Scientific and technological innovation project progress cycle management method and system

By calculating data traceability and cycle benefit coefficients in scientific and technological innovation projects, building a competitive allocation domain and optimizing profit disturbance, the problem of resource scheduling conflicts is solved, and the credibility of resource allocation and overall resource utilization are improved.

CN119918897AActive Publication Date: 2025-05-02HUBEI FANGYUAN DONGLI ELECTRIC POWER SCI & RES LTD CO +2
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Patent Information

Application Number
CN202510404740.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2025-05-02
Estimated Expiration
2045-04-02

AI Technical Summary

Technical Problem

Scientific and technological innovation projects often face conflicts and imbalances in resource scheduling, resulting in priority conflicts in progress cycles, which in turn affects the credibility of resource allocation.

Method used

By obtaining shared resource scheduling information for scientific and technological innovation projects, extracting resource scheduling data for each progress cycle, calculating data traceability and cycle benefit coefficients, building a competitive allocation domain, and obtaining a disturbance allocation sequence through benefit disturbance optimization, and finally adjusting resource allocation.

Benefits of technology

It effectively resolves the problem of priority conflict in progress cycles, improves the credibility of resource allocation, and improves the overall resource utilization rate of scientific and technological innovation projects.

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Abstract

The invention provides a progress cycle management method and system for a scientific and technological innovation project, and relates to the technical field of project cycle management, and the method comprises the steps: obtaining shared resource scheduling information of the scientific and technological innovation project, and extracting resource scheduling data of each progress cycle from the shared resource scheduling information; determining the data traceability of each progress cycle through the corresponding resource scheduling data, and determining the cycle benefit coefficient of each progress cycle according to the corresponding data traceability and the project science and technology innovation information generated by the progress cycle; obtaining scheduling competition data, constructing a competition distribution domain of the shared resources by using the scheduling competition data, and performing benefit disturbance on the competition distribution domain according to the benefit coefficient of each period to obtain a disturbance distribution sequence; and adjusting the shared resource allocation of each progress period in the scientific and technological innovation project based on the disturbance allocation sequence, so that the problem of priority conflict of the progress periods can be solved, the shared resources are effectively allocated, and the resource allocation credibility in the scientific and technological innovation project is improved.
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Description

Technical Field

[0001] The present application relates to the technical field of project cycle management, and more specifically, to a method and system for managing the progress cycle of scientific and technological innovation projects. Background Art

[0002] Managing the project lifecycle for technological innovation is a complex, systematic process, encompassing everything from requirements analysis to technology development, product validation, and implementation. Its core goal is to ensure efficient project completion within the established timeframe through scientific planning, resource scheduling, and real-time monitoring. The project lifecycle is typically divided into multiple phases, such as project initiation, R&D, testing, production, and implementation, each of which includes specific tasks and milestones.

[0003] However, the management of scientific and technological innovation project schedules often faces conflicts and imbalances in resource scheduling. Multiple schedules often share key resources (such as equipment, laboratories, and specialized technical personnel). Irrational resource scheduling can lead to delays in bottleneck links, while resource shortages or redundancies can increase management difficulty and cost burdens. Therefore, accurate grasp and reasonable arrangement of resource allocation are crucial in scientific and technological innovation projects. Resolving schedule priority conflicts to effectively allocate shared resources and improve the credibility of resource allocation in scientific and technological innovation projects is a challenge facing the industry. Summary of the Invention

[0004] The present application provides a schedule cycle management method and system for scientific and technological innovation projects, which can solve the problem of schedule cycle priority conflicts, thereby effectively allocating shared resources to improve the credibility of resource allocation in scientific and technological innovation projects.

