Performance evaluation of accelerometers ADXL345 and MPU6050 exposed to random vibrational input

Detalhes bibliográficos
Autor(a) principal: Rodrigues, João Victor Oliveira
Data de Publicação: 2021
Outros Autores: Pedroso, Marcos Paulo Gonçalves, Barbosa Silva, Flávio Fernandes, Leão Junior, Reginaldo Gonçalves
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Research, Society and Development
Texto Completo: https://rsdjournal.org/index.php/rsd/article/view/23082
Resumo: The use of vibration monitors is a well-established practice in industrial maintenance, usually vibration sensors are positioned at specific points on the monitored machinery and data are continuously collected to feed a machine operating health control system. Nevertheless, the technology for obtaining the signal, its treatment and analysis is generally expensive, and the financial return is not evident, which justifies the development of low-cost alternatives technologies. In this work was performed an analysis of the responses of two Micro-Electro-Mechanical accelerometers, models ADXL345 and MPU6050, exposed to a low intensity random signal and standard operating frequency. The objective of the analysis was to verify the capacity of these devices to be used as mechanical vibration sensors for rotating machines. For this purpose, offset shift analyzes of the sensors due to the Earth's gravitational field were performed, as well as vibrational spectrum and rectification errors analysis under multiple conditions. The data pointed to a greater uniformity of the MPU6050 response, while several behavioral anomalies were seen in the ADXL345, when these sensors are exposed to the same mechanical signal. The qualitative and quantitative behavior of MPU6050 rectification error was consistent with reported in the literature. It was noted that the methodology used can profile the behavior of sensors, however, it is not sufficient to safely justify the inaccuracies, requiring that the tests be performed on a statistically representative number of sensors from different manufacturers and batches.
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spelling Performance evaluation of accelerometers ADXL345 and MPU6050 exposed to random vibrational input Evaluación del desempeño de los acelerómetros ADXL345 y MPU6050 expuestos a vibraciones aleatoriasAvaliação do desempenho dos acelerômetros ADXL345 e MPU6050 expostos a vibrações randômicasMEMSAcelerómetrosVibraciones mecânicasOffset shiftsErrores de rectificación.MEMSAccelerometersMechanical vibrationsOffset shiftsRectification errors.MEMSAcelerômetrosVibrações mecânicasOffset shiftsErros de retificação.The use of vibration monitors is a well-established practice in industrial maintenance, usually vibration sensors are positioned at specific points on the monitored machinery and data are continuously collected to feed a machine operating health control system. Nevertheless, the technology for obtaining the signal, its treatment and analysis is generally expensive, and the financial return is not evident, which justifies the development of low-cost alternatives technologies. In this work was performed an analysis of the responses of two Micro-Electro-Mechanical accelerometers, models ADXL345 and MPU6050, exposed to a low intensity random signal and standard operating frequency. The objective of the analysis was to verify the capacity of these devices to be used as mechanical vibration sensors for rotating machines. For this purpose, offset shift analyzes of the sensors due to the Earth's gravitational field were performed, as well as vibrational spectrum and rectification errors analysis under multiple conditions. The data pointed to a greater uniformity of the MPU6050 response, while several behavioral anomalies were seen in the ADXL345, when these sensors are exposed to the same mechanical signal. The qualitative and quantitative behavior of MPU6050 rectification error was consistent with reported in the literature. It was noted that the methodology used can profile the behavior of sensors, however, it is not sufficient to safely justify the inaccuracies, requiring that the tests be performed on a statistically representative number of sensors from different manufacturers and batches.El uso de monitores de vibración es una práctica bien establecida en el mantenimiento industrial, generalmente los sensores de vibración se colocan en puntos específicos de la maquinaria monitoreada y los datos se recopilan continuamente para alimentar un sistema de control de integridad operacional. Sin embargo, la tecnología para obtener la señal, procesarla y analizarla es generalmente costosa y la rentabilidad económica no es evidente, lo que justifica el desarrollo de tecnologías alternativas de bajo