Environment-friendly transportation method and system for proliferating and releasing prawn seedlings
By real-time monitoring and control of the internal environment of shrimp transport barrels, combined with optimal transportation route selection and emergency response measures, the problems of environmental protection and ecological impact in traditional shrimp seed transportation are solved, and a high survival rate and low waste transportation effect are achieved.
Patent Information
- Application Number
- CN202311147520.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-07
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2043-09-07
AI Technical Summary
Traditional methods of transporting shrimp seedlings are not environmentally friendly, and there are problems such as water pollution, hypoxia and temperature fluctuations, which affect the ecological environment of the seedling survival and reproduction and release areas.
By real-time monitoring of the internal environmental characteristic data of the shrimp transport barrels, we formulate preventive control plans, select the optimal transportation route, use control equipment to control the environment, ensure the survival rate of the seedlings, and conduct emergency response and early warning during transportation.
It improves the survival rate of shrimp seedlings, protects the ecological environment, reduces the waste of transportation materials, and ensures the safety and efficiency of the transportation process.
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Figure CN117158355B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of proliferation and release and the technical field of environmental protection transportation, and in particular to an environmental protection transportation method and system for proliferated and released shrimp fry. BACKGROUND
[0002] Proliferation and release is an important work, which not only can protect and restore aquatic biological resources, but also can promote ecological balance and improve the sustainable utilization of fishery resources, while protecting biological genetic diversity. However, the traditional main transportation method of shrimp fry is mainly oxygenated plastic bag transportation, and the material used is not environmentally friendly. At the same time, the traditional transportation method has some problems, such as water pollution, oxygen deficiency and temperature fluctuation, which may have adverse effects on the survival of shrimp fry and the proliferation and release area. Therefore, it is necessary to provide an environmentally friendly transportation method to ensure the survival rate and health status of shrimp fry during transportation, and to protect the ecological environment of the proliferation and release area. SUMMARY
[0003] The present application overcomes the defects of the prior art and provides an environmentally friendly transportation method and system for proliferated and released shrimp fry, which is important to ensure the survival rate and health status of shrimp fry during transportation, and to protect the ecological environment of the proliferation and release area.
[0004] To achieve the above-mentioned purpose, the first aspect of the present application provides an environmentally friendly transportation method for proliferated and released shrimp fry, comprising:
[0005] Obtaining internal real-time environmental characteristic data of the shrimp transportation barrel, analyzing and judging whether there is an abnormal condition according to the internal real-time environmental characteristic data, and real-time regulating the internal environment of the shrimp transportation barrel;
[0006] Obtaining transportation route meteorological data, performing environmental impact degree evaluation through the transportation route meteorological data, and formulating a prevention and control scheme for prevention and control;
[0007] Formulating an initial transportation route scheme, predicting the survival rate of fry and evaluating the transportation route of the initial transportation route, and selecting the optimal transportation route scheme;
[0008] Analyzing the running state of the regulating device to determine whether the regulating device has a running abnormality.
[0009] In this scheme, the real-time environmental characteristic data of the shrimp transportation barrel is obtained, the internal real-time environmental characteristic data is judged with the preset threshold value, and the judgment result information is obtained.
[0010] Obtaining internal real-time environmental characteristic data of the shrimp transportation barrel, analyzing and judging whether there is an abnormal condition according to the internal real-time environmental characteristic data, and real-time regulating the internal environment of the shrimp transportation barrel;
[0011] Generate internal environment control instruction information and expected control range information based on the judgment result information, and control the environment inside the shrimp transport barrel;
[0012] Acquiring characteristic data of the internal environment after regulation, analyzing and judging the characteristic data of the internal environment after regulation with information on the expected regulation range, and obtaining regulation analysis result information;
[0013] Generate continue control instruction information or stop control instruction information based on the control analysis result information.