[0005] In a first aspect, the present application provides a progress cycle management method for a scientific and technological innovation project, the management method comprising the following steps:

[0006] Obtaining shared resource scheduling information of the scientific and technological innovation project, and extracting resource scheduling data of each progress period from the shared resource scheduling information;

[0007] Determine the data traceability of each progress period using the corresponding resource scheduling data, and determine the cycle benefit coefficient of each progress period in the scientific and technological innovation project based on the corresponding data traceability and the project scientific and technological innovation information generated during the progress period;

[0008] Obtaining scheduling competition data for the scientific and technological innovation project, constructing a competition allocation domain for shared resources using the scheduling competition data, performing benefit perturbations on the competition allocation domain based on the periodic benefit coefficients of each progress period, and thereby obtaining a perturbation allocation sequence for the scientific and technological innovation project in allocating shared resources;

[0009] The shared resource allocation of each progress period in the scientific and technological innovation project is adjusted based on the disturbance allocation sequence.

[0010] In this embodiment, the shared resource scheduling information of the scientific and technological innovation project is obtained from the resource database of the scientific and technological innovation project.

[0011] In this embodiment, determining the data traceability of each progress period using the corresponding resource scheduling data specifically includes:

[0012] For each progress period, determining the scheduling correlation between the progress period and the previous progress period through the resource scheduling data of the progress period;

[0013] extracting the data processing amount of the progress period from the resource scheduling data;

[0014] The data traceability of the progress cycle is determined according to the scheduling correlation and the data processing volume, and then the data traceability of each progress cycle is obtained.

[0015] In this embodiment, determining the cycle benefit coefficient of each progress period of the scientific and technological innovation project based on the corresponding data traceability and project scientific and technological innovation information generated by the progress period specifically includes:

[0016] For each progress period in the scientific and technological innovation project, determine the quality score of the progress period based on the project scientific and technological innovation information generated during the progress period;

[0017] The cycle benefit coefficient of the progress cycle is determined based on the quality score and data traceability of the progress cycle, and then the cycle benefit coefficient of each progress cycle in the scientific and technological innovation project is obtained.

[0018] In this embodiment, obtaining the scheduling competition data of the scientific and technological innovation project specifically includes:

[0019] Obtain resource scheduling data for each progress cycle;

[0020] Perform competitive screening on the scheduling records in each resource scheduling data, thereby obtaining multiple competitive scheduling records;

[0021] The scheduling competition data of the scientific and technological innovation project is constructed through all competition scheduling records.

[0022] In this embodiment, using the scheduling contention data to construct a contention allocation domain for shared resources specifically includes:

[0023] Obtaining the project process relationship between each progress period involved in the scheduling competition data;

[0024] Prioritize each progress cycle according to the project process relationship, and then obtain the priority of each progress cycle;

[0025] Resources are allocated based on the priorities of the various progress cycles and the scheduling contention data to obtain a contention allocation domain for shared resources.

[0026] In this embodiment, the efficiency perturbation of the competition allocation domain is performed according to the cycle efficiency coefficient of each progress cycle, thereby obtaining the perturbation allocation sequence when allocating shared resources for the scientific and technological innovation project. Specifically, the perturbation allocation sequence includes:

[0027] The period benefit coefficient of each progress period is used as the disturbance factor in the disturbance strategy, and then the disturbance strategy is used to perform benefit disturbance on the competition allocation domain to obtain the disturbance allocation sequence of the scientific and technological innovation project when allocating shared resources.

[0028] In this embodiment, the disturbance allocation sequence is a shared resource allocation sequence that has undergone disturbance optimization.

[0029] In this embodiment, the shared resource allocation of each progress period of the scientific and technological innovation project is adjusted based on the disturbance allocation sequence. When different progress periods in the scientific and technological innovation project compete for the same shared resource, the shared resource is allocated according to the disturbance allocation sequence.

[0030] In a second aspect, the present application provides a progress cycle management system for scientific and technological innovation projects, which is used to implement a progress cycle management method for scientific and technological innovation projects. The management system includes:

[0031] An information acquisition module is used to obtain shared resource scheduling information of scientific and technological innovation projects, and extract resource scheduling data of each progress period from the shared resource scheduling information;

[0032] The benefit determination module is used to determine the data traceability of each progress period respectively through the corresponding resource scheduling data, and determine the cycle benefit coefficient of each progress period in the scientific and technological innovation project according to the corresponding data traceability and the project scientific and technological innovation information generated during the progress period;

[0033] a disturbance allocation module, configured to obtain scheduling competition data for the scientific and technological innovation project, construct a competition allocation domain for shared resources using the scheduling competition data, perform benefit perturbations on the competition allocation domain based on the periodic benefit coefficients of each progress period, and thereby obtain a disturbance allocation sequence for the scientific and technological innovation project when allocating shared resources;

[0034] The resource adjustment module is used to adjust the shared resource allocation of each progress period of the scientific and technological innovation project based on the disturbance allocation sequence.

