Smart Trash Bin Berbasis Internet Of Things Menggunakan Suplai dari Panel Surya
DOI:
https://doi.org/10.33379/gtech.v7i3.2777Keywords:
Arduino IDE, Hybrid, Photovoltaic, Tempat sampah otomatisAbstract
An automatic trash can is a tool that makes it easier for someone to dispose of trash. The lid of the trash can that can open and close automatically aims to avoid infection with bacteria on the lid. Garbage buildup can cause bad odors to air pollution. Outdoor automatic trash cans are very difficult to access electricity, so a portable power supply is needed. This design aims to manufacture Internet of Things (IoT) based automatic trash cans using a PV-grid system. This system adds the function of an automatic trash can, namely to provide notifications to cleaning staff when the trash can is full. The electricity supply system uses a hybrid of two feeders: photovoltaic (PV) and conventional electricity (grid). An automatic trash can control system was designed using ultrasonic sensors, Arduino IDE microcontroller modules, and Blynk. The test results show that fully charging the battery takes 5 hours and sends a notification if the ultrasonic sensor detects trash at a distance of 15 cm for 5 seconds. The notification system was also successfully sent using e-mail media
References
Addo, P. A., Dwomoh, L., & Ofori, C. (2022). Automatic Maintenance Alert System for Heavy Duty Haulage Machines. Jurnal Nasional Teknik Elektro. https://doi.org/10.25077/jnte.v11n2.1002.2022
Afandi, M. A., Hikmah, I., & Agustinah, C. (2021). Microcontroller-based Artificial Lighting to Help Growth the Seedling Pakcoy. Jurnal Nasional Teknik Elektro. https://doi.org/10.25077/jnte.v10n3.943.2021
Amrozi, Y., Wardani, S. D. K., & Ramadhan, R. (2020). Quo Vadis Pengembangan Rekayasa Perangkat Lunak. G-Tech: Jurnal Teknologi Terapan, 3(2), 237–244. https://doi.org/10.33379/gtech.v3i2.427
Ardi, P. (2018). Pengembangan Media Pembelajaran Microcontroler Plug And Play Pada Mata Kuliah Microcontroler S1 Pendidikan Teknik Elektro Unipma. G-Tech: Jurnal Teknologi Terapan, 1(2), 90–92. https://doi.org/10.33379/gtech.v1i2.274
Avsar Erumit, B., Akerson, V. L., & Buck, G. A. (2021). Multiculturalism in higher education: Experiences of international teaching assistants and their students in science and math classrooms. Cultural Studies of Science Education, 16(1), 251–278. https://doi.org/10.1007/s11422-020-09996-2
Baharuddin, Hidayat, A. A., Andre, H., & Angraini, R. (2022). The Design of Soil Temperature and Humidity Monitoring Systems with IoT-Based LoRa Technology. JURNAL NASIONAL TEKNIK ELEKTRO. https://doi.org/10.25077/jnte.v11n3.1074.2022
Chassereau, K. D. (n.d.). The Cultural Studies of Science Education.
Darminto, D., Asih, R., Priyanto, B., Baqiya, M. A., Ardiani, I. S., Nadiyah, K., Laila, A. Z., Prayogi, S., Tunmee, S., Nakajima, H., Fauzi, A. D., Naradipa, M. A., Diao, C., & Rusydi, A. (2023). Unrevealing tunable resonant excitons and correlated plasmons and their coupling in new amorphous carbon-like for highly efficient photovoltaic devices. Scientific Reports, 13(1), Article 1. https://doi.org/10.1038/s41598-023-31552-5
Ghufron, S., & Prayogi, S. (2023). Cooling System in Machine Operation at Gas Engine Power Plant at PT Multidaya Prima Elektrindo. Journal of Artificial Intelligence and Digital Business (RIGGS), 1(2), Article 2. https://doi.org/10.31004/riggs.v1i2.21
Hakim, I. N., Amdrian, A. L., Pradana, A. B., & Wardana, A. N. I. (2020). Pengembangan Electronic Load Controller untuk Self-Excited Induction Generator Berbasis Penyearah Tiga Fase Menggunakan Raspberry Pi. JURNAL NASIONAL TEKNIK ELEKTRO, 159–170. https://doi.org/10.25077/jnte.v9n3.802.2020