[0014] In this solution, the meteorological data of the transportation route is obtained, the environmental impact is assessed based on the meteorological data of the transportation route, and a preventive control plan is formulated for preventive control, specifically:
[0015] Establishing an environmental impact assessment model, obtaining transportation route meteorological data, and importing the transportation route meteorological data information into the environmental impact assessment model to obtain impact assessment result information;
[0016] Compare the impact assessment result information with a preset threshold to obtain a degree judgment result information;
[0017] Based on big data retrieval, transportation environment regulation instances with different degrees of environmental impact are obtained to form a regulation instance set;
[0018] A preventive control plan is formulated based on the degree judgment result information, the impact degree assessment result information and the set of control instances.
[0019] In this scheme, the initial transport route plan is formulated, the seedling survival rate and transport route evaluation are performed on the initial transport route, and the optimal transport route plan is selected, specifically:
[0020] Obtaining location information of a target release area, and formulating an initial transportation route plan based on the location information of the target release area;
[0021] Acquiring transportation route road condition information, transportation route distance information, and transportation route weather information according to the initial transportation route plan;
[0022] Based on big data, the survival rate of shrimp seedlings with various transportation distances, transportation route conditions and transportation route weather conditions was retrieved to form a comparative data set;
[0023] Performing similarity calculation on the transportation route road condition information, transportation route distance information, and transportation route weather information by comparing data sets to obtain a similarity calculation value;
[0024] The similarity calculation value is compared with a preset threshold value, and seedling survival rate prediction information is obtained according to the judgment result;
[0025] Based on the seedling survival rate prediction information, candidate transportation route plans are formulated, the candidate transportation route plans are evaluated, and the optimal transportation route plan is selected.
[0026] In this solution, the evaluation of the candidate transport route solutions and selection of the optimal transport route also includes:
[0027] The candidate transport route plans are sorted according to the seedling survival rate prediction information to obtain a transport route sorting table;
[0028] Selecting a candidate transport route plan with a high seedling survival rate as a pre-selected transport route plan for evaluation according to the transport route ranking table;
[0029] Extracting the transportation distance information and transportation route weather information of each evaluated pre-selected transportation route plan, and calculating the transportation time information and transportation cost information of each evaluated pre-selected transportation route plan;
[0030] Evaluate each pre-selected transport route plan based on the transport time information and transport cost information of each pre-selected transport route plan to obtain plan evaluation result information;
[0031] The optimal transportation route plan is selected based on the plan evaluation result information.
[0032] In this solution, the operating status of the control equipment is analyzed to determine whether there is any abnormal operation of the control equipment, specifically:
[0033] Obtaining control equipment operation data, control instruction information and internal real-time environmental characteristic data after control;
[0034] Based on the control instruction information and the real-time internal environment characteristic data after the control, it is determined whether the internal environment of the shrimp transport barrel is successfully controlled, and the equipment abnormality judgment result information is obtained;
[0035] Analyze the operating status of the control equipment based on the equipment abnormality judgment result information and the control equipment operation data to obtain the operating status analysis result information;
[0036] An emergency response plan is formulated based on the operating status analysis results and the internal real-time environmental characteristic data after regulation, and abnormal warning information of the regulation equipment is generated for early warning.
[0037] In this solution, the formulation of emergency response plans and the generation of abnormal warning information of control equipment for early warning also include:
[0038] Obtaining abnormal location information and abnormal degree information of the control equipment through the operation status analysis result information;
[0039] Formulate emergency response plans based on abnormal location information of control equipment, abnormal degree information of control equipment, and real-time internal environmental characteristic data of shrimp transport barrels;
[0040] Generate abnormal warning information of control equipment through operation status analysis result information and provide early warning prompts.
[0041] A second aspect of the present invention provides an environmentally friendly transportation system for increasing and releasing shrimp seedlings. The system includes: a memory and a processor. The memory contains a program for an environmentally friendly transportation method for increasing and releasing shrimp seedlings. When the program is executed by the processor, the following steps are implemented:
[0042] Acquiring real-time internal environmental characteristic data of the shrimp transport barrel, analyzing and determining whether there is an abnormality based on the real-time internal environmental characteristic data, and adjusting the internal environment of the shrimp transport barrel in real time;
[0043] Obtaining meteorological data for the transportation route, conducting an environmental impact assessment based on the meteorological data for the transportation route, and formulating a preventive control plan for preventive control;
[0044] Formulate an initial transportation route plan, predict seedling survival rates and evaluate the transportation route for the initial transportation route, and select the optimal transportation route plan;
[0045] Analyze the operating status of the control equipment to determine whether there is any abnormal operation of the control equipment.
