Intelligent land occupation and supplement balance analysis method and system

Through intelligent land occupation and compensation balance analysis methods and systems, the land is divided and productive capacity analysis, combined with occupation and compensation balance and balance impact analysis, the problem that occupation and compensation planning in the existing technology cannot be divided into sub-region types is solved, and the efficiency of occupation and compensation balance and the rationality of planning is improved.

CN120069607AInactive Publication Date: 2025-05-30ZHEJIANG ZHEN SHAN SCI & TECH CO LTD
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Patent Information

Application Number
CN202510155999.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-12
Publication Date
2025-05-30
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the prior art, when land areas are planning for occupation and compensation, they cannot divide the types of sub-regions in the land, resulting in a decrease in occupation and compensation balance, and the inability to make occupation and compensation decisions based on the real-time balance state, reducing the efficiency of occupation and compensation balance.

Method used

An intelligent land occupation and compensation balance analysis method and system is proposed, including regional division units, productivity classification units, occupation and compensation balance analysis units and balance impact analysis units. By conducting regional division, productivity analysis, occupation and compensation balance analysis and balance impact analysis of land, relevant data are collected and analyzed, and accounting planning adjustments and efficiency assessments are carried out.

Benefits of technology

By conducting refined regional division and productivity analysis on the land, it can accurately plan according to the different characteristics of the land locations to improve the efficiency of occupation and compensation balance; through occupation and compensation balance analysis and balance impact analysis, the current occupation and compensation state and impact can be inferred, and the rationality and implementation efficiency of occupation and compensation planning can be improved.

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Abstract

The invention discloses an intelligent land occupation and compensation balance analysis method and system, relates to the technical field of land occupation and compensation balance, and solves the technical problem that in the prior art, occupation and compensation balance cannot be analyzed, so that an occupation and compensation decision cannot be made according to a real-time balance state. The method specifically comprises the following steps: a productivity classification unit performs productivity analysis on various types of sub-regions in a land region, acquires planned yield data and actual yield data, and further marks the sub-regions through data analysis; the occupation and compensation balance analysis unit performs occupation and compensation balance analysis on the land area, acquires occupation and compensation planning information and occupation and compensation causing information, and performs occupation and compensation planning adjustment according to information analysis; the balance influence analysis unit is used for carrying out balance influence analysis on the land area subjected to occupation and complement planning, collecting occupation influence data and occupation efficiency data, and deducing whether the occupation and complement balance influence analysis is normal or not according to data comparison.
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Description

Technical Field

[0001] The present invention relates to the technical field of land occupation and compensation balance, and specifically to an intelligent land occupation and compensation balance analysis method and system. Background Art

[0002] Land occupation and compensation balance refers to a cultivated land protection system within the area determined by the overall land use plan. To meet the demand for cultivated land occupied by construction, through implementing projects such as land development, consolidation, and reclamation, it ensures that the quantity and quality of the supplementary cultivated land are equivalent to those of the cultivated land occupied by construction, achieving dynamic balance of the total cultivated land quantity.

[0003] However, in the prior art, when making occupation and compensation plans for land areas, it is unable to classify the types of each sub - area within the land, thus reducing the occupation and compensation balance. At the same time, it is unable to analyze the occupation and compensation balance, so it is impossible to make occupation and compensation decisions based on the real - time balance state, reducing the efficiency of occupation and compensation balance.

[0004] In view of the above - mentioned technical deficiencies, a solution is proposed now. Summary of the Invention

[0005] The purpose of the present invention is to solve the above - mentioned problems and propose an intelligent land occupation and compensation balance analysis method and system.

