VLDB 2026 Research / reviewers in the wild / expert
Ben Robins
dblp:84/1812
· DBLP profile ↗
18ranked-venue papers
9as first author
3since 2021 · last 2023
0000-0002-1646-901XORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Human-computer interaction and ubiquitous computing · 18 · 9 first-author · 3 since 2021Artificial intelligence and machine learning · 15 · 7 first-author · 3 since 2021Applied, interdisciplinary, general and emerging computing · 14 · 6 first-author · 3 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2023 | Kaspar Explains: The Effect of Causal Explanations on Visual Perspective Taking Skills in Children with Autism Spectrum DisorderabstractThis paper presents an investigation into the effectiveness of introducing explicit causal explanations in a child-robot interaction setting to help children with autism improve their Visual Perspective Taking (VPT) skills. A sample of ten children participated in three sessions with a social robot on different days, during which they played several games consisting of VPT tasks. In some of the sessions, the robot provided constructive feedback to the children by giving causal explanations related to VPT; other sessions were control sessions without explanations. An analysis of the children’s learning progress revealed that they improved their VPT abilities faster when the robot provided causal explanations. However, both groups ultimately reach a similar ratio of correct answers in later sessions. These findings suggest that providing causal explanations using a social robot can be effective to teach VPT to children with autism. This study paves the way for further exploring a robot’s ability to provide causal explanations in other educational scenarios. Marina Sardà Gou, Gabriella Lakatos, Patrick Holthaus, Ben Robins, Sílvia Moros, Luke Jai Wood, Hugo Leonardo da Silva Araujo, Christine deGraft-Hanson, Mohammad Reza Mousavi 0001, Farshid Amirabdollahian |
RO-MAN | 4 |
| 2023 | A feasibility study of using Kaspar, a humanoid robot for speech and language therapy for children with learning disabilities*abstractThe research presented in this paper investigates the feasibility of using humanoid robots like Kaspar as assistive tools in Speech, Language and Communication (SLC) therapy for children with learning disabilities. The study aims to answer two research questions: RQ1. Can a social robot be used to improve SLC skills of children with learning disabilities? RQ2. What is the measurable impact of interacting with a humanoid robot on children with learning disability and SLC needs? A co-creation approach was followed, three therapeutic educational games were developed and implemented on the Kaspar robot in collaboration with experienced SLC experts. Twenty children from two different special educational needs schools participated in the games in 9 sessions over a period of 3 weeks. Results showed significant improvement in participants’ SLC skills – i.e. language comprehension and production skills– over the intervention. Findings of this research affirms feasibility, suggesting that this type of robotic interaction is the right path to follow to help the children improve their SLC skills. Gabriella Lakatos, Marina Sardà Gou, Patrick Holthaus, Luke Jai Wood, Sílvia Moros, Vicky Litchfield, Ben Robins, Farshid Amirabdollahian |
RO-MAN | 7 |
| 2022 | Towards understanding causality - a retrospective study of using explanations in interactions between a humanoid robot and autistic childrenabstractChildren with Autism Spectrum Disorder (ASD) often struggle with visual perspective taking (VPT) skills and the understanding that others might have viewpoints and perspectives that are different from their own; i.e., the ability to understand that two or more people looking at the same object from different positions might not see the same thing. The understanding of VPT can be improved by introducing explicit causal explanations in the interactions involving autistic children. Moreover, the use of social robots can help autistic children improve their social skills. We present a retrospective study with Kaspar, a humanoid social robot specifically designed to interact with children with ASD, which aims to define the initial protocol for a study on the effect of causal explanation in VPT provided by Kaspar. To this end, we investigate in which scenarios causal explanations, provided either by researchers or by Kaspar, contribute substantially to the child’s understanding of VPT. The results have helped us identify multiple interaction categories that benefit from causal explanation. We have used these results in order to define new interaction games that benefit from causal explanations. These are now progressing through usability assessment experiments. Marina Sardà Gou, Gabriella Lakatos, Patrick Holthaus, Luke Jai Wood, Mohammad Reza Mousavi 0001, Ben Robins, Farshid Amirabdollahian |
RO-MAN | 6 |
| 2018 | Development of a Semi-Autonomous Robotic System to Assist Children with Autism in Developing Visual Perspective Taking SkillsabstractRobot-assisted therapy has been successfully used to help children with Autism Spectrum Condition (ASC) develop their social skills, but very often with the robot being fully controlled remotely by an adult operator. Although this method is reliable and allows the operator to conduct a therapy session in a customised child-centred manner, it increases the cognitive workload on the human operator since it requires them to divide their attention between the robot and the child to ensure that the robot is responding appropriately to the child's behaviour. In addition, a remote-controlled robot is not aware of the information regarding the interaction with children (e.g., body gesture and head pose, proximity etc) and consequently it does not have the ability to shape live HRIs. Further