IMPLEMENTASI SISTEM PERTANIAN CERDAS PADA BUDIDAYA CABAI DENGAN PENERAPAN SISTEM LOGIKA FUZZY TYPE-2 BERBASIS INTERNET OF THINGS

PRATIWI, WANDA (2024) IMPLEMENTASI SISTEM PERTANIAN CERDAS PADA BUDIDAYA CABAI DENGAN PENERAPAN SISTEM LOGIKA FUZZY TYPE-2 BERBASIS INTERNET OF THINGS. S1 thesis, Universitas Mercu Buana Jakarta.

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Abstract

Cultivating chili plants is currently one of the favorite cultures and is in great demand by farmers. The large and continuous demand means that the price of chilies is still at the top of the list of horticultural agricultural products which often experience price fluctuations. However, several factors that become obstacles include the long rainy season, global weather patterns and attacks from plant pests. Chili plants can grow at air temperatures of 18°C – 30°C with soil humidity of 60% – 80%. The aim of this research is to produce a prototype design for an intelligent agricultural system. The technology applied to the smart farming system is in the form of monitoring Air Temperature, Air Humidity and Soil Moisture. Apart from that, fan and water pump control is carried out automatically based on the parameter values read from the sensor. The monitoring process can be monitored on a smartphone by connecting to the blynk application and testing according to the rule base that has been set in the Interval Type 2 Fuzzy Logic System (IT2FLS) control has achieved the desired target according to the parameter requirements. Sensor testing was carried out 7 times on different days. Namely, by comparing the DHT22 sensor and the temperature measuring instrument, we have obtained appropriate experimental results. The results display shows the temperature measuring instrument is 29.0 ⁰C and the results on the DHT22 sensor are 29.0 ⁰C and the percentage error results in temperature are 1%. Furthermore, testing of the humidity sensor was carried out and obtained a percentage error result of 0.78%, then the average voltage error on the pump was 0.035%. The prototype tool in this research can be monitored remotely using the Blynk IoT platform, where testing the delay of the Blynk application is carried out by calculating the timestamp printed on the Arduino to get an average result of 13.6 seconds. Keywords: Arduino, Blynk, Fuzzy Type-2, Monitoring, Smart Agriculture Budidaya tanaman cabai saat ini menjadi salah satu budaya favorit dan sangat diminati oleh petani. Permintaan yang besar dan secara terus menerus menjadikan harga cabai masih menempati urutan teratas produk pertanian hortikultura yang sering mengalami fluktuasi harga. Namun beberapa faktor yang menjadi kendala diantaranya adalah musim hujan yang panjang, pola cuaca global dan serangan dari hama tumbuhan. Tanaman cabai dapat tumbuh pada suhu udara 18°C – 30°C dengan kelembaban tanah 60% – 80%. Tujuan penelitian ini adalah untuk menghasilkan desain prototipe sistem pertanian cerdas. Teknologi yang diterapkan pada sistem pertanian cerdas berupa pemantauan terhadap Suhu Udara, Kelembaban Udara dan Kelembaban Tanah. Selain itu, pengendalian Kipas dan Pompa Air dilakukan secara otomatis berdasarkan nilai parameter yang terbaca dari sensor. Proses pemantauan dapat dipantau pada smartphone dengan terkoneksi aplikasi blynk dan pengujian sesuai dengan rule base yang telah diatur pada kendali Interval Type 2 Fuzzy Logic System (IT2FLS) telah mencapai target yang diinginkan sesuai dengan syarat parameter. Pengujian sensor dilakukan sebanyak 7 kali percobaan pada hari yang berbeda. Yaitu dengan cara membandingkan sensor DHT22 dan alat ukur suhu telah mendapatkan hasil percobaan yang sesuai. Tampilan hasil menunjukkan alat ukur suhu sebesar 29.0 ⁰C serta hasil pada sensor DHT22 sebesar 29.0 ⁰C dan hasil persentase error pada suhu sebesar 1%. Selanjutnya pengujian sensor kelembaban telah dilakukan dan mendapatkan hasil persentase error sebesar 0.78% kemudian untuk rata-rata error tegangan pada pompa sebesar 0.035%. Alat prototipe pada penelitian ini dapat dilakukan pemantauan dari jarak jauh dengan platform IoT blynk, dimana pengujian delay aplikasi blynk dilakukan dengan cara menghitung waktu timestamp yang tertera pada Arduino sehingga mendapatkan hasil rata – rata yaitu sebesar 13.6 detik. Kata Kunci: Arduino, Blynk, Fuzzy Type-2, Monitoring, Pertanian Cerdas

Item Type: Thesis (S1)
Call Number CD: FT/ELK. 24 028
Call Number: ST/14/24/016
NIM/NIDN Creators: 41418110134
Uncontrolled Keywords: Arduino, Blynk, Fuzzy Type-2, Monitoring, Pertanian Cerdas
Subjects: 000 Computer Science, Information and General Works/Ilmu Komputer, Informasi, dan Karya Umum > 000. Computer Science, Information and General Works/Ilmu Komputer, Informasi, dan Karya Umum > 004 Data Processing, Computer Science/Pemrosesan Data, Ilmu Komputer, Teknik Informatika > 004.6 Interfacing and Communications/Tampilan Antar Muka (Interface) dan Jaringan Komunikasi Komputer > 004.67 Wide Area Network (WAN)/Wide Area Network > 004.678 Internet (World Wide Web)/Internet
000 Computer Science, Information and General Works/Ilmu Komputer, Informasi, dan Karya Umum > 000. Computer Science, Information and General Works/Ilmu Komputer, Informasi, dan Karya Umum > 005 Computer Programmming, Programs, Data/Pemprograman Komputer, Program, Data > 005.5 General Purpose Application Programs/Program Aplikasi dengan Kegunaan Khusus
300 Social Science/Ilmu-ilmu Sosial > 330 Economics/Ilmu Ekonomi > 338 Production, Industrial Economics/Produksi, Ekonomi Industri
300 Social Science/Ilmu-ilmu Sosial > 330 Economics/Ilmu Ekonomi > 338 Production, Industrial Economics/Produksi, Ekonomi Industri > 338.1 Agriculture, Agricultural Economics, Agricultural Industries/Industri Pertanian, Ekonomi Pertanian
Divisions: Fakultas Teknik > Teknik Elektro
Depositing User: khalimah
Date Deposited: 19 Feb 2024 01:15
Last Modified: 19 Feb 2024 01:15
URI: http://repository.mercubuana.ac.id/id/eprint/86200

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