[0006] The purpose of the present invention can be achieved through the following technical solutions:

[0007] An intelligent land occupation and compensation balance analysis system, characterized by including a server, which is communicatively connected to a regional division unit, a productivity classification unit, an occupation and compensation balance analysis unit, and a balance impact analysis unit;

[0008] The regional division unit divides the land into regions, divides the land area into i sub - regions, where i is a natural number greater than 1, collects regional division information, obtains the regional division coefficient of each sub - region through calculation, and conducts regional division based on coefficient comparison;

[0009] The productivity classification unit conducts productivity analysis on each type of sub - region within the land area, collects planned output data and actual output data, and further marks the sub - regions through data analysis;

[0010] The occupation and compensation balance analysis unit conducts occupation and compensation balance analysis on the land area, collects occupation and compensation planning information and occupation and compensation resulting information, and adjusts the occupation and compensation plan based on information analysis;

[0011] The balance impact analysis unit conducts balance impact analysis on the land area where the occupation and compensation plan is carried out, collects occupation impact data and occupation efficiency data, and infers whether the occupation and compensation balance impact analysis is normal based on data comparison.

[0012] As a preferred embodiment of the present invention, the regional division information includes the overlapping duration of the soil water content mean decline period and the external water replenishment period of each sub-region within the land area, the adjustment span of the corresponding numerical values of the set adjustment time within the soil pH range of each sub-region within the land area, and the maximum reciprocating span of the ratio of the irrigation satisfaction area corresponding to the irrigation time of each sub-region within the land area to the sub-region area.

[0013] As a preferred embodiment of the present invention, if the regional division coefficient of a sub-region exceeds the regional division coefficient threshold, the current sub-region is marked as a high-quality region; if the regional division coefficient of a sub-region does not exceed the regional division coefficient threshold, the current sub-region is marked as a poor-quality region.

[0014] As a preferred embodiment of the present invention, the planned yield data and the actual yield data are respectively the maximum deviation values of the planting yields of the sub-regions within the land area under the corresponding theoretical production conditions and the natural production conditions, and the occurrence frequency of the deviation amount between the planned yield and the actual production volume of the sub-regions within the land area under the natural production conditions exceeding the set threshold.

[0015] As a preferred embodiment of the present invention, if the planned yield data exceeds the maximum deviation threshold, or the actual yield data exceeds the occurrence frequency threshold, the corresponding sub-region is marked as a floating yield region; if the planned yield data does not exceed the maximum deviation threshold and the actual yield data does not exceed the occurrence frequency threshold, the corresponding sub-region is marked as a stable yield region.

[0016] As a preferred embodiment of the present invention, the occupation and compensation planning information is the ratio of the increase spans of the regional utilization quantities of the poor-quality regions and the floating yield regions, and the increase span ratio corresponding to the increase spans of the regional utilization quantities of the high-quality regions and the stable yield regions; the occupation and compensation resulting information is the quantity ratio of the number of floating yield regions for product planting when the product task yield within the land area is not met to the number of stable yield regions planned to be occupied.

[0017] As a preferred embodiment of the present invention, if the occupation and compensation planning information exceeds the increase span ratio threshold, a regional replanning signal is generated and sent to the server; if the occupation and compensation resulting information exceeds the quantity ratio threshold range, a regional planning occupation signal is generated and sent to the server;

[0018] If the occupation and compensation resulting information does not exceed the quantity ratio threshold range, a regional planning withdrawal signal is generated and sent to the server; if the occupation and compensation planning information does not exceed the increase span ratio threshold and the occupation and compensation resulting information is within the quantity ratio threshold range, a regional planning unchanged signal is generated and sent to the server.

[0019] As a preferred embodiment of the present invention, the occupancy impact data and the occupancy efficiency data are respectively the numerical increase span of the regional yield cost ratio after the reduction of the number of floating yield regions in the land area of the dynamic balance of arable land occupation and compensation, and the upward span of the land occupation and compensation planning utilization rate of the land area after the reduction of the number of stable yield regions in the land area of the dynamic balance of arable land occupation and compensation.

