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Prototype Monitoring Debit Air pada Jaringan Pipa Berbasis Mikrokontroler Dhyah Ayu Intan Permata Sari; Edi Prihartono
Jurnal Teknik Elektro dan Informatika Vol 3 No 2 (2023): Infotron
Publisher : Universitas Islam Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33474/infotron.v3i2.20839

Abstract

Air merupakan sumber kehidupan yang sangat penting. Seiring meningkatnya populasi penduduk maka kebutuhan air sehari-hari terus meningkat. Di Indonesia tingkat kebocoran air pada saluran distribusi saat ini meningkat hingga sampai 30% di tiap daerah, dikarenakan dalam penanganan saat ini kurang efisien karena harus ada laporan warga ke petugas[3]. Salah satu cara untuk mengatasi permasalahan tersebut yaitu  memanfaatkan teknologi yang dapat Memonitoring jaringan pipa air secara real time sehingga petugas  dapat mempercepat dalam penanganan perbaikan akibat kebocoran. Maka pada penelitian  dibuat Prototype sistem  monitoring debit air pada jaringan pipa dengan memanfaat teknologi  Mikrokontroler, sensor Tekanan MPX5700AP [7] , Flowmeter Yf-S201 [6]dan  teknologi  Internet of Thing (IoT) yang tersistem  dalam “ Prototype monitoring debit air pada jaringan pipa berbasis mikrokontroler “. Sistem ini bekerja dengan membaca tekanan dan debit air sebagai data input, dan menampilkan  output pada website berupa Notifikasi  nilai ( data input) dan Notifikasi lampu  sebagai isyarat. Dari hasil uji coba prototype sistem  menitoring debit air pada jaringan pipa ini secara system berjalan  baik , yaitu system memberikan notifikasi nilai tekanan, debit air dan isyarat lampu .  Hasil akhir dari sistem ini diharapkan , petugas dapat memonitoring melalui website dan  jika terjadi masalah dengan jaringan pipa petugas  bisa mengetahui secara langsung lokasi terjadi kendala serta  cepat dalam penangan perbaiakan jaringan air.  Sehingga kerugian materil  kebocorana air dapat di minimalisir.
Sistem Pengendalian Waktu Penyiraman Otomatis pada Tanaman Cabai Rawit Menggunakan Metode Fuzzy Logic Edi Prihartono; Oktafianto , Dimas Pondra
Jurnal Teknik Elektro dan Informatika Vol 4 No 1 (2024): Infotron
Publisher : Universitas Islam Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33474/infotron.v4i1.21751

Abstract

Cabai rawit merupakan salah satu komoditas sayuran yang sangat dibutuhkan oleh masyarakat Indonesia dalam kehidupan sehari-hari. Cara penyiraman saat ini dilakukan petani secara manual, hal ini pengukuran kelebaban tanah, suhu dan waktu oleh petani kurang tepat, sehingga jumlah air yang diberikan tidak sesuai dengan yang dibutuhkan oleh tanaman cabai rawit.  Pada penelitian ini penulis membuat sistem pengendalian waktu penyiraman secara otomatis sebagai alat yang dapat membantu petani dalam melakukan penyiraman dan memonitoring kelembaban tanah serta suhu melalui website. Pada sistem ini menggunakan dua sensor yaitu sensor kelembaban tanah dan sensor suhu yang digunakan untuk mendeteksi kelembaban tanah dan suhu udara pada tanaman cabai rawit. Sistem menggunakan metode fuzzy logic untuk memproses data kelembaban tanah dan suhu yang diperoleh, untuk menghasilkan durasi penyiraman yang sesuai dengan kebutuhan tanaman. Dari hasil pengujian perangkat dengan aplikasi matlab, selisih durasi penyiraman pada fase 1 adalah 0.12 detik sedangkan pada fase 2  adalah 0.06 detik. Dari pengujian tersebut baik fase 1 maupun  fase 2 mempunyai selisih di bawah 1 detik, sehingga dapat disimpulkan bahwa perangkat berjalan dengan baik. Sedangkan hasil pengujian selama 33 hari pada objek  tanaman cabai rawit  dengan 3 cara penyiraman. Untuk tanaman cabai rawit ke 1 (T1) yang penyiramannya menggunakan sistem, jumlah bunga bakal buah cabai  berjumlah 4 bunga, sedangkan tanaman cabai rawit dengan penyiraman secara manual (T2 dan T3) bunga bakal buah belum muncul Sedangkan untuk tinggi dan jumlah daun lebih unggul pada tanaman ke 2 (T2) dan 3 (T3).
Sistem Informasi Sirkulasi Penggunaan Barang Milik Negara Berbasis Face Recognition dan QR Code Firdausi Afifah; Edi Prihartono; Budi Santoso
Jurnal Teknik Elektro dan Informatika Vol 3 No 1 (2023): Infotron
Publisher : Universitas Islam Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33474/infotron.v3i1.19543

