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CN108234951A - A kind of remote distance video transfer monitoring system based on deep water mesh cage - Google Patents

A kind of remote distance video transfer monitoring system based on deep water mesh cage Download PDF

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Publication number
CN108234951A
CN108234951A CN201810066802.0A CN201810066802A CN108234951A CN 108234951 A CN108234951 A CN 108234951A CN 201810066802 A CN201810066802 A CN 201810066802A CN 108234951 A CN108234951 A CN 108234951A
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CN
China
Prior art keywords
main frame
frame body
deep water
bottom plate
mesh cage
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201810066802.0A
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Chinese (zh)
Other versions
CN108234951B (en
Inventor
黄小华
刘海阳
胡昱
陶启友
王绍敏
袁太平
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South China Sea Fisheries Research Institute Chinese Academy Fishery Sciences
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South China Sea Fisheries Research Institute Chinese Academy Fishery Sciences
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Application filed by South China Sea Fisheries Research Institute Chinese Academy Fishery Sciences filed Critical South China Sea Fisheries Research Institute Chinese Academy Fishery Sciences
Priority to CN201810066802.0A priority Critical patent/CN108234951B/en
Publication of CN108234951A publication Critical patent/CN108234951A/en
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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N7/00Television systems
    • H04N7/18Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast
    • H04N7/183Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast for receiving images from a single remote source
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K61/00Culture of aquatic animals
    • A01K61/60Floating cultivation devices, e.g. rafts or floating fish-farms
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A40/00Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
    • Y02A40/80Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in fisheries management
    • Y02A40/81Aquaculture, e.g. of fish
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P60/00Technologies relating to agriculture, livestock or agroalimentary industries
    • Y02P60/60Fishing; Aquaculture; Aquafarming

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Marine Sciences & Fisheries (AREA)
  • Zoology (AREA)
  • Animal Husbandry (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • Farming Of Fish And Shellfish (AREA)

Abstract

The invention discloses a kind of remote distance video transfer monitoring systems based on deep water mesh cage,Including video monitoring fixing device and video monitoring mechanism,The video monitoring fixing device includes main frame body,Photovoltaic board mount,The cap ned of battery protection case and deep water mesh cage,The bottom end of main frame body is mounted on cap ned,The top of main frame body is equipped with holder fixed plate,The battery protection case is mounted on the bottom of main frame body,Battery protection case is built-in with accumulator,The video monitoring mechanism includes monopod video camera,Bridge transmitter,Solar energy photovoltaic panel and accumulator,The monopod video camera is mounted in holder fixed plate,Bridge transmitter is mounted on the top of main frame body,Solar energy photovoltaic panel is mounted on photovoltaic board mount,Solar energy photovoltaic panel is connected with accumulator by cable,Monopod video camera,Bridge transmitter is connected respectively with accumulator.This is that can carry out zero distance to deep water mesh cage facility and safe breeding production situation uninterruptedly to monitor in real time.

