UAT 469 · 3(1-4-4) · Year/term 4/1

Sensor and Surveillance Camera Technology

เทคโนโลยีเซนเซอร์และระบบกล้องตรวจการณ์

Progress
Notional hours: 135 h (online/self-study 60 · in class/lab 75)

Course description

characteristics and applications of RGB, infrared and thermal cameras, multispectral cameras, LiDAR, and other surveillance sensors, including lens selection, resolution, field of view, calibration, platform integration, data recording, and data-quality assessment

Thai description

คุณลักษณะและการประยุกต์ของกล้อง RGB กล้องอินฟราเรดและความร้อน กล้องหลายช่วงคลื่น LiDAR และเซนเซอร์ตรวจการณ์อื่น การเลือกเลนส์ ความละเอียด มุมมอง การสอบเทียบ การติดตั้งบนแพลตฟอร์ม การบันทึกข้อมูล และการประเมินคุณภาพข้อมูล

Description source: Curriculum draft (revised 28 Sep 2026)Previous site code: DRT 464

Course learning outcomes (CLO)

CLOOutcomePLO
CLO1Explain surveillance camera and sensor principlesPLO1PLO2
CLO2Select and configure surveillance sensors for conditionsPLO2
CLO3Evaluate image data quality for decisionsPLO4

Learning modules

1Optics and image sensors
Weeks 1–3 · 27 h
2 KU

Online (before class) · 12 h

Study the assigned knowledge units in advance, review media and take the module quiz

In class / field · 15 h

Lab or field practice from worksheets with a safety checklist

Learning evidence: Checked worksheets and quiz results

2Thermal cameras
Weeks 4–6 · 27 h
1 KU

Online (before class) · 12 h

Study the assigned knowledge units in advance, review media and take the module quiz

In class / field · 15 h

Lab or field practice from worksheets with a safety checklist

Learning evidence: Checked worksheets and quiz results

3Gimbals and stabilisation
Weeks 7–9 · 27 h
1 KU

Online (before class) · 12 h

Study the assigned knowledge units in advance, review media and take the module quiz

In class / field · 15 h

Lab or field practice from worksheets with a safety checklist

Learning evidence: Checked worksheets and quiz results

4LiDAR and radar
Weeks 10–12 · 27 h
1 KU

Online (before class) · 12 h

Study the assigned knowledge units in advance, review media and take the module quiz

In class / field · 15 h

Lab or field practice from worksheets with a safety checklist

Learning evidence: Checked worksheets and quiz results

5Image quality and metrics
Weeks 13–15 · 27 h
2 KU

Online (before class) · 12 h

Study the assigned knowledge units in advance, review media and take the module quiz

In class / field · 15 h

Lab or field practice from worksheets with a safety checklist

Learning evidence: Checked worksheets and quiz results

Assessment (draft)

Labs and worksheets35%
Module quizzes10%
Midterm examination20%
Mini-project or practical exam35%

Knowledge domain

Key references

  1. Vollmer, M., & Möllmann, K.-P. (2017). Infrared thermal imaging: Fundamentals, research and applications (2nd ed.). Wiley-VCH. link
  2. Fraden, J. (2016). Handbook of modern sensors: Physics, designs, and applications (5th ed.). Springer. link