CN118365098A - Natural resource space planning management system based on homeland space element data - Google Patents

Natural resource space planning management system based on homeland space element data Download PDF

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CN118365098A
CN118365098A CN202410789310.XA CN202410789310A CN118365098A CN 118365098 A CN118365098 A CN 118365098A CN 202410789310 A CN202410789310 A CN 202410789310A CN 118365098 A CN118365098 A CN 118365098A
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CN118365098B (en
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袁登峰
许瑞
董静
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Heze Municipal Bureau Of Natural Resources And Planning
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Heze Municipal Bureau Of Natural Resources And Planning
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Abstract

The invention discloses a natural resource space planning management system based on homeland space element data, which relates to the technical field of space planning and comprises a resource distribution end, a resource supply and demand end and a resource coordination end, wherein the resource distribution end is used for recording the regional attribute of a natural resource space in real time and positioning the regional attribute in real time, calculating the economic gap between the regions of the natural resource in real time, the resource supply and demand end is used for carrying out fund compensation on a matching scheme of each region by receiving index requirements of each region and tracking the fund state in real time, and the resource coordination end is used for creating, managing, analyzing and drawing each region by a GIS (geographic information system) so as to ensure rationalization of resource configuration and feasibility of environmental problems. The natural resource space planning management system based on the homeland space element data solves the problems of low resource utilization efficiency and unbalanced regional development, reduces the supply-demand gap in the natural resource space planning, and effectively coordinates and reasonably configures natural resources.

Description

Natural resource space planning management system based on homeland space element data
Technical Field
The invention relates to the technical field of space planning, in particular to a natural resource space planning management system based on homeland space element data.
Background
The homeland space element data is key basic information for planning, managing, monitoring and protecting natural resources. The data not only comprises natural elements such as topography, water system and lake, land utilization type and the like, but also comprises human elements such as building areas, road networks, public facility distribution and the like. The suggestions aim at promoting standardized and standardized management of the homeland space element data and improving the use efficiency and accuracy of the data, thereby better serving the establishment and implementation of the market-grade homeland space overall planning.
Patent number CN202010699023.1 discloses a land space planning system based on GIS, and the basic functional modules of the system are divided into eight main modules of project management, land parcel management, flow management, archive management, fund management, GIS function, data processing and system function. The invention solves the information collection and management problems of land transaction, and the electronic management is convenient for inquiring, counting and publishing information; the storage and management of mass information become basic management functions for the current database management information system, the system completely achieves the effects of quick, accurate and simple management, and a normalized land transaction management flow is established through the system, so that the randomness of manual operation is greatly reduced, the occurrence of unintentional errors is furthest reduced, and meanwhile, the possibility of illegal operation is also reduced.
By searching the patent, the following defects exist in the natural resource space planning management system: 1. the spatial distribution of natural resources is not matched with the economic center of gravity, and the areas with rich resources are not necessarily the centers of economic development, so that the problems of low utilization efficiency of the resources and unbalanced regional development are caused, and the economic gap between the regions is aggravated; 2. in some areas, a large gap exists between the indexes of newly added construction land and actual demands, which causes contradiction between supply and demand of homeland space, and the shortage of land indexes restricts the economic development and the promotion of new town; 3. in terms of natural resource space planning management, there is often a lack of efficient coordination mechanisms, especially when large project implementations across provinces or regions, which may lead to unreasonable resource configurations and exacerbation of environmental problems.
Therefore, a natural resource space planning management system based on the homeland space element data is provided to solve the problems.
Disclosure of Invention
The invention mainly aims to provide a natural resource space planning management system based on homeland space element data so as to solve the problems in the background.
In order to achieve the above purpose, the technical scheme adopted by the invention is as follows: a natural resource space planning management system based on territorial space element data comprises a resource distribution end, a resource supply and demand end and a resource coordination end;
The resource distribution terminal is used for real-time calculating the economic gap between each region of the natural resources and real-time tracking the adding, deleting and checking data of the natural resource land by real-time recording the land attribute of the natural resource space and real-time positioning the land attribute;
the resource supply and demand end is used for carrying out matching on the requirements of each region according to the index requirements of each region by receiving the index requirements of each region, carrying out matching adjustment according to the requirements, carrying out real-time broadcasting on the matching region through virtual AI characters, carrying out fund compensation on the matching scheme of each region, and tracking the fund state in real time;
The resource coordination terminal is used for creating, managing, analyzing and drawing each region through the GIS, connecting data with the map, integrating position data of each region with attribute information of each region, receiving a coordination accessory matched with each region index in real time, approving the coordination accessory and environment problems generated by coordination, setting execution time after approval, recording fund details and environment data in real time on the beginning day of execution, carrying out fund reminding and environment prediction before the fund expires, and guaranteeing rationalization of resource configuration and feasibility of the environment problems.
