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Is it Time to Swish? Comparing Deep Learning Activation Functions Across NLP tasks

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abstract

Activation functions play a crucial role in neural networks because they are the nonlinearities which have been attributed to the success story of deep learning. One of the currently most popular activation functions is ReLU, but several competitors have recently been proposed or 'discovered', including LReLU functions and swish. While most works compare newly proposed activation functions on few tasks (usually from image classification) and against few competitors (usually ReLU), we perform the first large-scale comparison of 21 activation functions across eight different NLP tasks. We find that a largely unknown activation function performs most stably across all tasks, the so-called penalized tanh function. We also show that it can successfully replace the sigmoid and tanh gates in LSTM cells, leading to a 2 percentage point (pp) improvement over the standard choices on a challenging NLP task.

fields

cs.NI 1

years

2019 1

verdicts

UNVERDICTED 1

representative citing papers

Deep Learning for CSI Feedback Based on Superimposed Coding

cs.NI · 2019-07-27 · unverdicted · novelty 5.0

A multi-task neural network recovers superimposed downlink CSI and uplink data sequences in FDD massive MIMO, improving CSI estimation over standalone SC while maintaining similar UL-US detection across varying SNR and PPC.

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  • Deep Learning for CSI Feedback Based on Superimposed Coding cs.NI · 2019-07-27 · unverdicted · none · ref 31 · internal anchor

    A multi-task neural network recovers superimposed downlink CSI and uplink data sequences in FDD massive MIMO, improving CSI estimation over standalone SC while maintaining similar UL-US detection across varying SNR and PPC.