Criteria

Assessment Type Midterm / Year Impact End of Term / End of Year Impact
1. Midterm Exam 100 40
General Assessment
Midterm / Year Total 100 40
1. Final Exam - 60
Grand Total - 100


Student Workload - ECTS

Works Number Time (Hour) Workload (Hour)
Course Related Works
Class Time (Exam weeks are excluded) 14 3 42
Out of Class Study (Preliminary Work, Practice) 14 5 70
Assesment Related Works
Homeworks, Projects, Others 0 0 0
Mid-term Exams (Written, Oral, etc.) 1 15 15
Final Exam 1 30 30
Total Workload (Hour) 157
Total Workload / 25 (h) 6,28
ECTS 6 ECTS

Update Time: 29.04.2025 12:47