[0035] The technical solutions provided by the embodiments disclosed in this application have the following beneficial effects:

[0036] By obtaining the shared resource scheduling information of the scientific and technological innovation project, the resource scheduling data of each progress period is extracted from the shared resource scheduling information; the data traceability of each progress period is determined respectively through the corresponding resource scheduling data, and the cycle benefit coefficient of each progress period in the scientific and technological innovation project is determined according to the corresponding data traceability and the project scientific and technological innovation information generated by the progress period; the scheduling competition data of the scientific and technological innovation project is obtained, and the competition allocation domain of shared resources is constructed using the scheduling competition data. The competition allocation domain is subjected to benefit perturbation according to the cycle benefit coefficient of each progress period, thereby obtaining a perturbation allocation sequence of the scientific and technological innovation project when allocating shared resources; and the shared resource allocation of each progress period in the scientific and technological innovation project is adjusted based on the perturbation allocation sequence.

[0037] It can be seen that in this application, first, the transparency and traceability of resource scheduling are improved through data traceability to ensure that the use of resources is reasonable and efficient, and the cycle benefit coefficient combines the quality score and data traceability, which can comprehensively measure the benefits of each progress cycle, and facilitate the priority sorting of different cycles according to the cycle benefit coefficient; then, by constructing a competitive allocation domain, the resource competition relationship between different progress cycles can be identified and analyzed, and the benefit disturbance optimization is performed in combination with the cycle benefit coefficient, which can ensure that high-priority progress cycles get resources first and avoid low-efficiency progress cycles occupying too many resources; finally, when different progress cycles compete for the same shared resources, the system will dynamically adjust the resources according to the disturbance allocation sequence, ultimately improving the overall resource utilization of scientific and technological innovation projects and improving the credibility of resource allocation.

[0038] In summary, the technical solution adopted in this application can solve the problem of priority conflicts in the progress cycle, thereby effectively allocating shared resources to improve the credibility of resource allocation in scientific and technological innovation projects. BRIEF DESCRIPTION OF THE DRAWINGS

[0039] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following is a brief introduction to the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only the embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.

[0040] Figure 1 It is a flow chart of the progress cycle management method of the scientific and technological innovation project provided in this application;

[0041] Figure 2is an exemplary flow chart for determining data traceability for each progress cycle provided in this application;

[0042] Figure 3 is an exemplary flow chart of constructing a contention allocation domain for shared resources provided by the present application;

[0043] Figure 4 This is a module structure diagram of the progress cycle management system of the scientific and technological innovation project provided in this application. DETAILED DESCRIPTION

[0044] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0045] The embodiment of the present application provides a schedule cycle management method and system for a scientific and technological innovation project, the core of which is to obtain shared resource scheduling information of the scientific and technological innovation project, extract resource scheduling data for each schedule cycle from the shared resource scheduling information; determine the data traceability of each schedule cycle respectively through the corresponding resource scheduling data, and determine the cycle efficiency coefficient of each schedule cycle in the scientific and technological innovation project based on the corresponding data traceability and the project scientific and technological innovation information generated by the schedule cycle; obtain the scheduling competition data of the scientific and technological innovation project, use the scheduling competition data to construct a competition allocation domain for shared resources, perform efficiency perturbation on the competition allocation domain according to the cycle efficiency coefficient of each schedule cycle, and then obtain a perturbation allocation sequence for the scientific and technological innovation project when allocating shared resources; adjust the shared resource allocation for each schedule cycle in the scientific and technological innovation project based on the perturbation allocation sequence. The above scheme can solve the problem of schedule cycle priority conflict, thereby effectively allocating shared resources to improve the credibility of resource allocation in scientific and technological innovation projects.