costo. En este trabajo se realizó un análisis de las respuestas de dos acelerómetros microelectromecánicos, modelos ADXL345 y MPU6050, expuestos a una señal aleatoria de baja intensidad y frecuencia de operación estándar. El objetivo del análisis fue verificar la capacidad de estos dispositivos para ser utilizados como sensores mecánicos de vibración en máquinas rotativas. Para ello, se realizaron análisis de offset shift de los sensores debido al campo gravitacional terrestre, así como análisis de espectro vibratorio y errores de rectificación. Los datos apuntaban a una mayor uniformidad de la respuesta del MPU6050, mientras que se observaron varias anomalías de comportamiento en el ADXL345, cuando estos sensores están expuestos a la misma señal mecánica. El comportamiento cualitativo y cuantitativo del error de rectificación del MPU6050 fue consistente con lo reportado en la literatura. También se observó que la metodología utilizada puede perfilar el comportamiento de los sensores, sin embargo, no es suficiente para justificar con seguridad las inexactitudes, requiriendo que las pruebas se realicen en un número estadísticamente representativo de sensores de diferentes fabricantes y lotes.O uso de monitores de vibração é uma prática bem estabelecida na manutenção industrial, geralmente sensores de vibração são posicionados em pontos específicos do maquinário monitorado e dados são continuamente coletados para alimentar um sistema de controle de integridade operacional. No entanto, a tecnologia de obtenção do sinal, tratamento e análise geralmente é cara e o retorno financeiro não evidente, o que justifica o desenvolvimento de tecnologias alternativas de baixo custo. Neste trabalho foi realizada uma análise das respostas de dois acelerômetros microeletromecânicos, modelos ADXL345 e MPU6050, expostos a um sinal aleatório de baixa intensidade e frequência de operação padrão. O objetivo da análise foi verificar a capacidade desses dispositivos em serem utilizados como sensores mecânicos de vibração em máquinas rotativas. Para tanto, foram realizadas análises de offset shift dos sensores devido ao campo gravitacional terrestre, bem como análises de espectro vibracional e erros de retificação. Os dados apontaram para uma maior uniformidade da resposta do MPU6050, enquanto várias anomalias comportamentais foram observadas no ADXL345, quando esses sensores são expostos ao mesmo sinal mecânico. O comportamento qualitativo e quantitativo do erro de retificação MPU6050 foi consistente com o relatado na literatura. Observou-se ainda que a metodologia utilizada pode traçar o perfil do comportamento dos sensores, porém, não é suficiente para justificar com segurança as imprecisões, exigindo que os testes sejam realizados em um número estatisticamente representativo de sensores de diferentes fabricantes e lotes.Research, Society and Development2021-11-27info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionapplication/pdfhttps://rsdjournal.org/index.php/rsd/article/view/2308210.33448/rsd-v10i15.23082Research, Society and Development; Vol. 10 No. 15; e286101523082Research, Society and Development; Vol. 10 Núm. 15; e286101523082Research, Society and Development; v. 10 n. 15; e2861015230822525-3409reponame:Research, Society and Developmentinstname:Universidade Federal de Itajubá (UNIFEI)instacron:UNIFEIenghttps://rsdjournal.org/index.php/rsd/article/view/23082/20342Copyright (c) 2021 João Victor Oliveira Rodrigues; Marcos Paulo Gonçalves Pedroso; Flávio Fernandes Barbosa Silva; Reginaldo Gonçalves Leão Juniorhttps://creativecommons.org/licenses/by/4.0info:eu-repo/semantics/openAccessRodrigues, João Victor Oliveira Pedroso, Marcos Paulo GonçalvesBarbosa Silva, Flávio Fernandes Leão Junior, Reginaldo Gonçalves2021-12-06T10:13:53Zoai:ojs.pkp.sfu.ca:article/23082Revistahttps://rsdjournal.org/index.php/rsd/indexPUBhttps://rsdjournal.org/index.php/rsd/oairsd.articles@gmail.com2525-34092525-3409opendoar:2024-01-17T09:42:03.766008Research, Society and Development - Universidade Federal de Itajubá (UNIFEI)false
dc.title.none.fl_str_mv Performance evaluation of accelerometers ADXL345 and MPU6050 exposed to random vibrational input
Evaluación del desempeño de los acelerómetros ADXL345 y MPU6050 expuestos a vibraciones aleatorias
Avaliação do desempenho dos acelerômetros ADXL345 e MPU6050 expostos a vibrações randômicas
title Performance evaluation of accelerometers ADXL345 and MPU6050 exposed to random vibrational input
spellingShingle Performance evaluation of accelerometers ADXL345 and MPU6050 exposed to random vibrational input
Rodrigues, João Victor Oliveira
MEMS
Acelerómetros
Vibraciones mecânicas
Offset shifts
Errores de rectificación.
MEMS
Accelerometers
Mechanical vibrations
Offset shifts
Rectification errors.