Description

A kind of remote distance video transfer monitoring system based on deep water mesh cage
Technical field
The present invention relates to the video monitoring systems of a kind of deep water mesh cage, in particular to a kind of based on the remote of deep water mesh cage Transmit video monitoring system.
Background technology
Deep water mesh cage has the significant advantage that carrying capacity is big, culture efficiency is good, and maximum net cage produces fish amount super 80t/ per year Case, 1,500,000 yuan of the output value or more.
Cultivation risk how to be controlled to ensure culture efficiency to greatest extent, is cage culture enterprise concern the most. As deep water mesh cage further develops to enlargement, deep water, cultivation scale direction, the cultivation risk faced is continuously increased, Higher requirement is proposed to deep-water net cage culture management.
Using modern management means complete monitoring cage culture situation, it can be achieved that quick response processing cage culture production Burst accident substantially reduces cultivation risk and production loss caused by human factor, it has also become deep-water net cage culture is intelligent An urgent demand of management.
Currently, in all deep-water net cage culture bases in Nanhai District, only indivedual cage culture enterprises rely on aquaculture management Stage+module Active Eyes, and a few the near cage culture situation of management platform that is only capable of adjusting the distance is implemented Monitoring can not meet the monitoring demand of large-scale farming production.The high construction cost of management platform also becomes cultivation monitoring and lacks The main reason for mistake.
Invention content
The object of the present invention is to provide a kind of remote distance video transfer monitoring system based on deep water mesh cage, which relies on It is placed in deep water mesh cage, long-distance video monitoring can realize that zero distance uninterruptedly monitors net cage facility and safe breeding production Situation.
The above-mentioned purpose of the present invention is achieved through the following technical solutions:A kind of remote distance video transfer based on deep water mesh cage Monitoring system, it is characterised in that:The system includes video monitoring fixing device and video monitoring mechanism, and the video monitoring is consolidated Determine the cap ned that device includes main frame body, photovoltaic board mount, battery protection case and deep water mesh cage, the main frame body is vertically set It puts, the bottom end of main frame body is mounted on cap ned, and by cap ned support, the top of main frame body is equipped with holder fixed plate, in body frame The stage casing of body is equipped with 2 rectangle fixed plates along the direction of vertical main frame body, and 2 rectangle fixed plates are setting up and down, described Photovoltaic board mount is connected by bolt with 2 rectangle fixed plates, and the battery protection case is mounted on the bottom of main frame body, electricity Pond protective housing is built-in with accumulator, and the video monitoring mechanism includes monopod video camera, bridge transmitter, solar energy photovoltaic panel And accumulator, the monopod video camera are mounted in holder fixed plate, bridge transmitter is mounted on the top of main frame body, the sun Energy photovoltaic panel is mounted on photovoltaic board mount, and in battery protection case, solar energy photovoltaic panel passes through built-in storage battery with accumulator Cable is connected, and monopod video camera, bridge transmitter are connected respectively with accumulator, and the monopod video camera is used to adopt in real time Collect the video image of cage culture, collected video image is recorded and sends bridge transmitter to, bridge transmitter passes through For bridge transmitting terminal by video image and signal transmission to bridge receiving terminal on the bank, computer user or mobile phone user pass through client Video image is received, real time inspection and manipulation are carried out to the video image of reception, which relies on deep water mesh cage, can be to deep water Net cage facility and safe breeding production situation carry out zero distance and uninterruptedly monitor in real time.
As a modification of the present invention, the holder fixed plate is welded on the top of main frame body, and holder fixed plate is opened There are 4 apertures.
As a modification of the present invention, the bottom end of the main frame body is welded with U-shaped bottom plate, in U-shaped bottom plate and main frame body Between be also welded with 4 pieces of reinforcing ribs, 4 pieces of reinforcing ribs are vertically arranged, in the surrounding for being longitudinally, laterally arranged in main frame body, pass through weldering It connects and reinforcing rib and main frame body and U-shaped bottom plate is combined into an entirety, enhance the stability of main frame body, main frame body passes through U-shaped bottom Plate is mounted on cap ned, and the battery protection case is mounted on U-shaped bottom plate.
