The cost of coordination can exceed the benefit of collaboration in performing complex tasks

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Straub, Vince J., Tsvetkova, Milena, Yasseri, Taha
Format: Preprint
Published: 2020
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866909357942243328
author Straub, Vince J.
Tsvetkova, Milena
Yasseri, Taha
author_facet Straub, Vince J.
Tsvetkova, Milena
Yasseri, Taha
contents Humans and other intelligent agents often rely on collective decision making based on an intuition that groups outperform individuals. However, at present, we lack a complete theoretical understanding of when groups perform better. Here we examine performance in collective decision-making in the context of a real-world citizen science task environment in which individuals with manipulated differences in task-relevant training collaborated. We find 1) dyads gradually improve in performance but do not experience a collective benefit compared to individuals in most situations; 2) the cost of coordination to efficiency and speed that results when switching to a dyadic context after training individually is consistently larger than the leverage of having a partner, even if they are expertly trained in that task; and 3) on the most complex tasks having an additional expert in the dyad who is adequately trained improves accuracy. These findings highlight that the extent of training received by an individual, the complexity of the task at hand, and the desired performance indicator are all critical factors that need to be accounted for when weighing up the benefits of collective decision-making.
format Preprint
id arxiv_https___arxiv_org_abs_2009_11038
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle The cost of coordination can exceed the benefit of collaboration in performing complex tasks
Straub, Vince J.
Tsvetkova, Milena
Yasseri, Taha
Social and Information Networks
Computers and Society
Computer Science and Game Theory
Adaptation and Self-Organizing Systems
Physics and Society
Humans and other intelligent agents often rely on collective decision making based on an intuition that groups outperform individuals. However, at present, we lack a complete theoretical understanding of when groups perform better. Here we examine performance in collective decision-making in the context of a real-world citizen science task environment in which individuals with manipulated differences in task-relevant training collaborated. We find 1) dyads gradually improve in performance but do not experience a collective benefit compared to individuals in most situations; 2) the cost of coordination to efficiency and speed that results when switching to a dyadic context after training individually is consistently larger than the leverage of having a partner, even if they are expertly trained in that task; and 3) on the most complex tasks having an additional expert in the dyad who is adequately trained improves accuracy. These findings highlight that the extent of training received by an individual, the complexity of the task at hand, and the desired performance indicator are all critical factors that need to be accounted for when weighing up the benefits of collective decision-making.
title The cost of coordination can exceed the benefit of collaboration in performing complex tasks
topic Social and Information Networks
Computers and Society
Computer Science and Game Theory
Adaptation and Self-Organizing Systems
Physics and Society
url https://arxiv.org/abs/2009.11038