[0046] The present invention discloses an environmentally friendly transportation method and system for increasing and releasing shrimp seedlings, comprising: obtaining real-time internal environmental characteristic data of a shrimp transport barrel, analyzing and determining whether there are abnormal conditions based on the internal real-time environmental characteristic data, and regulating the internal environment of the shrimp transport barrel in real time; obtaining meteorological data of the transport route, assessing the degree of environmental impact based on the transport route meteorological data, and formulating a preventive and control plan for preventive and control; formulating an initial transport route plan, predicting the survival rate of seedlings and evaluating the transport route for the initial transport route, and selecting the optimal transport route plan; analyzing the operating status of the control equipment to determine whether there are any operating abnormalities in the control equipment. This method effectively protects the health of shrimp seedlings, improves the survival rate of shrimp seedlings during transportation, reduces the waste of transportation materials when using traditional transportation methods, and simultaneously protects the balance of the ecological environment. BRIEF DESCRIPTION OF THE DRAWINGS
[0047] In order to more clearly illustrate the technical solutions in the embodiments or exemplary embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments or exemplary descriptions. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained according to these drawings without paying any creative work.
[0048] Figure 1 A flow chart of an environment-friendly transportation method for proliferating and releasing shrimp fry is provided for an embodiment of the present application.
[0049] Figure 2 A flow chart of data processing of an environment-friendly transportation method for proliferating and releasing shrimp fry is provided for an embodiment of the present application.
[0050] Figure 3 A block diagram of an environment-friendly transportation system for proliferating and releasing shrimp fry is provided for an embodiment of the present application.
[0051] The implementation, functional features and advantages of the present application will be further described with reference to the embodiments and the accompanying drawings. DETAILED DESCRIPTION
[0052] In order to more clearly understand the above-mentioned purposes, features and advantages of the present application, the present application will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
[0053] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, however, the present application can also be implemented in other ways different from those described herein, therefore, the protection scope of the present application is not limited by the specific embodiments disclosed below.
[0054] Figure 1 A flow chart of an environment-friendly transportation method for proliferating and releasing shrimp fry is provided for an embodiment of the present application.
[0055] As shown in Figure 1 , the present application provides a flow chart of an environment-friendly transportation method for proliferating and releasing shrimp fry, which comprises:
[0056] S102, obtaining internal real-time environmental feature data of the shrimp transportation barrel, analyzing and judging whether there is an abnormal condition according to the internal real-time environmental feature data, and real-time regulating the internal environment of the shrimp transportation barrel;
[0057] Obtaining internal real-time environmental feature data, judging the internal real-time environmental feature data and the preset threshold value to obtain judgment result information;
[0058] Generating internal environment regulation instruction information and expected regulation range information according to the judgment result information, and regulating the internal environment of the shrimp transportation barrel;
[0059] Obtaining the environmental feature data after regulation, analyzing and judging the environmental feature data after regulation and the expected regulation range information to obtain regulation analysis result information;
[0060] Generate continue control instruction information or stop control instruction information based on the control analysis result information.
[0061] It should be noted that environmental control instructions include: ambient temperature control, water flow rate control, dissolved oxygen control, water quality optimization control, and water supplementation control. Temperature control and water flow rate control can reduce the stress response of shrimp seedlings, preventing immunity decline and physiological disorders that may affect their survival and health. Dissolved oxygen control can prevent insufficient oxygen supply, which can lead to hypoxia in the seedlings and affect their normal physiological functions and growth and development. Water quality optimization control and water supplementation control can prevent water pollution from affecting the health and survival rate of shrimp seedlings.
[0062] S104, formulating a preventive control plan based on the degree judgment result information, the impact degree assessment result information and the control instance set;
[0063] Establishing an environmental impact assessment model, obtaining transportation route meteorological data, and importing the transportation route meteorological data information into the environmental impact assessment model to obtain impact assessment result information;
[0064] Compare the impact assessment result information with a preset threshold to obtain a degree judgment result information;
[0065] Based on big data retrieval, transportation environment regulation instances with different degrees of environmental impact are obtained to form a regulation instance set;
[0066] A preventive control plan is formulated based on the degree judgment result information, the impact degree assessment result information and the set of control instances.
