An intelligent control system for a multi-species water ecological restoration implementation configuration in a water area
Patent Information
- Application Number
- CN202411428024.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-14
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2044-10-14
AI Technical Summary
[0004]本发明的目的是提供一种水域中多物种水生态修复实施配置的智能化控制系统,解决普在污染源得到有效控制的基础上,投撒蚌类、螺类,菌藻、同时搭配一些鱼类,水生植物的贝-鱼-草-菌-藻”立体体系智能化应用的问题
[0012] The beneficial effects of this invention are as follows: The system structure and the data on inflow, water level rise and fall, and nutrient supply based on the multi-species growth and purification control device are accurately transmitted to the user end and can be remotely operated in a targeted manner. This effectively monitors the growth, purification, and survival of multiple species in the water and effectively controls the purification standards in the water, ensuring that each multi-species growth and purification control device receives a uniform supply. Furthermore, the ratio and total amount of nutrient solution can be adjusted according to the growth status of the plants. At the same time, a nutrient solution supply plan is adaptively generated through real-time environmental data, thereby achieving more precise environmental management and ensuring that the multi-species aquatic ecological restoration implementation configuration structure grows under optimal conditions.
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Figure CN119038759B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of water purification, and in particular to an intelligent control system for implementing multi-species aquatic ecological restoration in water bodies. Background Technology
[0002] With the acceleration of urbanization and industrialization, surface water pollution has become increasingly severe, posing a serious threat to the ecological environment and human health. Therefore, strengthening surface water ecological restoration is of great significance for improving water quality, protecting ecosystems, and enhancing people's quality of life. In recent years, current treatment technologies mainly include controlling eutrophication by establishing aquatic higher plant communities, using floating beds of terrestrial plants, using algae to control algae and utilizing algal biological resources, using microorganisms or microbial growth promoters, and using algae-eating fish or zooplankton. Most of these technologies rely on a single species to achieve water purification goals and have one or more drawbacks, such as unstable effectiveness, high cost, long treatment cycles, and large land area requirements.
[0003] In recent years, freshwater shellfish have been used in aquatic ecosystem restoration due to their water purification properties. Specifically, this involves releasing mussels, snails, bacteria, algae, and fish, along with aquatic plants, to create a complete ecosystem and achieve water purification. CN202320555495.9 describes a shellfish purification system for lake aquatic ecosystem restoration, comprising wooden stakes set in the water area and shellfish purification structures between the stakes. The purification structure includes fixed nylon ropes between two stakes, traction ropes on each fixed nylon rope, multiple purification net structures on the traction ropes, and porous concrete ecological balls below the lower end of the traction ropes. However, existing technologies only target mussels as a water purification system. This method offers limited purification and cannot comprehensively address water pollutants, failing to meet the purification standards for centralized, multi-species water bodies. Subsequent maintenance is cumbersome, relying solely on manual experience to regulate the ecosystem, resulting in low efficiency, high cost, and poor real-time performance. Summary of the Invention
[0004] The purpose of this invention is to provide an intelligent control system for the implementation of multi-species aquatic ecological restoration in water areas, solving the problem of intelligent application of a three-dimensional system of "shellfish-grass-fungus-algae" by releasing shellfish, snails, bacteria and algae, along with some fish and aquatic plants, on the basis of effective control of pollution sources.
