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Support Vector Machines and generalisation in HEP

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arxiv 1702.04686 v1 pith:BGTWJC2R submitted 2017-02-15 physics.data-an cs.LGhep-ex

Support Vector Machines and generalisation in HEP

classification physics.data-an cs.LGhep-ex
keywords discussperformanceexamplesgeneralisationhyper-parameterissuemachinesseveral
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We review the concept of Support Vector Machines (SVMs) and discuss examples of their use in a number of scenarios. Several SVM implementations have been used in HEP and we exemplify this algorithm using the Toolkit for Multivariate Analysis (TMVA) implementation. We discuss examples relevant to HEP including background suppression for $H\to\tau^+\tau^-$ at the LHC with several different kernel functions. Performance benchmarking leads to the issue of generalisation of hyper-parameter selection. The avoidance of fine tuning (over training or over fitting) in MVA hyper-parameter optimisation, i.e. the ability to ensure generalised performance of an MVA that is independent of the training, validation and test samples, is of utmost importance. We discuss this issue and compare and contrast performance of hold-out and k-fold cross-validation. We have extended the SVM functionality and introduced tools to facilitate cross validation in TMVA and present results based on these improvements.

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