Understanding food selection behavior using HCI-driven smart menu interfaces
Loading...
Date
Publisher
BRAC University
Citation
Abstract
Food waste in University cafeterias has been a persistent sustainability challenge
which is usually fuelled by the imbalance between the food choice customer expectation
and consumption. The current interventions are mostly oriented at the postconsumption
monitoring, which does not emphasize the most important moment of
food selection. The method adopted in this research is that of Human-Computer
Interaction (HCI) with the view to understand how smart menu system can be used
to intervene at the point of decision to reduce food wastage. Following the previous
prototype studies, this phase of the research uses qualitative and prototype-based
assesment using surveys with 50 respondents and semi-structured interviews with
20 stakeholders, including students, faculty members, cafeteria staff, and management.
The subjects were manipulated using a set of 3 menu paradigms, a conventional
listing-based menu with a relatively simple set of nutritional information,
information-lite menu with a simple nutritional information, and information-rich
smart menu with visual previews, sustainability related cues and waste related information.
Thematic analysis of the interviews shows that food waste is often caused
as a result of expectation-reality discrepancies, time-stressed decisions, social factors,
and no control over the amount of portion. Participants constantly emphasised
the need of clarity in visuals and belief in quality of food and plainness of design
in facilitating improved decisions. Altogether, the results demonstrate the potential
of smart menus that are HCI-based, low cost and behaviorally informed, to
be able to impact the food preferences prior to eating, and still fitting in with the
current cafeteria operations. The research contributes qualitative knowledge to the
domain of sustainable interaction design and identifies the directions of practical
implementation and testing in the future.
Description
This thesis is submitted in partial fulfillment of the requirements for the degree of Bachelor of Science in Computer Science, 2026.
Cataloged from PDF version of thesis.
Includes bibliographical references (pages 81-83).
Cataloged from PDF version of thesis.
Includes bibliographical references (pages 81-83).
Publisher Link
Department
Type
Thesis
Creative Commons license

Except where otherwise noted, this item's license is described as
Attribution-NonCommercial-NoDerivatives 4.0 International