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Two-level simulation approach to evaluate the performance of autonomous wheelchairs in a hospital

机译:评估医院自主轮椅性能的两级仿真方法

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In this paper, we present the combined usage of two different simulation levels to evaluate the economic and quality-of-service impact of deploying a fleet of autonomous wheelchairs in a hospital. The first simulation level deals with the physical world and takes into account the characteristics of a real robot, such as dimensions, sensor configuration, and speed. We simulate different trajectories in order to obtain realistic transportation times that are subsequently used in the high-level simulation. This high-level simulation considers those hospital resources that are affected by the inclusion of automated wheelchairs, and computes the economic implications of partially or totally substituting the current fleet of manual wheelchairs. Our results show that switching to automated wheelchairs may be beneficial in terms not only of reduced waiting times for patients, but also of economic savings.
机译:在本文中,我们展示了两种不同的模拟水平的合并使用,以评估部署医院自治轮椅的经济和服务的影响。第一个仿真级别处理物理世界,并考虑了真实机器人的特性,例如尺寸,传感器配置和速度。我们模拟了不同的轨迹,以获得随后用于高级仿真中使用的现实运输时间。这种高级模拟考虑了那些受到自动轮椅影响的医院资源,并计算部分或完全替换当前手工轮椅的经济影响。我们的结果表明,切换到自动轮椅可能是有益的,而且不仅有助于患者的等待时间,也可能是经济储蓄的。

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