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Underwater minirobots actuated by hybrid driving method
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作者 Xinghong YE Yang YANG +2 位作者 Pengcheng JIAO Zhiguo HE Lingwei LI 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2023年第7期596-611,共16页
Underwater minirobots have attracted significant interest due to their value in complex application scenarios.Typical underwater minirobots are driven mainly by a soft or rigid actuator.However,soft actuation is curre... Underwater minirobots have attracted significant interest due to their value in complex application scenarios.Typical underwater minirobots are driven mainly by a soft or rigid actuator.However,soft actuation is currently facing challenges,including inadequate motional control accuracy and the lack of a continuous and steady driving force,while conventional rigid actuation has limited actuation efficiency,environmental adaptability,and motional flexibility,which severely limits the accomplishment of complicated underwater tasks.In this study,we developed underwater minirobots actuated by a hybrid driving method(HDM)that combines combustion-based actuators and propeller thrusters to achieve accurate,fast,and flexible underwater locomotion performance.Underwater experiments were conducted to investigate the kinematic performance of the minirobots with respect to the motion modes of rising,drifting,and hovering.Numerical models were used to investigate the kinematic characteristics of the minirobots,and theoretical models developed to unveil the mechanical principle that governs the driving process.Satisfactory agreement was obtained from comarisons of the experimental,numerical,and theoretical results.Finally,the HDM was compared with selected hybrid driving technologies in terms of acceleration and response time.The comparison showed that the minirobots based on HDM were generally superior in transient actuation ability and reliability. 展开更多
关键词 Hybrid driving method(HDM) Underwater minirobots Operation reliability Transient actuation
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微小型移动机器人平移驱动机构的研究 被引量:8
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作者 杨志刚 何文地 康小涛 《机器人》 EI CSCD 北大核心 1995年第4期200-205,217,共7页
提出一种单矩形板压电振子型超声驱动机构,通过设置凸起物并利用矩形板的二维弯曲振动实现了多轮同时转动,给出了设计方法,并经制作与试验,测试了样机的速度与功率比性能,验证了其作为微小型移动机器人平移驱动机械的可能性。
关键词 移动机器人 微小型 平移驱动机构 机器人
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具有外体和本体感知能力智能蠕动模块 被引量:1
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作者 刘伟庭 朱丹华 +1 位作者 陈裕泉 王立人 《传感技术学报》 CAS CSCD 北大核心 2006年第4期1157-1161,共5页
生物蚯蚓具有感受外界接触信号的外体感受器和感知其内在运动的本体感受器,仿生智能微型蠕动机器人应同样具备相应的外体接触和内部运动的感知能力。由于PVDF(polyvinylidene fluoride)膜具有良好的柔软性和高灵敏度,它成为本研究仿生... 生物蚯蚓具有感受外界接触信号的外体感受器和感知其内在运动的本体感受器,仿生智能微型蠕动机器人应同样具备相应的外体接触和内部运动的感知能力。由于PVDF(polyvinylidene fluoride)膜具有良好的柔软性和高灵敏度,它成为本研究仿生传感器的敏感元件。孔化后的PVDF膜植入微型蠕动机器人的被动执行器“皮肤”———硅橡胶中。实验表明,基于PVDF膜的传感器的蠕动模块,如同真正的生物蚯蚓,具备检测外在接触信号和感知内在运动状态的能力。 展开更多
关键词 仿生传感器 外体感受器 本体感受器 微型蠕动机器人
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