Predicting Destinations by Nearest Neighbor Search on Training Vessel Routes

09/28/2018
by   Valentin Roşca, et al.
0

The DEBS Grand Challenge 2018 is set in the context of maritime route prediction. Vessel routes are modeled as streams of Automatic Identification System (AIS) data points selected from real-world tracking data. The challenge requires to correctly estimate the destination ports and arrival times of vessel trips, as early as possible. Our proposed solution partitions the training vessel routes by reported destination port and uses a nearest neighbor search to find the training routes that are closer to the query AIS point. Particular improvements have been included as well, such as a way to avoid changing the predicted ports frequently within one query route and automating the parameters tuning by the use of a genetic algorithm. This leads to significant improvements on the final score.

READ FULL TEXT

page 1

page 2

research
12/15/2022

Exact fixed-radius nearest neighbor search with an application to clustering

Fixed-radius nearest-neighbor search is a common database operation that...
research
05/31/2017

Superhuman Accuracy on the SNEMI3D Connectomics Challenge

For the past decade, convolutional networks have been used for 3D recons...
research
03/07/2022

Improved Search of Relevant Points for Nearest-Neighbor Classification

Given a training set P ⊂ℝ^d, the nearest-neighbor classifier assigns any...
research
06/28/2020

Social Distancing is Good for Points too!

The nearest-neighbor rule is a well-known classification technique that,...
research
04/30/2022

Chromatic k-Nearest Neighbor Queries

Let P be a set of n colored points. We develop efficient data structures...
research
03/18/2021

Nearest-Neighbor Queries in Customizable Contraction Hierarchies and Applications

Customizable contraction hierarchies are one of the most popular route p...
research
10/25/2017

Anatomical labeling of brain CT scan anomalies using multi-context nearest neighbor relation networks

This work is an endeavor to develop a deep learning methodology for auto...

Please sign up or login with your details

Forgot password? Click here to reset