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首页> 外文期刊>Neural computing & applications >Ultra-low-voltage integrable electronic implementation of delayed inertial neural networks for complex dynamical behavior using multiple activation functions
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Ultra-low-voltage integrable electronic implementation of delayed inertial neural networks for complex dynamical behavior using multiple activation functions

机译:使用多个激活功能的超低电压可集电实现延迟惯性神经网络,复杂动态行为

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摘要

Ultra-low-voltage sinh-domain implementation of delayed inertial neuron is introduced in this paper. The complex dynamical behavior of the neuron has been verified using three different activation functions, namely tanh, unipolar sigmoidal and bipolar sigmoidal. The networks containing two and four neurons have been designed, and their complex dynamical behavior has also been verified. The proposed implementation vis-a-vis the already reported designs offers the benefits of: (1) low-voltage operation, (2) integrability, due to resistor-less design and the employment of only grounded components, (3) electronic tunability of performance parameters by external currents, which adds flexibility to the proposed designs even after their final fabrication, (4) absence of inductors as, in contrast to reported designs, the delay has been implemented using component substitution method where inductors have been replaced by emulated inductors and (5) low-power implementation due to the inherent class AB nature of sinh-domain technique. Besides, for the first time, the complex dynamical behavior of four-neuron delayed inertial network has been implemented and its functioning for different activations functions has been considered and verified. HSPICE simulator tool and TSMC 130 nm CMOS process were used to evaluate and verify the correct functioning of the model.
机译:本文介绍了延迟惯性神经元的超低电压Sinh域实现。 Neuron的复杂动态行为已经使用三种不同的激活功能验证,即Tanh,UniPolar Sigmoidal和Bipolar Sigmoidal。设计了包含两个和四个神经元的网络,并且还已经验证了它们的复杂动态行为。拟议的实施VIS-A-VI已经报告的设计提供了以下优点:(1)低压操作,(2)可积,由于电阻的设计和仅采用基本组件,(3)电子可调性外部电流的性能参数,即使在最终制造之后,(4)与报告的设计相比,仍然在缺乏电感器之后增加了拟议设计的灵活性,但是使用组件替代方法来实现延迟,其中电感器已被模拟电感器所取代(5)由于SINH域技术的固有类AB性质,低功耗实现。此外,首次已经实现了四神经元延迟惯性网络的复杂动态行为,并且已经考虑并验证了其对不同激活功能的功能。 HSPICE模拟器工具和TSMC 130 NM CMOS过程用于评估和验证模型的正确功能。

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