As a modification of the present invention, the cap ned has a channel steel, the width of the U-shaped bottom plate and cap ned It is of same size, one block of L-type plate is connected with by bolt respectively in the outside of U-shaped bottom plate, two blocks of L-type plates are combined into U-shaped bottom plate and cut Face is the structure of concave, and channel steel is connected by bolt with two blocks of L-type plates respectively, and the U-shaped bottom plate is mounted on work by L-type plate On cabinet frame;2 vertical supporting pieces are equipped on the inside of U-shaped bottom plate, 2 support chips are connected by bolt with U-shaped bottom plate and L-type plate It connects, support chip is used to install the battery protection case, and the height of support chip is higher than the height of U-shaped bottom plate.
As a modification of the present invention, the battery protection case has case lid, seal gasket, babinet and bottom support Piece, case lid are hinged on babinet, and seal gasket is arranged between case lid and babinet, and bottom support chip is welded on the bottom of box, institute The bottom support chip stated is 2, and 2 bottom support chips are connected with 2 support chips on the inside of U-shaped bottom plate by bolt, so as to Support support babinet.
As a modification of the present invention, in described 4 pieces of reinforcing ribs, maximum one piece of reinforcing rib, which is located remotely from battery, to be prevented One end of protecting box, is provided with 4 apertures on the block reinforcing rib, and the upper surface of cap ned is placed with cylinder, 2 pieces of intermediate plate clip cylinders, and 2 Block intermediate plate passes through the aperture on the block reinforcing rib that 2 pieces of intermediate plates are fastenedly connected on the block reinforcing rib by bolt.
As a modification of the present invention, the photovoltaic board mount includes 2 tripods, 2 channel steel connecting rods, 2 angles Steel connecting rod and 2 reinforced sheets, wherein, 2 channel steel connecting rods are connected respectively by bolt with 2 rectangle fixed plates, 2 triangles Frame is located at both sides, and the both ends with 2 channel steel connecting rods are connected respectively, and 2 angle steel connecting rods pass through bolt and 2 tripod phases respectively Connection, 2 angle steel connecting rods are erected between 2 tripod stents, and 2 reinforced sheets are arranged between 2 angle steel connecting rods, for adding The stabilized structure of strong photovoltaic board mount.
Compared with prior art, the invention has the advantages that:
First, the present invention system unit is fitted together by fixed frame, and with the upper plane of cap ned and upper end cylinder Body connection is fixed, and effectively ensures that whole system is fixedly attached on cap ned.Due to cap ned be one of net cage frame solely Vertical component while whole system moves together with net cage, will not fluctuate because of wave and the linkage of cage structure generates system It destroys.
Secondth, the present invention is placed in zero distance on deep water mesh cage frame and carries out the real-time of net cage facility and fish culture situation Monitoring facilitates aquaculture management personnel that can grasp the abnormal conditions of cage culture appearance in time, so as to quickly make counter-measure, Utmostly reduce cultivation risk.
Third, photovoltaic board mount of the present invention, battery protection case and main frame body are individual components, and when installation can thing First respectively connection is completed on the coast, then the assembling on net cage frame can be realized by a few bolt, is enormously simplified Attention problems flow, reduces installation risk.In addition, all structures are 316L stainless steel materials, it can be with this hair of effective guarantee Not by seawater corrosion during bright long-time progress cage culture monitoring.
4th, the present invention is using solar powered, and using non-maintaining accumulator storage electricity, can realize daytime and Night continual cage culture monitoring.
Description of the drawings
The present invention is described in further details with reference to the accompanying drawings and detailed description.
Fig. 1 is the overall structure diagram of the remote distance video transfer monitoring system the present invention is based on deep water mesh cage;
Fig. 2 is the side view of the remote distance video transfer monitoring system the present invention is based on deep water mesh cage;
Fig. 3, which is that the present invention is based on the remote distance video transfer monitoring systems of deep water mesh cage, to remove video monitoring mechanism and work Front view after cabinet frame;
