A Survey on Feedback Types in Automated Programming Assessment Systems

Fuente: arXiv
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Main Authors: Frankford, Eduard, Antensteiner, Tobias, Vierhauser, Michael, Sauerwein, Clemens, Wallner, Vivien, Groher, Iris, Plösch, Reinhold, Breu, Ruth
Format: Preprint
Published: 2025
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_version_ 1866908605766172672
author Frankford, Eduard
Antensteiner, Tobias
Vierhauser, Michael
Sauerwein, Clemens
Wallner, Vivien
Groher, Iris
Plösch, Reinhold
Breu, Ruth
author_facet Frankford, Eduard
Antensteiner, Tobias
Vierhauser, Michael
Sauerwein, Clemens
Wallner, Vivien
Groher, Iris
Plösch, Reinhold
Breu, Ruth
contents With the recent rapid increase in digitization across all major industries, acquiring programming skills has increased the demand for introductory programming courses. This has further resulted in universities integrating programming courses into a wide range of curricula, including not only technical studies but also business and management fields of study. Consequently, additional resources are needed for teaching, grading, and tutoring students with diverse educational backgrounds and skills. As part of this, Automated Programming Assessment Systems (APASs) have emerged, providing scalable and high-quality assessment systems with efficient evaluation and instant feedback. Commonly, APASs heavily rely on predefined unit tests for generating feedback, often limiting the scope and level of detail of feedback that can be provided to students. With the rise of Large Language Models (LLMs) in recent years, new opportunities have emerged as these technologies can enhance feedback quality and personalization. To investigate how different feedback mechanisms in APASs are perceived by students, and how effective they are in supporting problem-solving, we have conducted a large-scale study with over 200 students from two different universities. Specifically, we compare baseline Compiler Feedback, standard Unit Test Feedback, and advanced LLM-based Feedback regarding perceived quality and impact on student performance. Results indicate that while students rate unit test feedback as the most helpful, AI-generated feedback leads to significantly better performances. These findings suggest combining unit tests and AI-driven guidance to optimize automated feedback mechanisms and improve learning outcomes in programming education.
format Preprint
id arxiv_https___arxiv_org_abs_2510_18923
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A Survey on Feedback Types in Automated Programming Assessment Systems
Frankford, Eduard
Antensteiner, Tobias
Vierhauser, Michael
Sauerwein, Clemens
Wallner, Vivien
Groher, Iris
Plösch, Reinhold
Breu, Ruth
Software Engineering
With the recent rapid increase in digitization across all major industries, acquiring programming skills has increased the demand for introductory programming courses. This has further resulted in universities integrating programming courses into a wide range of curricula, including not only technical studies but also business and management fields of study. Consequently, additional resources are needed for teaching, grading, and tutoring students with diverse educational backgrounds and skills. As part of this, Automated Programming Assessment Systems (APASs) have emerged, providing scalable and high-quality assessment systems with efficient evaluation and instant feedback. Commonly, APASs heavily rely on predefined unit tests for generating feedback, often limiting the scope and level of detail of feedback that can be provided to students. With the rise of Large Language Models (LLMs) in recent years, new opportunities have emerged as these technologies can enhance feedback quality and personalization. To investigate how different feedback mechanisms in APASs are perceived by students, and how effective they are in supporting problem-solving, we have conducted a large-scale study with over 200 students from two different universities. Specifically, we compare baseline Compiler Feedback, standard Unit Test Feedback, and advanced LLM-based Feedback regarding perceived quality and impact on student performance. Results indicate that while students rate unit test feedback as the most helpful, AI-generated feedback leads to significantly better performances. These findings suggest combining unit tests and AI-driven guidance to optimize automated feedback mechanisms and improve learning outcomes in programming education.
title A Survey on Feedback Types in Automated Programming Assessment Systems
topic Software Engineering
url https://arxiv.org/abs/2510.18923