Abstract

Kantor Pengelolaan Teknologi Informasi dan Komunikasi dan Barang Milik Negara (KPTIK BMN) merupakan unit kerja yang bertugas dalam melakukan perawatan dan pengelolaan gedung, serta memberikan pelayanan terhadap stakeholder dalam ruang lingkup area gedung. Proses pencatatan peminjaman dan penggunaan BMN yang tersedia saat ini masih konvensional sehingga dapat memicu kemungkinan terjadinya praktik kecurangan. Untuk itu diperlukan suatu sistem informasi sirkulasi yang dapat mempermudah dan mempercepat user dalam melakukan pengambilan/peminjaman. Tujuan dari penelitian ini untuk membangun sistem pencatatan menggunakan face recognition dan QR Code dalam mempercepat penginputan peminjaman/penggunaan barang. Pengujian QR Code dilakukan dengan melakukan pemindaian QR Code barang pada sistem sirkulasi penggunaan barang. Pengujian face recognition pada wajah pegawai menggunakan variabel jarak pemindaian wajah. Hasil dari penelitian ini menunjukkan bahwa sistem pencatatan sirkulasi penggunaan dan peminjaman barang menggunakan face recognition dan QR Code dapat memberikan hasil yang sesuai dengan jumlah dan jenis barang yang dimasukkan oleh user secara valid, serta dapat mendeteksi wajah pegawai secara valid sesuai dengan rekam data wajah pegawai yang telah didaftarkan pada sistem, hal ini ditunjukkan dari hasil pengujian pengenalan wajah pada White Box memberikan hasil yang valid dengan persentase kemiripan objek wajah dengan data training sebesar 65%. Serta pengujian akurasi sebuah sistem dalam melakukan face recognition sebesar 100% dan menunjukkan nilai presisi sebesar 100%.  
Association Rule Mining To Enhance Sata Bottle Sales slamet, slamet kacung; Rohmah, Farah Aqmarinar; Edi Prihartono
Knowbase : International Journal of Knowledge in Database Vol. 4 No. 1 (2024): June 2024
Publisher : Universitas Islam Negeri Sjech M. Djamil Djambek Bukittinggi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30983/knowbase.v4i1.8555