[0067] S106, formulating an initial transportation route plan, performing seedling survival rate prediction and transportation route evaluation on the initial transportation route, and selecting the optimal transportation route plan;
[0068] Obtaining location information of a target release area, and formulating an initial transportation route plan based on the location information of the target release area;
[0069] Acquiring transportation route road condition information, transportation route distance information, and transportation route weather information according to the initial transportation route plan;
[0070] Based on big data, the survival rate of shrimp seedlings with various transportation distances, transportation route conditions and transportation route weather conditions was retrieved to form a comparative data set;
[0071] Performing similarity calculation on the transportation route road condition information, transportation route distance information, and transportation route weather information by comparing data sets to obtain a similarity calculation value;
[0072] The similarity calculation value is compared with a preset threshold value, and seedling survival rate prediction information is obtained according to the judgment result;
[0073] Based on the seedling survival rate prediction information, candidate transportation route plans are formulated, the candidate transportation route plans are evaluated, and the optimal transportation route plan is selected.
[0074] Furthermore, the evaluation of the candidate transportation route plans and selection of the optimal transportation route also includes: sorting the candidate transportation route plans according to the seedling survival rate prediction information to obtain a transportation route sorting table; selecting the candidate transportation route plans with high seedling survival rates as the evaluated pre-selected transportation route plans according to the transportation route sorting table; extracting the transportation distance information and transportation route meteorological information of each evaluated pre-selected transportation route plan, and calculating the transportation time information and transportation cost information of each evaluated pre-selected transportation route plan; evaluating each evaluated pre-selected transportation route plan according to the transportation time information and transportation cost information of each evaluated pre-selected transportation route plan to obtain plan evaluation result information; and selecting the optimal transportation route plan according to the plan evaluation result information.
[0075] Furthermore, real-time traffic information for the optimal transport route is retrieved based on big data. This information is then used to determine whether it affects the survival rate of the seedlings being transported. If this information does not affect the survival rate, the transport route is continued according to the optimal transport route plan. If this information does affect the survival rate, the transport route is replanned. By obtaining real-time traffic information on the transport route, it is determined whether it will affect transport time and efficiency, thus preventing unexpected situations from causing low seedling survival rates.
[0076] S108, analyzing the operating status of the control device to determine whether the control device has an operating abnormality;
[0077] Obtaining control equipment operation data, control instruction information and internal real-time environmental characteristic data after control;
[0078] Based on the control instruction information and the real-time internal environment characteristic data after the control, it is determined whether the internal environment of the shrimp transport barrel is successfully controlled, and the equipment abnormality judgment result information is obtained;
[0079] Analyze the operating status of the control equipment based on the equipment abnormality judgment result information and the control equipment operation data to obtain the operating status analysis result information;
[0080] An emergency response plan is formulated based on the operating status analysis results and the real-time internal environmental characteristic data of the shrimp transport barrel, and abnormal warning information of the control equipment is generated for early warning.
[0081] Furthermore, the formulation of an emergency response plan and the generation of abnormal warning information of the control equipment for early warning also include: obtaining abnormal position information and abnormal degree information of the control equipment through the operation status analysis result information; formulating an emergency response plan based on the abnormal position information of the control equipment, the abnormal degree information of the control equipment and the internal real-time environmental characteristic data of the shrimp transport barrel; generating abnormal warning information of the control equipment through the operation status analysis result information to issue an early warning prompt.
