The training course aims to deliver the basics related to the acquisition, processing and feature extraction techniques of remotely sensed imageries, paying particular attention to environmental and climate change topics
The training course aims to deliver the basics related to the acquisition, processing and feature extraction techniques of remotely sensed imageries, paying particular attention to environmental and climate change topics. All these goals will be gained by delivering all the necessary topics related to remote sensing chain, from acquisition to added value information extraction from the data, and ensuring that, from the operational point of view, every single student could be able to process data using standard software and having access to open source satellite imageries and data.
The main aim is to deliver to student the ability to correctly identify environmental challenges and issues, to better understand possible data to be used, its suitability, and data processing chain in order to extract value added information in a common georeferenced system. Students will be trained in:
- electromagnetic theory, interactions between electromagnetic energy and atmospheric layers and ground surfaces, visual perception and colorimetry
- sensors data acquisition
- image processing
- information extraction
- environmental and climate change related applications.
Related to technical communication:
- ability to analize complex environmental problems, defining proper data to be used, processing chains, information extraction strategies, achieved results publication and dissemination;
- ability to approach different domain of applications using remotely sensed data;
- ability to assess results in a fully quantitative way;
- ability to set up data processing procedures suitable to approach non conventional applications.
Such expertises will be acquired also working directly on application cases drafting also different technical solutions.
The main aim is to deliver to student the ability to correctly identify environmental challenges and issues, to better understand possible data to be used, its suitability, and data processing chain in order to extract value added information in a common georeferenced system. Students will be trained in:
- electromagnetic theory, interactions between electromagnetic energy and atmospheric layers and ground surfaces, visual perception and colorimetry
- sensors data acquisition
- image processing
- information extraction
- environmental and climate change related applications.
Related to technical communication:
- ability to analize complex environmental problems, defining proper data to be used, processing chains, information extraction strategies, achieved results publication and dissemination;
- ability to approach different domain of applications using remotely sensed data;
- ability to assess results in a fully quantitative way;
- ability to set up data processing procedures suitable to approach non conventional applications.
Such expertises will be acquired also working directly on application cases drafting also different technical solutions.
Students attending this training course, already know geomatics basics (digital mapping, GPS techniques, surveying) and computer science basics.
Students attending this training course, already know geomatics basics (digital mapping, GPS techniques, surveying) and computer science basics.
Teaching subjects are:
- Remote sensing definition
- Emissivity theory
- Electromagnetic spectra and black bodies
- Electromagnetic source and atmospheric interaction
- Electromagnetic source and ground surfaces interaction
- Visual perception and colorimetry
- Digital images and acquisition systems characteristics
- Data processing algorithms
- Information extraction: digital filters and classifications
- Extracted information assessment
Teaching subjects are:
- Remote sensing definition
- Emissivity theory
- Electromagnetic spectra and black bodies
- Electromagnetic source and atmospheric interaction
- Electromagnetic source and ground surfaces interaction
- Visual perception and colorimetry
- Digital images and acquisition systems characteristics
- Data processing algorithms
- Information extraction: digital filters and classifications
- Extracted information assessment
The training course is delivered both by theoretical lectures and labs; in the latter, students will use PC to process digital images based on real cases. Every student will access a single PC and will be assisted during all the labs. For the theoretical and labs parts, digital contents will be available since the beginning of the training course and labs will be duplicated based on the number of students attending. Innovative learning will be used, facilitating student’s interaction and organizing a final full day challenge based on the ability to approach a complex environmental issue using open source remotely sensed imageries and mapping data.
The training course is delivered both by theoretical lectures and labs; in the latter, students will use PC to process digital images based on real cases. Every student will access a single PC and will be assisted during all the labs. For the theoretical and labs parts, digital contents will be available since the beginning of the training course and labs will be duplicated based on the number of students attending. Innovative learning will be used, facilitating student’s interaction and organizing a final full day challenge based on the ability to approach a complex environmental issue using open source remotely sensed imageries and mapping data.
Specific didactic material will be available, in a digital format, since the beginning of the training course
Specific didactic material will be available, in a digital format, since the beginning of the training course
Modalità di esame: Prova orale obbligatoria;
The exam will consist of theoretical and practice oriented questions aiming to verity student's preparation.
The technical operating procedures through video communication tools must comply with the provisions of R.D. 217 of 28 February 2020:
•use of a video communication system chosen by professors that in order to check, monitor and watch students during the exam;
•facial recognition of students by means of an identity document and comparison with the photograph in the university database;
•presence of a witness from outside the examination board (e.g. another student);
•declaration by students that they did not use any tools and that there were no support persons on the premises to support them during the exam.
In order to take part in the exam, students must be equipped with adequate means: personal computer with a webcam or tablet, browser, network connection suitable for videoconferencing.
Exam: Compulsory oral exam;
The exam will consist of theoretical and practice oriented questions aiming to verity student's preparation.
The technical operating procedures through video communication tools must comply with the provisions of R.D. 217 of 28 February 2020:
•use of a video communication system chosen by professors that in order to check, monitor and watch students during the exam;
•facial recognition of students by means of an identity document and comparison with the photograph in the university database;
•presence of a witness from outside the examination board (e.g. another student);
•declaration by students that they did not use any tools and that there were no support persons on the premises to support them during the exam.
In order to take part in the exam, students must be equipped with adequate means: personal computer with a webcam or tablet, browser, network connection suitable for videoconferencing.
Being Remote Sensing course aggregated with Applied Geophysics, the final grade will be unique and will be calculated as the mean value of the the grades got in the two parts.
Modalità di esame: Prova orale obbligatoria;
The exam will consist of theoretical and practice oriented questions aiming to verity student's preparation.
The technical operating procedures through video communication tools must comply with the provisions of R.D. 217 of 28 February 2020:
•use of a video communication system chosen by professors that in order to check, monitor and watch students during the exam;
•facial recognition of students by means of an identity document and comparison with the photograph in the university database;
•presence of a witness from outside the examination board (e.g. another student);
•declaration by students that they did not use any tools and that there were no support persons on the premises to support them during the exam.
In order to take part in the exam, students must be equipped with adequate means: personal computer with a webcam or tablet, browser, network connection suitable for videoconferencing.
Exam: Compulsory oral exam;
The exam will consist of theoretical and practice oriented questions aiming to verity student's preparation.
The technical operating procedures through video communication tools must comply with the provisions of R.D. 217 of 28 February 2020:
•use of a video communication system chosen by professors that in order to check, monitor and watch students during the exam;
•facial recognition of students by means of an identity document and comparison with the photograph in the university database;
•presence of a witness from outside the examination board (e.g. another student);
•declaration by students that they did not use any tools and that there were no support persons on the premises to support them during the exam.
In order to take part in the exam, students must be equipped with adequate means: personal computer with a webcam or tablet, browser, network connection suitable for videoconferencing.
Being Remote Sensing course aggregated with Applied Geophysics, the final grade will be unique and will be calculated as the mean value of the the grades got in the two parts.