电刺激控制蜜蜂飞行的实验验证

IF 10.5 Q1 ENGINEERING, BIOMEDICAL
Li Yu, Jieliang Zhao, Zhiyun Ma, Wenzhong Wang, Shaoze Yan, Yue Jin, Yu Fang
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引用次数: 3

摘要

人工运动控制策略是保证机器人昆虫完成预设任务的基本技术。现有研究已经认识到,对以蜜蜂为代表的小昆虫来说,对视叶进行电刺激是一种合适的飞行控制策略。这种控制技术已被证实对蜜蜂飞行的开始和停止是有效的。然而,其对转向运动的调节作用尚未得到充分验证。在这里,我们通过对单侧视叶施加不同占空比和频率的电刺激信号来研究蜜蜂的转向控制效果,并筛选出响应成功率最高的刺激参数。此外,我们通过验证系留蜜蜂的旋转扭矩和爬行蜜蜂的身体方向变化,证实了转向控制的有效性。我们的研究将为半机械人蜜蜂的运动控制提供一些可靠的参数参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Verification on Steering Flight of Honeybee by Electrical Stimulation
The artificial locomotion control strategy is the fundamental technique to ensure the accomplishment of the preset assignments for cyborg insects. The existing research has recognized that the electrical stimulation applied to the optic lobes was an appropriate flight control strategy for small insects represented by honeybee. This control technique has been confirmed to be effective for honeybee flight initiation and cessation. However, its regulation effect on steering locomotion has not been fully verified. Here, we investigated the steering control effect of honeybee by applying electrical stimulation signals with different duty cycles and frequencies on the unilateral optic lobes and screened the stimulus parameters with the highest response successful rate. Moreover, we confirmed the effectiveness of steering control by verifying the presence of rotation torque on tethered honeybees and the body orientation change of crawling honeybees. Our study will contribute some reliable parameter references to the motion control of cyborg honeybees.
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来源期刊
CiteScore
7.70
自引率
0.00%
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审稿时长
21 weeks
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