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Inductive and transductive link prediction for criminal network analysis

  • Z. Ahmadi*
  • , H. H. Nguyen
  • , Z. Zhang
  • , D. Bozhkov
  • , D. Kudenko
  • , M. Jofre
  • , Francesco Calderoni
  • , N. Cohen
  • , Y. Solewicz
  • *Corresponding author
  • Leibniz University Hannover
  • Israel Police

Research output: Contribution to journalArticle

Abstract

The identification of potential offenders, who are more likely to form a new group and co-offend in a crime, plays an essential role in narrowing down law enforcement investigations and improving predictive policing. Once a crime is committed, focusing on linking it to previously reported crimes and reducing the inspections based on shreds of evidence and the behavior of offenders can also greatly help law enforcement agencies. However, classical investigative techniques are generally case-specific and rely mainly on police officers manually combining information from different sources. Therefore, automatic methods designed to support co-offender research and crime linkage would be beneficial. This paper proposes two graph-based machine learning frameworks to address these issues based on a burglary use case, the first being transductive link prediction, which seeks to predict emergent links between existing graph nodes (which represent offenders or criminal cases), and the other being inductive link prediction, where connections are found between a new case and existing nodes. Our experimental results show a prediction accuracy of 68.5% in co-offender prediction, a 75.83% predictive accuracy for transductive crime linkage, and up to 74.8% accuracy in inductive crime linkage.
Original languageEnglish
Pages (from-to)102063-102075
Number of pages13
JournalJournal of Computational Science
Volume72
Issue numberN/A
DOIs
Publication statusPublished - 2023

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 16 - Peace, Justice and Strong Institutions
    SDG 16 Peace, Justice and Strong Institutions

All Science Journal Classification (ASJC) codes

  • Theoretical Computer Science
  • General Computer Science
  • Modelling and Simulation

Keywords

  • Co-offender prediction
  • Crime linkage
  • Deep neural networks
  • Inductive link prediction
  • Machine learning
  • Repeat offenders
  • Transductive link prediction

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