Abstract

Sales of sata bottles are growing and increasing, However, the results of these sales transactions have not been maximally utilized by shop owners. In fact, by using data mining techniques, the collection of data can generate new information. Association rule mining can find interaction patterns between one or more items in a very large data set. This algorithm is widely used in transaction data for purchasing product items at the same time by customers. research objectives to improve sales strategy, by collecting sales patterns that help related parties make sales strategy decisions, recommend products to customers, and maintain product availability. The research method using apriori algorithm data mining system that aims to determine consumer purchasing patterns.  The association rule obtained results in 1 product that is often purchased simultaneously, namely Buy Rabbit Bottle, 420ml Clear Bottle, Buy Rabbit Bottle, Glass Straw, and Buy Rabbit Bottle, Nice Glass with a support value of 10% and a confidence of 80% in three frequent itemset and Rabbit Bottle, 420ml Clear Bottle, Rabbit Bottle, Glass Straw, and Nice Glass, 420ml Clear Bottle with a support value of 15% and a confidence of 83% in two frequent itemset.
Sistem Kontrol Stop Kran Otomatis Berdasarkan Deteksi Kebocoran Pipa Air Rumah Tangga Berbasis Arduino Jefrina Dian Stifvani; Yudi Kristyawan; Edi Prihartono
Router : Jurnal Teknik Informatika dan Terapan Vol. 3 No. 2 (2025): Juni: Router : Jurnal Teknik Informatika dan Terapan 
Publisher : Asosiasi Riset Teknik Elektro dan Informatika Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62951/router.v3i2.599

Abstract

Water is an essential resource for every household. Typically, household water distribution systems rely on PVC pipes and faucets. Despite this, water leakage remains a frequent issue, occurring in both pipes and taps. This study aims to design an Arduino-based automatic faucet control system capable of detecting leaks in water pipes, with the goal of conserving water and improving usage efficiency. The system employs a pressure sensor to monitor water pressure within the pipe, an ultrasonic sensor to detect user presence at the tap, and a solenoid valve to automatically shut off the water supply in the event of a leak. Testing and design outcomes indicate that the system functions effectively. The solenoid valve successfully closes the water flow automatically when a leak is detected. However, the current system lacks a notification feature to alert users when a leak occurs. Future developments should consider integrating a notification mechanism to inform users promptly about any detected leaks.
Sistem Deteksi Kebocoran Gas LPG Berbasis Arduino di Universitas Dr. Soetomo Surabaya Popy Vitria Eviolina; Yudi Kristyawan; Edi prihartono
Router : Jurnal Teknik Informatika dan Terapan Vol. 3 No. 2 (2025): Juni: Router : Jurnal Teknik Informatika dan Terapan 
Publisher : Asosiasi Riset Teknik Elektro dan Informatika Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62951/router.v3i2.620

Abstract

Liquid Petroleum Gas, commonly known as LPG, is widely used in household activities, especially for cooking. However, its flammable nature makes this gas very hazardous if a leak occurs, which can result in an explosion that damages buildings, endangers the safety of those living there, and causes financial losses. Recently, the improper or unsafe use of LPG gas has led to numerous accidents and fires. This raises serious concerns for the people who use it. LPG gas leaks are often difficult to detect due to various factors, such as the absence of the gas's distinctive odor or the absence of people around the leak location. This study aims to detect gas leaks to minimize or prevent fires and LPG gas explosions. The methods in the research that will be carried out include identification, literature study, data collection, design, implementation, system testing, and conclusions. In this study, the design and implementation of an LPG gas leak detection system based on Arduino will be carried out to minimize this risk. The system will use MQ-2 to determine the concentration of LPG gas in the air. When a leak is detected, the Arduino microcontroller will process the input and automatically close the solenoid and activate the buzzer as an alarm. The implementation and testing results concluded that the system can detect LPG leaks above 600 ppm and respond effectively by cutting off the gas supply and providing an audible warning. This system is expected to improve household safety by providing early warning of gas leaks. Future developments may include integration with an Android app for smartphones, enabling more practical remote monitoring.
Association Rule Mining To Enhance Sata Bottle Sales slamet, slamet kacung; Rohmah, Farah Aqmarinar; Edi Prihartono
Knowbase : International Journal of Knowledge in Database Vol. 4 No. 1 (2024): June 2024
Publisher : Universitas Islam Negeri Sjech M. Djamil Djambek Bukittinggi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30983/knowbase.v4i1.8555

