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Entity-level stream classification: exploiting entity similarity to label the future observations referring to an entity

  • Vishnu Unnikrishnan*
  • , Christian Beyer
  • , Pawel Matuszyk
  • , Uli Niemann
  • , Rüdiger Pryss
  • , Winfried Schlee
  • , Eirini Ntoutsi
  • , Myra Spiliopoulou
  • *Corresponding author for this work

Research output: Contribution to journalArticleResearchpeer review

Abstract

Stream classification algorithms traditionally treat arriving instances as independent. However, in many applications, the arriving examples may depend on the “entity” that generated them, e.g. in product reviews or in the interactions of users with an application server. In this study, we investigate the potential of this dependency by partitioning the original stream of instances/“observations” into entity-centric substreams and by incorporating entity-specific information into the learning model. We propose a k-nearest-neighbour-inspired stream classification approach, in which the label of an arriving observation is predicted by exploiting knowledge on the observations belonging to this entity and to entities similar to it. For the computation of entity similarity, we consider knowledge about the observations and knowledge about the entity, potentially from a domain/feature space different from that in which predictions are made. To distinguish between cases where this knowledge transfer is beneficial for stream classification and cases where the knowledge on the entities does not contribute to classifying the observations, we also propose a heuristic approach based on random sampling of substreams using k Random Entities (kRE). Our learning scenario is not fully supervised: after acquiring labels for the initial m observations of each entity, we assume that no additional labels arrive and attempt to predict the labels of near-future and far-future observations from that initial seed. We report on our findings from three datasets.

Original languageEnglish
Pages (from-to)1-15
Number of pages15
JournalInternational Journal of Data Science and Analytics
Volume9
Issue number1
E-pub ahead of print22 Feb 2019
DOIs
Publication statusPublished - Feb 2020

Keywords

  • Entity similarity
  • kNN
  • Stream classification

ASJC Scopus subject areas

  • Computer Science Applications
  • Computational Theory and Mathematics
  • Information Systems
  • Modelling and Simulation
  • Applied Mathematics

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