Method and system for efficiently exerting regional resource condition advantages

By obtaining regional resource data sets, matching the needs of investors, implementing resource redistribution and dynamically adjusting the income allocation ratio, the information asymmetry between resource parties and investors is solved, resource utilization efficiency and project benefits are improved, and the sustainable development of the regional economy is promoted.

CN120297890APending Publication Date: 2025-07-11JIANGSU QINNA PROJECT MANAGEMENT CO LTD
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Patent Information

Application Number
CN202510355139.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-25
Publication Date
2025-07-11

AI Technical Summary

Technical Problem

During the project development process, there is information asymmetry between the resource party and the investor, resulting in inaccurate resource value assessment, increased investment decision-making risks, high project costs, extended development cycles, and lack of effective supervision and management, which affects project efficiency and sustainable development.

Method used

By obtaining regional resource data sets, matching development entities that meet the investor's income needs, implementing resource redistribution, and calculating the income allocation ratio through a dynamic adjustment mechanism, establishing resource evaluation modules and intelligent matching modules to achieve dynamic control of returns.

Benefits of technology

It has improved resource utilization efficiency, promoted mutual benefit and win-win between investors and resource parties, achieved maximization of project returns, supported the sustained growth of local finances, and optimized resource development processes and supervision and management.

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Abstract

The invention discloses a method and system for efficiently exerting regional resource condition advantages, and the method comprises the steps: obtaining a regional resource data set, third-party evaluation data of undeveloped resources and real-time operation data of a commissioned project, carrying out the matching of a development subject meeting the income demands of an investor based on the third-party evaluation data of the undeveloped resources, redistributing resources which are full or not full in the operation period on the basis of the real-time operation data of the commissioned project, calculating an income distribution proportion adjustment value through a dynamic adjustment mechanism according to a preset boundary condition, and completing income redistribution of an investor and a resource party; the system comprises a resource evaluation module, an intelligent matching module and a dynamic regulation and control module. Therefore, the method can be used for a resource party to screen enterprises with investment requirements, restrict and manage the invested enterprises, guarantee the lowest income of the enterprises, promote the enterprises to strive for higher income, promote the resource party to strengthen services, realize project income maximization, and distribute residual income according to the operation condition of an investor.
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Description

Technical Field

[0001] The present invention relates to the field of management engineering, and in particular, to a method and system for effectively leveraging the advantages of regional resource conditions. Background Art

[0002] With the rapid economic development, the development and utilization of regional resources have become a key factor in promoting local economic growth. However, in the current project development process, there is often a significant information asymmetry between resource providers and investors. Although resource providers have abundant resources, they lack a systematic, comprehensive, and in-depth understanding of the types, reserves, quality, and development potential of resources within their jurisdiction, making it impossible to accurately evaluate resource value and difficult to formulate scientific and reasonable development plans.

[0003] At the same time, for investment enterprises, due to the lack of accurate understanding of the resource situation of resource providers, it is often difficult to make optimal investment decisions, which may lead to an increase in investment risks and a decrease in investment returns. Moreover, in the process of project operation and management, the supervision and management of investment enterprises in aspects such as work safety, environmental protection, and resource utilization efficiency are insufficient, and there is a lack of effective restraint mechanisms, causing some enterprises to neglect long-term sustainable development in pursuit of short-term interests, resulting in problems such as potential safety hazards, environmental pollution, and resource waste.

[0004] In addition, the service awareness of resource providers also needs to be improved. During the project development process, resource providers fail to fully play their coordinating role and provide all-round and high-efficiency services to investors, resulting in slow project progress, extended development cycles, increased project costs, and affecting the overall project benefits. In order to achieve sustainable growth of local finances, reasonably collect funds to subsidize the development of emerging industries, and promote the efficient utilization of regional resources, there is an urgent need for an innovative method and system to solve the above problems, optimize the resource development process, strengthen supervision and management, enhance service awareness, achieve a win-win situation between resource providers and investors, and promote the sustainable development of the regional economy. Summary of the Invention

[0005] The present invention aims to solve at least to some extent the technical problems in the above technologies.

[0006] To this end, on the one hand, the present invention discloses a method for effectively leveraging the advantages of regional resource conditions, including the following steps:

[0007] S1. Obtain a regional resource dataset, including but not limited to: third-party assessment data of undeveloped resources and real-time operation data of operating projects.

