A VLSI architecture for modeling intersegmental coordination

S. DeWeerth, G. Patel, M. Simoni, D. Schimmel, R. Calabrese
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引用次数: 16

Abstract

A hybrid analog/digital VLSI architecture that models the coordination of neurobiological segmental oscillators is presented. This architecture facilitates the modeling of systems such as those that produce swimming in vertebrates and fish, as well as motivates the creation of a class of biologically inspired, "intelligent" motion-control systems. The two primary components of the architecture are described: intrasegmental oscillators that consist of neurons and synapses that are implemented primarily rising analog VLSI circuits; and an intersegmental communication network that is implemented, primarily rising asynchronous digital circuits. Preliminary test results are presented to demonstrate the operation of the system and its components.
一种用于段间协调建模的VLSI体系结构
提出了一种模拟/数字混合VLSI结构,用于模拟神经生物节段振荡器的协调。这种结构有利于系统的建模,比如那些产生脊椎动物和鱼类游泳的系统,也激发了一类受生物学启发的“智能”运动控制系统的创造。描述了该架构的两个主要组件:由神经元和突触组成的段内振荡器,主要实现模拟VLSI电路;并实现了一个分段间通信网络,主要是上升的异步数字电路。给出了初步的测试结果,以证明系统及其组件的运行。
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