BUDDHI DHARMABUDDHI DHARMA

Tech-ETech-E

Conventional dispensers have limitations in providing drinking water tailored to user preferences and do not focus on efficient resource use. This research aims to address these issues by designing and implementing a smart, efficient automatic dispenser. An experimental method was used to develop an Arduino-based prototype consisting of several components: flow sensor, color sensor, fingerprint sensor, proximity sensor, DC pump, motor driver, NodeMCU, and LCD. The flow sensor measures water volume, the color sensor detects glass color, the fingerprint sensor identifies the user, and the proximity sensor detects the presence of the glass. The DC pump flows water from the tank to the glass, relays the water flow, NodeMCU and solenoids control processes sensor data and connects to IoT, and the LCD displays the required information. A battery backup ensures functionality during power outages. The research results show that the automatic dispenser performs well and meets the research objectives. It provides drinking water according to user preferences: warm water for red glasses, cold water for blue glasses, and room temperature water for green glasses. Additionally, it identifies users through fingerprints and sends notifications via Telegram chatbots. This smart dispenser offers a more efficient and user-friendly solution compared to conventional dispensers.

An intelligent and efficient automatic dispenser was successfully designed and implemented by utilizing flow, proximity, color and fingerprint sensor technology, and connected to the Internet of Things (IOT) for real-time monitoring.This automatic dispenser can provide drinking water according to user preferences, depending on the color of the glass used.If the glass is red, the dispenser will fill warm water.if the glass is blue, the dispenser will fill cold water.if the glass is green, the dispenser will fill normal temperature water.This automatic dispenser can also identify users based on fingerprints and provide notifications via Telegram chat bots.This can increase the familys attention to drinking enough water every day.

Berdasarkan penelitian ini, terdapat beberapa saran penelitian lanjutan yang dapat dilakukan untuk meningkatkan fungsionalitas dan efisiensi dispenser pintar. Pertama, pengembangan sistem prediksi kebutuhan air berdasarkan pola penggunaan pengguna dapat dilakukan dengan memanfaatkan data historis dan machine learning. Hal ini memungkinkan dispenser untuk secara proaktif mengisi air sesuai dengan perkiraan kebutuhan, mengurangi pemborosan, dan meningkatkan kenyamanan pengguna. Kedua, integrasi dengan sistem manajemen energi rumah pintar dapat dipertimbangkan untuk mengoptimalkan konsumsi daya dispenser dan berkontribusi pada efisiensi energi secara keseluruhan. Dengan memantau dan mengendalikan penggunaan energi dispenser, sistem dapat menyesuaikan operasi berdasarkan ketersediaan energi dan preferensi pengguna. Ketiga, eksplorasi penggunaan sensor kualitas air untuk memantau kualitas air yang disimpan dalam dispenser dapat memberikan informasi tambahan kepada pengguna tentang kondisi air dan memastikan keamanan serta kesehatan pengguna. Sensor ini dapat mendeteksi kontaminan atau perubahan kualitas air, memberikan peringatan dini, dan merekomendasikan tindakan yang sesuai.

  1. IMPLEMENTATION OF AUTOMATIC PUMP CONTROL ON SEA WATER DESTILATION SYSTEM | Electro Luceat. automatic... doi.org/10.32531/jelekn.v6i2.268IMPLEMENTATION OF AUTOMATIC PUMP CONTROL ON SEA WATER DESTILATION SYSTEM Electro Luceat automatic doi 10 32531 jelekn v6i2 268
  2. Implementing and Monitoring Water Consumption Using IoT-Based Smart Dispensers | Tech-E. implementing... doi.org/10.31253/te.v8i1.2769Implementing and Monitoring Water Consumption Using IoT Based Smart Dispensers Tech E implementing doi 10 31253 te v8i1 2769
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  4. Sistem Kontrol dan Monitoring Penggunaan Air Berbasis IoT Menggunakan Modul ESP8266 | Jurnal Informasi... jidt.org/index.php/jidt/article/view/207Sistem Kontrol dan Monitoring Penggunaan Air Berbasis IoT Menggunakan Modul ESP8266 Jurnal Informasi jidt index php jidt article view 207
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