Abstract

Sales of sata bottles are growing and increasing, However, the results of these sales transactions have not been maximally utilized by shop owners. In fact, by using data mining techniques, the collection of data can generate new information. Association rule mining can find interaction patterns between one or more items in a very large data set. This algorithm is widely used in transaction data for purchasing product items at the same time by customers. research objectives to improve sales strategy, by collecting sales patterns that help related parties make sales strategy decisions, recommend products to customers, and maintain product availability. The research method using apriori algorithm data mining system that aims to determine consumer purchasing patterns.  The association rule obtained results in 1 product that is often purchased simultaneously, namely Buy Rabbit Bottle, 420ml Clear Bottle, Buy Rabbit Bottle, Glass Straw, and Buy Rabbit Bottle, Nice Glass with a support value of 10% and a confidence of 80% in three frequent itemset and Rabbit Bottle, 420ml Clear Bottle, Rabbit Bottle, Glass Straw, and Nice Glass, 420ml Clear Bottle with a support value of 15% and a confidence of 83% in two frequent itemset.
Sistem Kontrol Stop Kran Otomatis Berdasarkan Deteksi Kebocoran Pipa Air Rumah Tangga Berbasis Arduino Jefrina Dian Stifvani; Yudi Kristyawan; Edi Prihartono
Router : Jurnal Teknik Informatika dan Terapan Vol. 3 No. 2 (2025): Juni: Router : Jurnal Teknik Informatika dan Terapan 
Publisher : Asosiasi Riset Teknik Elektro dan Informatika Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62951/router.v3i2.599

Abstract

Water is an essential resource for every household. Typically, household water distribution systems rely on PVC pipes and faucets. Despite this, water leakage remains a frequent issue, occurring in both pipes and taps. This study aims to design an Arduino-based automatic faucet control system capable of detecting leaks in water pipes, with the goal of conserving water and improving usage efficiency. The system employs a pressure sensor to monitor water pressure within the pipe, an ultrasonic sensor to detect user presence at the tap, and a solenoid valve to automatically shut off the water supply in the event of a leak. Testing and design outcomes indicate that the system functions effectively. The solenoid valve successfully closes the water flow automatically when a leak is detected. However, the current system lacks a notification feature to alert users when a leak occurs. Future developments should consider integrating a notification mechanism to inform users promptly about any detected leaks.
Sistem Deteksi Kebocoran Gas LPG Berbasis Arduino di Universitas Dr. Soetomo Surabaya Popy Vitria Eviolina; Yudi Kristyawan; Edi prihartono
Router : Jurnal Teknik Informatika dan Terapan Vol. 3 No. 2 (2025): Juni: Router : Jurnal Teknik Informatika dan Terapan 
Publisher : Asosiasi Riset Teknik Elektro dan Informatika Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62951/router.v3i2.620

Abstract

Liquid Petroleum Gas, commonly known as LPG, is widely used in household activities, especially for cooking. However, its flammable nature makes this gas very hazardous if a leak occurs, which can result in an explosion that damages buildings, endangers the safety of those living there, and causes financial losses. Recently, the improper or unsafe use of LPG gas has led to numerous accidents and fires. This raises serious concerns for the people who use it. LPG gas leaks are often difficult to detect due to various factors, such as the absence of the gas's distinctive odor or the absence of people around the leak location. This study aims to detect gas leaks to minimize or prevent fires and LPG gas explosions. The methods in the research that will be carried out include identification, literature study, data collection, design, implementation, system testing, and conclusions. In this study, the design and implementation of an LPG gas leak detection system based on Arduino will be carried out to minimize this risk. The system will use MQ-2 to determine the concentration of LPG gas in the air. When a leak is detected, the Arduino microcontroller will process the input and automatically close the solenoid and activate the buzzer as an alarm. The implementation and testing results concluded that the system can detect LPG leaks above 600 ppm and respond effectively by cutting off the gas supply and providing an audible warning. This system is expected to improve household safety by providing early warning of gas leaks. Future developments may include integration with an Android app for smartphones, enabling more practical remote monitoring.