[0082] Furthermore, real-time environmental characteristic data of the shrimp transport barrel after the emergency response plan is adopted is obtained; response effect analysis is performed based on the real-time environmental characteristic data of the shrimp transport barrel after the emergency response plan is adopted to obtain response effect analysis information; whether the emergency response plan has curbed the changes in the internal environment of the shrimp transport barrel is determined through the response effect analysis information; if the changes in the internal environment of the shrimp transport barrel cannot be curbed, the emergency response plan is continued to be adopted, and the transportation route is replanned; real-time environmental characteristic data of the shrimp transport barrel within 15 minutes of the adoption of the emergency response plan is obtained, and the real-time environmental change rate information of the shrimp transport barrel is calculated; the real-time survival rate of the seedlings is predicted based on the real-time environmental change rate information of the shrimp transport barrel to obtain real-time seedling survival rate prediction information; the remaining transportation time information is obtained, and the real-time seedling survival rate prediction information is combined with the remaining transportation time information. The method comprises the following steps: judging the survival rate of seedlings arriving at the target release area based on the information, and obtaining the survival rate judgment result information; judging the survival rate judgment result information against a preset threshold; if the survival rate judgment result information is less than the preset threshold, continuing to transport along the original route; if the survival rate judgment result information is greater than the preset threshold, generating a warning information for changing the transport route, and replanning the transport route; obtaining the original transport route information and the target release area location information, and formulating an initial emergency transport route based on big data retrieval and the combination of the original transport route information and the target release area location information; selecting the transport route with the shortest transport time as the candidate emergency transport route; performing big data retrieval based on each candidate emergency transport route to obtain the road condition information of each candidate emergency transport route, and selecting the optimal emergency transport route according to the road condition information of each candidate transport route.
[0083] It should be noted that the system monitors and analyzes the internal environment of the control equipment and the shrimp transport barrel. Based on this information, it determines whether the control equipment has successfully controlled the internal environment of the shrimp transport barrel and generates equipment abnormality determination results. Simultaneously, the system combines this equipment abnormality determination results with the control equipment operating data to analyze the operating status of the control equipment, generating operational status analysis results. Based on this operational status analysis results and the real-time environmental characteristics of the shrimp transport barrel, an emergency response plan is formulated and an early warning of control equipment abnormalities is generated to facilitate timely response to abnormal situations. By acquiring the real-time environmental characteristics of the shrimp transport barrel after implementing the emergency response plan, an effectiveness analysis is performed to generate effectiveness analysis information. Based on this effectiveness analysis information, it determines whether the emergency response plan successfully curbed changes in the shrimp transport barrel's internal environment. If not, the emergency response plan is continued and the transport route is replanned. Furthermore, by calculating the real-time rate of change in the shrimp transport barrel's environment and combining it with the remaining transport time, the system predicts the real-time survival rate of the seedlings. Based on this survival rate determination results and a preset threshold, it determines whether to continue transport along the original route or generate an early warning to change the transport route, thereby replanning the transport route. Finally, based on the original transport route information and the target release area location, a big data search was used to develop an initial emergency transport route and select the optimal emergency transport route to ensure the safe transportation of shrimp seedlings. This improved the transport efficiency of shrimp seedlings while ensuring their quality.
[0084] Figure 2 A flowchart of data processing for an environmentally friendly transportation method for increasing and releasing shrimp seedlings provided in one embodiment of the present invention;
[0085] like Figure 2 As shown, the present invention provides a flow chart of data processing for an environmentally friendly transportation method for increasing and releasing shrimp seedlings, including:
[0086] S202, obtaining real-time environmental characteristic data inside the shrimp transport barrel and performing internal environmental status analysis;
[0087] Compare the internal real-time environmental characteristic data with a preset threshold value to obtain judgment result information;
[0088] Based on the judgment result information, internal environment control instruction information and expected control range information are generated to control the environment inside the shrimp transport barrel.
[0089] Furthermore, characteristic data of the internal environment after regulation is obtained, and the characteristic data of the internal environment after regulation is analyzed and judged with the expected regulation range information to obtain regulation analysis result information; and continuing regulation instruction information or stopping regulation instruction information is generated according to the regulation analysis result information.
[0090] S204, obtaining real-time traffic information of the transportation route and analyzing the impact of transportation time;
[0091] Obtain real-time traffic information on the optimal transportation route based on big data retrieval, and analyze whether the real-time traffic information affects the survival rate of seedling transportation;
[0092] If the survival rate of the seedlings during transportation is not affected, continue to transport them according to the optimal transportation route plan; if the survival rate of the seedlings during transportation is affected, re-plan the transportation route.