MEMS
Acelerômetros
Vibrações mecânicas
Offset shifts
Erros de retificação.
title_short Performance evaluation of accelerometers ADXL345 and MPU6050 exposed to random vibrational input
title_full Performance evaluation of accelerometers ADXL345 and MPU6050 exposed to random vibrational input
title_fullStr Performance evaluation of accelerometers ADXL345 and MPU6050 exposed to random vibrational input
title_full_unstemmed Performance evaluation of accelerometers ADXL345 and MPU6050 exposed to random vibrational input
title_sort Performance evaluation of accelerometers ADXL345 and MPU6050 exposed to random vibrational input
author Rodrigues, João Victor Oliveira
author_facet Rodrigues, João Victor Oliveira
Pedroso, Marcos Paulo Gonçalves
Barbosa Silva, Flávio Fernandes
Leão Junior, Reginaldo Gonçalves
author_role author
author2 Pedroso, Marcos Paulo Gonçalves
Barbosa Silva, Flávio Fernandes
Leão Junior, Reginaldo Gonçalves
author2_role author
author
author
dc.contributor.author.fl_str_mv Rodrigues, João Victor Oliveira
Pedroso, Marcos Paulo Gonçalves
Barbosa Silva, Flávio Fernandes
Leão Junior, Reginaldo Gonçalves
dc.subject.por.fl_str_mv MEMS
Acelerómetros
Vibraciones mecânicas
Offset shifts
Errores de rectificación.
MEMS
Accelerometers
Mechanical vibrations
Offset shifts
Rectification errors.
MEMS
Acelerômetros
Vibrações mecânicas
Offset shifts
Erros de retificação.
topic MEMS
Acelerómetros
Vibraciones mecânicas
Offset shifts
Errores de rectificación.
MEMS
Accelerometers
Mechanical vibrations
Offset shifts
Rectification errors.
MEMS
Acelerômetros
Vibrações mecânicas
Offset shifts
Erros de retificação.
description The use of vibration monitors is a well-established practice in industrial maintenance, usually vibration sensors are positioned at specific points on the monitored machinery and data are continuously collected to feed a machine operating health control system. Nevertheless, the technology for obtaining the signal, its treatment and analysis is generally expensive, and the financial return is not evident, which justifies the development of low-cost alternatives technologies. In this work was performed an analysis of the responses of two Micro-Electro-Mechanical accelerometers, models ADXL345 and MPU6050, exposed to a low intensity random signal and standard operating frequency. The objective of the analysis was to verify the capacity of these devices to be used as mechanical vibration sensors for rotating machines. For this purpose, offset shift analyzes of the sensors due to the Earth's gravitational field were performed, as well as vibrational spectrum and rectification errors analysis under multiple conditions. The data pointed to a greater uniformity of the MPU6050 response, while several behavioral anomalies were seen in the ADXL345, when these sensors are exposed to the same mechanical signal. The qualitative and quantitative behavior of MPU6050 rectification error was consistent with reported in the literature. It was noted that the methodology used can profile the behavior of sensors, however, it is not sufficient to safely justify the inaccuracies, requiring that the tests be performed on a statistically representative number of sensors from different manufacturers and batches.
publishDate 2021
dc.date.none.fl_str_mv 2021-11-27
dc.type.driver.fl_str_mv info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion
format article
status_str publishedVersion
dc.identifier.uri.fl_str_mv https://rsdjournal.org/index.php/rsd/article/view/23082
10.33448/rsd-v10i15.23082
url https://rsdjournal.org/index.php/rsd/article/view/23082
identifier_str_mv 10.33448/rsd-v10i15.23082
dc.language.iso.fl_str_mv eng
language eng
dc.relation.none.fl_str_mv https://rsdjournal.org/index.php/rsd/article/view/23082/20342
dc.rights.driver.fl_str_mv https://creativecommons.org/licenses/by/4.0
info:eu-repo/semantics/openAccess
rights_invalid_str_mv https://creativecommons.org/licenses/by/4.0
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
dc.publisher.none.fl_str_mv Research, Society and Development
publisher.none.fl_str_mv Research, Society and Development
dc.source.none.fl_str_mv Research, Society and Development; Vol. 10 No. 15; e286101523082
Research, Society and Development; Vol. 10 Núm. 15; e286101523082
Research, Society and Development; v. 10 n. 15; e286101523082
2525-3409
reponame:Research, Society and Development
instname:Universidade Federal de Itajubá (UNIFEI)
instacron:UNIFEI
instname_str Universidade Federal de Itajubá (UNIFEI)
instacron_str UNIFEI
institution UNIFEI
reponame_str Research, Society and Development
collection Research, Society and Development
repository.name.fl_str_mv Research, Society and Development - Universidade Federal de Itajubá (UNIFEI)
repository.mail.fl_str_mv rsd.articles@gmail.com
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