Pengembangan Sistem Otomatisasi AC dan Lampu Menggunakan Fuzzy dan Raspberry Pi
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Abstract
Otomatisasi AC dan lampu dilakukan untuk menghemat energi yang digunakan pada kehidupan sehari-hari. Dalam pengembangan otomatisasi AC dan lampu perlu menerapkan sebuah perangkat yang memiliki fungsi maksimal dengan harga yang minimal. Raspberry Pi merupakan perangkat atau modul dengan harga rendah yang mampu melakukan komunikasi wireless tanpa bantuan modul lain. Dalam pengembangan otomatisasi AC dan lampu juga diperlukan sebuah metode yang mampu melakukan kontrol terhadap nyala AC dan lampu. Penerapan metode fuzzy dapat dilakukan untuk menghimpun informasi keadaan ruang yang didapat dari sensor untuk menentukan nyala AC dan lampu secara otomatis. Oleh sebab itu pada penelitian ini mengusulkan pengembangan otomatisasi AC dan lampu menggunakan Raspberry Pi dan Fuzzy. Otomatisasi AC dan lampu menggunakan Raspberry Pi yang menerapkan metode Fuzzy dapat menghemat energi hingga 59,87% dalam hal lama waktu nyala AC dan 57,47% untuk lumenasi lampu
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References
[2] E. R. Buhus, D. Timis, and A. Apatean, "AUTOMATIC PARKING ACCESS USING OPENALPR ON RASPBERRY PI3," ACTA Tech. NAPOCENSIS Electron. Telecomunications, vol. 57, no. 3, pp. 10–15, 2016.
[3] Indrabayu, M. Niswar, and A. Aman, "Sistem Pendeteksi Kesegaran Ikan Bandeng Menggunakan Citra," J. Infotel, vol. 8, no. 2, pp. 170–179, 2016.
[4] H. N. B. Hasim, M. Ramalingnam, F. Ernawan, and P. R, "Developing fish feeder system using Raspberry Pi," in 2017 Third International Conference on Advances in Electrical, Electronics, Information, Communication and Bio-Informatics (AEEICB), 2017, pp. 246–250.
[5] S. Ballala, P. Gowtham, S. Alekhya, and S. Dr.I., "Online Monitoring and Controlling of Smart Drip Irrigation System Using Raspberry PI," Int. J. Sci. Eng. Technol. Res., vol. 5, no. 20, pp. 4181–4182, 2016.
[6] D. Prihatmoko, "Pemanfaatan Raspberry Pi Sebagai Server Web Untuk Penjadwalan Kontrol Lampu Jarak Jauh," J. Infotel, vol. 9, no. 1, pp. 84–91, 2017.
[7] J. Chandramohan, R. Nagarajan, K. Satheeshkumar, N. Ajithkumar, P. A. Gopinath, and S. Ranjithkumar, "Intelligent Smart Home Automation and Security System Using Arduino and Wi-fi Intelligent Smart Home Automation and Security System Using," Int. J. Eng. Comput. Sci., vol. 6, no. 3, pp. 2319–7242, 2017.
[8] M. A. E.-L. Mowad, A. Fathy, and A. Hafez, "Smart Home Automated Control System Using Android Application and Microcontroller," Int. J. Sci. Eng. Res., vol. 5, no. 5, pp. 935–939, 2014.
[9] Hadwan, H. Hamid, and Y. P. Reddy, "Smart Home Control By Using Raspberry Pi and Arduino UNO," Int. J. Adv. Res. Comput. Commun. Eng., vol. 5, no. 4, 2016.
[10] M. Molina-Solana, M. Ros, and M. Delgado, "Unifying Fuzzy Controller for IEQ: Implementation in a Raspberry Pi," in 9th Conference of the European Society for Fuzzy Logic and Technology (EUSFLAT), 2015.
[11] A. Rahimi, F. Farokhi, and S. Javadi, "Integrated Fuzzy Control of Temperature , Light and Emergency Conditions for Smart Home Application," Int. J. Smart Electr. Eng., vol. 5, no. 2, pp. 93–99, 2016.
[12] C. Wu, C. Chen, and Y. Liu, "A Design of Fuzzy Controller for Conforming to the Regulations of Indoor Air Quality and Thermal Comfort," in 4th Annual IEEE International Conference on Cyber Technology In Automation, Control and Intelligent Systems, 2014, pp. 383–388