The resource distribution terminal comprises a land parcel information module, a resource distribution module and a land parcel increase and decrease module;
the land parcel information module comprises a land parcel attribute unit;
the land parcel attribute unit is used for recording the project, the life cycle, the planning condition, the current time point state and the historical transition information of the land parcel of the natural resources of each area in real time through the data recorder.
The resource distribution module comprises an area positioning unit and an index recording unit;
The regional positioning unit is used for positioning the land of each region through a GPS;
the index recording unit is used for recording the distribution position and the occupied area of each regional land in real time through land attribute information.
The land increase and decrease module comprises an increase and deletion and correction unit and a tracking and recording unit;
the adding, deleting, modifying and searching unit is used for adding, deleting, modifying or searching the coordinated regional land attribute information in real time through the data tracker and the processor;
The tracking and recording unit is used for tracking and recording the land parcel attribute information of each area in real time through the data tracker.
The resource supply and demand end comprises a land parcel demand module, a demand matching module and a matched fund module;
the parcel demand module comprises a demand receiving unit and a demand attribute unit;
the demand receiving unit is used for receiving index demands and index storage of other areas;
the demand attribute unit is used for classifying the demands and the storages of the indexes of each area through the data tracker and the GIS, and automatically dividing the areas of the corresponding types of the indexes.
The demand matching module comprises a demand matching unit and a virtual AI broadcasting unit;
The demand matching unit is used for automatically matching indexes of the automatically divided areas and calculating a variation coefficient, and the calculation formula is as follows:
Wherein, Is the standard deviation of the two-dimensional image,Is the average value of the values,Indicating an economic difference between the matching regions;
the virtual AI broadcasting unit is used for broadcasting the automatically matched region through the virtual AI characters in a voice mode.
The matched fund module comprises a matched compensation unit and a compensation tracking unit;
the matching compensation unit is used for calculating index compensation funds of each region, and the calculation method is as follows:
step 1: and calculating the fund cost rate of borrowing compensation of each regional index, wherein the calculation formula is as follows:
capital occupation = (capital cost rate x fund raised-capital raised cost)/(100%)
The fund occupation is borrowed land area fund occupation, the fund cost rate is borrowed land area fund cost rate, and the fund raising cost is borrowed land area raising cost;
Step 2: the mortgage-free long-term borrowing fund cost rate is calculated according to the following formula:
mortgage free long term borrowing funds cost rate = annual interest amount x (1-tax rate obtained), if long term borrowing is selected, additional financing and opportunity costs are required;
the compensation tracking unit is used for tracking the fund payment data in real time through the data tracker.
The resource coordination end comprises a coordination accessory module, an accessory approval module, a fund docking module and a coordination retrieval module;
The coordination accessory module comprises a GIS functional unit and a coordination accessory unit;
The GIS functional unit is used for creating, managing, analyzing and drawing each region through GIS, connecting data with a map and integrating position data of each region and attribute information of each region;
The coordination accessory unit is used for automatically generating a regional index coordination scheme table through the data record table, adding a fund compensation amount and setting a fund compensation protocol scheme.
