Data Analytics for Improving Energy Efficiency in Short Sea Shipping

Fuente: arXiv
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Main Authors: Abuella, Mohamed, Fanaee, Hadi, Atou, M. Amine, Nowaczyk, Slawomir, Johansson, Simon, Faghani, Ethan
Format: Preprint
Published: 2024
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_version_ 1866910393441452032
author Abuella, Mohamed
Fanaee, Hadi
Atou, M. Amine
Nowaczyk, Slawomir
Johansson, Simon
Faghani, Ethan
author_facet Abuella, Mohamed
Fanaee, Hadi
Atou, M. Amine
Nowaczyk, Slawomir
Johansson, Simon
Faghani, Ethan
contents To meet the urgent requirements for the climate change mitigation, several proactive measures of energy efficiency have been implemented in maritime industry. Many of these practices depend highly on the onboard data of vessel's operation and environmental conditions. In this paper, a high resolution onboard data from passenger vessels in short-sea shipping (SSS) have been collected and preprocessed. We first investigated the available data to deploy it effectively to model the physics of the vessel, and hence the vessel performance. Since in SSS, the weather measurements and forecasts might have not been in temporal and spatial resolutions that accurately representing the actual environmental conditions. Then, We proposed a data-driven modeling approach for vessel energy efficiency. This approach addresses the challenges of data representation and energy modeling by combining and aggregating data from multiple sources and seamlessly integrates explainable artificial intelligence (XAI) to attain clear insights about the energy efficiency for a vessel in SSS. After that, the developed model of energy efficiency has been utilized in developing a framework for optimizing the vessel voyage to minimize the fuel consumption and meeting the constraint of arrival time. Moreover, we developed a spatial clustering approach for labeling the vessel paths to detect the paths for vessels with operating routes of repeatable and semi-repeatable paths.
format Preprint
id arxiv_https___arxiv_org_abs_2404_00902
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Data Analytics for Improving Energy Efficiency in Short Sea Shipping
Abuella, Mohamed
Fanaee, Hadi
Atou, M. Amine
Nowaczyk, Slawomir
Johansson, Simon
Faghani, Ethan
Computational Engineering, Finance, and Science
90Bxx, 90Cxx
I.2.7; I.6; H.4
To meet the urgent requirements for the climate change mitigation, several proactive measures of energy efficiency have been implemented in maritime industry. Many of these practices depend highly on the onboard data of vessel's operation and environmental conditions. In this paper, a high resolution onboard data from passenger vessels in short-sea shipping (SSS) have been collected and preprocessed. We first investigated the available data to deploy it effectively to model the physics of the vessel, and hence the vessel performance. Since in SSS, the weather measurements and forecasts might have not been in temporal and spatial resolutions that accurately representing the actual environmental conditions. Then, We proposed a data-driven modeling approach for vessel energy efficiency. This approach addresses the challenges of data representation and energy modeling by combining and aggregating data from multiple sources and seamlessly integrates explainable artificial intelligence (XAI) to attain clear insights about the energy efficiency for a vessel in SSS. After that, the developed model of energy efficiency has been utilized in developing a framework for optimizing the vessel voyage to minimize the fuel consumption and meeting the constraint of arrival time. Moreover, we developed a spatial clustering approach for labeling the vessel paths to detect the paths for vessels with operating routes of repeatable and semi-repeatable paths.
title Data Analytics for Improving Energy Efficiency in Short Sea Shipping
topic Computational Engineering, Finance, and Science
90Bxx, 90Cxx
I.2.7; I.6; H.4
url https://arxiv.org/abs/2404.00902