TSSR: A Truncated and Signed Square Root Activation Function for Neural Networks

08/09/2023
by   Yuanhao Gong, et al.
0

Activation functions are essential components of neural networks. In this paper, we introduce a new activation function called the Truncated and Signed Square Root (TSSR) function. This function is distinctive because it is odd, nonlinear, monotone and differentiable. Its gradient is continuous and always positive. Thanks to these properties, it has the potential to improve the numerical stability of neural networks. Several experiments confirm that the proposed TSSR has better performance than other stat-of-the-art activation functions. The proposed function has significant implications for the development of neural network models and can be applied to a wide range of applications in fields such as computer vision, natural language processing, and speech recognition.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
07/31/2023

STL: A Signed and Truncated Logarithm Activation Function for Neural Networks

Activation functions play an essential role in neural networks. They pro...
research
12/22/2021

Squareplus: A Softplus-Like Algebraic Rectifier

We present squareplus, an activation function that resembles softplus, b...
research
04/06/2023

Optimizing Neural Networks through Activation Function Discovery and Automatic Weight Initialization

Automated machine learning (AutoML) methods improve upon existing models...
research
01/05/2023

WIRE: Wavelet Implicit Neural Representations

Implicit neural representations (INRs) have recently advanced numerous v...
research
02/14/2019

A Broad Class of Discrete-Time Hypercomplex-Valued Hopfield Neural Networks

In this paper, we address the stability of a broad class of discrete-tim...
research
03/22/2020

TanhExp: A Smooth Activation Function with High Convergence Speed for Lightweight Neural Networks

Lightweight or mobile neural networks used for real-time computer vision...
research
11/07/2020

Universal Activation Function For Machine Learning

This article proposes a Universal Activation Function (UAF) that achieve...

Please sign up or login with your details

Forgot password? Click here to reset