[0020] As a preferred embodiment of the present invention, if the occupancy impact data exceeds the numerical increase span threshold and the occupancy efficiency data exceeds the upward span threshold, a low-impact signal is generated and sent to the server; if the occupancy impact data does not exceed the numerical increase span threshold or the occupancy efficiency data does not exceed the upward span threshold, a high-impact signal is generated and sent to the server.

[0021] An intelligent land occupation and compensation balance analysis method, the specific method process is as follows:

[0022] Regional division: The land is divided into i sub-regions, where i is a natural number greater than 1. The regional division information is collected, and the regional division coefficient of each sub-region is obtained through calculation, and the regional division is carried out according to the coefficient comparison;

[0023] Productivity classification: The productivity of each type of sub-region in the land area is analyzed, the planned yield data and the actual yield data are collected, and the sub-regions are further marked through data analysis;

[0024] Occupation and compensation balance analysis: The occupation and compensation balance analysis of the land area is carried out, the occupation and compensation planning information and the information caused by occupation and compensation are collected, and the occupation and compensation planning is adjusted according to the information analysis;

[0025] Balance impact analysis: The balance impact analysis of the land area where the occupation and compensation planning is carried out is carried out, the occupancy impact data and the occupancy efficiency data are collected, and it is inferred whether the occupation and compensation balance impact analysis is normal according to the data comparison.

[0026] Compared with the prior art, the beneficial effects of the present invention are:

[0027] 1. In the present invention, the land is divided into regions according to the analysis of each position of the land. Through the regional division, the different characteristics of each position of the land are reflected, so as to accurately plan according to the characteristics during land occupation and compensation to ensure the high efficiency of the dynamic balance of arable land occupation and compensation;

[0028] The productivity of each type of sub-region in the land area is analyzed, and classification is carried out according to the productivity analysis results, so as to further divide the land, facilitate accurate planning of the uses of sub-regions during land planning, and contribute to promoting the dynamic balance of arable land occupation and compensation.

[0029] 2. In the present invention, a dynamic balance analysis of land areas is carried out. Through the dynamic balance analysis, it is inferred whether the occupation and compensation of the current land area are in a balanced state, so as to avoid unreasonable land area planning, resulting in imbalance between occupation and compensation, inability to ensure the stability of the product output of the land area, and also unable to ensure the reasonable utilization efficiency of the land area, thus reducing the rationality of land area planning.

[0030] A balance impact analysis is carried out on the land area for occupation and compensation planning. Through the balance impact analysis of the land area, it is inferred whether there is an impact on the implementation of the dynamic balance plan, so as to facilitate the efficiency evaluation of the occupation and compensation plan and improve the implementation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] For the convenience of those skilled in the art to understand, the present invention will be further described below with reference to the accompanying drawings.

[0032] Figure 1 is the system principle block diagram of the present invention;

[0033] Figure 2 is the method flow chart of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0034] In order to enable those skilled in the art to better understand the solution of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0035] As used herein, the phrase "embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the present invention. The appearance of this phrase in various places in the specification is not necessarily all referring to the same embodiment, nor is it an independent or alternative embodiment mutually exclusive with other embodiments. Those skilled in the art will explicitly and implicitly understand that the embodiments described herein can be combined with other embodiments.

[0036] Please refer to Figure 1 As shown, an intelligent land occupation and compensation balance analysis system includes a server, and the server is communicatively connected to a regional division unit, a productivity classification unit, an occupation and compensation balance analysis unit, and a balance impact analysis unit;

[0037] The server generates an area division signal and sends the area division signal to the area division unit. After receiving the area division signal, the area division unit divides the land into areas. The division is carried out based on the analysis of each position of the land, and the different characteristics of each position of the land are reflected through the area division, so as to facilitate accurate planning according to the characteristics during land occupation and compensation, and ensure the efficiency of occupation and compensation balance;