[0046] Example 1

[0047] In order to better understand the above technical solution, the following will be described in detail with reference to the accompanying drawings and specific implementation methods. Figure 1 As shown in the figure, this figure is an exemplary flow chart of a progress cycle management method for a scientific and technological innovation project according to this embodiment of the present application, and the management method includes the following steps:

[0048] In step S1, shared resource scheduling information of a scientific and technological innovation project is obtained, and resource scheduling data of each progress period is extracted from the shared resource scheduling information.

[0049] In specific implementation, the shared resource scheduling information of the scientific and technological innovation project can be obtained from the resource database of the scientific and technological innovation project; the shared resource scheduling information includes the resource scheduling data of each progress period in the scientific and technological innovation project, wherein the resource scheduling data includes the scheduling record of the shared resources in the progress period, that is, the scheduling time range, resource scheduling list and project number of the shared resources. The shared resource scheduling information of the scientific and technological innovation project can be obtained by querying the resource database of the scientific and technological innovation project.

[0050] In step S2, the data traceability of each progress period is determined respectively through the corresponding resource scheduling data, and the cycle benefit coefficient of each progress period of the scientific and technological innovation project is determined according to the corresponding data traceability and the project scientific and technological innovation information generated by the progress period.

[0051] Preferably, in this embodiment, reference Figure 2 As shown in FIG. 1 , this figure is an exemplary flow chart for determining the data traceability of each progress period in an embodiment of the present application. In this embodiment, the data traceability of each progress period is determined by corresponding resource scheduling data, which can be specifically implemented by the following steps:

[0052] First, in step S21, for each progress period, the scheduling correlation between the progress period and the previous progress period is determined through the resource scheduling data of the progress period;

[0053] Then, in step S22, the data processing amount of the progress period is extracted from the resource scheduling data;

[0054] Finally, in step S23, the data traceability of the progress period is determined according to the scheduling correlation and the data processing volume, thereby obtaining the data traceability of each progress period.

[0055] In specific implementation, first, for each progress cycle, the scheduling correlation between the progress cycle and the previous progress cycle is determined through the resource scheduling data of the progress cycle, the amount of data flowing from the previous progress cycle to the progress cycle can be extracted from the scheduling data of the progress cycle, and the transmission frequency between the progress cycle and the previous progress cycle can be obtained, so that the data amount and the transmission frequency can be used as the scheduling correlation between the progress cycle and the previous progress cycle, and the scheduling correlation represents the degree of correlation between the data transmission progress cycles; then, the data processing volume of the progress cycle is extracted from the resource scheduling data, and the data volume of the resource scheduling data can be used as the data processing volume of the progress cycle; finally, the data traceability of the progress cycle is determined based on the scheduling correlation and the data processing volume, and the ratio of the scheduling correlation to the data processing volume can be used as the data traceability of the progress cycle. The data traceability represents the traceability of the data in the progress cycle. In the above manner, the data traceability of each progress cycle can be obtained.

[0056] In this embodiment, the following method can be used to determine the cycle benefit coefficient of each progress period of the scientific and technological innovation project based on the corresponding data traceability and project scientific and technological innovation information generated during the progress period, namely:

[0057] For each progress period in the scientific and technological innovation project, determine the quality score of the progress period based on the project scientific and technological innovation information generated during the progress period;

[0058] The cycle benefit coefficient of the progress cycle is determined based on the quality score and data traceability of the progress cycle, and then the cycle benefit coefficient of each progress cycle in the scientific and technological innovation project is obtained.

[0059] In specific implementation, first, for each progress cycle in a scientific and technological innovation project, the quality score of the progress cycle can be determined through the project scientific and technological innovation information generated by the progress cycle, wherein the project scientific and technological innovation information is the project-related data generated after the scientific and technological innovation project goes through the corresponding progress cycle, and the quality score represents the quality score of the project scientific and technological innovation information generated by the progress cycle. The similarity between the set demand data and the project scientific and technological innovation information can be calculated, and the result can be used as the quality score of the progress cycle; then, the cycle benefit coefficient of the progress cycle can be determined based on the quality score of the progress cycle and the data traceability, wherein the cycle benefit coefficient represents the degree of data benefit brought by the progress cycle to the entire scientific and technological innovation project, and the product of the quality score of the progress cycle and the data traceability of the progress cycle can be used as the cycle benefit coefficient of the progress cycle. The cycle benefit coefficient of each progress cycle in the scientific and technological innovation project can be obtained in the above manner.

