The Rollover Risk in Delta Tricycles: A New Rollover Index and Its Robust Mitigation by Rear Differential Braking

Although there are efforts to electrify and diversify small vehicles, active safety on motorcycles and tricycles (also known as auto rickshaw, tuk-tuk, mototaxi, etc.) has been relegated until a few years ago. For instance, the electric tricycles (even the combustion ones) marketed today do not have...

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Main Authors: Martín Antonio Rodríguez Licea, Edgar Armando Vazquez Rodríguez, Francisco Javier Perez Pinal, Juan Prado Olivares
Format: Article
Language:English
Published: Hindawi Limited 2018-01-01
Series:Mathematical Problems in Engineering
Online Access:http://dx.doi.org/10.1155/2018/4972419
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spelling doaj-67e380ea9634499bb02936dbc37040c02020-11-24T21:58:57ZengHindawi LimitedMathematical Problems in Engineering1024-123X1563-51472018-01-01201810.1155/2018/49724194972419The Rollover Risk in Delta Tricycles: A New Rollover Index and Its Robust Mitigation by Rear Differential BrakingMartín Antonio Rodríguez Licea0Edgar Armando Vazquez Rodríguez1Francisco Javier Perez Pinal2Juan Prado Olivares3CONACYT-Instituto Tecnológico de Celaya, Departamento de Ingeniería Electrónica, Guanajuato 38010, MexicoInstituto Tecnológico de Celaya, Departamento de Ingeniería Electrónica, Guanajuato 38010, MexicoInstituto Tecnológico de Celaya, Departamento de Ingeniería Electrónica, Guanajuato 38010, MexicoInstituto Tecnológico de Celaya, Departamento de Ingeniería Electrónica, Guanajuato 38010, MexicoAlthough there are efforts to electrify and diversify small vehicles, active safety on motorcycles and tricycles (also known as auto rickshaw, tuk-tuk, mototaxi, etc.) has been relegated until a few years ago. For instance, the electric tricycles (even the combustion ones) marketed today do not have an active safety system that prevents or mitigates the risk of rollover, despite how prone they are to such a situation. The concern for the increase in its marketing is latent and, unfortunately, there are very few related studies. In this article, we present the obtaining and validation of a new rollover index for tricycles demonstrating its effectiveness in predicting and detecting the risk, even statically, by means of a simple quantity. In addition, a controller for the mitigation of the risk of rollover is presented which, by means of a Lyapunov type analysis, it is shown to be robust to changes in parameters, such as the center of gravity height, using a polytopic representation of the system and a differential braking strategy on the rear wheels. Numerical simulations, including video simulation captures, of the operation of the rollover mitigation system using widely recognized commercial software, are also presented. This work can be extended to vehicles with a suspension system or for trikes without autocamber.http://dx.doi.org/10.1155/2018/4972419
collection DOAJ
language English
format Article
sources DOAJ
author Martín Antonio Rodríguez Licea
Edgar Armando Vazquez Rodríguez
Francisco Javier Perez Pinal
Juan Prado Olivares
spellingShingle Martín Antonio Rodríguez Licea
Edgar Armando Vazquez Rodríguez
Francisco Javier Perez Pinal
Juan Prado Olivares
The Rollover Risk in Delta Tricycles: A New Rollover Index and Its Robust Mitigation by Rear Differential Braking
Mathematical Problems in Engineering
author_facet Martín Antonio Rodríguez Licea
Edgar Armando Vazquez Rodríguez
Francisco Javier Perez Pinal
Juan Prado Olivares
author_sort Martín Antonio Rodríguez Licea
title The Rollover Risk in Delta Tricycles: A New Rollover Index and Its Robust Mitigation by Rear Differential Braking
title_short The Rollover Risk in Delta Tricycles: A New Rollover Index and Its Robust Mitigation by Rear Differential Braking
title_full The Rollover Risk in Delta Tricycles: A New Rollover Index and Its Robust Mitigation by Rear Differential Braking
title_fullStr The Rollover Risk in Delta Tricycles: A New Rollover Index and Its Robust Mitigation by Rear Differential Braking
title_full_unstemmed The Rollover Risk in Delta Tricycles: A New Rollover Index and Its Robust Mitigation by Rear Differential Braking
title_sort rollover risk in delta tricycles: a new rollover index and its robust mitigation by rear differential braking
publisher Hindawi Limited
series Mathematical Problems in Engineering
issn 1024-123X
1563-5147
publishDate 2018-01-01
description Although there are efforts to electrify and diversify small vehicles, active safety on motorcycles and tricycles (also known as auto rickshaw, tuk-tuk, mototaxi, etc.) has been relegated until a few years ago. For instance, the electric tricycles (even the combustion ones) marketed today do not have an active safety system that prevents or mitigates the risk of rollover, despite how prone they are to such a situation. The concern for the increase in its marketing is latent and, unfortunately, there are very few related studies. In this article, we present the obtaining and validation of a new rollover index for tricycles demonstrating its effectiveness in predicting and detecting the risk, even statically, by means of a simple quantity. In addition, a controller for the mitigation of the risk of rollover is presented which, by means of a Lyapunov type analysis, it is shown to be robust to changes in parameters, such as the center of gravity height, using a polytopic representation of the system and a differential braking strategy on the rear wheels. Numerical simulations, including video simulation captures, of the operation of the rollover mitigation system using widely recognized commercial software, are also presented. This work can be extended to vehicles with a suspension system or for trikes without autocamber.
url http://dx.doi.org/10.1155/2018/4972419
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