Skip to content
Research Article Open access CC BY 4.0

Design and Implementation of Solar Power and an IoT-Based Pisciculture Management System

Muhibul Haque Bhuyan, Md. Ashik Ali, Sabbir Ali Khan, Md. Rashedul Islam, Tanjil Islam, Jharna Akter

Journal of Engineering Research and Reports · pp. 15–27 · Published 27 Jan 2023

10.9734/jerr/2023/v24i2799

Abstract

Introduction: Pisciculture means fish farming for commercial purposes in a pond or in an artificially created fish tank. Proper care is needed for optimum fish yields. Aims: The present research aims to design, simulate, implement, and test a low-cost pisciculture monitoring system to get the environmental status of a fishing pond where aquatic plants and fishes reside. The objective of this work is to produce high-quality and high yields of fish in the pond keeping the standard or prescribed states of the pond water. Study Design:  The factors that affect the pond environment are flow rate, pH level, oxygen level, temperature, humidity, etc. To get high yields of fish from a pond, these factors must be within a specified level. If the values of these parameters go below or above the prescribed level then the water loses its quality and thereby fishes find it very difficult to survive in that pond because each water quality factor affects the health conditions of fish. Therefore, it is necessary to monitor these parameters. Place and Duration of Study: Department of Electrical and Electronic Engineering, Southeast University (SEU) between June 2021 and April 2022. Methodology: In this work, we have designed an automated microcontroller, IoT, and solar power-based water quality monitoring system for a fishpond. The automated system restores the values of these factors automatically when any of these factors fail to maintain their level in the pond. Results: After testing the prototype of the system, we found that the designed system is performing very well and showing different parameter values in the LCD screen as outputs. Conclusion: The system is in expensive and therefore, may be employed in practice.

Pisciculture microcontroller pH sensor solar power turbidity and temperature sensor water level internet of things

Cited by 14

Smart IoT-Based Feeding System with Solar Panel Integration as an Efficient Solution for Freshwater Fish Farming

Mardiana, Idham Kamil, Tuti Adi Tama Nasution · Journal of Technomaterial Physics · 2026

Secured Entry: Intelligent RFID-Based Door Locking System Ensuring Women's Safety

Wafa, Muhammad Talha Islam, Tanjina Aktar Rima · 2026 IEEE 2nd International Conference on Quantum Photonics, Artificial Intelligence & Networking (QPAIN) · 2026

IoT-Based Controlling of Motor and Water Flow Rate Measurement for Home and Industrial Applications

Rajeev Gupta, Anurag Dwivedi, P. Juneja · 2025 3rd International Conference on IoT, Communication and Automation Technology (ICICAT) · 2025

Realizing IoT-Based Irrigation for Automatic Ficus carica Gardening in Urban Settings

Lisa Kristina, Hermantoro, T. Suparyanto · IOP Conference Series: Earth and Environment · 2025

Intravenous Saline Flow Regulation Using Arduino Uno Microcontroller and DC Servo Motor

Monjurul Islam Nimon, Prithiraj Modak, N. Ahamed · 2025 IEEE International Conference on Biomedical Engineering, Computer and Information Technology for Health (BECITHCON) · 2025

Design and Analysis of a GSM and GPS-Based Smart Stick for Visually Challenged Persons with Real-Time Location Sharing and Obstacle Detection

Md Zahedul Islam Tapu, Nipa Akter, Sk. Nur Alam · 2025 IEEE 2nd International Conference on Computing, Applications and Systems (COMPAS) · 2025

A Multi-Functional Arduino-Based Autonomous Vehicle for Landmine and Gas Detection

Md. Musfequr Rahman, Md Absar Siddiqui, Md Jarif Rahman Erad · European Conference on Cognitive Ergonomics · 2025

Arduino, Sensors, and IoT-Based Coal Mining Safety System for Bangladesh

M. Mollah, M. Hasan, Md. Abu Rubayat Rokon · European Conference on Cognitive Ergonomics · 2025

Harvesting Solar Power for IoT-Driven Water Purification and Monitoring Systems

R. Ahmed, Tarifuzzaman Riyad, A. Haque · 2024 27th International Conference on Computer and Information Technology (ICCIT) · 2024

Article metrics

Real usage data collected on this platform.

0

Page views

0

PDF downloads

0

Outbound clicks

14

Citations

Views by country

Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".

No views recorded yet.

Traffic sources

Referring site, by host.

No traffic recorded yet.

Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.