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SMA actuator and pulse-type hardware neural networks IC for fast walking motion of insect-type MEMS microrobot

机译:用于昆虫型MEMS微型机器人快速行走的SMA执行器和脉冲型硬件神经网络IC

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In this study, the actuator system and an integrated circuit (IC) neural network for a hexapod locomotive microrobot is discussed with the aim of achieving walking motion. Miniature size robots such as insects are a field of interest in robotic studies. However, the realization of such a small robot, especially with micro-mechanisms and an artificial brain, similar to those of real organisms, is difficult. We propose the use of micro-electro mechanical systems (MEMS) for the micro-mechanisms and pulse-type hardware neural networks for the brain of a microrobot. The silicon structural component was produced using MEMS. Shape memory alloy-based artificial muscle wires were used for the rotational actuator, and gait motion was generated using link mechanisms. We compared two types of rotors with different shapes and thermal capacities. By optimizing the design of the rotary actuator and the driving current, the robot exhibited faster and stable walking motion. Furthermore, we developed an IC for pulse-type hardware neural networks to act as an artificial brain for the gait controller and the bare chip was connected to the MEMS robot.
机译:在这项研究中,以实现步行运动为目标,讨论了用于六足机车微型机器人的致动器系统和集成电路(IC)神经网络。诸如昆虫之类的微型机器人是机器人研究中的关注领域。但是,要实现这种小型机器人,特别是利用微型机械和人工大脑,类似于真实生物体,是很难的。我们建议将微机电系统(MEMS)用于微型机械,并将脉冲型硬件神经网络用于微型机器人的大脑。硅结构部件是使用MEMS生产的。基于形状记忆合金的人造肌肉线被用作旋转执行器,并通过连杆机构产生步态运动。我们比较了两种具有不同形状和热容量的转子。通过优化旋转执行器和驱动电流的设计,机器人表现出更快,更稳定的步行运动。此外,我们开发了一种用于脉冲型硬件神经网络的集成电路,以作为步态控制器的人工大脑,并将裸芯片连接至MEMS机器人。

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