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Abheesht Sharma

dblp:286/5129 · DBLP profile ↗
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2ranked-venue papers
0as first author
2since 2021 · last 2024
—ORCID · none

Domains — the database's venue-derived domains; a paper can count in several

Artificial intelligence and machine learning · 2 · 2 since 2021

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Artificial intelligence
2 papers
Deep learning architectures and training · 39% Transfer learning and domain adaptation · 23% Learning paradigms · 23%

Topics — the 5 heaviest of 6, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Machine learning › Deep learning architectures and training › deep learning systems
deep learning framework
0.812024
KerasCV and KerasNLP: Multi-framework Models · J. Mach. Learn. Res. 2024
Machine learning › Learning paradigms
multi-task learning
0.612022
Multitask Prompted Training Enables Zero-Shot Task Generalization · ICLR 2022
Machine learning › Transfer learning and domain adaptation › zero-shot learning
zero-shot task generalization
0.612022
Multitask Prompted Training Enables Zero-Shot Task Generalization · ICLR 2022
Natural language and speech › Language models and text generation
pre-trained language model
0.212024
KerasCV and KerasNLP: Multi-framework Models · J. Mach. Learn. Res. 2024
Machine learning › Deep learning architectures and training › foundation model
pretrained vision models
0.212024
KerasCV and KerasNLP: Multi-framework Models · J. Mach. Learn. Res. 2024

Methods — techniques the papers use, named apart from their topics

transfer learning · 0.8XLA compilation · 0.8multitask prompted training · 0.6
YearPublicationVenuePosition
2024 KerasCV and KerasNLP: Multi-framework Models
abstract
We present the Keras domain packages KerasCV and KerasNLP, extensions of the Keras API for Computer Vision and Natural Language Processing workflows, capable of running on either JAX, TensorFlow, or PyTorch. These domain packages are designed to enable fast experimentation, with a focus on ease-of-use and performance. We adopt a modular, layered design: at the library's lowest level of abstraction, we provide building blocks for creating models and data preprocessing pipelines, and at the library's highest level of abstraction, we provide pretrained "task" models for popular architectures such as Stable Diffusion, YOLOv8, GPT2, BERT, Mistral, CLIP, Gemma, T5, etc. Task models have built-in preprocessing, pretrained weights, and can be fine-tuned on raw inputs. To enable efficient training, we support XLA compilation for all models, and run all preprocessing via a compiled graph of TensorFlow operations using the tf.data API. The libraries are fully open-source (Apache 2.0 license) and available on GitHub. Keywords: KerasCV, KerasNLP, Keras multi-backend, Deep learning, Generative AI
Divyashree Shivakumar Sreepathihalli, François Chollet, Martin Görner, Kiranbir Sodhia, Ramesh Sampath, Tirth Patel, Hai Jin 0001, Neel Kovelamudi, Gabriel Rasskin, Samaneh Saadat, Luke Wood, Jonathan Bischof, Ian Stenbit, Abheesht Sharma, Anshuman Mishra
J. Mach. Learn. Res.16
2022 Multitask Prompted Training Enables Zero-Shot Task Generalization
Victor Sanh, Albert Webson, Colin Raffel, Stephen H. Bach, Lintang Sutawika, Zaid Alyafeai, Antoine Chaffin, Arnaud Stiegler, Arun Raja, Manan Dey, M Saiful Bari, Canwen Xu, Urmish Thakker, Shanya Sharma Sharma, Eliza Szczechla, Taewoon Kim 0002, Gunjan Chhablani, Nihal V. Nayak, Debajyoti Datta, Mike Tian-Jian Jiang, Matteo Manica, Sheng Shen 0001, Harshit Pandey, Rachel Bawden, Thomas Wang, Trishala Neeraj, Jos Rozen, Abheesht Sharma, Andrea Santilli, Thibault Févry, Jason Alan Fries, Ryan Teehan, Teven Le Scao, Stella Biderman, Leo Gao, Thomas Wolf 0008, Alexander M. Rush
ICLR31