[0038] The land area is divided into i sub-areas, where i is a natural number greater than 1. The overlapping duration between the average soil moisture content decline period and the external water replenishment period of each sub-area within the land area is obtained. Here, external water replenishment includes rainfall, frost, irrigation, etc., and the overlapping duration between the average soil moisture content decline period and the external water replenishment period of each sub-area within the land area is marked as CDS;

[0039] The corresponding numerical adjustment span of the set adjustment time within the soil pH range of each sub-area within the land area is obtained, and the corresponding numerical adjustment span of the set adjustment time within the soil pH range of each sub-area within the land area is marked as TJK;

[0040] The maximum reciprocating span of the ratio of the irrigation-satisfied area corresponding to the irrigation time to the sub-area area of each sub-area within the land area is obtained, and the maximum reciprocating span of the ratio of the irrigation-satisfied area corresponding to the irrigation time to the sub-area area of each sub-area within the land area is marked as ZDW;

[0041] The above information is uniformly marked as area division information, and the area division coefficient of each sub-area within the land area is obtained by substituting it into the formula. The formula is: Among them, fwa1, fwa2, and fwa3 are respectively preset proportional coefficients, and fwa1, fwa2, and fwa3 are all positive integers greater than 1. α is used as an error correction factor, and its value is 0.97;

[0042] The area division coefficient of each sub-area within the land area is compared with the area division coefficient threshold:

[0043] If the area division coefficient of each sub-area within the land area exceeds the area division coefficient threshold, it is inferred that the characteristic analysis of the corresponding sub-area within the land area is qualified, and the current sub-area is marked as a high-quality area; if the area division coefficient of each sub-area within the land area does not exceed the area division coefficient threshold, it is inferred that the characteristic analysis of the corresponding sub-area within the land area is unqualified, and the current sub-area is marked as a poor-quality area;

[0044] And the type of the sub-area is sent to the server;

[0045] Generate productivity classification signals and send them to the productivity classification unit. After receiving the productivity classification signals, the productivity classification unit conducts productivity analysis on various types of sub-regions within the land area and performs category division based on the productivity analysis results, so as to facilitate further land division and accurately plan the uses of sub-regions during land planning, which is conducive to promoting the balance between cultivated land occupied and reclaimed;

[0046] Obtain the maximum deviation value between the planting yield under the theoretical production conditions and the planting yield under the natural production conditions corresponding to the sub-regions within the land area. The theoretical production conditions refer to the situation without considering external factors; the natural production conditions refer to the conditions combined with environmental factors, such as climate, etc.; and mark the maximum deviation value between the planting yield under the theoretical production conditions and the planting yield under the natural production conditions corresponding to the sub-regions within the land area as the planned yield data;

[0047] Obtain the occurrence frequency of the deviation amount between the planned yield and the actual production volume corresponding to the sub-regions within the land area under the natural production conditions exceeding the set threshold, and mark the occurrence frequency of the deviation amount between the planned yield and the actual production volume corresponding to the sub-regions within the land area under the natural production conditions exceeding the set threshold as the actual yield data;

[0048] And compare the maximum deviation value between the planting yield under the theoretical production conditions and the planting yield under the natural production conditions corresponding to the sub-regions within the land area, and the occurrence frequency of the deviation amount between the planned yield and the actual production volume corresponding to the sub-regions within the land area under the natural production conditions exceeding the set threshold with the maximum deviation threshold and the occurrence frequency threshold respectively:

[0049] If the maximum deviation value between the planting yield under the theoretical production conditions and the planting yield under the natural production conditions corresponding to the sub-regions within the land area exceeds the maximum deviation threshold, or the occurrence frequency of the deviation amount between the planned yield and the actual production volume corresponding to the sub-regions within the land area under the natural production conditions exceeding the set threshold exceeds the occurrence frequency threshold, then mark the corresponding sub-region as a floating yield area;

