Microprocessor Subsystem of the Smart House to Control the Multichannel Irrigation of the Room Plants

Author:

Borak Taras, ,Kushnir Dmytro,Paramud Yaroslav

Abstract

This article develops the principles of building an intelligent home microprocessor subsystem to control the multi-channel irrigation of houseplants. The relevance of this topic has also been substantiated. Currently, there is a small number of devices in demand with a comfortable user interface and timer, which allows to adjust the watering at any time of day. The advantages over other available analogs and the need to create a customized system have been investigated. The developed structural- schematic diagram of the irrigation control system of houseplants based on the Arduino Nano microcontroller and a diagram of the algorithm of the subsystem has been proposed and given. As a result, there has been an example of the development of a subsystem that aims to improve and simplify the care of houseplants, which will save time and water resources.

Publisher

Lviv Polytechnic National University

Subject

General Medicine

Reference14 articles.

1. M. Makana, N. Nwulu and E. Dogo (2021), "Automated Microcontroller-Based Irrigation System", Examining the Impact of Deep Learning and IoT on Multi-Industry Applications, 2021, pp. 45-60, doi: 10.4018/978-1-7998-7511-6.ch004. (Accessed: 18 April 2022)

2. Juniper, A. (2018). The Smart Smart Home Handbook: Control Your Home With Your Voice, 75 p. Available at: https://www.amazon.com/Smart-Home-Handbook-Control-Voice/dp/1781575800. (Accessed: 18 April 2022)

3. Domb, M. (2019). Smart Home Systems Based on Internet of Things, 89 p., doi: 10.5772/intechopen.84894. (Accessed: 18 April 2022)

4. Robbins, T. (1997). Faculty of Engineering Science, University of Western Ontario. Automatic Plant Watering System, 35 p. Available at: https://books.google.com.ua/books/about/Automatic_Plant_ Watering_System.html. (Accessed: 18 April 2022)

5. Almy, T. (2020). Far Inside the Arduino: Nano Every Supplement, 10 p. Available at: https://www.amazon.com/Far-Inside-Arduino-Every-Supplement/dp/B08GFL6VBF. (Accessed: 18 April 2022)

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