Unmanned-monitoring underwater cultivation robot

A robot and water quality technology, applied in underwater operation equipment, transportation and packaging, ships, etc., can solve the problems that need to be developed and are expensive, and achieve the effects of stable operation, labor cost saving, and small moving resistance

Active Publication Date: 2019-04-09
ZHEJIANG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] Initially, underwater robots were mainly used in military and scientific research fields. In recent years, they have been used in fishery environment detection, diving entertainment, etc. Their technology and product form have ye...

Method used

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  • Unmanned-monitoring underwater cultivation robot
  • Unmanned-monitoring underwater cultivation robot
  • Unmanned-monitoring underwater cultivation robot

Examples

Experimental program
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Embodiment Construction

[0063] Such as figure 1 As shown, the control system of the unmanned monitoring underwater farming robot of the present embodiment includes: DSP28335 as core processor, STM32 as auxiliary processor, wireless communication module, video processing module, camera, GPS / BDS communication module, electronic Compass, AHRS inertial navigation module, depth sensor based on I2C communication, temperature and salinity sensor and five constant water quality meter.

[0064] In order to ensure the timely and effective control of the operation of the underwater vehicle and to receive the data fed back by the sensor in real time, a high-performance processor is required, which can not only collect the sensor data carried by the underwater vehicle in real time, but also run complex control algorithms. , and output the instruction information obtained by the operation processing to the actuators such as propellers. This embodiment adopts DSP28335 as the main processor platform and STM32 as the...

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Abstract

The invention discloses an unmanned-monitoring underwater cultivation robot. The unmanned-monitoring underwater cultivation robot comprises an aircraft body, and further comprises a datum collecting module and a datum treatment module. The datum collecting module comprises a camera, a temperature and salinity sensor and five constant water quality device, and the datum treatment module comprises an image recognizing module and an aquatic product growing condition extraction module. According to the unmanned-monitoring underwater cultivation robot, the aquatic product growing condition is extracted based on the fusion algorithm of images and water quality parameters, and the recognizing accuracy rate is increased; operations such as the fact that a fish is caught to be measured are avoided,harm to the fish is reduced, whether a fish is sick or not is timely inspected, timely controlling and precautions are conducted, the cultivation period of fries can be shortened in a certain extent,timely controlling can be conducted on diseases of the fries, and thus the purpose that the income is increased is achieved.

Description

technical field [0001] The invention relates to underwater robot farming, in particular to an unmanned monitoring underwater farming robot. Background technique [0002] With the growth of the world population, the demand for high-quality food protein is increasing, and at the same time, marine fishery resources are increasingly depleted. The role of aquaculture in ensuring food safety is becoming more and more important. The aquaculture industry has also become a major player in global agriculture in the past 40 years fastest growing segment. my country is a big aquaculture country in the world, and aquaculture has played an important role in rural employment, farmers' enrichment, foreign exchange earnings through exports, and improvement of people's dietary structure. [0003] Compared with its contribution to food safety and national economic development, the investment in scientific and technological research and development in aquaculture is relatively small, and the l...

Claims

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Application Information

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IPC IPC(8): B63C11/52
CPCB63C11/52
Inventor 项基邓泽军孙志峰
Owner ZHEJIANG UNIV
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