[0093] S206, obtaining meteorological data on the transportation route and conducting an impact assessment;
[0094] Importing the transport route meteorological data information into an environmental impact assessment model to obtain impact assessment result information;
[0095] The impact degree assessment result information is compared with a preset threshold to obtain degree judgment result information.
[0096] Furthermore, based on big data retrieval, transportation environment control instances with different degrees of environmental impact are obtained to form a control instance set; and a preventive control plan is formulated based on the degree judgment result information, the impact degree assessment result information and the control instance set.
[0097] S208, obtaining the control equipment operation data, control instruction information and the internal real-time environmental characteristic data after control, and performing equipment operation status analysis;
[0098] Based on the control instruction information and the real-time internal environment characteristic data after the control, it is determined whether the internal environment of the shrimp transport barrel is successfully controlled, and the equipment abnormality judgment result information is obtained;
[0099] Analyze the operating status of the control equipment based on the equipment abnormality judgment result information and the control equipment operation data to obtain the operating status analysis result information;
[0100] An emergency response plan is formulated based on the operating status analysis results and the real-time internal environmental characteristic data of the shrimp transport barrel, and abnormal warning information of the control equipment is generated for early warning.
[0101] It should be noted that by analyzing the internal environmental status of the shrimp barrels, it is possible to determine in real time whether the environmental conditions of the shrimp seedlings during transportation meet the requirements, allowing appropriate environmental adjustments to ensure the survival and health of the shrimp seedlings. Real-time road condition information along the transportation route is analyzed and assessed to assess the impact on seedling transportation. This can determine whether increased transportation time will affect seedling survival, allowing for replanning of transportation routes to minimize the adverse impact on seedling survival. Real-time weather analysis during transportation ensures that the seedlings are not affected by adverse weather conditions during transportation. By determining the success of the control equipment in regulating the internal environment of the shrimp barrels and analyzing the equipment's operating status to determine any equipment anomalies, an emergency response plan can be developed and warnings of any equipment anomalies generated to ensure the normal operation of the equipment and effective environmental regulation, while also protecting the survival rate of the shrimp seedlings.
[0102] Figure 3 An environmentally friendly transportation system framework for increasing and releasing shrimp seedlings provided by one embodiment of the present invention Figure 3 The system includes: a memory 31 and a processor 32. The memory 31 contains a program for an environmentally friendly transportation method for increasing and releasing shrimp seedlings. When the program is executed by the processor 32, the following steps are implemented:
[0103] Acquiring real-time internal environmental characteristic data of the shrimp transport barrel, analyzing and determining whether there is an abnormality based on the real-time internal environmental characteristic data, and adjusting the internal environment of the shrimp transport barrel in real time;
[0104] Obtaining meteorological data for the transportation route, conducting an environmental impact assessment based on the meteorological data for the transportation route, and formulating a preventive control plan for preventive control;
[0105] Formulate an initial transportation route plan, predict seedling survival rates and evaluate the transportation route for the initial transportation route, and select the optimal transportation route plan;
[0106] Analyze the operating status of the control equipment to determine whether there is any abnormal operation of the control equipment.
[0107] The present invention proposes an environmentally friendly transportation method and system for the proliferation and release of shrimp seedlings. By acquiring real-time environmental characteristic data from within the shrimp transport barrel and comparing it with preset thresholds, the internal environment is monitored and controlled in real time. Based on the judgment results, corresponding control instructions and expected control ranges are generated to control the internal environment. Simultaneously, meteorological data along the transport route is used to assess the degree of environmental impact and formulate preventive control plans. By acquiring location information for the target release area, a seedling survival rate prediction model is established. Initial transport routes are predicted and evaluated for seedling survival, and the optimal transport route is selected. Furthermore, the operating status of the control equipment is analyzed to determine whether any equipment anomalies exist. Based on the analysis results, an emergency response plan is formulated and an equipment anomaly warning message is generated. In summary, this solution, through real-time monitoring and control of equipment operation and environmental status, enables the implementation of emergency response and preventive control measures to maximize the survival rate and health of shrimp seedlings during transportation. This improves the survival rate of shrimp seedlings during transportation while reducing waste of transportation materials and better protecting ecological balance.