[0005] The technical solution adopted by this invention to solve its technical problem is: an intelligent control system for the implementation configuration of multi-species aquatic ecological restoration in water areas, including a multi-species growth and purification control device installed in the water area and an intelligent control system structure connected to the multi-species growth device. The intelligent control system structure in the water area includes: The water flow control unit is used to obtain the water inflow of the multi-species growth device; and to adjust the flow structure direction and opening / closing control commands of the multi-species growth purification control device according to the water inflow. The nutrient supply unit is used to control the nutrient blocks according to the growth status of algae; it generates nutrient solution supply instructions based on environmental parameters within the multi-species growth purification control device. The remote automatic control unit is used to update the command schedule from the control center and control the density of the multi-species growth device according to the command schedule; the analysis results and solutions are transmitted to the mobile / PC control software via the Internet and presented to the technicians. The water level control unit is used by the control center to receive control and supply control commands; and to move the lifting and lowering settings of the multi-species aquatic ecological restoration and aquaculture control frame in the multi-species growth and purification control device to adapt to water level adjustment, change purification species, and device maintenance. The remote automatic control unit includes a gateway, a router, a processing module, a location determination module, a water area video monitoring module unit, a built-in component control module group, and a stability monitoring module. The location determination module sets the location of the multi-species growth purification control device after receiving the GPS positioning receiver with the received number; and constructs a three-dimensional simulation model based on the structural parameters of the multi-species growth purification control device. The aforementioned water area video monitoring module unit is equipped with an outer video terminal around the multi-species growth device and a high-definition underwater video terminal inside the multi-species growth device; The multi-species growth device includes a submerged base structure, a set of end-fixed seat structures located on the upper part of the submerged base structure, a multi-species aquatic ecological restoration and aquaculture area located between the two end-fixed seat structures, a multi-species aquatic ecological restoration and aquaculture control frame structure located within the multi-species aquatic ecological restoration and aquaculture area, a lifting and adjusting frame structure located within the multi-species aquatic ecological restoration and aquaculture area and connected to the multi-species aquatic ecological restoration and aquaculture control frame structure, and a bottom equipment connecting platform located at the lower part of the end-fixed seat structure.
[0006] The multi-species aquatic ecological restoration and aquaculture control framework structure includes an aquatic plant planting net framework structure, a mussel farming net framework structure, and a fish farming net framework structure. The upper ends of the aquatic plant planting net framework structure, the mussel farming net framework structure, and the fish farming net framework structure are all connected to an end connecting frame structure.
[0007] The end fixing base structure includes a hollow end base, an opening and closing flow gate body located inside the end base, and a guardrail body located on the top of the end base. The opening and closing flow gate body is equipped with a synchronous opening and closing linkage mechanism driven by an opening and closing motor. The opening and closing motor is connected to the water flow acquisition module, the motor opening and closing control module in the water flow control unit, and the internal flow acquisition module located in the end base.
[0008] The lifting and adjusting platform structure includes a movable lifting frame of the mesh frame located between the two end seats, a lifting control winch located on the upper part of the movable lifting frame, and a guide pulley group located inside the end seats and in contact with the outside of the movable lifting frame of the mesh frame.
[0009] The bottom equipment control unit includes an equipment connection platform located on the upper part of the sinking base structure, an automatic feeding box located on the equipment connection platform, an automatic feeding module located in the nutrient supply unit, an automatic feeding device connected to the automatic feeding module and located in the automatic feeding box, and a nutrient supply unit also includes a storage module for monitoring the automatic feeding device.
[0010] The sinking base structure includes a sinking connecting base located at the lower part of the end seat and a counterweight located at the lower part of the sinking connecting base. A balancer is installed on the upper part of the sinking connecting base, and the balancer is connected to the stability monitoring module in the remote automatic control unit.
