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What is NeuroIntelligence?

NeuroIntelligence is a sophisticated software tool that utilizes neural networks to assist professionals in areas such as data mining, pattern recognition, and predictive modeling while addressing real-world issues. By incorporating only thoroughly validated neural network algorithms and techniques, the application guarantees both rapid performance and ease of use. Among its features are visualized architecture searches and extensive training and testing capabilities for neural networks. Users are equipped with tools such as fitness bars and training graph comparisons, allowing them to keep track of important metrics like dataset error, network error, and weight distributions. The software offers an in-depth analysis of input significance and includes testing instruments like actual versus predicted graphs, scatter plots, response graphs, ROC curves, and confusion matrices. With its user-friendly design, NeuroIntelligence effectively tackles challenges in data mining, forecasting, classification, and pattern recognition. This streamlined interface not only enhances user experience but also incorporates innovative features that save time, enabling users to create superior solutions more efficiently. As a result, users can dedicate their efforts towards refining their models and attaining improved outcomes in their projects. The ability to visualize and analyze data effectively ensures that professionals can make informed decisions based on their findings.

What is Fabric for Deep Learning (FfDL)?

Deep learning frameworks such as TensorFlow, PyTorch, Caffe, Torch, Theano, and MXNet have greatly improved the ease with which deep learning models can be designed, trained, and utilized. Fabric for Deep Learning (FfDL, pronounced "fiddle") provides a unified approach for deploying these deep-learning frameworks as a service on Kubernetes, facilitating seamless functionality. The FfDL architecture is constructed using microservices, which reduces the reliance between components, enhances simplicity, and ensures that each component operates in a stateless manner. This architectural choice is advantageous as it allows failures to be contained and promotes independent development, testing, deployment, scaling, and updating of each service. By leveraging Kubernetes' capabilities, FfDL creates an environment that is highly scalable, resilient, and capable of withstanding faults during deep learning operations. Furthermore, the platform includes a robust distribution and orchestration layer that enables efficient processing of extensive datasets across several compute nodes within a reasonable time frame. Consequently, this thorough strategy guarantees that deep learning initiatives can be carried out with both effectiveness and dependability, paving the way for innovative advancements in the field.

Media

Media

Integrations Supported

Caffe
Kubernetes
Microsoft 365
PyTorch
TensorFlow
Torch

Integrations Supported

Caffe
Kubernetes
Microsoft 365
PyTorch
TensorFlow
Torch

API Availability

Has API

API Availability

Has API

Pricing Information

$497 per user
Free Trial Offered?
Free Version

Pricing Information

Pricing not provided.
Free Trial Offered?
Free Version

Supported Platforms

SaaS
Android
iPhone
iPad
Windows
Mac
On-Prem
Chromebook
Linux

Supported Platforms

SaaS
Android
iPhone
iPad
Windows
Mac
On-Prem
Chromebook
Linux

Customer Service / Support

Standard Support
24 Hour Support
Web-Based Support

Customer Service / Support

Standard Support
24 Hour Support
Web-Based Support

Training Options

Documentation Hub
Webinars
Online Training
On-Site Training

Training Options

Documentation Hub
Webinars
Online Training
On-Site Training

Company Facts

Organization Name

ALYUDA

Company Location

United States

Company Website

www.alyuda.com/product/neural-networks-software

Company Facts

Organization Name

IBM

Date Founded

1911

Company Location

United States

Company Website

developer.ibm.com/open/projects/fabric-for-deep-learning-ffdl/

Categories and Features

Categories and Features

Deep Learning

Convolutional Neural Networks
Document Classification
Image Segmentation
ML Algorithm Library
Model Training
Neural Network Modeling
Self-Learning
Visualization

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