Energy Efficient Brain Floating Point Convolutional Neural Network Using Memristors

Energy Efficient Brain Floating Point Convolutional Neural Network Using Memristors

All-memristive neuromorphic computing with level-tuned neuronsПодробнее

All-memristive neuromorphic computing with level-tuned neurons

Memristor-based Deep Spiking Neural Network with a Computing-In-Memory ArchitectureПодробнее

Memristor-based Deep Spiking Neural Network with a Computing-In-Memory Architecture

The science and applications of memristors: Niloufar RaeisHosseiniПодробнее

The science and applications of memristors: Niloufar RaeisHosseini

Hyperblock Floating Point: Generalised Quantization Scheme for Gradient and Inference ComputationПодробнее

Hyperblock Floating Point: Generalised Quantization Scheme for Gradient and Inference Computation

HyperSpike HyperDimensional Computing for More Efficient and Robust Spiking Neural NetworksПодробнее

HyperSpike HyperDimensional Computing for More Efficient and Robust Spiking Neural Networks

L-Mul: The Breakthrough for Energy-Efficient AIПодробнее

L-Mul: The Breakthrough for Energy-Efficient AI

tinyML Talks: Low Precision Inference and Training for Deep Neural NetworksПодробнее

tinyML Talks: Low Precision Inference and Training for Deep Neural Networks

ИИ доступнее, Квантовый компьютер Zuchongzhi, Tabnine минимизирует риски ИИПодробнее

ИИ доступнее, Квантовый компьютер Zuchongzhi, Tabnine минимизирует риски ИИ

In-memory Computing with Memristors and Memtransistors - Daniele IelminiПодробнее

In-memory Computing with Memristors and Memtransistors - Daniele Ielmini

The Next Generation Of Brain Mimicking AIПодробнее

The Next Generation Of Brain Mimicking AI

On-device machine learning with memristors in the neuromorphic eraПодробнее

On-device machine learning with memristors in the neuromorphic era

Brain-Like (Neuromorphic) Computing - ComputerphileПодробнее

Brain-Like (Neuromorphic) Computing - Computerphile

Using Artificial-Intelligence-Driven Deep Neural Networks to Uncover Brain PrinciplesПодробнее

Using Artificial-Intelligence-Driven Deep Neural Networks to Uncover Brain Principles

Convolutional neural networks need accuracyПодробнее

Convolutional neural networks need accuracy

Best Paper: Algorithm-Hardware Co-Design of Adaptive Floating-Point Encodings for Resilient... TambeПодробнее

Best Paper: Algorithm-Hardware Co-Design of Adaptive Floating-Point Encodings for Resilient... Tambe

Gyro: A Digital Spiking Neural Network Architecture for Multi-Sensory DataПодробнее

Gyro: A Digital Spiking Neural Network Architecture for Multi-Sensory Data

Memristive Crossbars Brain-Inspired Computing | G. Zoppo | PitchD 24Подробнее

Memristive Crossbars Brain-Inspired Computing | G. Zoppo | PitchD 24

Neural Network Demo AnimationПодробнее

Neural Network Demo Animation

Neural networks [9.10] : Computer vision - convolutional RBMПодробнее

Neural networks [9.10] : Computer vision - convolutional RBM

Популярное