[0050] If the maximum deviation value between the planting yield under the theoretical production conditions and the planting yield under the natural production conditions corresponding to the sub-regions within the land area does not exceed the maximum deviation threshold, and the occurrence frequency of the deviation amount between the planned yield and the actual production volume corresponding to the sub-regions within the land area under the natural production conditions exceeding the set threshold does not exceed the occurrence frequency threshold, then mark the corresponding sub-region as a stable yield area;

[0051] And send the type of the sub-region to the server;

[0052] After receiving the high-quality areas, poor-quality areas, floating yield areas, and stable yield areas, the server conducts land planning according to the types of sub-regions, and conducts land development planning while ensuring the land cultivation efficiency;

[0053] Meanwhile, the server generates a dynamic balance analysis signal and sends the dynamic balance analysis signal to the dynamic balance analysis unit. After receiving the dynamic balance analysis signal, the dynamic balance analysis unit conducts a dynamic balance analysis on the land area, and infers whether the occupation and compensation of the current land area are in a balanced state through the dynamic balance analysis, so as to avoid unreasonable land area planning, resulting in imbalance between occupation and compensation, inability to ensure the stability of the product output of the land area, and also inability to ensure the reasonable utilization efficiency of the land area, reducing the rationality of the land area planning;

[0054] When the product task output in the land area is satisfied, the increase spans of the regional utilization quantities of the poor-quality area and the floating output area, and the increase spans of the regional utilization quantities of the high-quality area and the stable output area are obtained, and the increase span ratio is calculated according to the ratio and marked as the occupation and compensation planning information;

[0055] The corresponding quantity ratio of the number of floating output areas for product planting when the product task output in the land area is not satisfied to the number of stable output areas planned to be occupied is obtained, and the corresponding quantity ratio of the number of floating output areas for product planting when the product task output in the land area is not satisfied to the number of stable output areas planned to be occupied is marked as the occupation and compensation cause information;

[0056] And the occupation and compensation planning information and the occupation and compensation cause information are respectively compared with the increase span ratio threshold and the quantity ratio threshold range:

[0057] If the occupation and compensation planning information exceeds the increase span ratio threshold, it is inferred that the occupation and compensation planning of the land area is unreasonable, a regional replanning signal is generated and sent to the server; after receiving the regional replanning signal, the server adjusts the sub-regional planning strategy of the current land area;

[0058] If the occupation and compensation cause information exceeds the quantity ratio threshold range, it is inferred that the planned utilization progress of the floating output area in the land area is slow, a regional planning occupation signal is generated and sent to the server, and after receiving the regional planning occupation signal, the server preferentially utilizes the floating output area in the land area and conducts tillage control for the high-quality area to increase the number of tillage areas;

[0059] If the occupation and compensation cause information does not exceed the quantity ratio threshold range, it is inferred that the utilization progress of the stable output area in the land area is too fast, a regional planning withdrawal signal is generated and sent to the server, and after receiving the regional planning withdrawal signal, the server suspends the occupation progress of the stable output area in the land area and stops the occupation of the uncompleted stable output area;

[0060] If the occupation and compensation planning information does not exceed the increase span ratio threshold and the occupation and compensation result in information within the quantity ratio threshold range, it is inferred that the occupation and compensation planning of the land area is reasonable, a regional planning unchanged signal is generated and the regional planning unchanged signal is sent to the server;

[0061] Meanwhile, the server generates a balance impact analysis signal and sends the balance impact analysis signal to the balance impact analysis unit. After receiving the balance impact analysis signal, the balance impact analysis unit conducts a balance impact analysis on the land area where the occupation and compensation planning is carried out, and infers whether there is an implementation impact on the occupation and compensation balance planning through the balance impact analysis of the land area, so as to evaluate the efficiency of the occupation and compensation planning and improve the implementation efficiency;

