Neural networks IC for locomotion rhythm generator emulating living organism

D. Tanaka, K. Sugita, Yuxuan Han, M. Takato, F. Uchikoba, Ken Saito
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Abstract

Living organisms has the excellent locomotion controller by using biological neural networks. Therefore, many researchers have been emulated the biological neural networks for applying similar control to small size robots. We are studying artificial neural networks for the purpose of controlling a small size robot without using software programs. Previously, we have constructed two types of insect type microrobot which could locomote by using their legs. The microrobot could locomote by using a link mechanism with a minimum number of small size actuators. In this paper, we will discuss a neural networks integrated circuit (IC) which can generate the locomotion rhythms for the microrobot. The neural networks IC consists of the pulse-type hardware neuron model which can generate oscillating electrical activity. In addition, we construct the locomotion rhythm generator using neural networks IC and peripheral circuits to generate the driving waveform for the actuator. Neural networks IC and peripheral circuits are mounted on the small size circuit board. As a result, our constructed locomotion rhythm generator can generate the driving waveform to locomote the microrobot without using software programs.
模拟生物体运动节律发生器的神经网络集成电路
利用生物神经网络对生物有机体进行运动控制是一种很好的方法。因此,许多研究人员对生物神经网络进行了仿真,以便将类似的控制应用于小型机器人。我们正在研究人工神经网络,目的是在不使用软件程序的情况下控制小型机器人。在此之前,我们已经构建了两种昆虫型微型机器人,它们可以用腿来移动。该微型机器人通过使用具有最小数量的小尺寸驱动器的连杆机构来实现运动。本文将讨论一种可以产生微型机器人运动节奏的神经网络集成电路(IC)。神经网络集成电路由能产生振荡电活动的脉冲型硬件神经元模型组成。此外,我们还利用神经网络集成电路和外围电路构建了运动节奏发生器,以产生执行器的驱动波形。神经网络集成电路和外围电路安装在小尺寸电路板上。因此,我们所构建的运动节奏发生器可以在不使用软件程序的情况下产生驱动波形来实现微型机器人的运动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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