A Feasibility Evaluation Method and Evaluation System for the Transfer and Transformation of Environmental Science and Technology Achievements
Through the feasibility assessment methods and systems for transfer and transformation of environmental scientific and technological achievements, the problem of insufficient assessment methods in the transformation of environmental scientific and technological achievements has been solved, efficient transformation efficiency and accuracy have been achieved, and the transformation of environmental scientific and technological achievements and the development of my country's environmental undertakings have been promoted.
Patent Information
- Application Number
- CN202110054507.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-01-15
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2041-01-15
AI Technical Summary
In the prior art, there is a lack of scientific and efficient evaluation methods and systems in the process of transformation of environmental scientific and technological achievements, which leads to low conversion efficiency, affects the market's attitude towards intermediaries and hinders the development of environmental undertakings.
Provide a feasibility assessment method and evaluation system for the transfer and transformation of environmental scientific and technological achievements. Through data sample entry, processing, feasibility assessment and result feedback, combined with Internet big data and innovation analysis, a scientific evaluation model is established to improve the accuracy and feasibility of evaluation.
It has improved the efficiency and effectiveness of transfer and transformation of environmental scientific and technological achievements, provided scientific researchers with a basis for decision-making, and promoted the conversion rate of environmental scientific and technological achievements and the development of my country's environmental undertakings.
Smart Images

Figure CN112785136B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical fields of science and technology management and information technology, and particularly relates to a method and a system for evaluating the feasibility of transfer and transformation of environmental science and technology achievements. Background Art
[0002] Most of the existing domestic private science and technology achievement transformation service enterprises promote through cooperation to enhance the enterprise's popularity, so that customers with needs can actively contact the enterprise to collect relevant needs; however, the needs collected often cannot obtain scientific and technological achievements that can effectively solve practical problems for a long time, which further deteriorates the market's attitude towards intermediaries. Therefore, this method contributes very little to improving the efficiency of science and technology achievement transformation, and even has a negative impact on the entire science and technology achievement transformation work. The fundamental reason for the above results is that the science and technology achievement transformation service enterprises themselves cannot well identify scientific and technological achievements, making it impossible for enterprises to effectively promote science and technology to relevant enterprises in a targeted manner. Although starting from market demand is correct, when the generated demand cannot be met through the market, such demand will also disappear. At the same time, in the face of the large number of existing technological achievements in our country, starting from market demand cannot effectively solve the problem of low efficiency of transfer / transformation of science and technology achievements.
[0003] In the prior art, with the enhancement of people's environmental protection awareness, along with the continuous update of environmental science and technology achievements, there are many difficulties in the process of transfer and transformation of environmental science and technology achievements, and there is a lack of a scientific and efficient evaluation method and system, which will hinder the development of the environmental cause. Summary of the Invention
[0004] In view of the above existing technical problems, the present invention provides a method and a system for evaluating the feasibility of transfer and transformation of environmental science and technology achievements, which can improve resource utilization rate and provide a decision-making basis for R & D work.
[0005] The technical solution of the present invention is as follows: A method for evaluating the feasibility of transfer and transformation of environmental science and technology achievements includes the following steps:
[0006] S1. Input of data samples;
[0007] Input the environmental science and technology achievement data samples into the sample database, and summarize and organize the key technical points in the environmental science and technology achievement data samples.
[0008] S2. Processing of data samples;
[0009] Import the key technical points of step S1 into the cloud database, compare them with the domestic and foreign environmental science and technology literature or periodicals publicly available in the Internet big data and the scientific and technological achievements information of related products, calculate the similarity between the target environmental science and technology achievement data samples and the source data samples, eliminate the target environmental science and technology achievement data samples that exceed the preset similarity threshold, and calculate the weights of the target environmental science and technology achievement data samples that exceed the preset similarity threshold; then classify the environmental science and technology achievement data samples after eliminating those that exceed the preset similarity threshold, and calculate the weights of each type of data sample;
[0010] S3. Feasibility evaluation;
[0011] Analyze the innovation degree of each type of environmental science and technology achievement data sample obtained in step S2, and combine the weights of each type of data sample obtained in step S3 and the weights of the target environmental science and technology achievement data samples that exceed the preset similarity threshold to conduct a basic evaluation model exercise to obtain a feasibility evaluation model;
[0012] S4. Evaluation result feedback;
[0013] Use the feasibility evaluation model obtained in step S3 to conduct a deduction analysis on the environmental science and technology achievement data samples to determine the feasibility evaluation result of the transfer and transformation of environmental science and technology achievements.
[0014] Furthermore, in step S1, the environmental science and technology achievement data samples include text samples and image samples. The image samples are imported into a preset image sample recognition model for text recognition, and the text information corresponding to the image samples is output. The text information is compared with the text samples and consistency analysis is carried out, which greatly improves the accuracy of the feasibility evaluation of the transfer and transformation of environmental science and technology achievements and improves the economic efficiency after the transfer and transformation of environmental science and technology achievements.
[0015] Furthermore, after step S1 is completed, the importance weights of the key technical points are statistically calculated, and the key technical points are sorted according to the importance weights. By sorting the key technical points, the accuracy and scientific nature of the subsequent evaluation results can be improved, providing rich reference data for environmental science and technology work and facilitating the smooth development of environmental science and technology work.
[0016] Furthermore, after step S4 is completed, the feasibility evaluation result of the transfer and transformation of environmental science and technology achievements is fed back to the operator in the form of a table. The table includes the pentagonal coordinate diagrams at the technical level and the industrialization level of the scientific and technological achievements. By setting the pentagonal coordinate diagrams at the technical level and the industrialization level of the scientific and technological achievements, it is convenient for scientific research personnel to further understand the specific process of the evaluation work, thus providing a clear scientific research goal for scientific research work.
