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A robot-rat interaction experimental system based on the rat-inspired mobile robot WR-4

机译:基于RAT激发移动机器人WR-4的机器人大鼠交互实验系统

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This research proposes to design and develop a novel robot involved in the general and famous animal experimental method called Social Interaction Test (SIT). Aiming at increased movement range of the waist and improved interoperability, we have developed a novel small animaroid robot WR-4 (Waseda Rat No.4). The waist of WR-4 endowed with a multi-bendable 6-bar linkage mechanism makes the robot able to rotate around ±130° horizontally, meeting required movement range. Integrating with a 4-bar linkage mechanism in the neck, this 6-bar linkage mechanism achieves the bending posture as living rats, allowing the imitation of behavior such as rotating. Furthermore, ultrasonic motors (USM) used to drive forelegs greatly reduce the weight of upper body, resulting in quicker acting of rearing behavior. WR-4 consists of 10 active DOFs (two 1-DOF wheels for locomotion, two 2-DOF forelegs for interaction, one 1-DOF neck for swing, one 2-DOF waist for rearing and body grooming and one 1-DOF reserved for tail) and 2 passive DOFs in the paws. The evaluation tests on motion performance show that WR-4 could act both rearing (reaching 60°) and rotating (reaching ±100° respectively) behaviors approximately 0.1s quicker than mature rats. Preliminary SIT between WR-4 and mature rats have been conducted strictly following psychological rules. Experimental results reveal that the frequencies of rearing behavior in rats were increased significantly when WR-4 reared periodically, and the activities of rats were decreased after WR-4 reared.
机译:本研究建议设计和开发涉及通用和着名动物实验方法的新型机器人,称为社会互动测试(坐下)。旨在增加腰部的运动范围和改进的互操作性,我们开发了一种新型的小型动物机器人WR-4(Waseda Rat No.4)。 WR-4的腰部赋予多弯6杆连杆机构,使机器人能够旋转± 130°水平,满足需要的运动范围。与颈部的4巴连杆机构相结合,这6巴杆连杆机构达到了弯曲的姿势作为生活大鼠,允许仿真旋转等行为。此外,用于驱动前肢的超声波电动机(USM)大大减小了上半身的重量,导致饲养行为的作用更快。 WR-4由10个活性DOF组成(两个1-DOF车轮用于运动,两个2-DOF前置的相互作用,一个1-DOF颈部用于摆动,一个2-DOF腰部用于饲养和身体修饰,保留一台1-DOF腰部尾巴)和爪子中的2个被动自由度。运动性能的评估测试表明,WR-4可以追逐(达到60°)并旋转(达到± 100°分别)行为比成熟大鼠更快。初步坐在WR-4和成熟大鼠之间严格遵循心理规则。实验结果表明,当周期性饲养时,大鼠饲养行为的频率显着增加,并且在饲养WR-4后,大鼠的活性降低。

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