This paper presents synthesized research on where XR is most effective within a museum setting and what impact XR might have on the visitor experience.
This project investigates long-term human-robot interaction outside of controlled laboratory settings to better understand how the introduction of robots and the development of socially-aware behaviors work to transform the spaces of everyday life, including how spaces are planned and managed, used, and experienced. Focusing on tour-guiding robots in two museums, the research will produce nuanced insights into the challenges and opportunities that arise as social robots are integrated into new spaces to better inform future design, planning, and decision-making. It brings together researchers from human geography, robotics, and art to think beyond disciplinary boundaries about the possible futures of human-robot co-existence, sociality, and collaboration. Broader impacts of the project will include increased accessibility and engagement at two partner museums, interdisciplinary research opportunities for both undergraduate and graduate students, a short video series about the current state of robotic technology to be offered as a free educational resource, and public art exhibitions reflecting on human-robot interactions. This project will be of interest to scholars of Science and Technology Studies, Human Robotics Interaction (HRI), and human geography as well as museum administrators, educators and the general public.
This interdisciplinary project brings together Science and Technology Studies, Human Robotics Interaction (HRI), and human geography to explore the production of social space through emerging forms of HRI. The project broadly asks: How does the deployment of social robots influence the production of social space—including the functions, meanings, practices, and experiences of particular spaces? The project is based on long-term ethnographic observation of the development and deployment of tour-guiding robots in an art museum and an earth science museum. A social roboticist will develop a socially-aware navigation system to add nuance to the robots’ socio-spatial behavior. A digital artist will produce digital representations of the interactions that take place in the museum, using the robot’s own sensor data and other forms of motion capture. A human geographer will conduct interviews with museum visitors and staff as well as ethnographic observation of the tour-guiding robots and of the roboticists as they develop the navigation system. They will produce an ethnographic analysis of the robots’ roles in the organization of the museums, everyday practices of museum staff and visitors, and the differential experiences of the museum space. The intellectual merits of the project consist of contributions at the intersections of STS, robotics, and human geography examining the value of ethnographic research for HRI, the development of socially-aware navigation systems, the value of a socio-spatial analytic for understanding emerging forms of robotics, and the role of robots within evolving digital geographies.
This project is jointly funded by the Science and Technology Studies program in SBE and Advancing Informal STEM Learning (AISL) Program in EHR.
Inclusion, Disabilities, and Informal Science Learning, a report by the CAISE Access Inquiry Group, sets forth a framework for changing this inequity. This white paper offers a theoretical framework for thinking about inclusion of people with disabilities in informal science education (ISE), then reviews current practice in museums (broadly defined), in media and technology, and in youth and community programs. While "investigations located a number of projects, initiatives, and organizations that have sought greater inclusion of people with disabilities in ISE," the report concludes, "these
The Department of Geological Sciences at Rutgers, in collaboration with the Liberty Science Center, the New York State Museum, Palisades Interstate Park Commission, Appalachian Trail Conference, and ABS-Capital Cities, Inc., has a planning grant to develop a universal model that will encourage science education in conjunction with outdoor recreational activities in wilderness parks near urban centers. The initial effort will focus on the Harriman and Bear Mountain State Parks and the Sterling Forest lands, all near New York City. Current plans for the full project include development of: 1) an illustrated guidebook describing the features chosen as "exhibits" at the sites, 2) a map showing locations of the "exhibits", 3) plaques marking the features of the exhibits, 4) proposals for new trails to access outstanding botanical and geological features, 5) a web site with virtual reality filed trips of the sites chosen, 6) museum displays and media programs at Liberty Science Center, the New York State Museum, and other sites, 7) regular field trips from Liberty Science Center, New York State Museum, and Bear Mountain Trailside Museum, 8) workshops for high school teachers, and 9) special project to get more public use of the park resources. During the planning stage the project will gather data on public interest, determine the most effective means of dissemination, identify and contact other organizations and scientist that could contribute to the full project, and develop a coordination plan and schedule for this complex project. Small examples and/or written descriptions of the web-site, the guidebook stops, museum displays, and field trips will also be produced in the planning phase.