Main Article Content

Abstract

Penelitian ini mengimplementasikan sistem cerdas berbasis logika fuzzy Mamdani pada alat air purifier hybrid yang menggunakan tanaman Sansevieria sebagai media penyaring polutan. Sistem dirancang untuk memantau kualitas udara dalam ruangan dengan mendeteksi konsentrasi partikel debu (PM2.5 dan PM10) menggunakan Dust Sensor dan gas berbahaya menggunakan sensor MQ-2. Data sensor diolah menggunakan mikrokontroler Arduino Uno dengan metode fuzzy logic untuk mengatur kecepatan motor DC fan secara otomatis. Dengan penerapan ini, diharapkan sistem mampu meningkatkan efisiensi penyaringan udara secara adaptif berdasarkan tingkat polutan yang terdeteksi, sehingga menciptakan lingkungan dalam ruangan yang lebih sehat dan nyaman dengan solusi yang ramah lingkungan.

Keywords

Fuzzy Logic Kualitas Udara Air Purifier Tanaman

Article Details

References

  1. G. Syuhada Et Al., “Impacts Of Air Pollution On Health And Cost Of Illness In Jakarta, Indonesia,” Int J Environ Res Public Health, Vol. 20, No. 4, Feb. 2023, Doi: 10.3390/Ijerph20042916.
  2. Richi Andrianto, Nopi Purnomo, And Yuda Irawan, “Application Of Fuzzy Logic Mamdani In Iot-Based Air Quality Monitoring Systems,” The Indonesian Journal Of Computer Science, Vol. 13, No. 5, Sep. 2024, Doi: 10.33022/Ijcs.V13i5.4291.
  3. E. Abana, M. J. Palatan, C. P. Pascual, C. M. Mateos, And S. A. Galasinao, “Fuzzy Logic Based Fan Controller Of Indoor Air Purifier Fan,” Indonesian Journal Of Electrical Engineering And Computer Science, Vol. 17, No. 3, Pp. 1266–1274, 2019, Doi: 10.11591/Ijeecs.V17.I3.Pp1266-1274.
  4. H. Iswoyo, Abd. H. Bahrun, And W. Ganing, “Phytoremidation By Sansevieria Sp. Through Absorption Of Carbon Monoxide (Co),” Agrovigor: Jurnal Agroekoteknologi, Vol. 16, No. 1, Pp. 46–52, May 2023, Doi: 10.21107/Agrovigor.V16i1.18258.
  5. H. F. Hawari, A. A. Zainal, And M. R. Ahmad, “Development Of Real Time Internet Of Things (Iot) Based Air Quality Monitoring System,” Indonesian Journal Of Electrical Engineering And Computer Science, Vol. 13, No. 3, Pp. 1039–1047, Mar. 2019, Doi: 10.11591/Ijeecs.V13.I3.Pp1039-1047.
  6. J. M. S. Waworundeng And W. H. Limbong, “Airqmon: Indoor Air Quality Monitoring System Based On Microcontroller, Android And Iot,” Cogito Smart Journal |, Vol. 6, No. 2, 2020.
  7. H. F. Hawari, A. A. Zainal, And M. R. Ahmad, “Development Of Real Time Internet Of Things (Iot) Based Air Quality Monitoring System,” Indonesian Journal Of Electrical Engineering And Computer Science, Vol. 13, No. 3, Pp. 1039–1047, Mar. 2019, Doi: 10.11591/Ijeecs.V13.I3.Pp1039-1047.
  8. A. Anantama Et Al., “Implementasi Metode Fuzzy Pada Sistem Sirkulasi Udara Berbasis Internet Of Things,” Jurnal Teknik Dan Sistem Komputer (Jtikom), Vol. 3, No. 2, P. 2022.
  9. A. Oo And O. Tt, “Design And Implementation Of Arduino Microcontroller Based Automatic Lighting Control With I2c Lcd Display,” Journal Of Electrical & Electronic Systems, Vol. 07, No. 02, 2018, Doi: 10.4172/2332-0796.1000258.
  10. A. Kajaman, Z. Saleh, And K. Sahal, “Implementation Of Embedded Pid Controller To Water Level Control System,” 2024. [Online]. Available: Www.Multiresearchjournal.Com
  11. Nasir, “Development Of Novel Low Noise Switch-Mode Power Supply Designs For High Fidelity Audio Power Amplifiers Nasir,” May 2016. Accessed: Jun. 24, 2025. [Online]. Available: Https://Eprints.Bournemouth.Ac.Uk/
  12. A. Sukoco, R. Y. Endra, And T. Informatika, “Expert-Jurnal Manajemen Sistem Informasi Dan Teknologi Penerapan Fuzzy Inference System Metode Mamdani Untuk Penentuan Besaran Persentase Beasiswa.”