Analysis of Correction for the Indonesian People's Accelerograph (ARI) based on MEMS ADXL 355

Indonesia, geographically situated on the Pacific Ring of Fire, has one of the highest potentials for earthquake and tsunami disasters worldwide, second only to Japan. These seismic events pose significant threats, including loss of life and infrastructure damage. One of the key strategies to mitiga...

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Main Authors: Adji Satrio, Nurul Hidayat, Agustya Adi Martha, Handi Sulistyo Widodo, Hapsoro Agung Nugroho, Rafi Syah Akram, Bayu Sutejo, Tio Azhar Prakoso
Format: Article
Language:English
Published: Universitas Pendidikan Mandalika (UNDIKMA) 2025-03-01
Series:Prisma Sains: Jurnal Pengkajian Ilmu dan Pembelajaran Matematika dan IPA IKIP Mataram
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Online Access:https://e-journal.undikma.ac.id/index.php/prismasains/article/view/15139
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author Adji Satrio
Nurul Hidayat
Agustya Adi Martha
Handi Sulistyo Widodo
Hapsoro Agung Nugroho
Rafi Syah Akram
Bayu Sutejo
Tio Azhar Prakoso
author_facet Adji Satrio
Nurul Hidayat
Agustya Adi Martha
Handi Sulistyo Widodo
Hapsoro Agung Nugroho
Rafi Syah Akram
Bayu Sutejo
Tio Azhar Prakoso
author_sort Adji Satrio
collection DOAJ
description Indonesia, geographically situated on the Pacific Ring of Fire, has one of the highest potentials for earthquake and tsunami disasters worldwide, second only to Japan. These seismic events pose significant threats, including loss of life and infrastructure damage. One of the key strategies to mitigate earthquake risks is the implementation of Earthquake Early Warning System (EEWS) technology, which heavily relies on the spatial distribution of accelerographs. The Indonesian People's Accelerograph (ARI) has been designed as an affordable and independently built solution to record ground vibration acceleration, utilizing the MEMS-based ADXL 355 sensor and an ESP32 microcontroller for efficient EEWS implementation. This study focuses on the development and correction of the ARI system to enhance instrument response accuracy by analyzing ground acceleration vibration data through an inversion-based method applied to ARI recordings. The results demonstrated that the ARI accelerograph exhibits pole values of 1.31260317e-07 and -2.43562359e-02, zero values of -1.23898531e-06 and 2.77232055, and a gain of 72.97. These findings confirm that the ARI accelerograph provides reliable seismic data, highlighting its potential as an essential tool in reducing earthquake risk and mitigating seismic disaster impacts through improved earthquake early warning capabilities.
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institution DOAJ
issn 2338-4530
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language English
publishDate 2025-03-01
publisher Universitas Pendidikan Mandalika (UNDIKMA)
record_format Article
series Prisma Sains: Jurnal Pengkajian Ilmu dan Pembelajaran Matematika dan IPA IKIP Mataram
spelling doaj-art-cbca6bff28ec4f2cb444a8e5e49bc5332025-08-20T02:44:23ZengUniversitas Pendidikan Mandalika (UNDIKMA)Prisma Sains: Jurnal Pengkajian Ilmu dan Pembelajaran Matematika dan IPA IKIP Mataram2338-45302540-78992025-03-0113212313410.33394/j-ps.v13i2.151396555Analysis of Correction for the Indonesian People's Accelerograph (ARI) based on MEMS ADXL 355Adji Satrio0Nurul Hidayat1Agustya Adi Martha2Handi Sulistyo Widodo3Hapsoro Agung Nugroho4Rafi Syah Akram5Bayu Sutejo6Tio Azhar Prakoso7Badan Meteorologi Klimatologi dan GeofisikaBadan Riset dan Inovasi Nasional, BogorBadan Riset dan Inovasi Nasional, BogorBadan Meteorologi Klimatologi dan GeofisikaBadan Meteorologi Klimatologi dan GeofisikaBadan Meteorologi Klimatologi dan GeofisikaBadan Riset dan Inovasi Nasional, BogorBadan Riset dan Inovasi Nasional, BogorIndonesia, geographically situated on the Pacific Ring of Fire, has one of the highest potentials for earthquake and tsunami disasters worldwide, second only to Japan. These seismic events pose significant threats, including loss of life and infrastructure damage. One of the key strategies to mitigate earthquake risks is the implementation of Earthquake Early Warning System (EEWS) technology, which heavily relies on the spatial distribution of accelerographs. The Indonesian People's Accelerograph (ARI) has been designed as an affordable and independently built solution to record ground vibration acceleration, utilizing the MEMS-based ADXL 355 sensor and an ESP32 microcontroller for efficient EEWS implementation. This study focuses on the development and correction of the ARI system to enhance instrument response accuracy by analyzing ground acceleration vibration data through an inversion-based method applied to ARI recordings. The results demonstrated that the ARI accelerograph exhibits pole values of 1.31260317e-07 and -2.43562359e-02, zero values of -1.23898531e-06 and 2.77232055, and a gain of 72.97. These findings confirm that the ARI accelerograph provides reliable seismic data, highlighting its potential as an essential tool in reducing earthquake risk and mitigating seismic disaster impacts through improved earthquake early warning capabilities.https://e-journal.undikma.ac.id/index.php/prismasains/article/view/15139accelerographmemsearthquakegainpoleszeros
spellingShingle Adji Satrio
Nurul Hidayat
Agustya Adi Martha
Handi Sulistyo Widodo
Hapsoro Agung Nugroho
Rafi Syah Akram
Bayu Sutejo
Tio Azhar Prakoso
Analysis of Correction for the Indonesian People's Accelerograph (ARI) based on MEMS ADXL 355
Prisma Sains: Jurnal Pengkajian Ilmu dan Pembelajaran Matematika dan IPA IKIP Mataram
accelerograph
mems
earthquake
gain
poles
zeros
title Analysis of Correction for the Indonesian People's Accelerograph (ARI) based on MEMS ADXL 355
title_full Analysis of Correction for the Indonesian People's Accelerograph (ARI) based on MEMS ADXL 355
title_fullStr Analysis of Correction for the Indonesian People's Accelerograph (ARI) based on MEMS ADXL 355
title_full_unstemmed Analysis of Correction for the Indonesian People's Accelerograph (ARI) based on MEMS ADXL 355
title_short Analysis of Correction for the Indonesian People's Accelerograph (ARI) based on MEMS ADXL 355
title_sort analysis of correction for the indonesian people s accelerograph ari based on mems adxl 355
topic accelerograph
mems
earthquake
gain
poles
zeros
url https://e-journal.undikma.ac.id/index.php/prismasains/article/view/15139
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