Fig. 4 is the A portions enlarged drawing of Fig. 3;
Fig. 5 is the vertical view of the remote distance video transfer monitoring system the present invention is based on deep water mesh cage.
Component names in figure representated by serial number are:1st, main frame body;2nd, photovoltaic board mount;3rd, battery protection case;4th, I-shaped Frame;5th, intermediate plate;6th, reinforcing rib;7th, channel steel connecting rod;8th, channel steel;9th, holder fixed plate;10th, rectangle fixed plate;11st, tripod; 12nd, angle steel connecting rod;13rd, reinforced sheet;14th, U-shaped bottom plate;15th, L-type plate;16th, support chip;17th, cylinder;18th, monopod video camera;19、 Bridge transmitter;20th, side briquetting;21st, middle briquetting;22nd, photovoltaic panel.
Specific embodiment
The remote distance video transfer monitoring system based on deep water mesh cage as shown in Figures 1 to 5, is fixed including video monitoring Device and video monitoring mechanism, video monitoring fixing device entirety support is on deep water mesh cage, for installing fixed deep water mesh cage Video monitoring mechanism, deep-water net cage culture is monitored in real time by video monitoring mechanism.
Video monitoring fixing device includes the cap ned of main frame body 1, photovoltaic board mount 2, battery protection case 3 and deep water mesh cage 4, main frame body 1 is vertically arranged, and the bottom end of main frame body 1 is mounted on cap ned 4, and by 4 support of cap ned, the top of main frame body 1 is set There is holder fixed plate 9, it is rectangular equipped with 2 rectangle fixed plates 10,2 along the direction of vertical main frame body 1 in the stage casing of main frame body 1 Shape fixed plate 10 is setting up and down, and photovoltaic board mount 2 is connected by bolt with 2 rectangle fixed plates 10, and battery protection case 3 is installed In the bottom of main frame body 1, battery protection case 3 is built-in with accumulator.
Video monitoring mechanism includes monopod video camera 18, bridge transmitter 19, solar energy photovoltaic panel and accumulator, solar energy Photovoltaic panel includes side briquetting 20, middle briquetting 21 and photovoltaic panel 22, and monopod video camera 18 is mounted in holder fixed plate 9, bridge hair Emitter 19 is mounted on the top of main frame body 1, and bridge transmitter 19 is mounted on photovoltaic panel branch using wireless transmission, solar energy photovoltaic panel On frame 2, built-in storage battery is in battery protection case 3, and solar energy photovoltaic panel is connected with accumulator by cable, monopod video camera 18th, bridge transmitter 19 is connected respectively with accumulator, and monopod video camera 18 is used to acquire the video image of cage culture in real time, Collected video image is recorded and sends bridge transmitter 19 to, bridge transmitter 19 is by bridge transmitting terminal by video figure Picture and signal transmission receive video image, docking to bridge receiving terminal on the bank, computer user or mobile phone user by client The video image of receipts carries out real time inspection and manipulation, which relies on deep water mesh cage, and deep water mesh cage facility and safety can be supported Condition of production progress zero distance is grown uninterruptedly to monitor in real time.
The video monitoring fixing device of the system relies on deep water mesh cage placement, can be used in installing fixed deep water mesh cage Monitoring remote video.During preparation, monopod video camera is connected using the holder fixed plate 9 on 1 top of main frame body, by wireless bridge Transmitter 19 is fixed on the upper position of main frame body 1 by U-shaped folder code, and photovoltaic board mount 2 is bolted and main frame body 1 It is fixed, finally the video monitoring system connected is fixedly mounted on by main frame body 1 on net cage cap ned 4 and carries out cage culture Real time monitoring.
In the present embodiment, holder fixed plate 9 is welded on the top of main frame body 1, and holder fixed plate 9 is provided with 4 apertures.
In the present embodiment, the bottom end of main frame body 1 is welded with U-shaped bottom plate 14, is also welded between U-shaped bottom plate 14 and main frame body 1 4 pieces of reinforcing ribs 6 are connected to, further strengthen stability of the main frame body 1 on net cage cap ned 4,4 pieces of reinforcing ribs 6 are vertically arranged, are in The surrounding of main frame body 1 is longitudinally, laterally arranged in, reinforcing rib 6 and main frame body 1 and U-shaped bottom plate 14 are combined into one by welding It is whole, enhance the stability of main frame body 1, main frame body 1 is mounted on by U-shaped bottom plate 14 on cap ned 4, and battery protection case 3 is installed On U-shaped bottom plate 14.