to this, a remote-controlled robot typically does not have the capacity to record this information and additional effort is required to analyse the interaction data. For these reasons, using a remote-controlled robot in robot-assisted therapy may be unsustainable for long-term interactions. To lighten the cognitive burden on the human operator and to provide a consistent therapeutic experience, it is essential to create some degrees of autonomy and enable the robot to perform some autonomous behaviours during interactions with children. Our previous research with the Kaspar robot either implemented a fully autonomous scenario involving pairs of children, which then lacked the often important input of the supervising adult, or, in most of our research, has used a remote control in the hand of the adult or the children to operate the robot. Alternatively, this paper provides an overview of the design and implementation of a robotic system called Sense- Think-Act which converts the remote-controlled scenarios of our humanoid robot into a semi-autonomous social agent with the capacity to play games autonomously (under human supervision) with children in the real-world school settings. The developed system has been implemented on the humanoid robot Kaspar and evaluated in a trial with four children with ASC at a local specialist secondary school in the UK where the data of 11 Child-Robot Interactions (CRIs) was collected. The results from this trial demonstrated that the system was successful in providing the robot with appropriate control signals to operate in a semi-autonomous manner without any latency, which supports autonomous CRIs, suggesting that the proposed architecture appears to have promising potential in supporting CRIs for real-world applications. Abolfazl Zaraki, Luke Jai Wood, Ben Robins, Kerstin Dautenhahn |
RO-MAN | 3 |
| 2017 | Developing child-robot interaction scenarios with a humanoid robot to assist children with autism in developing visual perspective taking skillsabstractChildren with autism often find it difficult to understand that other people might have perspectives, viewpoints, beliefs and knowledge that are different from their own. One fundamental aspect of this difficulty is Visual Perspective Taking (VPT). Visual perspective taking is the ability to see the world from another person's perspective, taking into account what they see and how they see it, drawing upon both spatial and social information. In this paper, we outline the child-robot interaction scenarios that we have developed as part of the European BabyRobot project to assist children with autism explore elements that are important in developing VPT skills. Further to this we describe the standard pre and post assessments that we will perform with the children in order to measure their progress. The games were implemented with the Kaspar robot. To our knowledge this is the first attempt to improve the VPT skills of children with autism through playing and interacting with a humanoid robot. Luke Jai Wood, Kerstin Dautenhahn, Ben Robins, Abolfazl Zaraki |
RO-MAN | 3 |
| 2016 | Utilizing Bluetooth Low Energy to recognize proximity, touch and humansabstractInteracting with humans is one of the main challenges for mobile robots in a human inhabited environment. To enable adaptive behavior, a robot needs to recognize touch gestures and/or the proximity to interacting individuals. Moreover, a robot interacting with two or more humans usually needs to distinguish between them. However, this remains both a configuration and cost intensive task. In this paper we utilize inexpensive Bluetooth Low Energy (BLE) devices and propose an easy and configurable technique to enhance the robot's capabilities to interact with surrounding people. In a noisy laboratory setting, a mobile spherical robot is utilized in three proof-of-concept experiments of the proposed system architecture. Firstly, we enhance the robot with proximity information about the individuals in the surrounding environment. Secondly, we exploit BLE to utilize it as a touch sensor. And lastly, we use BLE to distinguish between interacting individuals. Results show that observing the raw received signal strength (RSS) between BLE devices already enhances the robot's interaction capabilities and that the provided infrastructure can be facilitated to enable adaptive behavior in the future. We show one and the same sensor system can be used to detect different types of information relevant in human-robot interaction (HRI) experiments. Marcus Scheunemann, Kerstin Dautenhahn, Maha Salem, Ben Robins |
RO-MAN | 4 |
| 2011 | Developing skin-based technologies for interactive robots - challenges in design, development and the possible integration in therapeutic environmentsabstractSummary form only given. Scaled technologies continue to exhibit variability, driven by both random process effects and systematic structural effects. Process and design rule actions can be taken to reduce, or even eliminate, sources of systematic variability. Random variability is more difficult to combat, but architectural decisions can be made to limit the device sensitivity to specific random effects. A review of several current sources of technology variability is presented, and the impacts to the overall technology offering are assessed. Ben Robins, Kerstin Dautenhahn, Farshid Amirabdollahian, Fulvio Mastrogiovanni, Giorgio Cannata |
RO-MAN | 1 |