[0062] Obtain the numerical increase span of the regional production cost ratio after the number of floating production regions in the land area with occupation and compensation balance decreases, and at the same time obtain the rising span of the utilization rate of the corresponding land occupation and compensation planning of the land area after the number of stable production regions in the land area with occupation and compensation balance decreases. Mark the numerical increase span of the regional production cost ratio after the number of floating production regions in the land area with occupation and compensation balance decreases and the rising span of the utilization rate of the corresponding land occupation and compensation planning of the land area after the number of stable production regions in the land area with occupation and compensation balance decreases as occupation impact data and occupation efficiency data respectively, and compare them with the numerical increase span threshold and the rising span threshold respectively:

[0063] If the numerical increase span of the regional production cost ratio after the number of floating production regions in the land area with occupation and compensation balance decreases exceeds the numerical increase span threshold, and the rising span of the utilization rate of the corresponding land occupation and compensation planning of the land area after the number of stable production regions in the land area with occupation and compensation balance decreases exceeds the rising span threshold, it is inferred that the balance impact analysis of the land area for occupation and compensation is normal, a low impact signal is generated and the low impact signal is sent to the server;

[0064] If the numerical increase span of the regional production cost ratio after the number of floating production regions in the land area with occupation and compensation balance decreases does not exceed the numerical increase span threshold, or the rising span of the utilization rate of the corresponding land occupation and compensation planning of the land area after the number of stable production regions in the land area with occupation and compensation balance decreases does not exceed the rising span threshold, it is inferred that the balance impact analysis of the land area for occupation and compensation is abnormal, a high impact signal is generated and the high impact signal is sent to the server. After receiving the high impact signal, the server adjusts the occupation and compensation planning of the land area;

[0065] Please refer to Figure 2 As shown, an intelligent land occupation and compensation balance analysis method, the specific method process is as follows:

[0066] Regional division: Divide the land area into i sub-areas, where i is a natural number greater than 1. Collect regional division information, obtain the regional division coefficients of each sub-area through calculation, and conduct regional division based on coefficient comparison;

[0067] Productivity classification: Conduct productivity analysis on each type of sub-area within the land area. Collect planned yield data and actual yield data, and further mark the sub-areas through data analysis;

[0068] Occupation and compensation balance analysis: Conduct occupation and compensation balance analysis on the land area. Collect occupation and compensation planning information and occupation and compensation resulting information, and adjust the occupation and compensation plan based on information analysis;

[0069] Balance impact analysis: Conduct balance impact analysis on the land area for which the occupation and compensation plan is carried out. Collect occupation impact data and occupation efficiency data, and infer whether the occupation and compensation balance impact analysis is normal based on data comparison;

[0070] The above formulas are all obtained through software simulation by collecting a large amount of data, and a formula close to the true value is selected. The coefficients in the formula are set by those skilled in the art according to the actual situation;

[0071] The preferred embodiments of the present invention disclosed above are only used to help explain the present invention. The preferred embodiments do not elaborate on all details and do not limit the invention to only the specific implementation manners. Obviously, many modifications and variations can be made according to the content of this specification. These embodiments are selected and specifically described in this specification to better explain the principles and practical applications of the present invention, so that those skilled in the art in the relevant technical field can well understand and utilize the present invention. The present invention is only limited by the claims and their full scope and equivalents.

Claims

1. An intelligent land occupation and compensation balance analysis system, characterized in that: It includes a server, and the server is communicatively connected with a regional division unit, a production capacity classification unit, an occupation and compensation balance analysis unit, and a balance impact analysis unit; The regional division unit divides the land into i sub-regions, where i is a natural number greater than 1, collects regional division information, obtains the regional division coefficient of each sub-region through calculation, and divides the region according to the comparison of the coefficients; The productivity classification unit conducts productivity analysis on each type of sub-area within the land area, collects planned production data and actual production data, and further marks the sub-areas through data analysis; The occupation-compensation balance analysis unit conducts occupation-compensation balance analysis on the land area, collects occupation-compensation planning information and occupation-compensation cause information, and adjusts the occupation-compensation planning based on the information analysis; The balance impact analysis unit conducts a balance impact analysis on the land area where occupation and compensation planning is carried out, collects occupation impact data and occupation efficiency data, and infers whether the occupation and compensation balance impact analysis is normal based on data comparison.