[0060] It should be noted that data traceability can be used to improve the transparency and traceability of resource scheduling, ensuring that resources are used reasonably and efficiently. The cycle benefit coefficient combines quality scoring and data traceability to comprehensively measure the benefits of each progress cycle. It can give each progress cycle an objective benefit evaluation, which makes it easier for project managers to prioritize different cycles according to the cycle benefit coefficient and ensure that resources are allocated first to progress cycles with higher benefits and greater contributions to project goals.

[0061] In step S3, the scheduling competition data of the scientific and technological innovation project is obtained, and the competition allocation domain of shared resources is constructed using the scheduling competition data. The competition allocation domain is subjected to benefit disturbance according to the periodic benefit coefficient of each progress cycle, thereby obtaining the disturbance allocation sequence of the scientific and technological innovation project when allocating shared resources.

[0062] In this embodiment, the scheduling competition data of the scientific and technological innovation project may be obtained in the following manner:

[0063] Obtain resource scheduling data for each progress cycle;

[0064] Perform competitive screening on the scheduling records in each resource scheduling data, thereby obtaining multiple competitive scheduling records;

[0065] The scheduling competition data of the scientific and technological innovation project is constructed through all competition scheduling records.

[0066] In specific implementation, first, the resource scheduling data of each progress period obtained in step S1 can be traversed and obtained; then, the scheduling records in each resource scheduling data can be competitively screened to obtain multiple competitive scheduling records, wherein the competitive scheduling record is a scheduling record with resource conflicts. One scheduling record can be selected, and all scheduling records with overlapping scheduling areas (i.e., the overlapping part from the scheduling time to the scheduling end time of the same shared resource in different progress periods) with the scheduling record can be screened out from all resource scheduling data. The scheduling record and all the screened scheduling records are used as competitive scheduling records, and the above steps are repeated to obtain multiple competitive scheduling records; finally, the scheduling competition data of the scientific and technological innovation project is constructed through all the competitive scheduling records, that is, the data cluster composed of all the competitive scheduling records is used as the scheduling competition data of the scientific and technological innovation project.

[0067] Preferably, in this embodiment, reference Figure 3 As shown in FIG. 1 , this figure is an exemplary flow chart of constructing a contention allocation domain for a shared resource in an embodiment of the present application. In this embodiment, constructing a contention allocation domain for a shared resource using the scheduling contention data can be specifically implemented by the following steps:

[0068] First, in step S31, the project process relationship between each progress period involved in the scheduling competition data is obtained;

[0069] Then, in step S32, priority is divided for each progress period according to the project process relationship, thereby obtaining the priority of each progress period;

[0070] Finally, in step S33, resource allocation is performed based on the priority of each progress cycle and the scheduling contention data to obtain a contention allocation domain for shared resources.

[0071] In the specific implementation, first, the project process relationship between each progress cycle involved in the scheduling competition data is obtained, wherein the project process relationship refers to the dependency relationship between different progress cycles in the scientific and technological innovation project. For each progress cycle involved in the scheduling competition data, the relationship between each progress cycle can be abstracted. For example, the tasks of some progress cycles may need to be started after the tasks of the previous progress cycle are completed, or some tasks can be executed in parallel without affecting each other; then, the priority of each progress cycle is divided according to the project process relationship, so as to obtain the priority of each progress cycle, wherein the priority represents the priority of each progress cycle in the overall scientific and technological innovation project. The critical path algorithm can be used to identify the most critical task path in the project process relationship. Schedule cycles on the critical path usually have higher priorities because they directly affect the overall progress of the project. The priority of each schedule cycle can be obtained through the above method; finally, resources can be allocated based on the priority of each schedule cycle and the scheduling competition data to obtain the competition allocation domain of shared resources, where the competition allocation domain is the preliminary division order of shared resources between each schedule cycle. Once the priority of each schedule cycle is clear, resources can be allocated based on the priority and scheduling competition data. Schedule cycles with higher priorities should be given priority to allocate shared resources in the scheduling competition data to ensure that key tasks are completed on time. After the scheduling competition data is divided for each schedule cycle, a scheduling order for shared resources can be obtained, that is, the competition allocation domain of shared resources.