[0011] An intelligent control system for implementing multi-species aquatic ecological restoration in water areas is characterized by comprising a multi-species growth and purification control device installed in the water area, and an intelligent control system structure connected to the multi-species growth device within the water area. The multi-species growth purification control device includes a shoreline connecting frame structure installed in the water area, several multi-species growth purification unit components installed outside the shoreline connecting frame structure, an automatic control device installed between the multi-species growth purification unit components and the shoreline connecting frame structure, and an automatic control device installed between the shoreline connecting frame structure and the multi-species growth purification unit components. The automatic control device is connected to an intelligent control system structure in the water area. The aforementioned shoreline connection frame structure includes a group of connecting piles located on the shoreline of the water area, an installation shoreline connecting the upper part of the connecting piles, an extended assembly outer frame structure located on the outer side of the installation shoreline, and a control equipment mounting platform located within the installation shoreline. The extended assembly outer frame structure includes multiple splicing outer frame connectors located on the outer side of the installation shoreline, and multiple spaced-apart branch-fixed column structures located on the upper part of the splicing outer frame connectors. The branch-fixed column structures include branch pile seats located on the upper part of the splicing outer frame connectors and side-fixed pile columns located in each branch pile seat. The multi-species growth and purification unit component includes a cage placement area composed of multiple sets of spliced outer frame connectors, and various aquatic ecological breeding cages located in the cage placement area. These various aquatic ecological breeding cages are categorized into: aquatic plant planting implanted frame structure, mussel farming implanted cage structure, and fish farming implanted cage structure. The aforementioned intelligent control system structure for water areas includes: The water flow control unit is used to obtain the water inflow of the multi-species growth device; and to adjust the flow structure direction and opening / closing control commands of the multi-species growth purification control device according to the water inflow. The nutrient supply unit is used to control the nutrient blocks according to the growth status of algae; it generates nutrient solution supply instructions based on environmental parameters within the multi-species growth purification control device. The remote automatic control unit is used to update the command schedule from the control center and control the density of the multi-species growth device according to the command schedule; the analysis results and solutions are transmitted to the mobile / PC control software via the Internet and presented to the technicians. The stocking box control unit is used by the control center to receive control and supply control commands; and to control the movement of the multi-species aquatic ecological restoration and aquaculture control frame in the multi-species growth and purification control device to adapt to the growth water depth of various stocking boxes, change purification species, and move the lifting position for device maintenance. The automatic control equipment includes: An automatic water level control gate structure is installed outside the splicing outer frame connector, and a water level monitor is installed at the end of the splicing outer frame connector. The automatic water level control gate structure is connected to the water level monitor processing module in the water flow regulation unit, and the water level monitor is connected to the water level monitor monitoring module in the water flow regulation unit. The water level monitor processing module controls the automatic rolling shutter control motor in the automatic water level control gate structure; the automatic rolling shutter control motor controls the opening and closing of the evenly distributed through holes of the automatic rolling shutter, thereby controlling the water flow in this area. An automatic bottom feeder is installed on the side-fixed pile column, and the automatic bottom feeder is connected to the automatic bottom discharging module in the nutrient supply unit. The system includes a main control box mounted on a control equipment installation platform, and a remote automatic control unit within the main control box. The remote automatic control unit comprises a gateway, router, processing module, location determination module, and a water area video monitoring module. The location determination module is configured with a GPS positioning receiver to receive the location of the multi-species growth and purification control device after receiving its serial number. The water area video monitoring module includes an external video terminal for the multi-species growth device and a high-definition underwater video connection terminal within the multi-species growth device. The external video terminal is connected to an external environment video camera mounted on a side-mounted fixed pile, and the high-definition underwater video connection terminal is connected to a high-definition underwater video camera mounted on the side-mounted fixed pile. A separate lifting motor or lifting motor linkage structure is provided on the upper part of the splicing outer frame connecting body for each of the multiple aquatic ecological breeding net boxes. The separate lifting motor or lifting motor linkage structure is connected to the built-in component control module group in the stocking box control unit.
[0012] The beneficial effects of this invention are as follows: The system structure and the data on inflow, water level rise and fall, and nutrient supply based on the multi-species growth and purification control device are accurately transmitted to the user end and can be remotely operated in a targeted manner. This effectively monitors the growth, purification, and survival of multiple species in the water and effectively controls the purification standards in the water, ensuring that each multi-species growth and purification control device receives a uniform supply. Furthermore, the ratio and total amount of nutrient solution can be adjusted according to the growth status of the plants. At the same time, a nutrient solution supply plan is adaptively generated through real-time environmental data, thereby achieving more precise environmental management and ensuring that the multi-species aquatic ecological restoration implementation configuration structure grows under optimal conditions.
[0013] The present invention will now be described in more detail with reference to the accompanying drawings and embodiments. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the system of the present invention.
[0015] Figure 2 This is a flowchart of the control method of the present invention.
[0016] Figure 3 This is a schematic diagram of the structure of the multi-species growth purification control device of the present invention.
[0017] Figure 4 for Figure 3 Top view.
[0018] Figure 5 for Figure 3 A schematic diagram of the structure of the guide pulley block.
