IoT-Based Smart Fishing Gear for Sustainability of the Tanzania Blue Economy (original) (raw)

Using IoT Sensor Technologies to Reduce Waste and Improve Sustainability in Artisanal Fish Farming in Southern Brazil

Sustainability

Modern digital technologies have the great potential to improve the sustainability of fish farming in artisanal fisheries. However, in spite of the popularity of these technologies for fish farming in other parts of the world, Brazil still lags behind. To fill this gap, this study has conducted the first field study in implementing the IoT sensor technologies in Southern Brazil and documents the experiences in this paper. More specifically, it discusses developing sustainable artisanal fisheries infrastructure using these technologies with reference to southern Brazil, where the study explores the use of sensor technology in aquaculture and its effectiveness in reducing waste and improving productivity. The overarching goal of the project is to demonstrate how simple data collection using IoT sensors and its analysis can support artisanal freshwater fish farms in Brazil and beyond to increase production, reduce waste, and thereby improve their sustainability. The pilot implementatio...

Low-Cost IoT Solutions for Fish Farmers in Africa

2018 IST-Africa Week Conference (IST-Africa), 2018

Although fish farming in Africa is developing in the last decade, it still has a big potential of growth to meet the fish demand with growing population. One of the key parameters for a successful fish farm business is the water quality monitoring. Even though it is essential, it is often too expensive for African fish farmers to monitor their ponds. In the WAZIUP project, we deployed a low-cost and connected water monitoring system measuring pH, dissolved oxygen and temperature in a fish farm in Ghana. It has been collecting data since February 2017 and we present here the first conclusions of the water analysis and the impact it could have on fish farming. Based on these results, we aim to deploy several improved V2 prototypes in early 2018.

IOT Monitoring Systems in Fish Farming Case Study:” University of Rwanda Fish Farming and Research Station (Ur-FFRs)”

European Journal of Technology

Purpose: Fish farming refers to the farming of aquatic organisms such as fish. It involves cultivating freshwater and saltwater populations under controlled conditions. The purpose of this research is to provide a solution to the fish farmer by developing an application that would be easy to monitor water quality during the fish farming process. This will help the fish farmers to intervene timely, and therefore increase their production. The design and implementation of IoT Monitoring Systems in Fish farming helps to observe the farming system remotely by using different sensors for the water parameters. The research focused on developing a system for real time monitoring of culture tank water quality as a proof of concept and testing the basic functionalities of the system. Methodology: The research adopted the Rapid application methodology, which was deemed best due to its iterative approach to applications development as it also delivers systems faster at a lower cost in time-con...

Entrepreneurship Orientation of Artisanal Fishery on the Use of Internet of Things Technology in Achieving Sustainable Competitive Advantage: A Case Study in the Province of Banten, Indonesia

2020

Artisanal fishery is known as a significant producer of fish catch products. over 90 million tons of fish production each year worldwide and more than half of them produced by small-scale fishers. Preserving the sustainability of artisanal fishery will be beneficial not only for the artisanal fishers but also to the environment and community. Our research focuses on the role of entrepreneurship orientation of artisanal fishery on the use of Internet of Things Technology in achieving sustainable competitive advantage. This research was conducted by surveying 106 artisanal fishers throughout the residencies of Pandeglang and Lebak in the province of Banten, Indonesia. Research finds that artisanal fishery entrepreneurship orientation has a strong influence on technology. It is also believed that technology would substantially bring artisanal fishery towards a sustainable competitive advantage, not only to the fishermen themselves, but also maintaining the sustainability of the enviro...

An Improved IoT-based Prototype for Fish Feeding and Monitoring System

Global Journal of Computer Science and Technology: B Cloud& Distributed, 2024

Fish farming can help meet the ever-increasing demand for seafood and offer nutritious protein to people in underdeveloped countries, while additionally minimizing pressure on wild fish. The global population is supported economically by the fishing industry and related sectors for 10-12% of the total. Presently, cutting-edge technologies such as AI, Machine Learning, Automated Planning, Data Analytics, and IoT are being used in fish farming to increase production, efficiency, and sustainability. In this research, we proposed an IoT-based improved technique for fish feeding and monitoring that will enhance the efficiency of fish farming and increase production while avoiding threats to the environment. This proposed approach uses a microcontroller ESP32 that gathers data from temperature, turbidity, pH, and ultrasonic sensors, alongside a Wi-Fi webcam detecting fish movement. It will be linked to the Blynk app, which gathers and sends this data, informing users about water conditions.

Evaluation of Usage Behaviour of IOT-Based Aquaculture Technologies

Proceeding of LPPM UPN "VETERAN" Yogyakarta Conference Series 2020- Political and Social Science Series, 2020

The production of aquaculture products still needs to be increased to match marine products. One of the problems that cause cultivation fishery production is not optimal is that it has not utilized modern technology. Cultivators still use traditional methods and technologies in cultivation. One of the contemporary technologies that can support aquaculture is Automation Technology and the Internet of Things (IoT). This research will develop an IoT-based technology, which is a system to help fish maintenance management. This system is based on a static robot that will monitor the condition of pond water quality and feed the fish automatically, which can be controlled remotely by adopting an IoT architecture.Furthermore, an evaluation of cultivators/farmers regarding Adopting Intention (AI) of this technology. The evaluation model adopted the model proposed by (Kao et al., 2019). This model explores the direct influence of perceived usability, performance expectations, perceived techno...