[0008] S2. Match a development entity that meets the investment return requirements based on third-party evaluation data of undeveloped resources, and reallocate resources with expired or unexpired operation periods based on the real-time operation data of the already-operated projects;

[0009] S3. According to the preset boundary conditions, including but not limited to: investment scale boundary value, resource condition boundary value, and operation cost boundary value, calculate the adjustment value of the income distribution ratio through a dynamic adjustment mechanism to complete the income redistribution between the investor and the resource provider.

[0010] In addition, the method for efficiently leveraging the advantages of regional resource conditions disclosed in the present invention may also have the following additional technical features:

[0011] In an embodiment of the present invention, the step S1 includes the following steps:

[0012] S1.1. Obtain the basic parameters of the undeveloped resources, including but not limited to: unit capacity construction cost, resource endowment level, expected operation cost, and expected income value;

[0013] S1.2. Collect the time-series operation data of the already-operated projects, including but not limited to: resource consumption, production capacity output value, and financial statement data on a monthly / annual basis.

[0014] In an embodiment of the present invention, the step S2 includes the following steps:

[0015] S2.1. Build a development entity matching model, and the input variables of the model include but not limited to: development requirement parameters of the resource provider and the minimum return threshold of the investor;

[0016] S2.2. Establish a resource reallocation evaluation system, including but not limited to: quantitative evaluation modules for resource utilization rate indicators, work safety indicators, and compliance operation indicators.

[0017] In an embodiment of the present invention, the step S3 includes the following steps:

[0018] S3.1. Set dynamic adjustment parameters, including but not limited to: the floating range [T Y0 , T Y1 of the expected investment amount of the project, the floating range [C Y0 , C Y1 of the operation cost, and the expected resource condition range [Z Y0 , Z Y1 of the project;

[0019] S3.2. When it is monitored that the actual parameters exceed the corresponding fluctuation range, trigger the calculation of the adjustment of the income distribution ratio based on the preset dynamic formula.

[0020] In one embodiment of the present invention, the profit redistribution is specifically as follows:

[0021] When a positive adjustment value is calculated, the profit distribution ratio of the investor is adjusted positively according to the adjustment value;

[0022] When a negative adjustment value is calculated, the profit distribution ratio of the investor is adjusted negatively according to the adjustment value;

[0023] The initial distribution ratio is determined based on the project cooperation agreement.

[0024] On the other hand, the present invention discloses a system for efficiently leveraging the advantages of regional resource conditions, including:

[0025] A resource evaluation module configured to obtain third-party evaluation data of undeveloped resources and real-time operation data of operating projects;

[0026] An intelligent matching module configured to match development entities based on the profit requirements of investors and generate a resource redistribution plan according to the comparison results of historical operation efficiency;

[0027] A dynamic regulation module configured to calculate the adjustment value of the profit distribution ratio through a dynamic adjustment mechanism according to preset boundary conditions.

[0028] According to the method for efficiently leveraging the advantages of regional resource conditions disclosed by the present invention, the invention can be used for resource providers to screen enterprises with investment needs and can also be used for the constraint management of enterprises that have actually made investments; the invention helps to efficiently and reasonably utilize relevant resources and encourages investors to pay more attention to project operation; the invention not only meets the minimum profit red line of investors but also promotes them to strive for more beyond the minimum profit; the invention promotes resource providers to further strengthen their services to enterprises, ultimately achieving the maximization of project profits. At the same time, it also provides certain reference value for resource providers in terms of tax and profit distribution for project investors, and is also of great significance for the efficient development and utilization of project resources and the sustainable growth of local finances; the invention can be understood as, but not limited to, resource providers contributing resources and their own coordination capabilities to the project and distributing the remaining profit according to the operating conditions of investors while meeting their minimum profit, and the specific distribution form is determined by the resource provider.

[0029] The additional content and advantages of the present invention will be given in the following description or understood through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] The technical solutions and beneficial effects of the present invention will become obvious and easy to understand from the following content in conjunction with the drawings, where:

[0031] Figure 1Flowchart of the method for efficiently leveraging the advantages of regional resource conditions in the present invention;

[0032] Figure 2 Flowchart of step S1 of the method for efficiently leveraging the advantages of regional resource conditions in the present invention;

[0033] Figure 3 Flowchart of step S2 of the method for efficiently leveraging the advantages of regional resource conditions in the present invention;

[0034] Figure 4 Flowchart of step S3 of the method for efficiently leveraging the advantages of regional resource conditions in the present invention. Detailed implementation manners

[0035] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with 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 of the embodiments.