[0019] Figure 6This is a schematic diagram of another multi-species growth purification control device according to the present invention.
[0020] Figure 7 for Figure 6 Top view.
[0021] Figure 8 for Figure 6 A schematic diagram of the structure of the automatic water level control gate.
[0022] Figure 9 This is a flowchart of the second control method of the present invention.
[0023] In the diagram: 1. Gateway, 2. Router, 3. Processing module, 4. Position determination module, 5. In-water video monitoring module, 6. Stability monitoring module, 7. Peripheral video terminal, 8. High-definition underwater video terminal, 9. Aquatic plant planting net frame structure, 10. Mussel farming net frame structure, 11. Fish farming net frame structure, 12. End connection frame, 13. End seat, 14. Flow gate, 15. Guardrail, 16. Opening and closing motor, 17. Synchronous opening and closing linkage mechanism, 18. Water flow acquisition module, 19. Internal flow acquisition module, 20. Net frame movable lifting frame, 21. Lifting control winch, 22. Guide pulley block, 23. Equipment connection platform, 24. Automatic feeding box, 25. Automatic feeding module, 26. Automatic feeding device, 27. Material storage module. 28. Submerged connection base; 29. Counterweight; 30. Balancer; 31. Internal flow acquisition module; 32. Water flow control unit; 33. Nutrient supply unit; 34. Remote automatic control unit; 35. 36. Water level control unit; 37. GPS positioning receiver; 38. Water level detector; 39. Connecting pile group; 40. Installation shore; 41. Control equipment mounting platform; 42. Splicing outer frame connector; 43. Branch pile base; 44. Side-end fixed pile body; 45. Aquatic plant planting implanted frame structure; 46. Mussel farming implanted net frame structure; 47. Fish farming implanted net frame structure; 48. Water level monitor; 49. Water level monitor processing module; 50. Water level monitor monitoring module; 51. Automatic rolling shutter body control motor; 52. Automatic rolling shutter body; 53. Through hole; 54. Bottom automatic feeder; 55. Bottom automatic feeding module; 56. Main control box; 57. Peripheral video terminal; 58. High-definition underwater video connection terminal; 59. External environment video device; 60. High-definition underwater video device; 61. Individual area lifting motor; 62. Lifting motor connection linkage structure; 63. Built-in component control module group. Detailed Implementation
[0024] The terms "upper," "lower," "inner," "outer," "front end," "rear end," "both ends," "one end," and "the other end" used in the application text to indicate orientations or positional relationships are based on the orientations or positional relationships shown in the accompanying drawings. They are used solely for the convenience of describing the invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0025] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installed," "equipped with," "connected," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.
[0026] Example 1, such as Figure 1-5 As shown, an intelligent control system for multi-species aquatic ecological restoration in aquatic areas includes a multi-species growth and purification control device installed in the aquatic area and an intelligent control system structure connected to the multi-species growth device. The intelligent control system structure includes: The water flow control unit 32 is used to acquire the water inflow of the multi-species growth device and adjust the flow structure direction and opening / closing control commands of the multi-species growth purification control device according to the water inflow. Nutrient supply unit 33 is used to control the nutrient block according to the growth status of algae; and to generate nutrient solution supply instructions based on environmental parameters in the multi-species growth purification control device. The remote automatic control unit 34 is used to update the instruction schedule via the control center and control the density of the multi-species growth device according to the instruction schedule; the analysis results and solutions are transmitted to the mobile / PC control software via the Internet and presented to the technicians. The water level control unit 35 is used to receive control and supply control commands from the control center; and to move the lifting and lowering settings of the multi-species aquatic ecological restoration and aquaculture control frame in the multi-species growth and purification control device to adapt to water level adjustment, change purification species, and device maintenance. The remote automatic control unit includes a gateway 1, a router 2, a processing module 3, a position determination module 4, a water area video monitoring module unit 5, a built-in component control module group, and a stability monitoring module 6. The location determination module is connected to a GPS positioning receiver 36; the location of the multi-species growth purification control device after receiving the number is determined. The water area video monitoring module unit is equipped with an outer video terminal 7 around the multi-species growth device and a high-definition underwater video terminal 8 inside the multi-species growth device. The multi-species growth purification control device includes a submerged base structure, a set of end-fixed seat structures located on the upper part of the submerged base structure, a multi-species aquatic ecological restoration and aquaculture area located between the two end-fixed seat structures, a multi-species aquatic ecological restoration and aquaculture control frame structure located within the multi-species aquatic ecological restoration and aquaculture area, a lifting and adjusting frame structure located within the multi-species aquatic ecological restoration and aquaculture area and connected to the multi-species aquatic ecological restoration and aquaculture control frame structure, and a bottom equipment connecting platform located at the lower part of the end-fixed seat structure.
