CN203324784U - Multi-sensor information fusion intensive aquatic product welfare cultivation water quality monitoring device - Google Patents

Multi-sensor information fusion intensive aquatic product welfare cultivation water quality monitoring device Download PDF

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Publication number
CN203324784U
CN203324784U CN201320348445XU CN201320348445U CN203324784U CN 203324784 U CN203324784 U CN 203324784U CN 201320348445X U CN201320348445X U CN 201320348445XU CN 201320348445 U CN201320348445 U CN 201320348445U CN 203324784 U CN203324784 U CN 203324784U
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China
Prior art keywords
water quality
microprocessor unit
information fusion
sensor information
infrared camera
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Expired - Fee Related
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CN201320348445XU
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Chinese (zh)
Inventor
刘双印
徐龙琴
肖洪生
郑赞红
易学明
罗移祥
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Guangdong Ocean University
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Guangdong Ocean University
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Abstract

The utility model discloses a multi-sensor information fusion intensive aquatic product welfare cultivation water quality monitoring device which comprises a multi-parameter water quality intelligent sensor (1), a far-infrared camera (2), a microprocessor unit (3), a ZigBee wireless access node (4) and a field control center device (5). The multi-parameter water quality intelligent sensor (1) is connected with the microprocessor unit (3). The far-infrared camera (2) is connected with the microprocessor unit (3). The microprocessor unit (3) is connected with the field control center device (5) via the ZigBee wireless access node (4). According to the multi-sensor information fusion intensive aquatic product welfare cultivation water quality monitoring device, cultivated animal behavior image data acquired by the far-infrared camera and the water quality data acquired by the multi-parameter water quality intelligent sensor are analyzed and processed so that accuracy of identifying cultivation water quality variation is enhanced, and thus the cultivated objects are ensured to grow up in the most suitable water environment.

Description

The intensive aquatic products welfare cultivation water supervising device of multi-sensor information fusion
Technical field
The utility model relates to infotech, technical field of aquaculture, relates in particular to a kind of intensive aquatic products welfare cultivation water supervising device of multi-sensor information fusion.
Background technology
Be still the traditional aquaculture model that leans on sky, leans on experience, extensive style for current subtropics intensive aquaculture industry, in breeding process, monitoring water quality and ladder of management fall behind, water quality and environmental information Real-Time Monitoring level are low, over capacity cultivation, bait throwing in and dispenser unreasonable, the existence and the growing environment that have greatly worsened subtropics intensive aquaculture object of science not, easily cause illness outbreak, bring huge economic loss to cultivation enterprise and individual, the outstanding problem such as above-mentioned has become the important technology bottleneck of restriction culture fishery development.Therefore, the intensive aquaculture multi-parameter water-quality is monitored, then in conjunction with the animal behavior mutation analysis, effective identification Regular of Water Quality Variation, to reducing the cultivation risk, promote that subtropics intensive aquatic products welfare aquaculture industry sustainable development has important scientific meaning and using value.
At present, aspect cultivation water monitoring and forecasting software and hardware, still some enterprise uses collection in worksite water quality sample and manually chemically examines to laboratory, this mode poor in timeliness, and because monitoring personnel's know-how and cultivation experience are uneven, different monitoring personnel Yi Zaocheng measurement results is inconsistent, only with artificial experience to breeding water body water quality monitoring often waste time and energy, poor reliability.Even some enterprise adopts automatic water quality monitoring system, they are to take online automatic analytical instrument as core, a set of online auto monitoring system that uses sensor technology, automatic measuring and controlling technology, Computerized Information Processing Tech and relevant special-purpose water quality forecast analysis software and communication network to form.The water quality parameter of this monitoring system is single, and the water quality data of monitoring and animal behavior are not changed combine and analyze and process, easily produce wrong report and fail to report phenomenon at the water quality deterioration initial stage, the water quality condition identification effect has much room for improvement, and import American-European advanced water quality monitoring equipment and technology, cost performance is poor, is difficult to practice and extension, and some not too is applicable to the actual needs of China's intensive aquaculture.
The utility model content
The purpose of this utility model is to provide a kind of intensive aquatic products welfare cultivation water supervising device of multi-sensor information fusion, with the state identification precision of increasing water quality.
To achieve these goals, the utility model adopts following technical scheme: a kind of intensive aquatic products welfare cultivation water supervising device of multi-sensor information fusion, comprise multi-parameter water quality intelligent sensor, far infrared camera, microprocessor unit, ZigBee radio access node and field control center fixture, described multi-parameter water quality intelligent sensor is connected with microprocessor unit, far infrared camera is connected with microprocessor unit, and microprocessor unit is connected with the field control center by the ZigBee radio access node.
Described multi-parameter water quality intelligent sensor is connected with microprocessor unit by the RS485 Serial Port Line; Wherein the multi-parameter water quality intelligent sensor is used for gathering a plurality of intensive aquatic products welfare cultivation water supplemental characteristics such as dissolved oxygen DO, potential of hydrogen, water temperature, water level, salinity, turbidity, intensity of illumination, ammonia nitrogen and is amplified and the A/D conversion signal collected.
Described far infrared camera is connected with microprocessor unit by usb bus; Wherein far infrared camera is used for gathering cultivated animals behavior view data.
After the utility model adopts said structure, at traditional monitoring device, only using has increased far infrared camera on the basis of water quality sensor and has captured the animal behavior live image, greatly reduces rate of false alarm and the rate of failing to report of water quality deterioration alert.Adopt the ZigBee radio network technique at image and data transmission, data transmission is stable, networking is strong, has improved the water mass identification effect.Multi-sensor information fusion technology, in conjunction with the dissolved oxygen DO in the intensive aquaculture pond of Real-time Collection, potential of hydrogen, water temperature, water level, salinity, turbidity, intensity of illumination, ammonia nitrogen situation and animal behavior image data analysis, process, ethogram be will cultivate and data fusion analysis and processing carried out as data and water quality data, improved the precision that the identification cultivation water changes, guarantee to cultivate object healthy growth under optimum water environment
For the water quality real time on-line monitoring lays the foundation, simultaneously also to cultivation object healthy growth under comfortable water environment, improve its quality and fanning economics and there is important researching value and practical value, having a good application prospect aspect intensive aquatic products welfare cultivation and fine-grained management.
The accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
In figure: 1 multi-parameter water quality intelligent sensor 2 far infrared cameras
3 microprocessor unit 4 ZigBee radio access nodes
5 field control center fixtures.
Embodiment
Below in conjunction with Fig. 1, embodiment of the present utility model is described in further detail.
The intensive aquatic products welfare cultivation water supervising device of multi-sensor information fusion of the present utility model, comprise multi-parameter water quality intelligent sensor 1, far infrared camera 2, microprocessor unit 3, ZigBee radio access node 4 and field control center fixture 5, wherein multi-parameter water quality intelligent sensor 1 is connected with microprocessor unit 3, far infrared camera 2 is connected with microprocessor unit 3, and microprocessor unit 3 is connected with field control center 5 by ZigBee radio access node 4; Multi-parameter water quality intelligent sensor 1 is connected with microprocessor unit 3 by the RS485 Serial Port Line; Far infrared camera 2 is connected with microprocessor unit 3 by usb bus.
Principle of work of the present utility model is: multi-parameter water quality intelligent sensor 1 is used for a plurality of intensive aquatic products welfare cultivation water supplemental characteristics such as online acquisition dissolved oxygen DO, potential of hydrogen, water temperature, water level, salinity, turbidity, intensity of illumination, ammonia nitrogen being amplified and the A/D conversion signal collected, and by RS485 data transmission to microprocessor unit 3; Far infrared camera 2 is used for gathering cultivated animals behavior view data, and by USB interface data transmission to microprocessor unit 3; Microprocessor unit 3 is for carrying out animal behavior image recognizer and transmission line Redundant Control, and by ZigBee radio access node 4, water quality data and view data is sent to field control center 5; Field control center 5 is for the data to multi-sensor collection and animal behavior image data analysis and processing, and determines whether water quality condition is carried out to early warning, finally result shown in real time, inquires about, preserves and downloads.
Field control center 5 utilizes the intensive aquaculture multi-parameter water-quality data of monitoring, and differentiates by microprocessor unit 3 image recognition algorithms the animal behavior image data that gather, adopt multi-information merging technology, analyze and process image and water quality data feature by the multiparameter uncertainty reasoning model, the identification water quality condition, determine the probability that water quality deterioration occurs; If cultivation water has degradating trend, carry out and alarm, for regulation and control water quality provides decision support.
The above is only preferred embodiment of the present utility model, not the utility model is done to any pro forma restriction, any those skilled in the art, in the scope that does not break away from technical solutions of the utility model, when the technology contents that can utilize above-mentioned announcement is made a little change or is modified to the equivalent embodiment of equivalent variations, in every case be the content that does not break away from technical solutions of the utility model, any simple modification of above embodiment being done according to technical spirit of the present utility model, equivalent variations and modification, all still belong in the scope of technical solutions of the utility model.