| 2010 | "Does it work?" A framework to evaluate the effectiveness of a robotic toy for children with special needsabstractTo evaluate the performance of a social robot, both the aspects of safety and technical efficiency as well as the effectiveness of the interaction with the robot from the users' points of view need to be considered. The work described in this paper derived from the IROMEC1project (Interactive Robotic Social Mediators as Companions) that investigates the design and role of an interactive, autonomous robotic toy in therapy and education contexts for children with special needs. The paper proposes a framework for the evaluation of robotic toys used as mediators for children with special needs and present its implementation with the specially designed IROMEC robot. Special attention is given to the interactions' effectiveness, considering the therapeutic and educational role that the robot can play for children with special needs in many different developmental areas. Ester Ferrari, Ben Robins, Kerstin Dautenhahn |
RO-MAN | 2 |
| 2010 | Tactile interaction with a humanoid robot for children with autism: A case study analysis involving user requirements and results of an initial implementationabstractThe work presented in this paper is part of our investigation in the ROBOSKIN project. The project aims to develop and demonstrate a range of new robot capabilities based on the tactile feedback provided by a robotic skin. One of the project's objectives is to improve human-robot interaction capabilities in the application domain of robot-assisted play. This paper presents design challenges in augmenting a humanoid robot with tactile sensors specifically for interaction with children with autism. It reports on a preliminary study that includes requirements analysis based on a case study evaluation of interactions of children with autism with the child-sized, minimally expressive robot KASPAR. This is followed by the implementation of initial sensory capabilities on the robot that were then used in experimental investigations of tactile interaction with children with autism. Ben Robins, Farshid Amirabdollahian, Ze Ji, Kerstin Dautenhahn |
RO-MAN | 1 |
| 2010 | Human-centred design methods: Developing scenarios for robot assisted play informed by user panels and field trials
Ben Robins, Ester Ferrari, Kerstin Dautenhahn, Gernot Kronreif, Barbara Prazak-Aram, Gert Jan Gelderblom, Tanja Bernd, Francesca Caprino, Elena Laudanna, Patrizia Marti |
Int. J. Hum. Comput. Stud. | 1 |
| 2010 | The effectiveness of using a robotics class to foster collaboration among groups of children with autism in an exploratory study
Joshua Wainer, Ester Ferrari, Kerstin Dautenhahn, Ben Robins |
Pers. Ubiquitous Comput. | 4 |
| 2009 | From Isolation to Communication: A Case Study Evaluation of Robot Assisted Play for Children with Autism with a Minimally Expressive Humanoid RobotabstractThe general context of the work presented in this paper is assistive robotics with our long-term aim to support children with autism. This paper is part of the Aurora project that studies ways in which robotic systems can encourage basic communication and social interaction skills in children with autism. This paper investigates how a small minimally expressive humanoid robot KASPAR can assume the role of a social mediator - encouraging children with low functioning autism to interact with the robot, to break their isolation and importantly, to facilitate interaction with other people. The article provides a case study evaluation of segments of trials where three children with autism, who usually do not interact with other people in their day to day activity, interacted with the robot and with co-present adults. A preliminary observational analysis was undertaken which applied, in abbreviated form, certain principles from conversation analysis - notably attention to the context in which the target behaviour occurred. The analysis was conducted by a social psychologist with expertise in using conversation analysis to understand interactions involving persons with an ASD. The analysis emphasises aspects of embodiment and interaction kinetics and revealed unexpected competencies on the part of the children. It showed how the robot served as a salient object mediating and encouraging interaction between the children and co-present adults. Ben Robins, Kerstin Dautenhahn, Paul Dickerson |
ACHI | 1 |
| 2009 | Therapeutic and educational objectives in robot assisted play for children with autismabstractThis article is a methodological paper that describes the therapeutic and educational objectives that were identified during the design process of a robot aimed at robot assisted play. The work described in this paper is part of the IROMEC project (Interactive Robotic Social Mediators as Companions) that recognizes the important role of play in child development and targets children who are prevented from or inhibited in playing. The project investigates the role of an interactive, autonomous robotic toy in therapy and education for children with special needs. This paper specifically addresses the therapeutic and educational objectives related to children with autism. In recent years, robots have already been used to teach basic social interaction skills to children with autism. The added value of the IROMEC robot is that play scenarios have been developed taking children's specific strengths and needs into consideration and covering a wide range of objectives in children's development areas (sensory, communicational and interaction, motor, cognitive and social and emotional). The paper describes children's developmental areas and illustrates how different experiences and interactions with the IROMEC robot are designed to target objectives in these areas. Ester Ferrari, Ben Robins, Kerstin Dautenhahn |
RO-MAN | 2 |