[0108] In the several embodiments provided in this application, it should be understood that the disclosed devices and methods can be implemented in other ways. The device embodiments described above are merely schematic. For example, the division of the units is merely a logical function division. In actual implementation, there may be other division methods, such as: multiple units or components can be combined, or can be integrated into another system, or some features can be ignored or not executed. In addition, the coupling, direct coupling, or communication connection between the components shown or discussed can be through some interfaces, and the indirect coupling or communication connection of the devices or units can be electrical, mechanical or other forms.
[0109] The units described above as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units; they may be located in one place or distributed across multiple network units; some or all of the units may be selected according to actual needs to achieve the purpose of the scheme of this embodiment.
[0110] In addition, all functional units in the embodiments of the present invention may be integrated into one processing unit, or each unit may be separately used as a unit, or two or more units may be integrated into one unit; the above-mentioned integrated units may be implemented in the form of hardware or in the form of hardware plus software functional units.
[0111] Those skilled in the art can understand that all or part of the steps of the above-mentioned method embodiments can be completed by program instruction related hardware, the foregoing program can be stored in a computer readable storage medium, and the program executes the steps of the method embodiments when executed; and the foregoing storage medium includes a mobile storage device, a read-only memory (ROM), a random access memory (RAM), a magnetic disc or an optical disc, and various storage medium capable of storing program codes.
[0112] Alternatively, the integrated unit of the present application can be stored in a computer readable storage medium if it is realized in the form of a software function module and sold or used as an independent product. Based on such understanding, the technical solutions of the embodiments of the present application can be embodied in the form of a software product, and the computer software product is stored in a storage medium, includes several instructions to make a computer device (which can be a personal computer, a server, or a network device, etc.) execute all or part of the methods described in the embodiments of the present application. The foregoing storage medium includes a mobile storage device, a ROM, a RAM, a magnetic disc or an optical disc, and various storage medium capable of storing program codes.
[0113] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited thereto, any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. An environmentally friendly method for transporting shrimp seedlings for proliferation and release, characterized in that: include: Acquiring real-time internal environmental characteristic data of the shrimp transport barrel, analyzing and determining whether there is an abnormality based on the real-time internal environmental characteristic data, and adjusting the internal environment of the shrimp transport barrel in real time; Obtaining meteorological data for the transportation route, conducting an environmental impact assessment based on the meteorological data for the transportation route, and formulating a preventive control plan for preventive control; Formulate an initial transportation route plan, predict seedling survival rates and evaluate the transportation route for the initial transportation route, and select the optimal transportation route plan; Analyze the operating status of the control equipment to determine whether there are any abnormalities in the operation of the control equipment; The steps of formulating an initial transport route plan, predicting the survival rate of seedlings and evaluating the transport route for the initial transport route, and selecting the optimal transport route plan specifically include: Obtaining location information of a target release area, and formulating an initial transportation route plan based on the location information of the target release area; Acquiring transportation route road condition information, transportation route distance information, and transportation route weather information according to the initial transportation route plan; Based on big data, the survival rate of shrimp seedlings with various transportation distances, transportation route conditions and transportation route weather conditions was retrieved to form a comparative data set; Performing similarity calculation on the transportation route road condition information, transportation route distance information, and transportation route weather information by comparing data sets to obtain a similarity calculation value; The similarity calculation value is compared with a preset threshold value, and seedling survival rate prediction information is obtained according to the judgment result; Based on the seedling survival rate prediction information, candidate transportation route plans are formulated, the candidate transportation route plans are evaluated, and the optimal transportation route plan is selected.
2. The environmentally friendly transportation method for increasing and releasing shrimp seedlings according to claim 1, characterized in that: The method of analyzing and determining whether there is an abnormal condition based on the real-time environmental characteristic data and regulating the internal environment of the shrimp transport barrel in real time specifically includes: Acquire real-time internal environmental characteristic data of the shrimp transport bucket, and compare the real-time internal environmental characteristic data with a preset threshold value to obtain judgment result information; Generate internal environment control instruction information and expected control range information based on the judgment result information, and control the environment inside the shrimp transport barrel; Acquiring characteristic data of the internal environment after regulation, analyzing and judging the characteristic data of the internal environment after regulation with information on the expected regulation range, and obtaining regulation analysis result information; Generate continue control instruction information or stop control instruction information based on the control analysis result information.