Claims (3)

1. the intensive aquatic products welfare cultivation water supervising device of a multi-sensor information fusion, comprise multi-parameter water quality intelligent sensor (1), far infrared camera (2), microprocessor unit (3), ZigBee radio access node (4) and field control center fixture (5), it is characterized in that: described multi-parameter water quality intelligent sensor (1) is connected with microprocessor unit (3), far infrared camera (2) is connected with microprocessor unit (3), and microprocessor unit (3) is connected with field control center (5) by ZigBee radio access node (4).
2. the intensive aquatic products welfare cultivation water supervising device of multi-sensor information fusion according to claim 1, it is characterized in that: described multi-parameter water quality intelligent sensor (1) is connected with microprocessor unit (3) by the RS485 Serial Port Line.
3. the intensive aquatic products welfare cultivation water supervising device of multi-sensor information fusion according to claim 1, it is characterized in that: described far infrared camera (2) is connected with microprocessor unit (3) by usb bus.
CN201320348445XU 2013-06-18 2013-06-18 Multi-sensor information fusion intensive aquatic product welfare cultivation water quality monitoring device Expired - Fee Related CN203324784U (en)

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CN201320348445XU CN203324784U (en) 2013-06-18 2013-06-18 Multi-sensor information fusion intensive aquatic product welfare cultivation water quality monitoring device

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Application Number Priority Date Filing Date Title
CN201320348445XU CN203324784U (en) 2013-06-18 2013-06-18 Multi-sensor information fusion intensive aquatic product welfare cultivation water quality monitoring device

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109591982A (en) * 2018-12-29 2019-04-09 浙江大学 A kind of no worker monitor underwater culture robot
CN111624321A (en) * 2020-06-08 2020-09-04 深圳延浩科技有限公司 Integrated multi-interface multi-parameter water quality analyzer

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109591982A (en) * 2018-12-29 2019-04-09 浙江大学 A kind of no worker monitor underwater culture robot
CN111624321A (en) * 2020-06-08 2020-09-04 深圳延浩科技有限公司 Integrated multi-interface multi-parameter water quality analyzer
CN111624321B (en) * 2020-06-08 2021-06-15 深圳延浩科技有限公司 Integrated multi-interface multi-parameter water quality analyzer

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CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20131204

Termination date: 20170618