[0072] It should be noted that by constructing a competitive allocation domain, it is possible to identify resource conflicts and bottlenecks between various progress cycles in the project, so that effective measures can be taken to make adjustments, which can allocate resources more reasonably, avoid unnecessary resource waste, and improve resource utilization efficiency.

[0073] In this embodiment, the benefits of the competition allocation domain are perturbed according to the period benefit coefficient of each progress period, and the perturbation allocation sequence for the scientific and technological innovation project when allocating shared resources can be obtained in the following manner, namely:

[0074] The period benefit coefficient of each progress period is used as the disturbance factor in the disturbance strategy, and then the disturbance strategy is used to perform benefit disturbance on the competition allocation domain to obtain the disturbance allocation sequence of the scientific and technological innovation project when allocating shared resources.

[0075] In specific implementation, first, the cycle benefit coefficient of each schedule cycle can be used as a perturbation factor in the perturbation strategy. The perturbation factor is a random factor added to the perturbation strategy. The cycle benefit coefficient acts as a perturbation factor in the benefit perturbation process, affecting the order and method of resource allocation. Then, the perturbation strategy can be used to perturb the benefits of the competitive allocation domain. The perturbation strategy is a mechanism for optimizing and adjusting the competitive allocation domain. By adjusting the allocation order, allocation ratio, or resource usage time of resources, it ensures that when resources are limited, schedule cycles with higher benefits are given priority. The perturbation strategy can adjust the resource load according to the perturbation factor. For schedule cycles with high perturbation factors, priority adjustments are made in resource scheduling to increase their resource allocation share or adjust their usage time to maximize the benefits of the schedule cycle. This results in a perturbation allocation sequence for scientific and technological innovation projects when allocating shared resources. The perturbation allocation sequence is the shared resource allocation sequence after perturbation optimization. The perturbation allocation sequence can reflect the allocation order, resource allocation share, and resource usage period of each schedule cycle in the shared resources.

[0076] It should be noted that by constructing a competitive allocation domain, we can identify and analyze the resource competition relationship between different progress cycles, and combine the cycle benefit coefficient to optimize the benefit disturbance, which can ensure that high-priority progress cycles get resources first and avoid low-efficiency progress cycles occupying too many resources, ultimately improving the overall resource utilization of scientific and technological innovation projects and improving the credibility of resource allocation.

[0077] In step S4, the allocation of shared resources in each progress period of the scientific and technological innovation project is adjusted based on the disturbance allocation sequence.

[0078] In this embodiment, the shared resource allocation of each progress period of the scientific and technological innovation project is adjusted based on the disturbance allocation sequence. When different progress periods in the scientific and technological innovation project compete for the same shared resource, the shared resource is allocated according to the disturbance allocation sequence.

[0079] It should be noted that when different schedule cycles compete for the same shared resources, the system will dynamically adjust the resources based on the disturbance allocation sequence. By using the disturbance allocation sequence, the project can prioritize the high-efficiency and high-priority cycles to obtain the required resources based on the benefits, priorities and resource requirements of the schedule cycles when resources are tight.

[0080] It can be seen that in this application, first, the transparency and traceability of resource scheduling are improved through data traceability to ensure that the use of resources is reasonable and efficient, and the cycle benefit coefficient combines the quality score and data traceability, which can comprehensively measure the benefits of each progress cycle, and facilitate the priority sorting of different cycles according to the cycle benefit coefficient; then, by constructing a competitive allocation domain, the resource competition relationship between different progress cycles can be identified and analyzed, and the benefit disturbance optimization is performed in combination with the cycle benefit coefficient, which can ensure that high-priority progress cycles get resources first and avoid low-efficiency progress cycles occupying too many resources; finally, when different progress cycles compete for the same shared resources, the system will dynamically adjust the resources according to the disturbance allocation sequence, ultimately improving the overall resource utilization of scientific and technological innovation projects and improving the credibility of resource allocation.

