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Conformal Prediction For Reliable Machine Learning Theory Adaptations And Applications 1st Edition Vineeth Balasubramanian

  • SKU: BELL-4674770
Conformal Prediction For Reliable Machine Learning Theory Adaptations And Applications 1st Edition Vineeth Balasubramanian
$ 31.00 $ 45.00 (-31%)

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Conformal Prediction For Reliable Machine Learning Theory Adaptations And Applications 1st Edition Vineeth Balasubramanian instant download after payment.

Publisher: Morgan Kaufmann
File Extension: PDF
File size: 9.55 MB
Pages: 299
Author: Vineeth Balasubramanian, Shen-Shyang Ho and Vladimir Vovk (Eds.)
ISBN: 9780123985378, 0123985374
Language: English
Year: 2014
Edition: 1

Product desciption

Conformal Prediction For Reliable Machine Learning Theory Adaptations And Applications 1st Edition Vineeth Balasubramanian by Vineeth Balasubramanian, Shen-shyang Ho And Vladimir Vovk (eds.) 9780123985378, 0123985374 instant download after payment.

The conformal predictions framework is a recent development in machine learning that can associate a reliable measure of confidence with a prediction in any real-world pattern recognition application, including risk-sensitive applications such as medical diagnosis, face recognition, and financial risk prediction. Conformal Predictions for Reliable Machine Learning: Theory, Adaptations and Applications captures the basic theory of the framework, demonstrates how to apply it to real-world problems, and presents several adaptations, including active learning, change detection, and anomaly detection. As practitioners and researchers around the world apply and adapt the framework, this edited volume brings together these bodies of work, providing a springboard for further research as well as a handbook for application in real-world problems.
  • Understand the theoretical foundations of this important framework that can provide a reliable measure of confidence with predictions in machine learning
  • Be able to apply this framework to real-world problems in different machine learning settings, including classification, regression, and clustering
  • Learn effective ways of adapting the framework to newer problem settings, such as active learning, model selection, or change detection

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