2. The intelligent land occupation and compensation balance analysis system according to claim 1 is characterized in that: The regional division information includes the overlapping duration of the period when the mean soil moisture content of each sub-region in the land area decreases and the period when the sub-region is replenished with external water, the numerical adjustment span corresponding to the set adjustment time within the soil pH range of each sub-region in the land area, and the maximum reciprocating span of the ratio of the irrigation area to the sub-region area corresponding to the irrigation time of each sub-region in the land area.

3. The intelligent land occupation and compensation balance analysis system according to claim 2 is characterized in that: If the region division coefficient of the sub-region exceeds the region division coefficient threshold, the current sub-region is marked as a high-quality region; if the region division coefficient of the sub-region does not exceed the region division coefficient threshold, the current sub-region is marked as a poor-quality region.

4. The intelligent land occupation and compensation balance analysis system according to claim 1 is characterized in that: The planned yield data and actual yield data are respectively the maximum deviation value between the planting yield under theoretical production conditions and the planting yield under natural production conditions in the sub-region within the land area, and the frequency of occurrence of the deviation between the planned yield and the actual production under natural production conditions in the sub-region within the land area exceeding the set threshold.

5. The intelligent land occupation and compensation balance analysis system according to claim 4 is characterized in that: If the planned production data exceeds the maximum deviation threshold, or the actual production data exceeds the occurrence frequency threshold, the corresponding sub-area will be marked as a floating production area; if the planned production data does not exceed the maximum deviation threshold, and the actual production data does not exceed the occurrence frequency threshold, the corresponding sub-area will be marked as a stable production area.

6. The intelligent land occupation and compensation balance analysis system according to claim 1 is characterized in that: The planning information of occupation and compensation is the ratio of the increase span of regional utilization quantity of poor-quality areas and floating yield areas, and the increase span of regional utilization quantity of high-quality areas and stable yield areas; the information caused by occupation and compensation is the ratio of the number of floating yield areas for product planting when the product task output in the land area is not met to the corresponding number of stable yield areas occupied by the plan.

7. The intelligent land occupation and compensation balance analysis system according to claim 6 is characterized in that: If the occupation and compensation planning information exceeds the increase span ratio threshold, a regional re-planning signal is generated and sent to the server; if the occupation and compensation causes the information to exceed the quantity ratio threshold range, a regional planning occupation signal is generated and sent to the server; If the information caused by occupation and compensation does not exceed the quantity ratio threshold range, a regional planning withdrawal signal is generated and the regional planning withdrawal signal is sent to the server; if the occupation and compensation planning information does not exceed the increase span ratio threshold, and the occupation and compensation information is within the quantity ratio threshold range, a regional planning unchanged signal is generated and the regional planning unchanged signal is sent to the server.

8. The intelligent land occupation and compensation balance analysis system according to claim 1 is characterized in that: The occupation impact data and occupation efficiency data are respectively the increase span of the regional output-cost ratio after the number of floating yield areas in the land area with occupation and compensation balance is reduced, and the increase span of the land area's corresponding land occupation and compensation planning utilization rate after the number of stable yield areas in the land area with occupation and compensation balance is reduced.

9. The intelligent land occupation and compensation balance analysis system according to claim 8 is characterized in that: If the occupancy impact data exceeds the numerical increase span threshold and the occupancy efficiency data exceeds the rising span threshold, a low impact signal is generated and sent to the server; if the occupancy impact data does not exceed the numerical increase span threshold, or the occupancy efficiency data does not exceed the rising span threshold, a high impact signal is generated and sent to the server.

10. An intelligent land occupation and compensation balance analysis method, characterized in that: An intelligent land occupation and compensation balance analysis system as described in any one of claims 1 to 9 above is used.

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