Humans and robots will increasingly have to work together in the new industrial context. Therefore, it is necessary to improve the User Experience, Technology Acceptance, and overall wellbeing to achieve a smoother and more satisfying interaction while obtaining the maximum performance possible out of it. For this reason, it is essential to analyze these interactions to enhance User Experience. The heuristic evaluation is an easy-to-use, low-cost method that can be applied at different stages of a design process in an iterative manner. Despite these advantages, there is rarely a list of heuristics in the current literature that evaluates Human-Robot interactions both from a User Experience, Technology Acceptance, and Human-Centered approach. Such an approach should integrate key aspects like safety, trust, and perceived safety, ergonomics and workload, inclusivity, and multimodality, as well as robot characteristics and functionalities. Therefore, a new set of heuristics, namely, the HEUROBOX tool, is presented in this work in the form of the HEUROBOX tool to help practitioners and researchers in the assessment of human-robot systems in industrial environments. The HEUROBOX tool clusters design guidelines and methodologies as a logic list of heuristics for human-robot interaction and comprises four categories: Safety, Ergonomics, Functionality, and Interfaces. They include 84 heuristics in the basic evaluation, while the advanced evaluation lists a total of 228 heuristics in order to adapt the tool to the evaluation of different industrial requirements. Finally, the set of new heuristics has been validated by experts using the System Usability Scale (SUS) questionnaire and the categories has been prioritized in order of their importance in the evaluation of Human-Robot Interaction through the Analytic Hierarchy Process (AHP).

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10501719PMC
http://dx.doi.org/10.3389/frobt.2023.1227082DOI Listing

Publication Analysis

Top Keywords

set heuristics
12
human-robot interaction
12
user experience
12
heurobox tool
12
heuristics
8
evaluation human-robot
8
experience technology
8
technology acceptance
8
list heuristics
8
safety ergonomics
8

Similar Publications

Functionally-informed fine-mapping identifies genetic variants linking increased CHD1L expression and HIV restriction in monocytes.

Sci Rep

January 2025

Sexually Transmitted and Bloodborne Infections Surveillance and Molecular Epidemiology, Sexually Transmitted and Bloodborne Infections Division at the JC Wilt Infectious Diseases Research Centre, National Microbiology Laboratories, Public Health Agency of Canada, Winnipeg, MB, R3E 3L5, Canada.

Human Immunodeficiency Virus Type 1 (HIV) set-point viral load is a strong predictor of disease progression and transmission risk. A recent genome-wide association study in individuals of African ancestries identified a region on chromosome 1 significantly associated with decreased HIV set-point viral load. Knockout of the closest gene, CHD1L, enhanced HIV replication in vitro in myeloid cells.

View Article and Find Full Text PDF

Behavior modeling for a new flexure-based mechanism by Hunger Game Search and physics-guided artificial neural network.

Sci Rep

January 2025

Laboratory for Artificial Intelligence, Institute for Computational Science and Artificial Intelligence, Van Lang University, Ho Chi Minh City, Vietnam.

Compliant mechanism has some advantages and has been widely applied in many accurate positioning systems. However, modeling the compliant mechanism behavior has suffered from many challenges, such as unstable results, and the limitation of training data set. In the field of compliant mechanism modeling, there has been no research interested in applying meta-heuristics optimization algorithms to optimize the weights and biases of the neural network globally.

View Article and Find Full Text PDF
Article Synopsis
  • A network flow is represented by a collection of weighted walks that combine to create the overall flow; this article characterizes the specific walks involved in these flow decompositions.
  • The authors introduce a new algorithm that can efficiently identify and structure all maximal flowtigs, which are key components of flow decompositions in a network.
  • The practical application focuses on metagenomic assembly, demonstrating that using flowtigs improves the continuity of assembly results compared to traditional methods, both in simulations and real data contexts.
View Article and Find Full Text PDF

Supporting teams with designing for dissemination and sustainability: the design, development, and usability of a digital interactive platform.

Implement Sci

December 2024

Division of General Internal Medicine, Colorado Clinical & Translational Sciences Institute, and the Adult & Child Center for Outcomes Research & Delivery Science, University of Colorado School of Medicine, 1890 N. Revere Ct., Aurora, CO, 80045, USA.

Background: Designing for Dissemination and Sustainability (D4DS) principles and methods can support the development of research products (interventions, tools, findings) that match well with the needs and context of the intended audience and setting. D4DS principles and methods are not well-known or used during clinical and public health research; research teams would benefit from applying D4DS. This paper presents the development of a new digital platform for research teams to learn and apply a D4DS process to their work.

View Article and Find Full Text PDF

The optimization of auto parts supply chain logistics plays a decisive role in the development of the automotive industry. To reduce logistics costs and improve transportation efficiency, this paper addresses the joint optimization problem of multi-vehicle pickup and delivery transportation paths under time window constraints, coupled with the three-dimensional loading of goods. The model considers mixed time windows, three-dimensional loading constraints, cyclic pickup and delivery paths, varying vehicle loads and volumes, flow balance, and time window constraints.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!