The accessory approval module comprises an environment prediction unit;
the environment prediction unit is used for monitoring the coordination area in a field through a GIS technology, collecting the environment information of the area, storing, displaying and analyzing the environment information, and predicting the environment of the project carried out by the coordination area, and the prediction method is as follows:
Step I: setting environmental standard parameters of projects carried out in corresponding areas, and detecting the environmental parameters of the corresponding areas in real time by using earthquake monitoring equipment, landslide monitoring equipment, debris flow monitoring equipment, ground subsidence monitoring equipment, volcanic eruption monitoring equipment, temperature sensors, humidity sensors and light sensors;
step II: calculating the difference value between the environment parameters of the corresponding areas and the environment standard parameters, judging that the environment parameters tend to be safe values if the difference value is = +/2, sending out environment early warning if the difference value is more than 2 or < -2, counting one month as a period, predicting the environment parameters of the areas corresponding to the natural resources according to the environment parameters of the three periods, and judging that the project execution of the area coordination scheme is abnormal if the average value of the environment parameters of the three periods is more than the environment standard parameters;
The fund docking module comprises a real-time computing unit;
the real-time computing unit comprises a fund detail unit, a detail visualization unit, a detail identification unit and an identification early warning unit;
The fund detail unit is used for tracking the conditions of accounts entering and exiting of the area-coordinated execution of the deposit, the transaction deposit, the diapause and the tax money in real time through the data tracker;
and the detail visualization unit visualizes and displays the funds transaction detail in real time through a page.
The detail identification unit is used for displaying the detail of the fund transaction in a classified manner through a GIS technology and carrying out color identification on the fund which is not paid;
The identification early warning unit is used for recording the fund payment condition in real time through the data recorder, recording the fund payment times in real time according to the recorder, and sending out voice reminding by the reporting system when the fund is not paid for three times in an accumulated mode;
the coordination search module is connected with the coordination accessory unit and is used for searching the distribution data or coordination records of the natural resources of each area through the text transmitter.
The invention has the following beneficial effects:
1. According to the invention, by setting the resource distribution end, when natural resource space planning is carried out on land and regional space element data, the space distribution of natural resources in China can be matched with the economic center of gravity by locating land and regional attributes in real time and calculating the economic gap between the regions of the natural resources, the regions with rich resources are matched with the economic development center, the benefits and benefits are combined, the problems of low resource utilization efficiency and unbalanced regional development are solved, and the economic gap between the regions is reduced.
2. According to the invention, by setting the resource supply and demand ends, when natural resource space planning is performed for the homeland space element data, matching adjustment is performed according to the requirements, and real-time broadcasting of the matching areas is performed through the virtual AI characters, so that the gap between newly-increased construction land and actual requirements of certain areas is reduced, all the areas are communicated, fund compensation is performed for the matching scheme of all the areas, the contradiction of the shortage of the homeland space supply and demand is solved, and the influence of the shortage of the land index of certain areas on economic development and the promotion of new town is avoided.
3. According to the invention, by setting the resource coordination end, when natural resource space planning is carried out on homeland space element data, each region is created, managed, analyzed and drawn through the GIS, position data of each region and attribute information of each region are integrated, fund reminding and environment prediction are carried out before fund expiration, so that the supply and demand mechanism of each region can be effectively coordinated in the aspect of natural resource space planning management in China, particularly when large-scale projects crossing provinces or regions are implemented, the environment is predicted before project implementation, and environment problems caused by executing projects can be avoided while reasonable resource allocation is planned in the natural resource space.
Drawings
FIG. 1 is a schematic diagram of an overall system architecture of a natural resource space planning management system based on territorial space element data;
FIG. 2 is a schematic diagram of a resource distribution end of a natural resource space planning management system based on territorial space element data;
FIG. 3 is a schematic diagram of a resource supply and demand end architecture of a natural resource space planning management system based on territorial space element data according to the present invention;
Fig. 4 is a schematic diagram of a resource coordination end of a natural resource space planning management system based on territorial space element data.
Detailed Description
The invention is further described in connection with the following detailed description, in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the invention easy to understand.
Example 1
Please refer to fig. 1-2: a natural resource space planning management system based on territorial space element data comprises a resource distribution end, a resource supply and demand end and a resource coordination end;
The resource distribution end is used for real-time calculating the economic gap between each region of the natural resources and real-time tracking the adding, deleting and checking data of the natural resource land by real-time recording the land attribute of the natural resource space and real-time positioning the land attribute;
The resource supply and demand end is used for carrying out matching on the requirements of each region according to the index requirements of each region by receiving the index requirements of each region, carrying out matching adjustment according to the requirements, carrying out real-time broadcasting on the matching region through the virtual AI characters, carrying out fund compensation on the matching scheme of each region, and tracking the fund state in real time;
The resource coordination terminal is used for creating, managing, analyzing and drawing each region through the GIS, connecting the data with the map, integrating the position data of each region with the attribute information of each region, receiving the coordination accessory matched with the index of each region in real time, approving the coordination accessory and the environment problems generated by coordination, setting the execution time after approval, recording the detail of funds and the environment data in real time on the beginning day of execution, carrying out fund reminding and environment prediction before the fund expires, and ensuring the rationality of resource configuration and the feasibility of the environment problems.
