iBikeSafe: A Multi-Parameter System for Monitoring, Evaluation and Visualization of Cycling Paths in Smart Cities Targeted at Cycling Adverse Conditions

The fast transformation of the urban centers, pushed by the impacts of climatic changes and the dramatic events of the COVID-19 Pandemic, will profoundly influence our daily mobility. This resulted scenario is expected to favor adopting cleaner and flexible modal solutions centered on bicycles and s...

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Main Authors: Franklin Oliveira, Daniel G. Costa, Luciana Lima, Ivanovitch Silva
Format: Article
Language:English
Published: MDPI AG 2021-07-01
Series:Smart Cities
Subjects:
Online Access:https://www.mdpi.com/2624-6511/4/3/56
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spelling doaj-c0627349a4834ebcb243fe53a19b01422021-09-26T01:25:30ZengMDPI AGSmart Cities2624-65112021-07-014561058108610.3390/smartcities4030056iBikeSafe: A Multi-Parameter System for Monitoring, Evaluation and Visualization of Cycling Paths in Smart Cities Targeted at Cycling Adverse ConditionsFranklin Oliveira0Daniel G. Costa1Luciana Lima2Ivanovitch Silva3UEFS-PGCC, State University of Feira de Santana, Feira de Santana 44036-900, BrazilUEFS-DTEC, Department of Technology, State University of Feira de Santana, Feira de Santana 44036-900, BrazilUFRN-DDCA, Department of Demography and Actuarial Science, Federal University of Rio Grande do Norte, Natal 59078-970, BrazilUFRN-DCA, Department of Computer Engineering and Automation, Federal University of Rio Grande do Norte, Natal 59078-970, BrazilThe fast transformation of the urban centers, pushed by the impacts of climatic changes and the dramatic events of the COVID-19 Pandemic, will profoundly influence our daily mobility. This resulted scenario is expected to favor adopting cleaner and flexible modal solutions centered on bicycles and scooters, especially as last-mile options. However, as the use of bicycles has rapidly increased, cyclists have been subject to adverse conditions that may affect their health and safety when cycling in urban areas. Therefore, whereas cities should implement mechanisms to monitor and evaluate adverse conditions in cycling paths, cyclists should have some effective mechanism to visualize the indirect quality of cycling paths, eventually supporting choosing more appropriate routes. Therefore, this article proposes a comprehensive multi-parameter system based on multiple independent subsystems, covering all phases of data collecting, formatting, transmission, and processing related to the monitoring, evaluating, and visualizing the quality of cycling paths in the perspective of adverse conditions that affect cyclist. The formal interactions of all modules are carefully described, as well as implementation and deployment details. Additionally, a case study is considered for a large city in Brazil, demonstrating how the proposed system can be adopted in a real scenario.https://www.mdpi.com/2624-6511/4/3/56internet of thingssmart cyclingsmart citiesbicycles
collection DOAJ
language English
format Article
sources DOAJ
author Franklin Oliveira
Daniel G. Costa
Luciana Lima
Ivanovitch Silva
spellingShingle Franklin Oliveira
Daniel G. Costa
Luciana Lima
Ivanovitch Silva
iBikeSafe: A Multi-Parameter System for Monitoring, Evaluation and Visualization of Cycling Paths in Smart Cities Targeted at Cycling Adverse Conditions
Smart Cities
internet of things
smart cycling
smart cities
bicycles
author_facet Franklin Oliveira
Daniel G. Costa
Luciana Lima
Ivanovitch Silva
author_sort Franklin Oliveira
title iBikeSafe: A Multi-Parameter System for Monitoring, Evaluation and Visualization of Cycling Paths in Smart Cities Targeted at Cycling Adverse Conditions
title_short iBikeSafe: A Multi-Parameter System for Monitoring, Evaluation and Visualization of Cycling Paths in Smart Cities Targeted at Cycling Adverse Conditions
title_full iBikeSafe: A Multi-Parameter System for Monitoring, Evaluation and Visualization of Cycling Paths in Smart Cities Targeted at Cycling Adverse Conditions
title_fullStr iBikeSafe: A Multi-Parameter System for Monitoring, Evaluation and Visualization of Cycling Paths in Smart Cities Targeted at Cycling Adverse Conditions
title_full_unstemmed iBikeSafe: A Multi-Parameter System for Monitoring, Evaluation and Visualization of Cycling Paths in Smart Cities Targeted at Cycling Adverse Conditions
title_sort ibikesafe: a multi-parameter system for monitoring, evaluation and visualization of cycling paths in smart cities targeted at cycling adverse conditions
publisher MDPI AG
series Smart Cities
issn 2624-6511
publishDate 2021-07-01
description The fast transformation of the urban centers, pushed by the impacts of climatic changes and the dramatic events of the COVID-19 Pandemic, will profoundly influence our daily mobility. This resulted scenario is expected to favor adopting cleaner and flexible modal solutions centered on bicycles and scooters, especially as last-mile options. However, as the use of bicycles has rapidly increased, cyclists have been subject to adverse conditions that may affect their health and safety when cycling in urban areas. Therefore, whereas cities should implement mechanisms to monitor and evaluate adverse conditions in cycling paths, cyclists should have some effective mechanism to visualize the indirect quality of cycling paths, eventually supporting choosing more appropriate routes. Therefore, this article proposes a comprehensive multi-parameter system based on multiple independent subsystems, covering all phases of data collecting, formatting, transmission, and processing related to the monitoring, evaluating, and visualizing the quality of cycling paths in the perspective of adverse conditions that affect cyclist. The formal interactions of all modules are carefully described, as well as implementation and deployment details. Additionally, a case study is considered for a large city in Brazil, demonstrating how the proposed system can be adopted in a real scenario.
topic internet of things
smart cycling
smart cities
bicycles
url https://www.mdpi.com/2624-6511/4/3/56
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