[0027] The multi-species aquatic ecological restoration and aquaculture control frame structure includes an aquatic plant planting net frame structure 9, a mussel farming net frame structure 10, and a fish farming net frame structure 11. The upper ends of the aquatic plant planting net frame structure, the mussel farming net frame structure, and the fish farming net frame structure are all connected to an end connecting frame 12.
[0028] The end fixing base structure includes a hollow end base 13, an opening and closing flow gate 14 located inside the end base, and a guardrail 15 located on the top of the end base. The opening and closing flow gate is equipped with a synchronous opening and closing linkage mechanism 17 driven by an opening and closing motor 16. The opening and closing motor 16 is connected to the water flow acquisition module 18, the motor opening and closing control module 19 in the water flow control unit, and the internal flow acquisition module 31 located in the end base.
[0029] The lifting and adjusting platform structure includes a movable lifting frame 20 of the mesh frame between two end seats 13, a lifting control winch 21 on the upper part of the movable lifting frame, a guide pulley group 22 located inside the end seats and in contact with the outside of the movable lifting frame of the mesh frame, and the lifting control winch 21 is connected to the water level detector 37 in the water level control unit 35 and the lifting control winch control module 38.
[0030] The bottom equipment control unit includes an equipment connection platform 23 located on the upper part of the submerged base structure, an automatic feeding box 24 located on the equipment connection platform, an automatic feeding module 25 located in the nutrient supply unit, an automatic feeding device 26 connected to the automatic feeding module and located in the automatic feeding box, and a nutrient supply unit also includes a storage module 27 for monitoring the automatic feeding device.
[0031] The sinking base structure includes a sinking connecting base 28 located at the lower part of the end seat and a counterweight 29 located at the lower part of the sinking connecting base. A balancer 30 is provided on the upper part of the sinking connecting base, and the balancer is connected to the stability monitoring module 6 in the remote automatic control unit.
[0032] Example 2, as Figure 6-8 As shown, an intelligent control system for multi-species aquatic ecological restoration in water areas includes a multi-species growth and purification control device installed in the water area, and an intelligent control system structure connected to the multi-species growth device within the water area. The multi-species growth purification control device includes a shoreline connecting frame structure installed in the water area, several multi-species growth purification unit components installed outside the shoreline connecting frame structure, an automatic control device installed between the multi-species growth purification unit components and the shoreline connecting frame structure, and an automatic control device installed between the shoreline connecting frame structure and the multi-species growth purification unit components. The automatic control device is connected to an intelligent control system structure in the water area. The aforementioned shore connection frame structure includes a group of connecting piles 38 located on the shore of the water area, an installation shore 39 connecting the upper part of the connecting piles, an extended assembly outer frame structure located on the outer side of the installation shore, and a control equipment mounting platform 40 located in the installation shore. The extended assembly outer frame structure includes multiple splicing outer frame connectors 41 located on the outer side of the installation shore, and multiple spaced-apart branch-fixed column structures located on the upper part of the splicing outer frame connectors. The branch-fixed column structures include branch pile seats 42 located on the upper part of the splicing outer frame connectors and side-fixed pile columns 43 located in each branch pile seat. The multi-species growth and purification unit component includes a net cage placement area composed of multiple sets of spliced outer frame connectors, and various aquatic ecological breeding net cages set in the net cage placement area. Among the various aquatic ecological breeding net cages, there are: aquatic plant planting implanted frame structure 44, mussel breeding implanted net cage structure 45, and fish breeding implanted net cage structure 46. The aforementioned intelligent control system structure for water areas includes: The water flow control unit is used to obtain the water inflow of the multi-species growth device; and to adjust the flow structure direction and opening / closing control commands of the multi-species growth purification control device according