The resource distribution terminal comprises a land parcel information module, a resource distribution module and a land parcel increase and decrease module;
the religion information module comprises a religion attribute unit;
The religion attribute unit is used for recording the project, life cycle, planning condition, current time point state and history transition information of the religion of the natural resources of each area in real time through the data recorder.
The resource distribution module comprises an area positioning unit and an index recording unit;
The regional positioning unit is used for positioning the land of each region through a GPS;
The index recording unit is used for recording the distribution position and the occupied area of each regional land in real time through land attribute information.
The land increase and decrease module comprises an increase and deletion and correction checking unit and a tracking recording unit;
The adding, deleting, modifying or searching function is used for adding, deleting, modifying or searching the coordinated regional land attribute information in real time through the data tracker and the processor;
the tracking and recording unit is used for tracking and recording the land parcel attribute information of each area in real time through the data tracker.
By recording the space land-land attribute of the natural resources in real time and positioning the land-land attribute in real time, the economic gap between the areas of the natural resources is calculated in real time, the space distribution of the natural resources in China can be matched with the economic center of gravity, the areas with rich resources are matched with the center of economic development, the mutual benefits win-win situation is solved, the problems of low utilization efficiency of the resources and unbalanced regional development are solved, and the economic gap between the areas is reduced.
Example two
Please refer to fig. 3: based on the basis of the first embodiment, the resource supply and demand end comprises a land parcel demand module, a demand matching module and a matched fund module;
the parcel demand module comprises a demand receiving unit and a demand attribute unit;
the demand receiving unit is used for receiving index demands and index storage of other areas;
The demand attribute unit is used for classifying the demands and the storages of the indexes of each area through the data tracker and the GIS, and automatically dividing the areas of the corresponding types of the indexes.
The demand matching module comprises a demand matching unit and a virtual AI broadcasting unit;
The demand matching unit is used for automatically matching indexes of the automatically divided areas and calculating a variation coefficient, and the calculation formula is as follows:
Wherein, Is the standard deviation of the two-dimensional image,Is the average value of the values,Indicating an economic difference between the matching regions;
The virtual AI broadcasting unit is used for broadcasting the automatically matched region through the virtual AI characters in a voice way.
The matched fund module comprises a matched compensation unit and a compensation tracking unit;
The matching compensation unit is used for calculating index compensation funds of each area, and the calculation method is as follows:
step 1: and calculating the fund cost rate of borrowing compensation of each regional index, wherein the calculation formula is as follows:
capital occupation = (capital cost rate x fund raised-capital raised cost)/(100%)
The fund occupation is borrowed land area fund occupation, the fund cost rate is borrowed land area fund cost rate, and the fund raising cost is borrowed land area raising cost;
Step 2: the mortgage-free long-term borrowing fund cost rate is calculated according to the following formula:
mortgage free long term borrowing funds cost rate = annual interest amount x (1-tax rate obtained), if long term borrowing is selected, additional financing and opportunity costs are required;
The compensation tracking unit is used for tracking the fund payment data in real time through the data tracker.
By receiving the index requirements of each region, matching the requirements of each region according to the index requirements of each region, matching and adjusting the requirements, and broadcasting the matching regions in real time through virtual AI characters, the gap between newly added construction land and actual requirements of certain regions is reduced, the regions are communicated, and fund compensation is performed according to the matching scheme of each region, so that the contradiction of insufficient supply and demand of the homeland space is solved, and the influence of insufficient land indexes of certain regions on economic development and the promotion of novel township is avoided.
Example III
Please refer to fig. 4: based on the basis of the first embodiment, the resource coordination end comprises a coordination accessory module, an accessory approval module, a fund docking module and a coordination retrieval module;
the coordination accessory module comprises a GIS functional unit and a coordination accessory unit;
the GIS functional unit is used for creating, managing, analyzing and drawing each region through the GIS, connecting the data with the map and integrating the position data of each region and the attribute information of each region;
the coordination accessory unit is used for automatically generating a regional index coordination scheme table through the data record table, adding a fund compensation amount and setting a fund compensation protocol scheme.
