In a variety of emergency settings robot assistance has been identified as highly valuable, providing remote, and thus safe, access and operation. There are many different forms of human-robot interactions, allowing a team of humans and robots to take advantage of skills of each team member. A relatively new area of research considers interactions between human and a team of robots performing as a swarm. This work is concerned with the interactive use of autonomous robots in fire emergency settings. In particular, we consider a swarm of robots that are capable of supporting and enhancing fire fighting operations co-operatively and we investigate how firefighters in the field work with such a swarm. This paper outlines some of the key characteristics of this emergency setting. It discusses possible forms of interactions with swarm robotics being examined in the GUARDIANS project. The paper addresses the use of assistive swarm robotics to support firefighters with navigation and search operations. It reports on existing firefighters operations and how human-swarm interactions are to be used during such operations. The design approaches for human-swarm interaction are described and the preliminary work in the area are outlined. The paper ends by linking current expertise with common features of emergency related interaction design.
[1]
Pamela J. Hinds,et al.
Extreme work teams: using SWAT teams as a model for coordinating distributed robots
,
2002,
CSCW '02.
[2]
Julie A. Adams,et al.
Human-Robot Interaction Design: Understanding User Needs and Requirements
,
2005
.
[3]
N. Sarkar,et al.
Mixed-Initiative Interaction and Robotic Systems
,
2004
.
[4]
Jean Scholtz,et al.
Theory and evaluation of human robot interactions
,
2003,
36th Annual Hawaii International Conference on System Sciences, 2003. Proceedings of the.
[5]
FRAUKE DRIEWER,et al.
Robot–human rescue teams: a user requirements analysis
,
2005,
Adv. Robotics.
[6]
Mica R. Endsley,et al.
Theoretical Underpinnings of Situation Awareness, A Critical Review
,
2000
.
[7]
Dan Ryan,et al.
Traded Control with Autonomous Robots as Mixed Initiative Interaction
,
1997
.
[8]
Craig W. Reynolds.
Flocks, herds, and schools: a distributed behavioral model
,
1987,
SIGGRAPH.