Implementasi IoT Smart Trash untuk Pengelolaan Sampah: Studi Kasus "Yuk Resiki"
Keywords:
Implementasi IoT, Smart Trash, Pengelolaan SampahAbstract
Peningkatan populasi di perkotaan telah menyebabkan permasalahan serius dalam pengelolaan sampah, terutama dalam hal deteksi dan pemantauan volume sampah serta emisi gas berbahaya seperti metana. Penelitian sebelumnya telah mengembangkan sistem IoT (Internet of Things) untuk pemantauan sampah, namun sistem tersebut sering kali kurang akurat dalam pengukuran volume dan tidak mempertimbangkan aspek emisi gas berbahaya secara holistik. Dalam penelitian ini, kami memperkenalkan sistem IoT Smart Trash "Yuk Resiki" yang menggunakan sensor ultrasonik untuk mengukur volume sampah, sensor MQ-2 untuk mendeteksi gas metana, dan dua kipas dengan filter karbon aktif untuk memperlancar sirkulasi udara dan meminimalisir emisi gas berbahaya. Sistem ini memanfaatkan platform Firebase dan MIT App Inventor untuk memantau data secara real-time. Hasil penelitian menunjukkan peningkatan akurasi deteksi volume sampah sebesar 15% dan pengurangan emisi metana hingga 20% dibandingkan sistem sebelumnya. Penelitian ini diharapkan dapat memberikan solusi yang lebih efektif dalam pengelolaan sampah dan pengurangan emisi gas berbahaya di area perkotaan.
References
Gubbi, J., Buyya, R., Marusic, S., & Palaniswami, M. (2013). Internet of Things (IoT): A vision, architectural elements, and future directions. Future Generation Computer Systems, 29(7), 1645-1660.
Li, S., Da Xu, L., & Zhao, S. (2020). The internet of things: a survey. Information Systems Frontiers, 22(2), 243-259.
Zhang, Z., Saadeh, M., Shi, W., & Hou, Y. T. (2021). Security and Privacy in the Internet of Things: Challenges and Solutions. IEEE Wireless Communications, 28(2), 10-17.
Kumar, N., & Mallick, P. K. (2020). The Internet of Things: Insights into emerging trends and future possibilities. Future Internet, 12(10), 189.
Wolfert, S., Ge, L., Verdouw, C., & Bogaardt, M. J. (2019). Big Data in Smart Farming–A review. Agricultural Systems, 153, 69-80.
Zhang, L., Wang, J., & Liu, Y. (2020). Ultrasonic Sensor Technology and Applications. Sensors, 20(3), 456-467.
Li, X., Chen, Q., & Zhang, H. (2021). Integration of Ultrasonic Sensors in IoT for Smart Home Applications. Journal of Internet of Things, 7(4), 334-345.
Kim, S., Park, J., & Lee, D. (2022). Application of Ultrasonic Sensors in Autonomous Vehicles: A Review. IEEE Transactions on Intelligent Transportation Systems, 23(1), 567-578.
Wang, T., & Zhao, F. (2020). Environmental Monitoring Using Ultrasonic Sensors: A Case Study on Flood Management. Journal of Environmental Management, 256, 109948.
Garcia, R., Lopez, M., & Fernandez, J. (2021). Robotics and Automation: Using HCSR-04 for Obstacle Detection and Navigation. International Journal of Robotics Research, 39(8), 987-1002.
Li, Q., Zhang, H., & Liu, J. (2020). Sensitivity and Stability of MQ-2 Gas Sensor in Detecting Flammable Gases. Sensors and Actuators B: Chemical, 305, 127-135.
Chen, L., Wang, Y., & Zhou, X. (2021). Integration of MQ-2 Gas Sensors in Smart Home Systems for Enhanced Safety. Journal of Smart Home Systems, 12(2), 256-268.
Wang, T., & Li, F. (2020). Air Quality Monitoring Using Low-Cost Gas Sensors: A Case Study of MQ-2. Environmental Monitoring and Assessment, 192, 89-101.
Zhang, J., Sun, H., & Li, W. (2022). Industrial Applications of Gas Sensors: Monitoring Gas Leaks with MQ-2. Industrial Safety Journal, 34(1), 45-57.
Patel, R., & Singh, M. (2021). Educational Projects Using MQ-2 Gas Sensors: An Overview. International Journal of Educational Technology, 18(3), 213-224.
Goyal, R. (2021). Activated Carbon: Applications and Innovations in Environmental Protection. Journal of Environmental Science and Engineering, 15(2), 112-129.
Zhang, Y., & Liu, Z. (2021). Advances in Activated Carbon Filters for Air and Water Purification: A Review. Journal of Environmental Management, 293, 112-121.
Wu, H., & Wang, L. (2020). Nanotechnology and Activated Carbon Filters: Enhancing Efficiency and Sustainability. Journal of Water Process Engineering, 34, 101-108.
Chen, X., Li, Q., & Zhao, J. (2019). Medical Applications of Activated Carbon Filters: Air and Water Purification in Hospitals. Journal of Medical Engineering & Technology, 43(6), 322-332.
Zhang, H. (2020). The Evolution of Firebase: A Comprehensive Overview. Journal of Cloud Computing, 9(2), 123-135.
Davis, F. D. (1989). Perceived usefulness, perceived ease of use, and user acceptance of information technology. MIS Quarterly, 13(3), 319-340.
Davis, K., Thompson, J., & Williams, R. (2022). The impact of productivity apps on time management: A case study of MitApp. Journal of Mobile Computing, 7(1), 45-60.
Johnson, M., & Brown, A. (2019). Principles of mobile application development. Tech Innovations Journal, 5(2), 112-125.
Kumar, R., & Sharma, S. (2020). Mobile applications in daily life: An overview. International Journal of Mobile Computing, 9(4), 210-223.
Lee, H., & Kim, J. (2021). Educational mobile apps and student engagement: A comprehensive review. Journal of Educational Technology, 10(3), 78-95.
Smith, A., & Jones, B. (2020). The role of mobile health applications in self monitoring: A review. Journal of Health Informatics, 12(2), 134-145.
Chen, Y., Li, X., & Zhang, H. (2020). Wemos D1 and Its Applications in IoT: A Review. Journal of Internet of Things, 15(3), 178-189.
Li, Y., & Wang, J. (2020). Home Automation Systems Using Wemos D1: Design and Implementation. International Journal of Smart Home, 14(1), 45-58.
Zhou, Q., Wang, L., & Zhao, Y. (2021). Environmental Monitoring with IoT: Case Study of Wemos D1 Based System. Journal of Environmental Monitoring and Assessment, 23(4), 89-97.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2025 Muhamad Husni Nasuha, Hasbi Firmansyah

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

