Human Designers' Dynamic Confidence and Decision-Making When Working With More Than One Artificial Intelligence

Author:

Chong Leah1,Kotovsky Kenneth2,Cagan Jonathan1

Affiliation:

1. Carnegie Mellon University Department of Mechanical Engineering, , 5000 Forbes Avenue, Pittsburgh, PA 15213

2. Carnegie Mellon University Department of Psychology, , 5000 Forbes Avenue, Pittsburgh, PA 15213

Abstract

Abstract As artificial intelligence (AI) systems become increasingly capable of performing design tasks, they are expected to be deployed to assist human designers' decision-making in a greater variety of ways. For complex design problems such as those with multiple objectives, one AI may not always perform its expected accuracy due to the complexity of decision-making, and therefore, multiple AIs may be implemented to provide design suggestions. For such assistance to be productive, human designers must develop appropriate confidence in each AI and in themselves and accept or reject AI inputs accordingly. This work conducts a human subjects experiment to examine the development of a human designer's confidence in each AI and self-confidence throughout decision-making assisted by two AIs and how these confidences influence the decision to accept AI inputs. Major findings demonstrate severe decreases in a human designer's confidence especially when working with one or more low-performing AI teammates and/or receiving negative feedback. Additionally, a human designer's decision to accept AI suggestions depends on their self-confidence and confidence in one of the two AIs. Finally, an additional AI does not increase a human designer's likelihood of conforming to AI suggestions. Therefore, in comparison to a scenario with one AI, the results in this work caution against the implementation of an additional AI to AI-assisted decision-making scenarios. The insights also inform the design and management of human–AI teams to improve the outcome of AI-assisted decision-making.

Funder

Air Force Office of Scientific Research

Publisher

ASME International

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