[0036] In the early stage of project development, the project investor can be selected through this system. Under other equal conditions, the level of the minimum return required will be used as the selection criterion. At the same time, based on the research and judgment of regional resources, key financial data such as project investment amount and return will be comprehensively estimated, relevant data intervals will be set, and the project investor will be agreed in advance through the relevant data intervals;

[0037] When the minimum return required by the investor is lower, it can be used as an additional point; or under the same conditions, when the minimum return required by the investor is lower, it can be used as the preferred selection object;

[0038] In addition, it should be noted that the method and system for efficiently leveraging the advantages of regional resource conditions disclosed in the present invention are only examples, which can be reasonably adjusted according to specific requirements, and relevant requirements can be increased or decreased to ensure meeting the relevant requirements of the resource party.

[0039] In addition, it should also be noted that the minimum return herein includes but is not limited to: quantifiable estimates / values such as minimum rate of return, minimum return amount, and minimum return value.

[0040] Next, the method and system for efficiently leveraging the advantages of regional resource conditions disclosed in the present invention will be described with reference to the accompanying drawings;

[0041] As Figure 1 shown, a method for efficiently leveraging the advantages of regional resource conditions includes the following steps:

[0042] S1. Obtain the regional resource dataset, including but not limited to: third-party evaluation data of undeveloped resources and real-time operation data of operating projects;

[0043] S2. Match a development entity that meets the investment return requirements of the investor based on the third-party evaluation data of undeveloped resources, and redistribute the resources with expired or unexpired operation periods based on the real-time operation data of the already-operated projects;

[0044] It should be noted that in this step, based on the third-party evaluation data of resources, the minimum investment return expectations that the investor needs to meet under the same circumstances, including but not limited to: its production capacity, rate of return, market share and other related positive returns, are used to match the investor. At the same time, it includes redistributing the resources with expired or unexpired operation periods based on the real-time operation data of the already-operated projects;

[0045] S3. According to the preset boundary conditions, including but not limited to: the boundary value of the investment scale, the boundary value of the resource conditions, and the boundary value of the operating cost, calculate the adjustment value of the income distribution ratio through a dynamic adjustment mechanism to complete the income redistribution between the investor and the resource provider.

[0046] As Figure 2 shown, step S1 includes the following steps:

[0047] S1.1. Obtain the basic parameters of the undeveloped resources, including but not limited to: the unit capacity cost, the resource endowment level, the expected operating cost, and the expected income value;

[0048] S1.2. Collect the time-series operation data of the already-operated projects, including but not limited to: the resource consumption, the production capacity output value, and the financial statement data on a monthly / annual basis.

[0049] As Figure 3 shown, step S2 includes the following steps:

[0050] S2.1. Build a development entity matching model, and the input variables of the model include but not limited to: the development requirement parameters of the resource provider and the minimum income threshold of the investor;

[0051] S2.2. Establish a resource redistribution evaluation system, including but not limited to: the quantitative evaluation modules of resource utilization indicators, safety production indicators, and compliance operation indicators.

[0052] As Figure 4 shown, step S3 includes the following steps:

[0053] S3.1. Set dynamic adjustment parameters, including but not limited to: the floating range [T Y0 , T Y1 of the expected investment amount of the project, the floating range [C Y0 , C Y1 of the operating cost, and the expected resource condition range [Z Y0 , Z Y1 of the project;

[0054] S3.2. When it is monitored that the actual parameter exceeds the corresponding fluctuation range, trigger the adjustment calculation of the income distribution ratio based on the preset dynamic formula.

[0055] In addition, for the income redistribution, specifically,

[0056] When a positive adjustment value is obtained through calculation, adjust the income distribution ratio of the investor positively according to the adjustment value;

[0057] When a negative adjustment value is obtained through calculation, adjust the income distribution ratio of the investor negatively according to the adjustment value;

[0058] The initial distribution ratio is determined based on the project cooperation agreement.

[0059] As a possibility, when T S < T Y0 , X1·100% = (T Y0 - T S ) / T Y0 ·α·100%; when T S > T Y1 , X1·100% = (T S - T Y1 ) / T Y1 ·α·100%; when C S < C Y0 , X2·100% = (C Y0 - C S ) / C Y0 ·β·100%; when C S > C Y1 , X2·100% = (C S - C Y1 ) / C Y1 ·β·100%; when Z S < Z Y0 , X3·100% = (Z Y0 - Z S ) / Z Y0 ·γ·100%; when Z S > Z Y1 , X3·100% = (Z S - Z Y1 ) / Z Y1 ·γ·100%;