In the present embodiment, cap ned 4 has channel steel 8, and the width of U-shaped bottom plate 14 is of same size with cap ned 4, U-shaped The outside of bottom plate 14 is connected with one block of L-type plate 15 by bolt respectively, and it is recessed that two blocks of L-type plates 15 are combined into section with U-shaped bottom plate 14 The structure of type for being stuck in the upper transverse plane of net cage cap ned 4, avoids 1 transverse shakiness of main frame body.Channel steel 8 is three pieces, three pieces Channel steel 8 is located at the lower end of 4 upper surface of cap ned, and main function is that L-type plate 15 is bolted, and is compressed on cap ned 4 Surface.
Channel steel 8 is connected by bolt with two blocks of L-type plates 15 respectively, and U-shaped bottom plate 14 is mounted on cap ned by L-type plate 15 On 4, U-shaped bottom plate 14 and 4 upper end horizontal plane of cap ned are compressed;2 vertical supporting pieces 16,2 are equipped in 14 inside of U-shaped bottom plate Support chip 16 is connected by bolt with U-shaped bottom plate 14 and L-type plate 15, and support chip 16 is used to install battery protection case 3, support chip 16 height is higher than the height of U-shaped bottom plate 14.
In the present embodiment, there is battery protection case 3 case lid, seal gasket, babinet and bottom support chip, case lid to be hinged on case On body, seal gasket is arranged between case lid and babinet, and bottom support chip is welded on the bottom of box, and bottom support chip is 2, and 2 Piece bottom support chip is connected with 2 support chips 16 of 14 inside of U-shaped bottom plate by bolt, so as to support support babinet.
In the present embodiment, in 4 pieces of reinforcing ribs 6 of main frame body 1, maximum one piece of reinforcing rib 6 is located remotely from battery protection case 3 One end, be provided with 4 apertures on the block reinforcing rib 6, the upper surface of cap ned 4 is placed with cylinder 17, and cylinder 17 is cap ned 4 A part, 2 pieces of 5 clip cylinder of intermediate plate, 17,2 pieces of intermediate plates 5 pass through the aperture on the block reinforcing rib 6 that 2 pieces of intermediate plates 5 are tight by bolt It is solidly connected on the block reinforcing rib 6.
In the present embodiment, photovoltaic board mount 2 includes 27,2, channel steel connecting rod angle steel connecting rods 12 of tripod 11,2 and 2 Reinforced sheet 13, wherein, it is opened in every 7 medium position of channel steel connecting rod there are two aperture, 2 channel steel connecting rods 7 pass through bolt and 2 respectively A rectangle fixed plate 10 is connected, and 2 tripods 11 are located at both sides, and the both ends with 2 channel steel connecting rods 7 are connected respectively, 2 Angle steel connecting rod 12 is connected respectively by bolt with 2 tripods 11, and 2 angle steel connecting rods 12 are erected at 2 11 stents of tripod Between, 2 reinforced sheets 13 are arranged between 2 angle steel connecting rods 12, for strengthening the stabilized structure of photovoltaic board mount 2.
The workflow of the present invention is as follows:
During preparation of the present invention, main frame body 1 is placed on net cage cap ned 4, and pass through 2 L-type plates 15 respectively with The U-shaped board 14 of 1 bottom end of main frame body, the support chip 16 of 14 inside of U-shaped board and 3 channel steels 8 progress bolt company across cap ned 4 It connects, main frame body 1 can be tightly buckled on net cage cap ned 4.
Then the circular cylinder body 17 of 4 upper end of cap ned is blocked using 2 pieces of intermediate plates 5, is bolt-connected to adding for main frame body 1 In strengthening tendons 6, the stable connection of main frame body 1 and net cage cap ned 4 is further enhanced.
Then 2 tripods, 11,2 channel steel connecting rods 7 and 2 angle steel connecting rods 12 are sequentially connected, are assembled into the photovoltaic of device Board mount 2, and in 2 rectangle fixed plates 10 being fixed with bolts on main frame body 1.
Then battery protection case 3 is disposed across on the 14 fixed support chip 16 in inside of bottom end U-shaped bottom plate of main frame body 1, and It is bolted.
Finally connection fixes monopod video camera 18, wireless bridge transmitter 19, photovoltaic on the apparatus successively After plate, accumulator and relevant cables, you can carry out deep water mesh cage facility and the real time monitoring of fish culture situation.
The above embodiment of the present invention is not limiting the scope of the present invention, and embodiments of the present invention are not limited to This, all this kind the above according to the present invention according to the ordinary technical knowledge and customary means of this field, is not departing from this Under the premise of inventing above-mentioned basic fundamental thought, the modification of other diversified forms, replacement or the change made to above structure of the present invention More, it should all fall within the scope and spirit of the invention.

