3.8 Proceedings Paper

Short-Term Traffic Prediction Using Long Short-Term Memory Neural Networks

Publisher

IEEE
DOI: 10.1109/BigDataCongress.2018.00015

Keywords

LSTM; neural networks; traffic prediction

Funding

  1. project BADA: Big Automotive Data Analytics in the funding program FFI: Strategic Vehicle Research and Innovation [2015-00677]
  2. project BIDAF: Big Data Analytics Framework for a Smart Society - KKS the Swedish Knowledge Foundation [20140221]
  3. Erasmus Mundus Joint Doctorate in Distributed Computing (EMJD-DC) programme - Education, Audiovisual and Culture Executive Agency (EACEA) of the European Commission [FPA 2012-0030]

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Short-term traffic prediction allows Intelligent Transport Systems to proactively respond to events before they happen. With the rapid increase in the amount, quality, and detail of traffic data, new techniques are required that can exploit the information in the data in order to provide better results while being able to scale and cope with increasing amounts of data and growing cities. We propose and compare three models for short-term road traffic density prediction based on Long Short-Term Memory (LSTM) neural networks. We have trained the models using real traffic data collected by Motorway Control System in Stockholm that monitors highways and collects flow and speed data per lane every minute from radar sensors. In order to deal with the challenge of scale and to improve prediction accuracy, we propose to partition the road network into road stretches and junctions, and to model each of the partitions with one or more LSTM neural networks. Our evaluation results show that partitioning of roads improves the prediction accuracy by reducing the root mean square error by the factor of 5. We show that we can reduce the complexity of LSTM network by limiting the number of input sensors, on average to 35% of the original number, without compromising the prediction accuracy.

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