The International Journal of Robotics Research · 2003 · 233 citations · 5 references
Robot KinematicsEngineeringSafety ScienceIntelligent RoboticsEducationRescue RobotRobot SimulationKinesiologySystems EngineeringHuman-care RobotSafety Evaluation MethodSafety CriterionKinematicsImpact ForceAssistive TechnologyDesignMechatronicsHuman SafetySafety ControlMedical RobotRobot ControlAutomationMechanical SystemsCareless CollisionSafety SystemRobotics
The authors propose the first general method for evaluating safety in human‑care robots. They define a danger‑index based on impact force and stress and implement a PC‑based 3‑D simulation system to assess safety strategies. The method and simulation system enable quantification of each safety strategy’s contribution to overall safety performance, simplifying evaluation across diverse human‑care robots.
We propose the world's first general method of evaluating safety for human-care robots. In the case of a careless collision between a robot and a human, impact force and impact stress are chosen as evaluation measures, and a danger-index is defined to quantitatively evaluate the effectiveness of each safety strategy used for design and control. As a result, this proposed method allows us to assess the contribution of each safety strategy to the overall safety performance of a human-care robot. In addition, a new type of three-dimensional robot simulation system for danger evaluation is constructed on a PC. The system simplifies the danger evaluation of both the design and control of various types of human-care robots to quantify the effectiveness of various safety strategies.
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