Design and Build a Straight Motion Experiment Set With Remote Laboratory Based on the Internet of Things

Arif Putra - Department of Physics, Universitas Negeri Padang, West Sumatra
- Asrizal - Department of Physics, Universitas Negeri Padang, West Sumatra
- Yohandri - Department of Physics, Universitas Negeri Padang, West Sumatra

Abstract


The era of the Industrial Revolution 4.0 is an era that has no boundaries to advance science-technology. Experimental tools are currently still using manual tools. The solution for the pandemic is a remote laboratory. Remote Laboratory is a remote laboratory using the internet with real components. This study aims to specification performance, design specifications on the experimental set of Uniform Motion with Remote Laboratory based on internet Of Things. The research carried out is included in engineering research. There are two methods of measuring data, namely direct measurement and indirect measurement. The experimental set has a size of 60x20 cm. The sensor used is infrared avoid obstacle which functions as a counter to the object's travel time. blynk application as tool control center. The Straight Motion experiment set with internet-based Remote Laboratory Of Things has an average accuracy of 98.6 % and an average accuracy of 0.96. The data that has been obtained shows that this experimental set can be used for GLB and GLBB.


Full Text:

PDF

References


L. D. Herliandry, N. Nurhasanah, M. E. Suban and H. Kuswanto, Pembelajaran pada masa pandemi COVID-19, Jurnal Teknologi Pendidikan, 2020.

F. Nuriansyah, Efektifitas Penggunaan Media Online Dalam Meningkatkan Hasil Belajar Pada Mahasiswa Pendidikan Ekonomi Saat Awal Pandemi Covid-19., Bandung: Jurnal Pendididikan Ekonomi Indonesia., 2020.

Supriyatna, I. R. Ermawati and R. A. Salsabila, Menentukan Pengukuran Kecepatan Simulasi Kereta Api Berbasis Microkontroler (Arduino) Dengan Menggunakan Bilangan Kompleks, vol. 4, Jakarta: Jurnal Teknoka, 2019.

A. R. Harefa, Peran Ilmu Fisika Dalam Kehidupan Sehari-Hari, Jurnal Warta Dharmawangsa, 2019.

H. Safitri, Persepsi Siswa Terhadap Pemanfaatan Laboratorium Virtual Dalam Pembelajaran Fisika Topik Gerak Lurus (Survey Terhadap Siswa Kelas X Sman 87 Jakarta Selatan), Jakarta: Jurnal Pendidikan, 2020.

Diki, S. K. Handayani and M. Satyadini, Design of Remote Laboratory at the Department of Biology, Faculty of Mathematics and Natural Sciences, Tanggerang Selatan: Universitas Terbuka, 2020.

H. Considine, A. Nafalski and Z. Nedi, Automatic verification of the remote laboratory NetLab, Australia: University of South Australia, 2019.

R. Costa, F. Pérola and C. Felgueiras, A remote laboratory to teach and learn the ATmega328p, Porto, portugal: Engineering Education Conference (EDUCON)., 2020.

A. Junaidi, Internet Of Things, Sejarah , Teknologi Dan Penerapannya, Bandung: Jurnal Ilmiah Informasi Terapan, 2015.

F. Supegina and E. . J. Setiawan, Rancang Bangun Iot Temperature Controller Untuk Enclosure Bts Berbasis Microcontroller Wemos Dan Android, Jakarta: Jurnal Teknologi Elektro, 2017.

Y. Octriany and Asrizal, Pembuatan Tool Modeling Eksperimen Bidang Miring Dengan Pengontrolan Sudut Kemiringan Otomatis Untuk Analisis Video Tracker, Padang: Pillar of Physics, 2019.

R. Nasruddin and I. Haq, Pembatasan sosial berskala besar (PSBB) dan masyarakat berpenghasilan rendah, Salam: Jurnal Sosial & Budaya Syar, 2020.

X. Chen, G. Song and Y. Zhang, Virtual and Remote Laboratory Development, Houstan: Asce, 2010.

C. A. Mayoz and A. L. d. S. Beraldo, FPGA Remote Laboratory, Spanyol: Universidad Pública de Navarra, 2021.

G. Esposito and G. Romagnoli, A Reference Model for SMEs understanding of Industry 4.0, Italy: Elsevier, 2021.

G. Lawson and S. Hermawati, Identifying The Role Of Human Factors In Industry, Inggris: Contemporary Ergonomics and Human Factors, 2019.

V. Varma and . K. Venusamy, Management, Information Technology & Social Science, India: Bharti, 2021.

I. Karabegović, Digital Technology as the key Factor in the Fourth Industrial Revolution - Industry 4.0, Inggris: International Journal of Engineering and Advanced Research Technology, 2017.

T. Singhal, Coronavirus Disease-2019, China: Pubmed Central, 2020.

V. Brinks and O. Ibert, From Corona Virus To Corona Crisis: The Value Of An Analytical And Geographical Understanding Of Crisis, German: Institute for Research on Society and Space, 2020.

Rismawati, Ratman and Adi Imrah dewi, Penerapan Metode Eksperimen dalam Meningkatkan Pemahaman Konsep Energi Panas pada Siswa Kelas IV SDN No. 1, Sulawesi Tengah: Jurnal Kreatif Tadulako, 2016.

V. D. Gowda, S. Sridhara, K. B. Naveen, M. Ramesha and N. G. Pai, Internet Of Things: Internet Revolution, Impact, Technology, India: Advances in Mathematics: Scientific, 2020.

S. Kumar, . P. Tiwari and . M. Zymbler , Internet Of Things Is A Revolutionary Approach For Future Technology Enhancement, India: Journal Of Big Data, 2019.

P. Karuppusamy, A Sensor based IoT Monitoring System for Electrical Devices using Blynk framework, India: Journal of Electronics and Informatics, 2020.

D. A. Hasan and A. G. Ismaeel, Designing ECG Monitoring Healthcare System Based on Internet of Things Blynk Application, Iraq: ournal of Applied Science and Technology, 2020.




DOI: http://dx.doi.org/10.24036/12603171074