| 2008 | Behaviour delay and robot expressiveness in child-robot interactions: a user study on interaction kinesicsabstractThis paper presents results of a novel study on interaction kinesics where 18 children interacted with a humanoid child-sized robot called KASPAR. Based on findings in psychology and social sciences we propose the temporal behaviour matching hypothesis which predicts that children will adapt to and match the robot's temporal behaviour. Each child took part in six experimental trials involving two games in which the dynamics of interactions played a key part: a body expression imitation game, where the robot imitated expressions demonstrated by the children, and a drumming game where the robot mirrored the children's drumming. In both games KASPAR responded either with or without a delay. Additionally, in the drumming game, KASPAR responded with or without exhibiting facial/gestural expressions. Individual case studies as well as statistical analysis of the complete sample are presented. Results show that a delay of the robot's drumming response lead to larger pauses (with and without robot nonverbal gestural expressions) and longer drumming durations (with nonverbal gestural expressions only). In the imitation game, the robot's delay lead to longer imitation eliciting behaviour with longer pauses for the children, but systematic individual differences are observed in regards to the effects on the children's pauses. Results are generally consistent with the temporal behaviour matching hypothesis, i.e. children adapted the timing of their behaviour, e.g. by mirroring to the robot's temporal behaviour. Ben Robins, Kerstin Dautenhahn, I. René J. A. te Boekhorst, Chrystopher L. Nehaniv |
HRI | 1 |
| 2008 | Developing scenarios for robot assisted playabstractThis paper describes the user-centred development of play scenarios for robot assisted play, as part of the IROMEC project that develops a novel robotic toy for children with special needs. The project investigates how robotic toys can become social mediators, encouraging children with special needs to discover a range of play styles, from solitary to collaborative play (with peers, carers/teachers, parents, etc). This paper presents the developmental process of constructing relevant play scenarios for children with different special needs. This process is driven by a) a comprehensive literature review that is related to play activities of children from different target user groups with existing technology, consultation with panel of experts (therapist, teachers, parents) and b) by the result of experimental investigations of user requirements in trials with children with special needs. An important step (reported here) towards the development of the final play scenarios is the development of Outline Play Scenarios - a set of abstract scenarios that reflect the users' requirements and which are not related to any specific technological solution. The general methodological approach, as well as the outline play scenarios, may benefit the development of scenarios for other human-robot interaction research in robot assisted play and related areas. In future, these outline scenarios will be further developed to reflect and utilise the specific functionalities to be implemented in the new IROMEC robot and its different modules. Ben Robins, Ester Ferrari, Kerstin Dautenhahn |
RO-MAN | 1 |
| 2007 | Mediators versus Isolators - the effect of robots on children with Autism and other user-groupsabstractStudies into the behaviour of children with autism suggest that they show a preference for interacting with objects rather than with other people. People's social behaviour can be very subtle and could seem, to those with communication problems and a deficit in mind reading skills, widely unpredictable. This can present itself as a very confusing and possibly stressful experience to children with autism. Different from human beings, interactions with robots can provide a simplified, safe, predictable and reliable environment for these children and, not only that they might demonstrate a preference for interacting with the robots, but also they might start to develop 'attachment' or 'bonding' with the robot and direct basic social behaviours towards it. Ben Robins |
RO-MAN | 1 |
| 2007 | Eliciting Requirements for a Robotic Toy for Children with Autism - Results from User PanelsabstractThe work presented in this paper was carried out within the IROMEC project that develops a robotic toy for children. Play has an important role in child development with many potential contributions to therapy, education and enjoyment. The project investigates how robotic toys can become social mediators, encouraging children with disabilities to discover a range of play styles, from solitary to social and cooperative play (with peers, carers/teachers, parents etc). This paper presents design issues for such robotic toys related specifically to children with autism as the end user target group. In order to understand the play needs of this user group, and to investigate how robotic toys could be used as a play tool to assist in the children's development, a panel of experts (therapists, teachers, parents) was formed and interviewed. Results of the expert panel interview s highlight key points characterizing the play of children with autism, and key points for consideration in the design of future robotic toys. Ben Robins, Nuno Otero, Ester Ferrari, Kerstin Dautenhahn |
RO-MAN | 1 |
| 2006 | The Role of the Experimenter in HRI Research - A Case Study Evaluation of Children with Autism Interacting with a Robotic ToyabstractThe general context of the work presented in this paper is assistive robotics with our long-term aim to support children with autism. This paper is part of an investigation into what ways and to what extent a robot can assume the role of a social mediator - encouraging autistic children to interact with the robot, with each other and with co-present adults. The article focuses on the role of the experimenter in these triadic interactions, and provides a case study evaluation of segments of trials where a robot mediated both indirect and direct interactions between children with autism and the experimenter Ben Robins, Kerstin Dautenhahn |
RO-MAN | 1 |