The accessory approval module comprises an environment prediction unit;
The environment prediction unit is used for monitoring the field of the coordination area through the GIS technology, collecting the environment information of the area, storing, displaying and analyzing the environment information, and predicting the environment of the project carried out by the coordination area, and the prediction method is as follows:
Step I: setting environmental standard parameters of projects of corresponding areas, detecting the environmental parameters of the corresponding areas in real time by using earthquake monitoring equipment, mountain landslide monitoring equipment, debris flow monitoring equipment, ground subsidence monitoring equipment and volcanic eruption monitoring equipment, a temperature sensor, a humidity sensor and a light sensor, wherein the earthquake monitoring equipment is any one or more of a front-end camera, a water temperature water level sensor, a vibration sensor, a seismic wave sensor, an inclination sensor and a displacement sensor, the mountain landslide monitoring equipment is any one or more of a front-end camera, a photoelectric sensor, a pressure sensor, an impact acceleration sensor and a vibration sensor, the debris flow monitoring equipment is any one or more of a front-end camera, a water quality analyzer, a water temperature water level sensor, a rainfall sensor, a humidity sensor, an impact acceleration sensor, a displacement sensor and a geological sensor, and the ground subsidence monitoring equipment is any one or more of a front-end camera, a subsidence sensor, a subsidence monitor, a geological sensor and a displacement sensor, and the volcanic eruption equipment is any one or more of a temperature sensor, a humidity sensor and a dust sensor;
step II: calculating the difference value between the environment parameters of the corresponding areas and the environment standard parameters, judging that the environment parameters tend to be safe values if the difference value is = +/2, sending out environment early warning if the difference value is more than 2 or < -2, counting one month as a period, predicting the environment parameters of the areas corresponding to the natural resources according to the environment parameters of the three periods, and judging that the project execution of the area coordination scheme is abnormal if the average value of the environment parameters of the three periods is more than the environment standard parameters;
The fund docking module comprises a real-time computing unit;
the real-time computing unit comprises a fund detail unit, a detail visualization unit, a detail identification unit and an identification early warning unit;
the fund detail unit is used for tracking the account entering and exiting conditions of the area coordinated execution of the deposit, the transaction deposit, the diapause and the tax money in real time through the data tracker;
the detail visualization unit visualizes and displays the funds transaction detail in real time through the page.
The detail identification unit is used for displaying the detail of the fund transaction in a classified manner through a GIS technology and carrying out color identification on the fund which is not paid;
The identification early warning unit is used for recording the fund paying condition in real time through the data recorder, recording the fund paying times in real time according to the recorder, and sending out voice reminding by the reporting system when the fund is not paid for three times in an accumulated mode, wherein the voice reminding comprises a robot voice telephone, a short message receiving and sending mode and the like;
The coordination search module is connected with the coordination accessory unit and is used for searching the distribution data or coordination records of the natural resources of each area through the text transmitter.
The method has the advantages that the regions are created, managed, analyzed and drawn through the GIS, the data are connected with the map, the position data of the regions and the attribute information of the regions are integrated, the coordination accessory matched with the indexes of the regions is received in real time, the fund detail and the environment data are recorded in real time on the beginning day of execution, and fund reminding and environment prediction are carried out before the fund expires, so that the supply and demand mechanism of the regions can be effectively coordinated in the aspect of natural resource space planning management in China, particularly, when large projects crossing provinces or regions are implemented, the environment is predicted before the project is implemented, and the environment problem of the executed projects can be avoided while the resource configuration is not reasonable in reasonable planning in natural resource space.
