Gupron, Mohammad (2019) Rancang Bangun Sistem Kontrol dan Monitoring pada Rumah Jamur Berbasis Internet Of Things (Iot) Menggunakan Raspberry PI. Other thesis, Instituts Teknologi Sepuluh Nopember.
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Abstract
Pembudidayaan jamur tiram di Indonesia sudah dilakukan oleh banyak petani. Akan tetapi, beberapa tahun terakhir, hasil panen dari para petani jamur mengalami penurunan karena beberapa faktor yang mempengaruhi, diantaranya adalah kondisi suhu, kelembaban, dan intensitas cahaya. Dengan pesatnya perkembangan teknologi informasi, muncul gagasan untuk memanfaatkan internet dalam bidang pertanian. Penelitian ini membahas sistem untuk memonitor dan mengontrol kondisi lingkungan rumah jamur yang dapat diakses dari manapun dan kapanpun dengan mengimplementasikan IoT (Internet of Things). Web sebagai interface yang berkomunikasi dengan cloud server menggunakan protokol websocket dimana paket akan diteruskan ke Raspberry Pi. Cloud Server disini hanya sebagai ad-hoc atau penghubung antara end user dan perangkat keras sistem sebagai perangkat utama untuk sistem kontrol dan monitor. Sistem ini kemudian diuji dengan hasil dimana end user bisa memonitoring keadaan ruang rumah jamur, dan mengontrol lingkungan baik secara manual maupun otomatis. Akan tetapi, kecepatan transfer dari end user menuju Raspberry Pi membutuhkan waktu yang relatif lambat yaitu dengan rata-rata 1018,2 ms.
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Oyster mushroom cultivation in Indonesia has been carried out by many farmers. However, in recent years, harvest from mushroom farmers have decreased due to several influencing factors, including conditions of temperature, humidity and light intensity. With the rapid development of information technology, emerging an idea to use the internet in agriculture. This study discusses a system to monitor and control the conditions of mushroom houses that can be accessed from anywhere and anytime by implementing IoT (internet of things). The web as an interface uses a websocket protocol to communicate with the cloud server and than the packet will be forwarded to Raspberry Pi. Cloud Server here is only an ad-hoc or link between the end user and system hardware as the main device for the control and monitor system. This system is then tested with results where the end user can monitor the conditions of the mushroom house, and control the environment both manually and automatically. But the transfer speed from the end user to the Raspberry Pi requires a relatively slow time with an average of 1018.2 ms.
| Item Type: | Thesis (Other) |
|---|---|
| Uncontrolled Keywords: | Internet of Things, Raspberry Pi, Agiculture, Websocket |
| Subjects: | S Agriculture > S Agriculture (General) T Technology > T Technology (General) > T58.5 Information technology. IT--Auditing |
| Divisions: | Faculty of Information Technology > Informatics Engineering > 55201-(S1) Undergraduate Thesis |
| Depositing User: | Gupron Mohammad |
| Date Deposited: | 23 Jul 2026 02:29 |
| Last Modified: | 23 Jul 2026 02:29 |
| URI: | http://repository.its.ac.id/id/eprint/67681 |
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