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Spherical underwater robot used for outdoor water quality monitoring

An underwater robot, water quality monitoring technology, applied in underwater operation equipment, sensing radiation of moving objects, instruments, etc. problem, to achieve the effect of small size, good sports condition, and easy operation

Inactive Publication Date: 2017-08-04
ZHENGZHOU UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] For fish ponds that have been factoryized, the Internet of Things monitoring technology is used to lay sensors in the fish ponds and monitor the water quality environment. For large-scale outdoor breeding sites, the application of this Internet of Things wireless sensor technology will cause a lot of waste.
At present, unmanned ships combined with wireless sensor monitoring technology are also suitable for large-scale water detection, but first, the monitoring depth is limited, and it cannot check the movement of fish well
In addition, most of the existing underwater detectors or underwater vehicles are torpedo-shaped or rectangular, and their lateral movement is inflexible, and the viewing angle is inflexible and the volume is too large

Method used

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  • Spherical underwater robot used for outdoor water quality monitoring
  • Spherical underwater robot used for outdoor water quality monitoring
  • Spherical underwater robot used for outdoor water quality monitoring

Examples

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Embodiment Construction

[0024] The present invention will be described in detail below in conjunction with the accompanying drawings and embodiments.

[0025] Embodiments of the present invention provide a spherical underwater robot for outdoor water quality monitoring, such as figure 1 As shown, the spherical underwater robot includes: mechanical seal 101, shaft 102, stud 103, motor waterproof cover 104, front and rear motor splints 105, spherical shell 106, end cover 107, fairing 108, splint 109, snap ring 110, motor base 111, motor base front and rear 112 and circuit board; the circuit board is placed in the spherical shell 106; the motor unit is composed of motor 309, motor box, front and rear motor splints 105 and motor base 111; the mechanical seal is fixedly connected The motor is on the shaft 102; the shaft 102 is connected to the paddle; the motor is placed in the motor box; the motor box is made up of an end cover 107, a motor waterproof cover 104 and a fairing 108; the motor passes through...

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Abstract

The invention relates to a spherical underwater robot used for outdoor water quality monitoring, characterized in that the spherical underwater robot includes: a mechanical seal, a shaft, a stud, a motor waterproof cover, front and rear motor splints, a spherical shell, and an end cover , fairing, splint, snap ring, motor seat, front and rear of the motor seat and circuit board; the circuit board is placed in a spherical shell; the motor unit is composed of a motor, a motor box, a motor splint and a motor seat; the mechanical seal is fixedly connected The motor is on the shaft; the shaft is connected to the blade; the motor is placed in the motor box; the motor box is composed of an end cover, a motor waterproof cover and a fairing; the motor is fixed to the end cover by studs; The waterproof cover of the motor is fixed on the snap ring through the front and rear motor splints and the motor seat; the snap ring is fixed on the largest part of the circumference of the spherical shell. The spherical underwater robot provided by the embodiment of the present invention has flexible movement, can turn freely, and has small movement resistance. And the cost is low, and it is suitable for waters of various depths.

Description

technical field [0001] The invention relates to an underwater robot, in particular to a spherical underwater robot used for outdoor water quality monitoring. Background technique [0002] As a large fishery country, my country has completed the transformation of the development model from fishing-based to aquaculture-based. In modern aquaculture farms, aquaculture production and safe production are closely related to aquaculture environmental conditions. It is very important to realize the automation of outdoor breeding production to improve the production of breeding. [0003] For fish ponds that have been factoryized, the Internet of Things monitoring technology is used to lay sensors in the fish ponds and monitor the water quality environment. For large-scale outdoor breeding sites, the application of this Internet of Things wireless sensor technology will cause a lot of waste. . At present, unmanned ships combined with wireless sensor monitoring technology are also s...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B63C11/52G01N33/18G01J5/00G01S15/96
CPCB63C11/52G01J5/0025G01N33/18G01S15/96
Inventor 高建设郭楚宁徐林栋赵英杰赵连洋崔超
Owner ZHENGZHOU UNIV
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