[0081] In summary, the technical solution adopted in this application can solve the problem of priority conflicts in the progress cycle, thereby effectively allocating shared resources to improve the credibility of resource allocation in scientific and technological innovation projects.

[0082] Example 2

[0083] This application provides a progress cycle management system for scientific and technological innovation projects. Figure 4 As shown, this figure is a schematic diagram of the management system shown in this embodiment of the present application, and the management system includes:

[0084] The information acquisition module 100 is used to obtain shared resource scheduling information of scientific and technological innovation projects, and extract resource scheduling data of each progress period from the shared resource scheduling information;

[0085] The benefit determination module 200 is configured to determine the data traceability of each progress period using the corresponding resource scheduling data, and determine the cycle benefit coefficient of each progress period of the scientific and technological innovation project based on the corresponding data traceability and the project scientific and technological innovation information generated during the progress period;

[0086] The perturbation allocation module 300 is configured to obtain scheduling competition data for the scientific and technological innovation project, construct a competition allocation domain for shared resources using the scheduling competition data, and perform benefit perturbations on the competition allocation domain based on the periodic benefit coefficients of each progress period, thereby obtaining a perturbation allocation sequence for the scientific and technological innovation project when allocating shared resources.

[0087] The resource adjustment module 400 is configured to adjust the allocation of shared resources in each progress period of the scientific and technological innovation project based on the disturbance allocation sequence.

[0088] The present application is described with reference to the flowcharts and / or block diagrams of the methods, devices (systems) and computer program products according to the embodiments of the present application. It should be understood that each process and / or box in the flowchart and / or block diagram, as well as the combination of processes and / or boxes in the flowchart and / or block diagram, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor or other programmable data processing device to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing device generate instructions for implementing the processes in the flowchart and / or block diagram. Figure 1 a process or multiple processes and / or boxes Figure 1 A device that provides the functions specified in a block or multiple blocks.

[0089] Those skilled in the art will appreciate that all or part of the steps in the various methods of the above embodiments can be completed by instructing related hardware through a program. The program can be stored in a computer-readable storage medium, including a read-only memory (ROM), a random access memory (RAM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), a one-time programmable read-only memory (OTPROM), an electronically erasable programmable read-only memory (EEPROM), a compact disc read-only memory (CD-ROM), or other optical disc storage, magnetic disk storage, or magnetic tape storage, or any other computer-readable medium capable of carrying or storing data.

[0090] It should also be noted that the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, commodity, or apparatus that includes a series of elements includes not only those elements but also other elements not explicitly listed, or includes elements inherent to such process, method, commodity, or apparatus. In the absence of further limitations, an element defined by the phrase "comprises a..." does not exclude the presence of other identical elements in the process, method, commodity, or apparatus that includes the element.

Claims

1. A progress cycle management method for scientific and technological innovation projects, characterized in that: The management method comprises the following steps: Acquire shared resource scheduling information of scientific and technological innovation projects, and extract resource scheduling data of each progress period from the shared resource scheduling information; Determine the data traceability of each progress period through the corresponding resource scheduling data, and determine the cycle benefit coefficient of each progress period of the scientific and technological innovation project according to the corresponding data traceability and the project scientific and technological innovation information generated by the progress period; Obtaining the scheduling competition data of the scientific and technological innovation project, using the scheduling competition data to construct a competition allocation domain for shared resources, performing benefit perturbations on the competition allocation domain according to the cycle benefit coefficients of each progress cycle, and thereby obtaining a perturbation allocation sequence for the scientific and technological innovation project when allocating shared resources; The shared resource allocation of each progress period in the scientific and technological innovation project is adjusted based on the disturbance allocation sequence.

2. A progress cycle management method for a scientific and technological innovation project as claimed in claim 1, characterized in that: The shared resource scheduling information of the scientific and technological innovation project is obtained from the resource database of the scientific and technological innovation project.