Claims (7)

1. a kind of remote distance video transfer monitoring system based on deep water mesh cage, it is characterised in that:The system includes video monitoring Fixing device and video monitoring mechanism, the video monitoring fixing device include main frame body, photovoltaic board mount, battery protection case With the cap ned of deep water mesh cage, the main frame body is vertically arranged, and the bottom end of main frame body is mounted on cap ned, is held by cap ned Support, the top of main frame body are equipped with holder fixed plate, consolidate in the stage casing of main frame body along the direction of vertical main frame body equipped with 2 rectangles Fixed board, 2 rectangle fixed plates are setting up and down, and the photovoltaic board mount is connected by bolt with 2 rectangle fixed plates, institute The battery protection case stated is mounted on the bottom of main frame body, and battery protection case is built-in with accumulator, the video monitoring mechanism packet Monopod video camera, bridge transmitter, solar energy photovoltaic panel and accumulator are included, the monopod video camera is mounted on holder fixed plate On, bridge transmitter is mounted on the top of main frame body, and solar energy photovoltaic panel is mounted on photovoltaic board mount, and built-in storage battery is in electricity In the protective housing of pond, solar energy photovoltaic panel is connected with accumulator by cable, monopod video camera, bridge transmitter respectively with electric power storage Pond is connected, and the monopod video camera remembers collected video image for acquiring the video image of cage culture in real time It records and sends bridge transmitter to, bridge transmitter is by bridge transmitting terminal by video image and signal transmission to bridge on the bank Receiving terminal, computer user or mobile phone user receive video image by client, and real time inspection is carried out to the video image of reception And manipulation, the system rely on deep water mesh cage, between zero distance can be carried out not to deep water mesh cage facility and safe breeding production situation Disconnected real time monitoring.
2. the remote distance video transfer monitoring system according to claim 1 based on deep water mesh cage, it is characterised in that:It is described Holder fixed plate be welded on the top of main frame body, holder fixed plate is provided with 4 apertures.
3. the remote distance video transfer monitoring system according to claim 1 based on deep water mesh cage, it is characterised in that:It is described The bottom end of main frame body is welded with U-shaped bottom plate, and 4 pieces of reinforcing ribs are also welded between U-shaped bottom plate and main frame body, and 4 pieces of reinforcing ribs erect To setting, in the surrounding for being longitudinally, laterally arranged in main frame body, reinforcing rib and main frame body and U-shaped bottom plate are combined by welding One entirety enhances the stability of main frame body, and main frame body is mounted on by U-shaped bottom plate on cap ned, the battery protection case On U-shaped bottom plate.
4. the remote distance video transfer monitoring system according to claim 3 based on deep water mesh cage, it is characterised in that:It is described Cap ned there is channel steel, the width of the U-shaped bottom plate and cap ned it is of same size, pass through respectively in the outside of U-shaped bottom plate Bolt is connected with one block of L-type plate, and two blocks of L-type plates are combined into the structure that section is concave with U-shaped bottom plate, channel steel by bolt respectively with Two blocks of L-type plates are connected, and the U-shaped bottom plate is mounted on by L-type plate on cap ned;2 vertical branch are equipped on the inside of U-shaped bottom plate Blade, 2 support chips are connected by bolt with U-shaped bottom plate and L-type plate, and support chip is used to install the battery protection case, The height of support chip is higher than the height of U-shaped bottom plate.
5. the remote distance video transfer monitoring system according to claim 4 based on deep water mesh cage, it is characterised in that:It is described There is battery protection case case lid, seal gasket, babinet and bottom support chip, case lid to be hinged on babinet, and seal gasket is arranged on Between case lid and babinet, bottom support chip is welded on the bottom of box, and the bottom support chip is 2,2 bottom support chips with 2 support chips on the inside of U-shaped bottom plate are connected by bolt, so as to support support babinet.
6. the remote distance video transfer monitoring system according to claim 3 based on deep water mesh cage, it is characterised in that:It is described 4 pieces of reinforcing ribs in, maximum one piece of reinforcing rib is located remotely from one end of battery protection case, is provided on the block reinforcing rib 4 small Hole, the upper surface of cap ned are placed with cylinder, 2 pieces of intermediate plate clip cylinders, and 2 pieces of intermediate plates are passed through by bolt on the block reinforcing rib 2 pieces of intermediate plates are fastenedly connected on the block reinforcing rib by aperture.
7. the remote distance video transfer monitoring system according to any one of claims 1 to 6 based on deep water mesh cage, feature It is:The photovoltaic board mount includes 2 tripods, 2 channel steel connecting rods, 2 angle steel connecting rods and 2 reinforced sheets, wherein, 2 Root channel steel connecting rod is connected respectively by bolt with 2 rectangle fixed plates, 2 tripod positions in both sides, respectively with 2 channel steels The both ends of connecting rod are connected, and 2 angle steel connecting rods are connected respectively by bolt with 2 tripods, and 2 angle steel connecting rods are erected at 2 Between a tripod stent, 2 reinforced sheets are arranged between 2 angle steel connecting rods, for strengthening the stabilized structure of photovoltaic board mount.
CN201810066802.0A 2018-01-24 2018-01-24 Remote transmission video monitoring system based on deep water net cage Active CN108234951B (en)

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CN112161160A (en) * 2020-09-28 2021-01-01 四川富美建利科技有限公司 Video monitoring fixing device based on deep water net cage
CN115183100A (en) * 2022-07-18 2022-10-14 郑州航空工业管理学院 Video monitoring fixing device based on deep water net cage

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112161160A (en) * 2020-09-28 2021-01-01 四川富美建利科技有限公司 Video monitoring fixing device based on deep water net cage
CN115183100A (en) * 2022-07-18 2022-10-14 郑州航空工业管理学院 Video monitoring fixing device based on deep water net cage
CN115183100B (en) * 2022-07-18 2023-09-29 郑州航空工业管理学院 Video monitoring fixing device based on deepwater net cage

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Application publication date: 20180629

Assignee: Guangdong Muyang Fishery Equipment Co.,Ltd.

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Denomination of invention: A remote transmission video monitoring system based on deep-water cage

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