Perancangan dan Implementasi Sirkulasi Air Pada Rumah Kaca Hidroponik Menggunakan Parameter Sensor Multivariabel Berbasis Web
DOI:
https://doi.org/10.30871/jaee.v9i1.9383Kata Kunci:
Hidroponik, Rumah Kaca, Sensor Multivariabel, Sirkulasi Air, WebAbstrak
Pertanian hidroponik yang dibudidayakan didalam rumah kaca menjadi solusi inovatif untuk meningkatkan efisiensi pertumbuhan tanaman, dikarenakan dalam sebuah sistem rumah kaca petani hidroponik dapat melakukan kontrol lingkungan dalam rumah kaca tersebut. Salah satu faktor penting dalam sistem ini adalah sirkulasi air, yang mempengaruhi ketersediaan nutrisi dan oksigen bagi tanaman. Dengan menggunakan sensor multivariabel maka sistem sirkulasi air otomatis dapat dibuat dan di monitor dengan apikasi berbasis web. Sistem ini menggunakan berbagai sensor, termasuk sensor untuk mengukur suhu dan kelembapan udara, sensor untuk mengukur suhu air dan sensor pH untuk memantau kondisi air dan lingkungan secara real-time. Dengan adanya integrasi sensor multivariabel dan pemantauan berbasis web, sistem ini memberikan kemudahan dalam pengelolaan pertanian hidroponik secara otomatis dan efisien.
Unduhan
Referensi
[1] A. Sucipto, D. Nuraji, M. Enrique, L. Ramadany, and J. Vitasari, “Implementasi Sistem Deteksi Otomatis pada Tanaman Cabai Rawit Menggunakan Convolutional Neural Network (CNN) Berbasis TensorFlow untuk Optimasi Pertanian Modern Implementation of an Automatic Detection System for Chili Plants Using a TensorFlow-Based Co,” no. November, pp. 262–269, 2024, doi: 10.25047/nacia.v2i1.254.
[2] Yanti Grace Hutasoit and Yanda Bara Kusuma, “Optimalisasi Pemanfaatan Otomasi Greenhouse Dan Hydroponic Dalam Meningkatkan Produksi Dan Keberhasilan Terhadap Pertanian Budidaya Pakcoy Di PT Inamas Sintesis Teknologi,” J. Kaji. dan Penelit. Umum, vol. 1, no. 2, pp. 76–86, 2023, doi: 10.47861/jkpu-nalanda.v1i2.285.
[3] M. S. Farooq, R. Javid, S. Riaz, and Z. Atal, “IoT Based Smart Greenhouse Framework and Control Strategies for Sustainable Agriculture,” 2022, Institute of Electrical and Electronics Engineers Inc. doi: 10.1109/ACCESS.2022.3204066.
[4] Michelle et al, “Konsep Pengembangan Pertanian Pangan Modern Berkelanjutan di Kabupaten Sleman,”Linears, 2023.
[5] D. Putro, S. Setyohadi, H. Y. Riskiawan, S. Arifin, H. A. Putranto, and T. Rizaldi, “Peningkatan Otonomi dan Keberlanjutan Pemenuhan Pangan pada Pondok Pesantren Melalui Smart Farming Upscaling autonomy and sustainability in the food fulfillment in Islamic boarding schools through smart farming,” Community Serv., 2024.
[6] D. Bitari Mei Yuana, B. Etikasari, R. Ayuninghemi, A. Sucipto, and L. Perdanasari, “OPEN ACCESS Penerapan Sistem Kontrol Suhu Dan Kelembaban Otomatis Pada Kumbung Jamur Di UD Mitra Jamur Jember Implementation Automatic Control System for Temperature and Humidity in Oyster Mushroom House UD Mitra Jamur Jember,” 5th National Conference for Community Service (NaCosVi),2022.
[7] C. Maraveas and T. Bartzanas, “Application of Internet of Things (IoT) for Optimized Greenhouse Environments,” Dec. 01, 2021, MDPI. doi: 10.3390/agriengineering3040060.
[8] K. Bararah and R. Al Aminah, “Strategi Pengembangan Pertanian Berkelanjutan: Optimalisasi Smart Greenhouse Di Kabupaten Mojokerto Melalui Penggunaan Agri-Voltaic,”TheJournalish: Social and Government vol. 4, no. 5, 2023, doi: 10.55314/tsg.v4i5.621.
[9] A. Sucipto et al., “OPEN ACCESS Pengembangan Digital Marketing Dan Modifikasi Produk Berbasis Infrared Proximity Reflective Method (IPRM) Menggunakan Olahan Limbah Logam pada UMKM Prasegi ART Digital Marketing Development and Product Modification Based On Infrared Proximity Reflective Method (IPRM) Using Processed metal Waste at Prasegi ART UMKM,” 6th National Conference for Community Service (NaCosVi), 2023.
[10] N. Anggraini, K. Del Vieri, L. K. Wardhani, A. C. Wardhana, and D. Saputra, “Sistem Pintar Penyiram Tanaman Menggunakan Teknologi IoT dan fuzzy Inference System dalam Rangka Mewujudkan Green Campus di UIN Syarif Hidayatullah Jakarta,” Build. Informatics, Technol. Sci., vol. 4, no. 2, Sep. 2022, doi: 10.47065/bits.v4i2.2227.
[11] A. Sucipto et al., “Rancang Bangun Sistem Ozonisasi Air Sebagai Upaya Sterilisasi Pertumbuhan Bakteri Pada Buah Apel Berbasis ESP-32,” KONVERGENSI, vol. 19, no. 2, pp. 69–76.
[12] M. Hablul Barri and B. Aji Pramudita, “ELECTROPS Jurnal Ilmiah Teknik Elektro Prototipe Sistem Penyiram Tanaman Otomatis dengan Sensor Soil Moisture Dan Sensor DHT11,” Electrops Vol. 1, No. 1, 2022.
[13] N. Bafdal and I. Ardiansah, “Implementasi Otomasi Berbasis Internet of Things (IoT) Menggunakan Mikrokomputer untuk Pemantauan Iklim Mikro Rumah Kaca Implementation of Internet of Things (IoT)-Based Automation Using Microcomputers for Greenhouse Microclimate Monitoring.” Jurnal Teknologi Informasi, Komputer dan Aplikasinya (JTIKA) Vol. 4, No. 2, 2022.
[14] M. Bagus, R. Huda, and W. D. Kurniawan, “Analisa Sistem Pengendalian Temperatur Menggunakan Sensor Ds18b20 Berbasis Mikrokontroler Arduino,”JRM. Volume 07 Nomor 02, 2022.
[15] S. Ayu Wulandari et al., “Rancang Bangun Sistem Monitoring Kualitas Air Untuk Mendeteksi Keadaan Tidak Normal atau Penyakit Pada Tambak Ikan Mujaer Menggunakan fuzzy Logic Mamdani Berbasis Mobile Design and Development of a Water Quality Monitoring System to Detect Abnormal Conditions or Diseases in Mujaer Fish Ponds Mobile Based Using fuzzy Logic Mamdani,” vol. 3, no. 1, pp. 42–54, 2024.
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