3. A progress cycle management method for a scientific and technological innovation project according to claim 1, characterized in that: The data traceability of each progress cycle is determined by the corresponding resource scheduling data, including: For each progress cycle, determining the scheduling correlation between the progress cycle and the previous progress cycle through the resource scheduling data of the progress cycle; Extracting the data processing volume of the progress period from the resource scheduling data; The data traceability of the progress cycle is determined according to the scheduling correlation and the data processing volume, and then the data traceability of each progress cycle is obtained.

4. The progress cycle management method of a scientific and technological innovation project according to claim 1, characterized in that: Determining the cycle benefit coefficient of each progress cycle in the technological innovation project based on the corresponding data traceability and project technological innovation information generated by the progress cycle specifically includes: For each progress period in the technological innovation project, determine the quality score of the progress period based on the project technological innovation information generated during the progress period; The cycle benefit coefficient of the progress cycle is determined based on the quality score and data traceability of the progress cycle, and then the cycle benefit coefficient of each progress cycle in the scientific and technological innovation project is obtained.

5. The progress cycle management method of a scientific and technological innovation project according to claim 1, characterized in that: Acquiring the scheduling competition data of the scientific and technological innovation project specifically includes: Obtain resource scheduling data for each progress cycle; Perform competitive screening on the scheduling records in each resource scheduling data, thereby obtaining multiple competitive scheduling records; The scheduling competition data of the scientific and technological innovation project is constructed through all competition scheduling records.

6. A progress cycle management method for a scientific and technological innovation project according to claim 1, characterized in that: Using the scheduling contention data to construct a contention allocation domain for shared resources specifically includes: Obtaining the project process relationship between various progress cycles involved in the scheduling competition data; Prioritize each progress cycle according to the project process relationship, and then obtain the priority of each progress cycle; Resource allocation is performed based on the priority of each progress cycle and the scheduling competition data to obtain a competition allocation domain of shared resources.

7. The progress cycle management method of a scientific and technological innovation project according to claim 1, characterized in that: The competitive allocation domain is subjected to benefit perturbation according to the period benefit coefficient of each progress period, and then the perturbation allocation sequence of the scientific and technological innovation project when allocating shared resources is obtained, which specifically includes: The period benefit coefficient of each progress period is used as the disturbance factor in the disturbance strategy, and then the disturbance strategy is used to perform benefit disturbance on the competition allocation domain to obtain the disturbance allocation sequence of the scientific and technological innovation project when allocating shared resources.

8. The progress cycle management method of a scientific and technological innovation project according to claim 1, characterized in that: The disturbance allocation sequence is a shared resource allocation sequence after disturbance optimization.

9. The progress cycle management method of a scientific and technological innovation project according to claim 1, characterized in that: Adjusting the allocation of shared resources in each progress period in the scientific and technological innovation project based on the disturbance allocation sequence means allocating shared resources according to the disturbance allocation sequence when different progress periods in the scientific and technological innovation project compete for the same shared resource.

10. A progress cycle management system for scientific and technological innovation projects, used to implement a progress cycle management method for scientific and technological innovation projects as claimed in any one of claims 1 to 9, characterized in that: The management system comprises: An information acquisition module is used to acquire shared resource scheduling information of scientific and technological innovation projects, and extract resource scheduling data of each progress period from the shared resource scheduling information; The benefit determination module is used to determine the data traceability of each progress period through the corresponding resource scheduling data, and determine the cycle benefit coefficient of each progress period in the technological innovation project according to the corresponding data traceability and the project technological innovation information generated in the progress period; A disturbance allocation module is used to obtain the scheduling competition data of the scientific and technological innovation project, use the scheduling competition data to construct a competition allocation domain for shared resources, perform benefit disturbance on the competition allocation domain according to the cycle benefit coefficient of each progress cycle, and then obtain a disturbance allocation sequence for the scientific and technological innovation project when allocating shared resources; The resource adjustment module is used to adjust the shared resource allocation of each progress period of the scientific and technological innovation project based on the disturbance allocation sequence.

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