Hamdani, D., Prayogi, S., Cahyono, Y., Yudoyono, G., & Darminto, D. (2022). The influences of the front work function and intrinsic bilayer (i1, i2) on p-i-n based amorphous silicon solar cell’s performances: A numerical study. Cogent Engineering, 9(1), 2110726. https://doi.org/10.1080/23311916.2022.2110726
Logan, B. E., Rossi, R., Baek, G., Shi, L., O’Connor, J., & Peng, W. (2020). Energy Use for Electricity Generation Requires an Assessment More Directly Relevant to Climate Change. ACS Energy Letters, 5(11), 3514–3517. https://doi.org/10.1021/acsenergylett.0c02093
Munazilah, S., & Yulianto, A. (2021). Development of I-SETS Thematic Teaching Materials to Improve Student Character. Phenomenon : Jurnal Pendidikan MIPA, 11(2), Article 2. https://doi.org/10.21580/phen.2021.11.2.8428
Obeidat, M. A., Qawaqneh, M., Mansour, A. M., & Abdallah, J. (2021). Smart Distribution System using Fuzzy Logic Control. 2021 12th International Renewable Engineering Conference (IREC), 1–5. https://doi.org/10.1109/IREC51415.2021.9427799
Olitsky, S. (2021). Identity, agency, and the internal conversations of science and math teachers implementing instructional reforms in high-need urban schools. Cultural Studies of Science Education, 16(1), 19–45. https://doi.org/10.1007/s11422-019-09965-4
Pawarangan, I., & Jefriyanto, W. (2021). Identification of Electrical Properties of Bio-battery based on Spent Coffee Grounds. BULETIN FISIKA, 23(2), Article 2. https://doi.org/10.24843/BF.2022.v23.i02.p03
Prayogi, S. (2023). Karakteristik Sel Surya Polikristal Pada Sistem Sun Simulator Menggunakan Lampu Halogen Bulm. G-Tech: Jurnal Teknologi Terapan, 7(1), 103–108. https://doi.org/10.33379/gtech.v7i1.1929
Prayogi, S., Ayunis, A., Cahyono, Y., & Darminto, D. (2023). N-type H2-doped amorphous silicon layer for solar-cell application. Materials for Renewable and Sustainable Energy. https://doi.org/10.1007/s40243-023-00232-9
Prayogi, S., Cahyono, Y., & Darminto, D. (2022). Electronic structure analysis of a-Si: H p-i1-i2-n solar cells using ellipsometry spectroscopy. Optical and Quantum Electronics, 54(11), 732. https://doi.org/10.1007/s11082-022-04044-5
Prayogi, S., Silviana, F., & Saminan, S. (2023). Development of an Inexpensive Spectrometer Tool with a Tracker to Investigate Light Spectrum. Jurnal Pendidikan MIPA, 24(1), Article 1.
Rismawan, R., & Toifur, M. (2018). Signal processing of C-RTD Sensor output as the input to the instrument of low temperature monitoring using Arduino Uno Rev.3. Indonesian Review of Physics, 1(2), Article 2. https://doi.org/10.12928/irip.v1i2.809
Strohmaier, S., & Zwierzchowski, G. (2011). Comparison of 60Co and 192Ir sources in HDR brachytherapy. Journal of Contemporary Brachytherapy, 3(4), 199–208. https://doi.org/10.5114/jcb.2011.26471
Utari, I. D., Meilasari, F., & Arifin. (2023). Analisis Konduktivitas Listrik Lindi Tempat Pembuangan Akhir (TPA) Batu Layang Terhadap Jarak Pemukiman Masyarakat. G-Tech: Jurnal Teknologi Terapan, 7(2), 683–692. https://doi.org/10.33379/gtech.v7i2.2392
Wu, Q., Chen, H., & Liu, B. (2021). Design and Application of Mechanical Control System Based on Computer. Journal of Physics: Conference Series, 1992(2), 022063. https://doi.org/10.1088/1742-6596/1992/2/022063
Zainuddin, Z., Syukri, M., Prayogi, S., & Luthfia, S. (2022). Implementation of Engineering Everywhere in Physics LKPD Based on STEM Approach to Improve Science Process Skills. Jurnal Pendidikan Sains Indonesia (Indonesian Journal of Science Education), 10(2), Article 2. https://doi.org/10.24815/jpsi.v10i2.23130
Downloads
Published
Issue
Section
License
Copyright (c) 2023 Rizky Agung Ramadhan, Giganta Rose Kakke, I Nur Fajar, Soni Prayogi

This work is licensed under a Creative Commons Attribution 4.0 International License.