3. The environmentally friendly transportation method for increasing and releasing shrimp seedlings according to claim 1, characterized in that: The acquisition of meteorological data for the transportation route, the assessment of the degree of environmental impact based on the meteorological data for the transportation route, and the formulation of a preventive control plan for preventive control specifically include: Establishing an environmental impact assessment model, obtaining transportation route meteorological data, and importing the transportation route meteorological data into the environmental impact assessment model to obtain impact assessment result information; Compare the impact assessment result information with a preset threshold to obtain a degree judgment result information; Based on big data retrieval, transportation environment regulation instances with different degrees of environmental impact are obtained to form a regulation instance set; A preventive control plan is formulated based on the degree judgment result information, the impact degree assessment result information and the set of control instances.
4. The environmentally friendly transportation method for increasing and releasing shrimp seedlings according to claim 1, characterized in that: The evaluating the candidate transport route solutions and selecting the optimal transport route further includes: The candidate transport route plans are sorted according to the seedling survival rate prediction information to obtain a transport route sorting table; Selecting a candidate transport route plan with a high seedling survival rate as a pre-selected transport route plan for evaluation according to the transport route ranking table; Extracting the transportation distance information and transportation route weather information of each evaluated pre-selected transportation route plan, and calculating the transportation time information and transportation cost information of each evaluated pre-selected transportation route plan; Evaluate each pre-selected transport route plan based on the transport time information and transport cost information of each pre-selected transport route plan to obtain plan evaluation result information; The optimal transportation route plan is selected based on the plan evaluation result information.
5. The environmentally friendly transportation method for increasing and releasing shrimp seedlings according to claim 1, characterized in that: The analysis of the operating status of the control device to determine whether the control device has an operating abnormality specifically includes: Obtaining control equipment operation data, control instruction information and internal real-time environmental characteristic data after control; Based on the control instruction information and the real-time internal environment characteristic data after the control, it is determined whether the internal environment of the shrimp transport barrel is successfully controlled, and the equipment abnormality judgment result information is obtained; Analyze the operating status of the control equipment based on the equipment abnormality judgment result information and the control equipment operation data to obtain the operating status analysis result information; An emergency response plan is formulated based on the operating status analysis results and the internal real-time environmental characteristic data after regulation, and abnormal warning information of the regulation equipment is generated for early warning.
6. The environmentally friendly transportation method for increasing and releasing shrimp seedlings according to claim 5, characterized in that: The formulation of the emergency response plan and the generation of abnormal warning information of the control equipment for early warning also include: Obtaining abnormal location information and abnormal degree information of the control equipment through the operation status analysis result information; Formulate emergency response plans based on abnormal location information of control equipment, abnormal degree information of control equipment, and real-time internal environmental characteristic data of shrimp transport barrels; Generate abnormal warning information of control equipment through operation status analysis result information and provide early warning prompts.
7. An environmentally friendly transportation system for increasing and releasing shrimp seedlings, characterized in that: The system comprises: a memory and a processor, wherein the memory contains a program for an environmentally friendly transportation method for increasing and releasing shrimp seedlings, and when the program is executed by the processor, the steps of the environmentally friendly transportation method for increasing and releasing shrimp seedlings according to any one of claims 1 to 6 are implemented; Acquiring real-time internal environmental characteristic data of the shrimp transport barrel, analyzing and determining whether there is an abnormality based on the real-time internal environmental characteristic data, and adjusting the internal environment of the shrimp transport barrel in real time; Obtaining meteorological data for the transportation route, conducting an environmental impact assessment based on the meteorological data for the transportation route, and formulating a preventive control plan for preventive control; Formulate an initial transportation route plan, predict seedling survival rates and evaluate the transportation route for the initial transportation route, and select the optimal transportation route plan; Analyze the operating status of the control equipment to determine whether there is any abnormal operation of the control equipment.
Citation Information
Patent Citations
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