to the water inflow. The nutrient supply unit is used to control the nutrient blocks according to the growth status of algae; it generates nutrient solution supply instructions based on environmental parameters within the multi-species growth purification control device. The remote automatic control unit is used to update the command schedule from the control center and control the density of the multi-species growth device according to the command schedule; the analysis results and solutions are transmitted to the mobile / PC control software via the Internet and presented to the technicians. The stocking box control unit is used by the control center to receive control and supply control commands; and to control the movement of the multi-species aquatic ecological restoration and aquaculture control frame in the multi-species growth and purification control device to adapt to the growth water depth of various stocking boxes, change purification species, and move the lifting position for device maintenance. The automatic control equipment includes: An automatic water level control gate structure is installed outside the splicing outer frame connector, and a water level monitor 47 is installed at the end of the splicing outer frame connector. The automatic water level control gate structure is connected to the water level monitor processing module 48 in the water flow regulation unit, and the water level monitor is connected to the water level monitor monitoring module 49 in the water flow regulation unit. The water level monitor processing module controls the automatic rolling shutter control motor 50 in the automatic water level control gate structure. The automatic rolling shutter control motor controls the retraction and expansion of the automatic rolling shutter 51 with evenly distributed through holes 52, thereby controlling the water flow in this area. An automatic bottom feeder 53 is installed on the side-fixed pile column 43, and the automatic bottom feeder is connected to the automatic bottom discharging module 54 in the nutrient supply unit. The system includes a main control box 55 installed on the control equipment mounting platform, and a remote automatic control unit installed in the main control box. The remote automatic control unit includes a gateway 1, a router 2, a processing module 3, a location determination module 4, and a video monitoring module unit in the water area. The location determination module 4 is equipped with a GPS positioning receiver 36 to receive the location of the multi-species growth and purification control device after receiving the serial number. The video monitoring module unit in the water area is equipped with a peripheral video terminal 56 of the multi-species growth device and a high-definition underwater video connection terminal 57 inside the multi-species growth device. The peripheral video terminal 56 is connected to an external environment video device 58 installed on the side fixed pile column, and the high-definition underwater video connection terminal 57 is connected to a high-definition underwater video device 59 installed on the side fixed pile column. A separate area lifting motor 60 or lifting motor connection linkage structure 61 is provided on the upper part of the splicing outer frame connector, corresponding to each multi-species aquatic ecological breeding net box. The separate area lifting motor or lifting motor connection linkage structure is connected to the built-in component control module group 62 in the stocking box control unit.
[0033] This system architecture, based on data from the inflow rate, water level fluctuations, and nutrient supply of multi-species growth and purification control devices, accurately transmits this data to the user terminal and enables targeted remote operation. This effectively monitors the growth, purification, and survival of multiple species within the water body and controls the purification standards, ensuring a uniform supply to each multi-species growth and purification control device. Furthermore, it can adjust the nutrient solution ratio and total amount according to plant growth conditions and adaptively generate nutrient solution supply plans based on real-time environmental data. This allows for more precise environmental management and ensures that the multi-species aquatic ecological restoration implementation configuration structure grows under optimal conditions.
[0034] The above embodiments are merely descriptions of preferred embodiments of the present invention and are not intended to limit the scope of the present invention. Various modifications and improvements made by those skilled in the art to the technical solutions of the present invention without departing from the spirit of the present invention should fall within the protection scope defined by the claims of the present invention.
[0035] All parts not covered in this invention are the same as or can be implemented using existing technologies.
