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Applying Multi-armed Bandit Algorithms to Computational Advertising

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arxiv 2011.10919 v1 pith:D6E2LJ6R submitted 2020-11-22 cs.IR cs.DScs.LG

classification cs.IRcs.DScs.LG
keywords advertisingcomputationallearningalgorithmsapplyingareabanditdata
verification ladder T0 review T1 audit T2 compute T3 formal
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Over the last two decades, we have seen extensive industrial research in the area of computational advertising. In this paper, our goal is to study the performance of various online learning algorithms to identify and display the best ads/offers with the highest conversion rates to web users. We formulate our ad-selection problem as a Multi-Armed Bandit problem which is a classical paradigm in Machine Learning. We have been applying machine learning, data mining, probability, and statistics to analyze big data in the ad-tech space and devise efficient ad selection strategies. This article highlights some of our findings in the area of computational advertising from 2011 to 2015.

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  1. From Theory to Practice with RAVEN-UCB: Addressing Non-Stationarity in Multi-Armed Bandits through Variance Adaptation

    cs.LG 2025-06 reject novelty 4.0 of 10

    RAVEN-UCB proposes a variance-adaptive UCB algorithm for non-stationary bandits, but the proof of its main regret bound is mathematically invalid.

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