基于人工智能和物联网的控制和可追溯的水产养殖,使用区块链技术保护数据

V.P Premkkumar, C. Gayathri, P. Priyadharshini, G. Praveenkumar
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引用次数: 1

摘要

鱼类产业目前在市场上蓬勃发展。他们的农民需要增加鱼类产量。鱼是在被污染的湖泊、池塘和水箱中养殖的。这种环境影响鱼的健康,导致不卫生的鱼生长。水质对水产养殖及其产生有利结果的能力至关重要。影响水质的因素有很多,比如沉淀、径流、侵蚀、温度、pH值和腐烂的鱼。水质取决于影响它的各种物理化学和生物因素,因此,它对鱼类和其他水生动物的适应性是产生和分布的。鱼类密度、饲料质量、投料间隔等因素对水产养殖产生影响。水产养殖部门采用自动化水质监测试验对池塘水质进行评价。这项检测费用昂贵,只能由训练有素的人员进行。这项研究以尖端技术为基础。通过使用Thingspeak平台、人工智能(AI)和区块链技术,物联网(IoT)正在使养鱼业的创新成为可能。这种方法提出了一种使用人工智能和物联网的智能水产养殖系统,将增强鱼类养殖。物联网在水产养殖中是一项广泛使用的技术,因为它有助于监测和追踪水质。传感器集成用于测量实时数据,以分析pH值、溶解氧、温度、浊度和总固体溶解。使用该系统可节省时间,降低鱼类死亡率。这一意图有助于对两种鱼类疾病进行分类。有两种:兽疫性溃疡综合征(EUS)和鱼鳞病(Ich)。该系统使用运动传感器来检测鱼类的运动,并将数据存储在Arduino云应用程序中。当池塘的环境不卫生时,他们可以用安卓手机作为终端设备提醒他们,他们也可以在需要的时候监控他们的池塘。由于这项技术的进步,未来的鱼菜共生系统将变得更加智能、集约、精确和高效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
AI & IoT based Control and Traceable Aquaculture with Secured Data using Blockchain Technology
The fish industry is currently thriving on the market. Their farmers are in need of increasing fish production. Fish are grown in contaminated lakes, ponds, and tanks. This environment affects the fish’s health and results in unhygienic fish growth. Water quality is salient to aquaculture and its ability to lead to a favorable outcome. There are many factors that affect water quality, like sedimentation, runoff, erosion, temperature, pH, and decayed fish. Water quality is dependent on various physical-chemical and biological factors that affect it and, as a result, its aptness for fish and other aquatic animals are produced and distributed. The many factors, such as fish density, feed quality, and feeding intervals, have an impact on aquaculture. Automated water quality monitoring tests are used in the aquaculture sector to evaluate the ponds water quality. The test, which is expensive, can only be performed by trained personnel. This study is based on cutting-edge technology. Innovations in fish farming are being made possible by the Internet of Things (IoT) by using Thingspeak platform, Artificial intelligence (AI), and Blockchain technology. This method presents a smart aquaculture system that uses AI and IoT will enhance fish farming. IoT is a highly used technology in aquaculture because it helps with monitoring and traceable water quality. Sensors were integrated to measure real-time data to analyse the pH level, dissolve oxygen, temperature, turbidity, and total solid dissolution. Save time and reduce fish mortality by using this system. This intention aided in the classification of two types of fish illnesses. There are two: Epizootic Ulcerative Syndrome (EUS) and Ichthyophthirus (Ich). This system uses a motion sensor to inspect the movement of fish and stores the data in an Arduino cloud application. An Android phone is used as a terminal device to alert them when it reaches unhygienic environmental conditions, and they can also monitor their pond whenever needed. The aquaponics system of the future will become more intelligent, intensive, precise, and efficient as a result of this technological advancement.
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