According to the natural resource space planning management system based on the homeland space element data, when the system is operated, by recording the regional attribute of the natural resource space in real time and positioning the regional attribute in real time, the economic gap between the regions of the natural resource is calculated in real time, the increasing, deleting and modifying data of the regional of the natural resource are tracked in real time, the economic gap between the regions of the natural resource can be matched with the economic center of gravity, the regions with rich resources are matched with the center of economic development, the mutual benefits win-win situation, the problems of low utilization efficiency of the resources and unbalanced regional development are solved, and the economic gap between the regions is reduced; the method comprises the steps of carrying out matching adjustment according to each regional index requirement by receiving each regional index requirement, carrying out real-time broadcasting of a matching region according to the requirement, carrying out fund compensation according to a virtual AI character, carrying out fund state tracking according to a matching scheme of each region, carrying out matching adjustment according to each regional index requirement by receiving each regional index requirement, carrying out real-time broadcasting of a matching region according to the requirement, enabling the gap between newly added construction land and actual requirements of certain regions to be reduced, communicating the regions, carrying out fund compensation according to the matching scheme of each region, solving the contradiction of insufficient supply and demand of the national and soil space, and avoiding the influence of insufficient land indexes of certain regions on economic development and promotion of new town; creating, managing, analyzing and drawing each region through GIS, connecting data with a map, integrating position data of each region with attribute information of each region, receiving a coordination accessory matched with each region index in real time, approving the coordination accessory and environment problems generated by coordination, setting execution time after approval, recording fund details and environment data in real time on the beginning day of execution, and carrying out fund reminding and environment prediction before the fund expires, so that rationality of resource configuration and feasibility of environment problems are ensured, supply and demand mechanisms of each region can be effectively coordinated in terms of natural resource space planning management, particularly, when large-scale projects crossing provinces or regions are implemented, environment is predicted before project implementation, reasonable planning of natural resource space can be avoided, and meanwhile, environment problems of executed projects can be avoided.
The foregoing has shown and described the basic principles and main features of the present invention and the advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present invention, and various changes and modifications may be made without departing from the spirit and scope of the invention, which is defined in the appended claims. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (10)

1. A natural resource space planning management system based on territorial space element data is characterized by comprising a resource distribution end, a resource supply and demand end and a resource coordination end;
The resource distribution terminal is used for real-time calculating the economic gap between each region of the natural resources and real-time tracking the adding, deleting and checking data of the natural resource land by real-time recording the land attribute of the natural resource space and real-time positioning the land attribute;
the resource supply and demand end is used for carrying out matching on the requirements of each region according to the index requirements of each region by receiving the index requirements of each region, carrying out matching adjustment according to the requirements, carrying out real-time broadcasting on the matching region through virtual AI characters, carrying out fund compensation on the matching scheme of each region, and tracking the fund state in real time;
The resource coordination terminal is used for creating, managing, analyzing and drawing each region through the GIS, connecting data with the map, integrating position data of each region with attribute information of each region, receiving a coordination accessory matched with each region index in real time, approving the coordination accessory and environment problems generated by coordination, setting execution time after approval, recording fund details and environment data in real time on the beginning day of execution, carrying out fund reminding and environment prediction before the fund expires, and guaranteeing rationalization of resource configuration and feasibility of the environment problems.
2. The system of claim 1, wherein the resource distribution side comprises a land parcel information module, a resource distribution module, and a land parcel increase/decrease module;
the land parcel information module comprises a land parcel attribute unit;
the land parcel attribute unit is used for recording the project, the life cycle, the planning condition, the current time point state and the historical transition information of the land parcel of the natural resources of each area in real time through the data recorder.
3. The system of claim 2, wherein the resource distribution module comprises a region location unit and an index recording unit;
The regional positioning unit is used for positioning the land of each region through a GPS;
the index recording unit is used for recording the distribution position and the occupied area of each regional land in real time through land attribute information.
4. The system of claim 3, wherein the land increase/decrease module comprises an increase/decrease checking unit and a trace recording unit;
the adding, deleting, modifying and searching unit is used for adding, deleting, modifying or searching the coordinated regional land attribute information in real time through the data tracker and the processor;
The tracking and recording unit is used for tracking and recording the land parcel attribute information of each area in real time through the data tracker.
5. The system of claim 1, wherein the resource supply and demand side comprises a land parcel demand module, a demand matching module, and a matched funds module;
the parcel demand module comprises a demand receiving unit and a demand attribute unit;
the demand receiving unit is used for receiving index demands and index storage of other areas;
the demand attribute unit is used for classifying the demands and the storages of the indexes of each area through the data tracker and the GIS, and automatically dividing the areas of the corresponding types of the indexes.
6. The system of claim 5, wherein the demand matching module comprises a demand matching unit and a virtual AI reporting unit;
The demand matching unit is used for automatically matching indexes of the automatically divided areas and calculating a variation coefficient, and the calculation formula is as follows:
Wherein, Is the standard deviation of the two-dimensional image,Is the average value of the values,Indicating an economic difference between the matching regions;
the virtual AI broadcasting unit is used for broadcasting the automatically matched region through the virtual AI characters in a voice mode.