[0060] X = (X1 ± X2 ± … ± X n )·100%, when X is a positive number, the initial agreement ratio between the investor and the resource provider is adjusted from X T : X Z to X T + X : X Z-X, when X is negative, the initial agreed ratio between the investor and the resource provider changes from X T :X Z to X T -X:X Z +X, where [Z Y0 ,Z Y1 is the interval of the expected resource conditions of the project, [T Y0 ,T Y1 is the floating interval of the expected investment amount of the project, and [C Y0 ,C Y1 is the floating interval of the operating cost;

[0061] A system for efficiently leveraging the advantages of regional resource conditions, comprising:

[0062] A resource evaluation module configured to obtain third-party evaluation data of undeveloped resources and real-time operation data of operating projects;

[0063] It should be noted that when obtaining third-party evaluation data of undeveloped resources and real-time operation data of operating projects, the third-party evaluation data can come from government public databases, certified industry platforms or other reliable information source channels;

[0064] An intelligent matching module configured to match development entities based on the income requirements of investors and generate a resource reallocation plan according to the comparison results of historical operation efficiency;

[0065] A dynamic regulation module configured to calculate the adjustment value of the income distribution ratio through a dynamic adjustment mechanism according to preset boundary conditions.

[0066] Specifically, in the early stage of project development, the project investor can be selected through this system. Under other equal conditions, the level of the minimum income to be satisfied will be used as the selection criterion. At the same time, based on the judgment of regional resources, key financial data such as project investment amount and income will be comprehensively estimated, relevant data intervals will be set, and the project investor will be agreed in advance through the relevant data intervals.

[0067] When the minimum income required by the investor is lower, it can be used as an additional point; or under the same conditions, when the minimum income required by the investor is lower, it can be used as a preferred selection object;

[0068] Furthermore, the present invention is also used for the management of existing (under construction) projects. By the investor entering information on project investment and operation-related data of the project into the platform system, resource condition intervals, operation cost intervals, etc. are set according to its resource endowment situation. Through the constraint of relevant interval values, the enterprise is controlled to ensure that, while meeting its minimum income, the part of the income other than the minimum income is distributed separately according to its operation situation;

[0069] Furthermore, this system is also used to allocate resources after the end of the project operation cycle. When the investor abandons (or loses due to poor operation) the subsequent development right of the resources at this location or intends to sell them during the operation process, some operation information of the resources at this location is provided for other investors to refer to. Other investors can master the project information based on the project operation and construction data of the previous investor, providing relevant data support for the next-step construction and operation of the project.

[0070] By taking the relevant resource conditions (including but not limited to natural resources, human resources, market environment, etc.) within the scope under the jurisdiction of the resource provider that are conducive to the project development as the conditions for secondary income distribution, and agreeing on the project income distribution model with the project investors according to the project situation.

[0071] After the end of the project operation period, the resources will be reallocated. At that time, according to the comprehensive operation situation of the project (evaluated comprehensively by combining factors such as resource conditions and operation benefits), the project resources will be allocated. The investors with good operation will obtain the subsequent right to use the resources; those with poor operation and low resource utilization rate will lose the subsequent development right of the resources.

[0072] To ensure the subsequent resource development right of the investors of the built project, the resources at this location can be fixed in advance. Or in the case where the investors of the resources at this location abandon the fixation, other investors can fix the resources at this location in advance and can acquire or lease the assets of the built investors with reference to the market price.

[0073] Through the sharing agreement, it aims to guide and encourage investment enterprises to strengthen investment management, reasonably control the project investment amount, operation cost, and unit product cost, and improve the output under the condition of limited resources. At the same time, it also encourages the resource providers to give full play to their subjective initiative and create better resource conditions for the investors.

[0074] It should be noted that this method and system aim to analyze the developed and undeveloped resource data by establishing a relevant resource database, set relevant boundary conditions, periodically detect the dynamic data of the investors, and distribute the income directly or distribute the income beyond the minimum income red line according to the established relevant rules formed by the resource provider (the relevant rules can be flexibly formulated according to the specific needs of the resource provider).

[0075] In summary, according to the method for efficiently leveraging the advantages of regional resource conditions disclosed in the present invention, the invention can be used by resource providers to screen enterprises with investment needs, and can also be used for the constraint management of enterprises that have actually received investment; the invention helps to efficiently and reasonably utilize relevant resources, prompting investors to strengthen their emphasis on project operations; the invention not only meets the minimum revenue red line of investors, but also encourages them to strive for more beyond the minimum revenue. The invention promotes resource providers to further strengthen their services to enterprises, ultimately maximizing the project's revenue. At the same time, it also provides certain reference value for resource providers in aspects such as taxation and profit distribution for project investors, and is also of great significance for the efficient development and utilization of project resources and the sustainable growth of local finance; the invention can be understood as, but not limited to, resource providers contributing resources and their own coordination capabilities to the project as shares, and distributing the remaining revenue based on the operating conditions of the investors while meeting their minimum revenue requirements. The specific distribution form is determined by the resource providers.

