TTT4155

Remote Sensing

Last taught 2014

Spring and Autumn

English

Overview

10 candidates

Average grade

B

3.90

0.59

Pass rate

100%

same

Grade distribution
Average over time
Pass rate over time

About this course

Content

Basic properties of electromagnetic waves. Scattering and interection of electromagnetic waves with gases and solid materials in optical, IR and microwave bands. Principles of remote sensing instruments, such as imager, radiometer, scatterometer, lidar, radar, synthetic aperture radar, altimeters. Present and future satellite surveillance systems.

Learning outcomes

The course gives a fundamental introduction to the use of electromagnetic waves for remote sensing. The course also reviews current and emerging technologies (radar sensors, optical sensors, THz sensors, passive and active sensors). The course will enable will enable the student the following.

Knowledge:
- have a fundamental knowledge of the physical interaction mechanisms between electromagnetic waves and matter
- understand the principle mechanisms in the wavelength range of UV, optical, infrared, THz, millimeter and microwave region
- have a general knowledge of principles for remote sensing concepts and systems in this region.

Skills:
- understand EM -object interaction mechanisms
- have basic knowledge of remote sensing instruments
- have insight into design methology and basic mathematical formulations.

General competency:
- be able to assess suitability of various remote sensing instruments
- have knowledge of various forms of basic and advanced radar, THz, optical systems.

Teaching methods

Lectures at two weeks interval. Excercises and guidance teaching in intermediate weeks. Written exams. The course focusses on physical concepts and overall understanding of implemented systems. Postponed/repeated exams may be oral. The course will be held in English.