Claims
1. An intelligent control system for implementing multi-species aquatic ecological restoration in aquatic areas, comprising a multi-species growth and purification control device installed in the aquatic area and an intelligent control system structure connected to the multi-species growth and purification control device, wherein the intelligent control system structure includes: A water flow control unit is used to obtain the water inflow of the multi-species growth purification control device; Adjust the flow structure of the multi-species growth purification control device and control its opening and closing commands according to the water inflow. The nutrient supply unit is used to control the nutrient supply of the nutrient block according to the growth status of the algae; and to generate nutrient solution supply instructions based on the environmental parameters in the multi-species growth purification control device. The remote automatic control unit is used to update the command schedule from the control center and control the status of multi-species growth and purification control devices and breeding density according to the command schedule; the analysis results and solutions are transmitted to the mobile / PC control software via the Internet and presented to the technicians. The water level control unit is used to receive control and supply control commands from the control center and to adjust the water level, change the purified species, and move the lifting and lowering settings of the multi-species aquatic ecological restoration and aquaculture control frame in the multi-species growth and purification control device to adapt to water level adjustment, change the purified species, and perform device maintenance. The remote automatic control unit includes a gateway, a router, a processing module, a location determination module, a water area video monitoring module unit, a built-in component control module group, and a stability monitoring module. The location determination module is equipped with a GPS positioning receiver to receive the location of the multi-species growth purification control device after it is numbered. The water area video monitoring module unit is equipped with an outer video terminal around the multi-species growth device and a high-definition underwater video terminal inside the multi-species growth device. 2.The intelligent control system for the multi-species water ecological restoration implementation configuration in the water area according to claim 1, wherein: The multi-species growth purification control device includes a submerged base structure, a set of end-fixed seat structures located on the upper part of the submerged base structure, a multi-species aquatic ecological restoration and aquaculture area located between the two end-fixed seat structures, a multi-species aquatic ecological restoration and aquaculture control frame structure located within the multi-species aquatic ecological restoration and aquaculture area, a lifting and adjusting frame structure located within the multi-species aquatic ecological restoration and aquaculture area and connected to the multi-species aquatic ecological restoration and aquaculture control frame structure, and a bottom equipment connecting platform located at the lower part of the end-fixed seat structure. 3.The intelligent control system for the multi-species water ecological restoration implementation configuration in the water area according to claim 2, wherein: The multi-species aquatic ecological restoration and aquaculture control framework structure includes an aquatic plant planting net framework structure, a mussel farming net framework structure, and a fish farming net framework structure. The upper ends of the aquatic plant planting net framework structure, the mussel farming net framework structure, and the fish farming net framework structure are all connected to an end connecting frame structure.
4. The intelligent control system for the multi-species water ecological restoration implementation configuration in the water area according to claim 2, characterized in that: The end fixing base structure includes a hollow end base, an opening and closing flow gate body located inside the end base, and a guardrail body located on the top of the end base. The opening and closing flow gate body is equipped with a synchronous opening and closing linkage mechanism driven by an opening and closing motor. The opening and closing motor is connected to the water flow acquisition module, the motor opening and closing control module in the water flow control unit, and the internal flow acquisition module located in the end base.
5. The intelligent control system for the multi-species water ecological restoration implementation configuration in the water area according to claim 2, characterized in that: The lifting and adjusting frame structure includes a movable lifting frame of the mesh frame located between the two end seats, a lifting control winch located on the upper part of the movable lifting frame, and a guide pulley group located inside the end seats and in contact with the outside of the movable lifting frame of the mesh frame.
6. The intelligent control system for implementing multi-species aquatic ecosystem restoration in water areas as described in claim 2, characterized in that: The bottom equipment connection platform includes an equipment connection platform located on the upper part of the sinking base structure, an automatic feeding box located on the equipment connection platform, an automatic feeding box connected to an automatic feeding module in the nutrient supply unit, an automatic feeding device connected to the automatic feeding module and located in the automatic feeding box, and a nutrient supply unit also having a storage module for monitoring the automatic feeding device.
7. The intelligent control system for implementing multi-species aquatic ecosystem restoration in water areas as described in claim 2, characterized in that: The sinking base structure includes a sinking connecting base located at the lower part of the end seat and a counterweight located at the lower part of the sinking connecting base. A balancer is installed on the upper part of the sinking connecting base, and the balancer is connected to the stability monitoring module in the remote automatic control unit.
Citation Information
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