7. The system of claim 6, wherein the matched funds module comprises a matched compensation unit and a compensated tracking unit;
the matching compensation unit is used for calculating index compensation funds of each region, and the calculation method is as follows:
step 1: and calculating the fund cost rate of borrowing compensation of each regional index, wherein the calculation formula is as follows:
capital occupation = (capital cost rate x fund raised-capital raised cost)/(100%)
The fund occupation is borrowed land area fund occupation, the fund cost rate is borrowed land area fund cost rate, and the fund raising cost is borrowed land area raising cost;
Step 2: the mortgage-free long-term borrowing fund cost rate is calculated according to the following formula:
mortgage free long term borrowing funds cost rate = annual interest amount x (1-tax rate obtained), if long term borrowing is selected, additional financing and opportunity costs are required;
the compensation tracking unit is used for tracking the fund payment data in real time through the data tracker.
8. The system of claim 1, wherein the resource coordination end comprises a coordination accessory module, an accessory approval module, a fund docking module, and a coordination retrieval module;
The coordination accessory module comprises a GIS functional unit and a coordination accessory unit;
The GIS functional unit is used for creating, managing, analyzing and drawing each region through GIS, connecting data with a map and integrating position data of each region and attribute information of each region;
The coordination accessory unit is used for automatically generating a regional index coordination scheme table through the data record table, adding a fund compensation amount and setting a fund compensation protocol scheme.
9. The system of claim 8, wherein the accessory approval module includes an environment prediction unit;
the environment prediction unit is used for monitoring the coordination area in a field through a GIS technology, collecting the environment information of the area, storing, displaying and analyzing the environment information, and predicting the environment of the project carried out by the coordination area, and the prediction method is as follows:
Step I: setting environmental standard parameters of projects carried out in corresponding areas, and detecting the environmental parameters of the corresponding areas in real time by using earthquake monitoring equipment, landslide monitoring equipment, debris flow monitoring equipment, ground subsidence monitoring equipment, volcanic eruption monitoring equipment, temperature sensors, humidity sensors and light sensors;
step II: calculating the difference value between the environment parameters of the corresponding areas and the environment standard parameters, judging that the environment parameters tend to be safe values if the difference value is = +/2, sending out environment early warning if the difference value is more than 2 or < -2, counting one month as a period, predicting the environment parameters of the areas corresponding to the natural resources according to the environment parameters of the three periods, and judging that the project execution of the area coordination scheme is abnormal if the average value of the environment parameters of the three periods is more than the environment standard parameters;
The fund docking module comprises a real-time computing unit;
the real-time computing unit comprises a fund detail unit, a detail visualization unit, a detail identification unit and an identification early warning unit;
The fund detail unit is used for tracking the conditions of accounts entering and exiting of the area-coordinated execution of the deposit, the transaction deposit, the diapause and the tax money in real time through the data tracker;
and the detail visualization unit visualizes and displays the funds transaction detail in real time through a page.
10. The system according to claim 9, wherein the detail identification unit is configured to display the funds transaction detail in a classified manner by GIS technology, and to color-identify the funds not paid;
The identification early warning unit is used for recording the fund payment condition in real time through the data recorder, recording the fund payment times in real time according to the recorder, and sending out voice reminding by the reporting system when the fund is not paid for three times in an accumulated mode;
the coordination search module is connected with the coordination accessory unit and is used for searching the distribution data or coordination records of the natural resources of each area through the text transmitter.
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CN106611246A (en) * 2015-10-21 2017-05-03 星际空间(天津)科技发展有限公司 Integrated management system of land and resources
CN111815290A (en) * 2020-07-20 2020-10-23 云南财经大学 Territorial space planning system based on GIS
CN112700045A (en) * 2020-12-31 2021-04-23 武汉市土地利用和城市空间规划研究中心 Intelligent site selection system based on land reserve implementation monitoring model
CN112766879A (en) * 2021-01-04 2021-05-07 江苏省测绘地理信息局信息中心 Full life cycle management method, system, storage medium and server for mapping activities
CN112767165A (en) * 2021-02-05 2021-05-07 武汉鑫土流网络科技有限公司 Free system is handed over to soil flow
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CN115293570A (en) * 2022-08-03 2022-11-04 鲁东大学 GIS-based territorial space planning system and method
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