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An intelligent control and regulation system for fish pond oxygenation based on probability statistics

A technology of intelligent control and adjustment system, applied in the field of aquaculture, can solve the problems of increased oxygenation cost, long oxygenation time, different oxygen content, etc., to achieve effective oxygenation effect, reduce use time, and improve the effect of aquaculture environment.

Active Publication Date: 2022-07-12
金华市广信网络工程有限责任公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0011] (1) In the aeration system of the existing aquaculture system, a fixed aeration device is usually set up, which can only increase aeration at a fixed location. In order to perform a systematic and complete aeration for fish ponds, it is necessary to install more Oxygenation device, which is bound to increase the cost of oxygenation
[0012] (2) In the prior art, the oxygenation of fish ponds is only to detect other parameters of oxygen content or water quality, but it is only set at a fixed location, and can only detect the oxygen content of a fixed location, while the fish pond is essentially , due to the movement and aggregation of underwater plants and fish, the oxygen content in different areas of the fish pond will be different, which is not conducive to the fine management and oxygenation work of fish pond oxygenation
[0013] (3) In the prior art, there are also aerobic boats installed for aeration operations, but only the aeration boats are installed on a specified path for aeration, and usually there is no differentiated aeration work, which not only takes a long time for aeration, but is also easy It affects the life of fish, is not conducive to the growth of fish, and never considers the living habits of fish
But so far, there is no effective way to solve the above technical problems in the prior art

Method used

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  • An intelligent control and regulation system for fish pond oxygenation based on probability statistics
  • An intelligent control and regulation system for fish pond oxygenation based on probability statistics
  • An intelligent control and regulation system for fish pond oxygenation based on probability statistics

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specific Embodiment 1

[0054] see figure 1 , The present invention provides a technical solution: 1. An intelligent control and regulation system for fish pond oxygenation based on probability statistics, including an integrated control center 1, an oxygen content sensing module 2, an aerator platform 3, and a water quality cleaning module 4 and the abnormal water quality alarm module 5; the aerator platform 3 is arranged in the fish pond 11, and the oxygen content sensing module 2 is arranged at the water outlet of the fish pond 11 for detecting the water quality of the fish pond 11 ;

[0055] The aerator platform 3 includes a small aerator boat 6, an aerator 7, an aerator control module 8, a navigation control module 9, a ship-borne oxygen measuring instrument 10, and a database storage module 12. The aerator controls The module 8 is respectively connected with the aerator 7, the sailing control module 9, the onboard oxygen measuring instrument 10 and the database storage module 12 in data commun...

specific Embodiment 2

[0070] Specific embodiment 2: On the other hand, the present application also provides a method for intelligent control and regulation of the oxygen increase in fish ponds based on probability statistics, including the probability statistics-based intelligent control and regulation of oxygen increase in fish ponds according to any one of claims 1-8. The control and regulation system, the specific oxygenation control and regulation method is as follows:

[0071] Step S1, in the automatic oxygenation control mode, when performing aeration of the fish pond, the water quality parameter threshold and the fish to be cultured are set by the oxygenation control platform 14, and the aeration control platform 14 is based on the input cultured fish. The number of species and culture, automatically generate the movement speed of the small aerator 6 and the oxygenation speed of the aerator 7, and the water quality parameter threshold, and send them to the aerator control module 8;

[0072]...

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Abstract

The invention discloses an intelligent control and regulation system for fish pond oxygenation based on probability statistics, comprising an integrated control center (1), an oxygen content sensing module (2), an oxygenation machine platform (3), and a water quality cleaning module (1). 4) and an abnormal water quality alarm module (5); the aerator platform (3) is arranged in the fish pond (11), and the oxygen content sensing module (2) is arranged at the water outlet of the fish pond (11) , used to detect the water quality of the fish pond (11); the aerator platform (3) includes a small aerator boat (6), an aerator (7), an aerator control module (8) and a navigation control A module (9), a shipborne oxygen measuring instrument (10), and a database storage module (12). The invention adopts the probability and statistics theory to set the path of the preliminary layout of the aerator platform, on the one hand, it can reduce the construction cost caused by the traditional fish ponds with fixed aerators, and on the other hand, it can be compared with the traditional mobile aerator platform. The machine has better aging time and can complete the oxygenation faster.

Description

technical field [0001] The invention relates to the technical field of aquaculture, in particular to an intelligent control and adjustment system and an adjustment and control method for the oxygen-increasing amount of fish ponds based on probability statistics. Background technique [0002] Fish and other seafood or river fresh food are people's favorite table food. A large amount of fish and seafood are consumed every year. Relying on traditional farming methods can no longer meet people's growing demand for fish. In modern fish farming, , fish ponds are usually used for culture, and in fish pond culture, because the water space is small, and usually does not communicate with large rivers, and fish ponds are usually cultured at a high density, so a large number of fish must be required. It consumes a lot of oxygen, which leads to the phenomenon of fish overturning due to hypoxia. [0003] In the oxygenation of fish ponds, this technology has been systematically studied an...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A01K63/04G05D11/13
CPCA01K63/042G05D11/131Y02A40/81
Inventor 李明章旭伟汪艳芳贺文芳徐勇斌
Owner 金华市广信网络工程有限责任公司