Abstract
This study examines how instructional design shapes the development of oral communication strategies in an 18-week English-as-a-foreign-language speaking course, at a time when generative artificial intelligence is often assumed to enhance speaking performance. All three classes worked with the same curriculum and speaking tasks. One class learned through a BOPPPS (Bridge-In, Objective, Pre-Assessment, Participatory Learning, Post-Assessment, and Summary) based sequence in which students prepared ideas, participated in guided speaking activities, and reviewed their performance, with each cycle including a stage where they generated their own content before using ChatGPT to refine it. A second class received regular teacher guidance and completed the same tasks, but their use of ChatGPT was self-directed and not part of a fixed sequence (the artificial intelligence-flex condition). A third class covered the same material through teacher-supported face-to-face interaction without artificial intelligence (the traditional condition). Learners completed the Oral Communication Strategy Inventory at the beginning and end of the semester and provided reflections on how their course format influenced their speaking. The findings show a clear hierarchy in strategic development. The BOPPPS based class demonstrated the strongest gains, especially in negotiation for meaning, fluency regulation, and accuracy monitoring. The traditional class showed moderate improvements, particularly in nonverbal and social-affective strategies. The artificial intelligence-flex class displayed the smallest increases, a pattern reflected in learners’ descriptions of artificial intelligence-driven exchanges involving fewer occasions to plan, clarify, or monitor meaning. Overall, the results indicate that strategic growth is driven primarily by instructional design, with artificial intelligence contributing meaningfully only when situated within a structured pedagogical frame.
Keywords
Get full access to this article
View all access options for this article.
References
Supplementary Material
Please find the following supplemental material available below.
For Open Access articles published under a Creative Commons License, all supplemental material carries the same license as the article it is associated with.
For non-Open Access articles published, all supplemental material carries a non-exclusive license, and permission requests for re-use of supplemental material or any part of supplemental material shall be sent directly to the copyright owner as specified in the copyright notice associated with the article.
