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didattica:ay2425:kebi:main [2025/03/16 12:20] – [Exam: Project] e.laurenzi | didattica:ay2425:kebi:main [2025/03/19 19:02] (current) – [Study material] e.laurenzi | ||
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The grading is done via a project work | The grading is done via a project work | ||
* {{ : | * {{ : | ||
+ | * {{https:// | ||
There will be several submission deadlines | There will be several submission deadlines | ||
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* Second Submission: 21st of August 2025 via email to Emanuele (emanuele.laurenzi@unicam.it) and Knut (karlknut.hinkelmann@unicam.it) | * Second Submission: 21st of August 2025 via email to Emanuele (emanuele.laurenzi@unicam.it) and Knut (karlknut.hinkelmann@unicam.it) | ||
* Third Submission: 24th of November 2025 via email to Emanuele (emanuele.laurenzi@unicam.it) and Knut (karlknut.hinkelmann@unicam.it) | * Third Submission: 24th of November 2025 via email to Emanuele (emanuele.laurenzi@unicam.it) and Knut (karlknut.hinkelmann@unicam.it) | ||
+ | </ | ||
+ | |||
+ | ===== Course Objectives ===== | ||
+ | |||
+ | <WRAP box round 95% center> | ||
+ | == Supporting Knowledge-Intensive Processes == | ||
+ | |||
+ | Knowledge-intensive processes are more unstructured processes with a lot of involvements of users with their experience. Supporting such processes at their levels requires modeling and enacting several different forms of knowledge. In general, more explicitly represented knowledge allows better support. But different forms of knowledge need different intuitive and adequate representations and inferences. | ||
+ | |||
+ | There are several methods to formally represent knowledge. Graphical models can be an intuitive means to add knowledge to knowledge-based systems. Instead of manually creating knowledge bases, knowledge can also be learned from data. We distinguish between symbolic learning (learning decision trees and case-based reasoning) and sub-symbolic learning (neural networks) | ||
+ | |||
+ | After completion of this module, the participants will be able to assess which kind of knowledge representation and reasoning is adequate and are able to develop appropriate knowledge-based systems. They can value the advantages of knowledge-based systems with respect to their costs and apply several methods to create knowledge bases. | ||
+ | </ | ||
+ | |||
+ | ---- | ||
+ | |||
+ | ===== Course Contents ===== | ||
+ | |||
+ | <WRAP round 95% center box> | ||
+ | * Introduction: | ||
+ | * Decision Tables | ||
+ | * Rules | ||
+ | * Textual represented rule (i.e. Horn clauses) | ||
+ | * Forward and backward chaining | ||
+ | * Data-driven and Goal-oriented | ||
+ | * Negation-as-failure | ||
+ | * Fuzzy Logic | ||
+ | * Knowledge Graphs | ||
+ | * RDF, RDFS, SWRL, SHACL | ||
+ | * Ontology Engineering | ||
+ | * Graphical Ontology-based Models | ||
+ | * Modelling and Meta-modeling | ||
+ | * Ontology-based meta-modeling | ||
+ | |||
+ | |||
+ | </ | ||
+ | ---- | ||
+ | |||
+ | ===== Study material ===== | ||
+ | |||
+ | <WRAP box round center 95%> | ||
+ | |||
+ | **Course Material** | ||
+ | |||
+ | * Organisation | ||
+ | * Slides: {{ : | ||
+ | |||
+ | * Project work: | ||
+ | *Project description: | ||
+ | *Guide on how to install AOAME locally for Task 2: [[https:// | ||
+ | |||
+ | * Lecture " | ||
+ | * Slides: {{ : | ||
+ | * {{ : | ||
+ | * {{ : | ||
+ | |||
+ | * Lecture " | ||
+ | * Slides: {{ : | ||
+ | * Example: {{ : | ||
+ | |||
+ | * Lecture " | ||
+ | * Slides: {{ : | ||
+ | * Reading: [[http:// | ||
+ | * Exercise: {{ : | ||
+ | * Exercise: {{ : | ||
+ | * Homework: {{ : | ||
+ | * Tool: | ||
+ | * Sign up online with your Unicam student account: [[https:// | ||
+ | |||
+ | |||
+ | </ | ||
+ | ---- | ||
+ | ===== Recordings ===== | ||
+ | <WRAP box round center 95%> | ||
+ | Recordings of the lectures are password protected (passwords on request from the lecturers) | ||
+ | * [[https:// | ||
+ | * [[https:// | ||
+ | |||
+ | |||
+ | |||
</ | </ | ||