[0076] The embodiments described in this patent use application scenarios of different resource types (including but not limited to natural resources, human resources, economic resources, social resources, and technological resources) as examples. The parameter adjustment logic, rules, and formula derivation processes involved are all technically scalable and can be reasonably deformed and adaptively adjusted according to actual scenario requirements during specific implementation. It should be noted that this patent does not exhaustively define the collection, storage, algorithm implementation, and revenue calculation methods of relevant data. Any technical solutions derived from the core operation logic of this patent and supported by publicly available existing technologies are considered to fall within the equivalent protection scope of the patent claims.

[0077] Special statement: The formulas and distribution methods listed in the specification are only basic models for facilitating the understanding of technical principles. Their mathematical expression forms and resource distribution rules can be dynamically optimized according to specific application scenarios, but such optimization must not deviate from the essential technical features defined in the claims.

[0078] Although this specification describes the technical solutions in detail through exemplary embodiments, those skilled in the art should understand that, without departing from the protection scope, the equivalent replacement or partial improvement of technical features still belongs to the reasonable extension scope of this patent.

Claims

1. A method for efficiently leveraging the advantages of regional resource conditions, characterized in that, It includes the following steps: S1. Obtain the regional resource dataset, including but not limited to: third-party evaluation data of undeveloped resources and real-time operation data of commissioned projects; S2. Based on the third-party evaluation data of undeveloped resources, match the development entities that meet the income requirements of the investors, and reallocate the resources with expired or unexpired operation periods based on the real-time operation data of the commissioned projects; S3. According to the preset boundary conditions, including but not limited to: investment scale boundary value, resource condition boundary value, and operation cost boundary value, calculate the adjustment value of the income distribution ratio through a dynamic adjustment mechanism to complete the reallocation of income between the investors and the resource providers.

2. The method for efficiently leveraging the advantages of regional resource conditions according to claim 1, wherein The step S1 includes the following steps: S1.

1. Obtain the basic parameters of the undeveloped resources, including but not limited to: unit capacity cost, resource endowment level, estimated operation cost, and expected income value; S1.

2. Collect the time-series operation data of the commissioned projects, including but not limited to: resource consumption volume, production capacity output value, and financial statement data on a monthly / annual basis.

3. The method for efficiently leveraging the advantages of regional resource conditions as claimed in claim 1, characterized in that, The step S2 includes the following steps: S2.

1. Build a development entity matching model, and the input variables of the model include but not limited to: development requirement parameters of the resource providers and the minimum income threshold of the investors; S2.

2. Establish a resource reallocation evaluation system, including but not limited to: quantitative evaluation modules for resource utilization rate indicators, work safety indicators, and compliance operation indicators.

4. The method for effectively leveraging the advantages of regional resource conditions according to claim 1, characterized in that The step S3 includes the following steps: S3.

1. Set dynamic adjustment parameters, including but not limited to: the floating range of the expected project investment amount [T Y0 , T Y1 , the floating range of the operating cost [C Y0 , C Y1 , and the interval of the expected project resource conditions [Z Y0 , Z Y1 ; S3.

2. When it is monitored that the actual parameters exceed the corresponding fluctuation range, trigger the calculation of the adjustment of the income distribution ratio based on the preset dynamic formula.

5. The method for effectively leveraging the advantages of regional resource conditions as described in claim 1, characterized in that, The reallocation of income is specifically When a positive adjustment value is calculated, the income distribution ratio of the investors is adjusted positively according to the adjustment value; When a negative adjustment value is calculated, the income distribution ratio of the investors is adjusted negatively according to the adjustment value; The initial distribution ratio is determined based on the project cooperation agreement.

6. A system for efficiently leveraging the advantages of regional resource conditions, characterized in that, It includes: A resource evaluation module configured to obtain the third-party evaluation data of the undeveloped resources and the real-time operation data of the commissioned projects; An intelligent matching module configured to match the development entities based on the income requirements of the investors and generate a resource reallocation plan according to the comparison results of historical operation efficiency; A dynamic regulation module configured to calculate the adjustment value of the income distribution ratio through a dynamic adjustment mechanism according to the preset boundary conditions.