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A Hybrid Platform for Multi-Neurons Model with Optimum Co-Design Method

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Published in:Big Data Mining and Analytics
Format: Online Article RSS Article
Published: 2025
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container_title Big Data Mining and Analytics
description
discipline_display Engineering & Technology
discipline_facet Engineering & Technology
format Online Article
RSS Article
genre Journal Article
id rss_article:15045
institution FRELIP
journal_source_facet Big Data Mining and Analytics
publishDate 2025
publishDateSort 2025
record_format rss_article
spellingShingle A Hybrid Platform for Multi-Neurons Model with Optimum Co-Design Method
— — — — — — database management
Computer Science & IT
Engineering & Technology
sub_discipline_display Computer Science & IT
sub_discipline_facet Computer Science & IT
subject_display — — — — — — database management
Computer Science & IT
Engineering & Technology
— — — — — — database management
Computer Science & IT
Engineering & Technology
subject_facet — — — — — — database management
Computer Science & IT
Engineering & Technology
title A Hybrid Platform for Multi-Neurons Model with Optimum Co-Design Method
title_auth A Hybrid Platform for Multi-Neurons Model with Optimum Co-Design Method
title_full A Hybrid Platform for Multi-Neurons Model with Optimum Co-Design Method
title_fullStr A Hybrid Platform for Multi-Neurons Model with Optimum Co-Design Method
title_full_unstemmed A Hybrid Platform for Multi-Neurons Model with Optimum Co-Design Method
title_short A Hybrid Platform for Multi-Neurons Model with Optimum Co-Design Method
title_sort a hybrid platform for multi-neurons model with optimum co-design method
topic — — — — — — database management
Computer Science & IT
Engineering & Technology
url http://ieeexplore.ieee.org/document/11303236