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Analog VLSI Circuit Implementation of an Adaptive Neuromorphic Olfaction Chip

机译:自适应神经形态嗅觉芯片的模拟VLSI电路实现

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In this paper, we present the analog circuit design and implementation of the components of an adaptive neuromorphic olfaction chip. A chemical sensor array employing carbon black composite sensing materials with integrated signal processing circuitry forms the front end of the chip. The sensor signal processing circuitry includes a dc offset cancellation circuit to ameliorate loss of measurement range associated with chemical sensors. Drawing inspiration from biological olfactory systems, the analog circuits used to process signals from the on-chip odor sensors make use of temporal "spiking" signals to act as carriers of odor information. An on-chip spike time dependent learning circuit is integrated to dynamically adapt weights for odor detection and classification. All the component subsystems implemented on chip have been successfully tested in silicon
机译:在本文中,我们介绍了自适应神经形态嗅觉芯片的模拟电路设计和组件的实现。一个采用炭黑复合传感材料和集成信号处理电路的化学传感器阵列构成了芯片的前端。传感器信号处理电路包括一个直流偏移消除电路,以改善与化学传感器相关的测量范围的损失。从生物嗅觉系统中汲取灵感,用于处理来自片上气味传感器的信号的模拟电路利用时间“尖峰”信号充当气味信息的载体。集成了一个片上尖峰时间相关的学习电路,以动态调整权重以进行气味检测和分类。芯片上实现的所有组件子系统均已在硅片上成功测试

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