[0017] Furthermore, the table also includes a pentagonal coordinate diagram at the process transformation level. The pentagonal coordinate diagram at the process transformation level can provide users with corresponding simple process transformations, further enhancing the feasibility of the transfer and transformation of environmental science and technology achievements.
[0018] Furthermore, in step S2, according to the preset risk assessment coefficient for the transfer and transformation feasibility of environmental science and technology achievements, calculate the risk coefficient of the target environmental science and technology achievement data sample that exceeds the preset similarity threshold. By calculating the risk coefficient, the risk avoidance ability of the intelligent department in the credibility assessment work can be improved, and economic losses can be reduced.
[0019] Furthermore, in step S2, during the comparison of key technical points with Internet big data, comparisons are made respectively from the aspects of environmental safety, technological investment, financial investment, and social and economic efficiency. By comparing the differences in environmental safety, technological investment, financial investment, and social and economic efficiency, the participation of human subjective factors in the feasibility assessment work of the transfer and transformation of environmental science and technology achievements can be reduced, and the accuracy and authenticity of the feasibility assessment results can be improved.
[0020] Furthermore, in step S3, during the analysis of the innovation degree of various environmental science and technology achievement data samples, an innovation degree evaluation model is established. The innovation degree evaluation model includes an innovation ability evaluation index and an innovation intellectual property evaluation index. By setting different evaluation indexes, the influence degree of the evaluation indexes on the feasibility assessment work can be effectively reduced, ensuring the rationality of the assessment results.
[0021] An environmental science and technology achievement transfer and transformation feasibility assessment system includes a data entry module, a data processing module, a feasibility assessment module, a feedback module, a cloud database, and a central processing unit; the data entry module, the data processing module, the feasibility assessment module, the feedback module, and the cloud database respectively achieve two-way data interaction with the central processing unit;
[0022] The data entry module is used to enable users to enter environmental science and technology achievements and conduct data interaction with the data processing module and the cloud database; the data entry module includes a text entry unit and a picture entry unit;
[0023] The data processing module is used to collect and sort out the information of environmental science and technology achievement data samples and eliminate the data samples with poor relevance. The data processing module conducts data interaction with the feasibility assessment module. The data processing module includes a classification unit and a similarity comparison unit;
[0024] The feasibility assessment module is used to intelligently assess the information of a single environmental science and technology achievement processed by the data processing module and store and feedback the assessment results; the feasibility assessment module conducts data interaction with the feedback module;
[0025] The feedback module is used to feedback the evaluation results of the feasibility of transferring and transforming environmental science and technology achievements to users, enabling users to understand the actual situation of the feasibility evaluation results in real time;
[0026] The central processing unit is used to overall plan and coordinate the reliable operation among the data entry module, the data processing module, the feasibility evaluation module, the feedback module and the cloud database.
[0027] Furthermore, the similarity comparison unit includes an environmental safety comparison subunit, a technology investment subunit, a capital investment subunit and a social and economic efficiency subunit.
[0028] Furthermore, the feasibility evaluation module includes a tracking unit, which is used to track the feasibility evaluation results, facilitating the improvement of the operability of subsequent feasibility evaluation work for the transfer and transformation of environmental science and technology achievements.
[0029] The working principle of the system of the present invention is as follows:
[0030] 1. Staff enter the information of environmental science and technology achievements to be evaluated through the data entry module. The data entry module conducts data interaction with the data processing module and the central processing unit respectively;
[0031] 2. Compare the information of environmental science and technology achievements entered by the entry module with the data in the cloud database, and classify and sort the information of environmental science and technology achievements entered by the data entry module through the processing module;
[0032] 3. The information of environmental science and technology achievements processed by the data processing module is sent to the feasibility evaluation module, and the feasibility evaluation module is used to evaluate the feasibility of the transfer and transformation of the information of environmental science and technology achievements;
[0033] 4. The information of environmental science and technology achievements evaluated by the feasibility evaluation module is sent to the feedback module to generate a feedback report, and the feedback report is sent to the central processing unit;
[0034] 5. Used to send a query request for the feasibility evaluation results to the central processing unit, so as to consult the credibility evaluation results report.
[0035] Compared with the prior art, the beneficial effects of the present invention are as follows: An environmental science and technology achievement transfer and transformation feasibility evaluation method and evaluation system of the present invention uses Internet technology, fully considers the influencing factors of the feasibility of environmental science and technology achievement transfer and transformation, takes each technical key point in the transfer of environmental science and technology achievements as a reference and evaluation index, forms a set of scientific and effective environmental science and technology achievement transfer and transformation feasibility evaluation methods, improves the efficiency and effect of environmental science and technology achievement transfer and transformation, provides a favorable reference basis for the research and development of environmental science and technology achievements, effectively improves the problem of low efficiency of environmental science and technology achievement transfer and transformation in China. Through the method of the present invention, it is beneficial for scientific research personnel to timely understand the process and evaluation results of the environmental science and technology achievement transformation feasibility evaluation work, so as to facilitate scientific research personnel to make corresponding modifications and improvements to environmental science and technology achievements, improve the conversion rate of environmental science and technology achievements, and promote the rapid and steady development of China's environmental cause. BRIEF DESCRIPTION OF THE DRAWINGS
[0036] Figure 1 It is a schematic structural diagram of the system of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0037] Embodiment 1: An environmental science and technology achievement transfer and transformation feasibility evaluation method includes the following steps:
[0038] S1. Input of data samples;
[0039] Input the environmental science and technology achievement data samples into the sample database, and summarize and sort out the key technical points in the environmental science and technology achievement data samples;
[0040] S2. Processing of data samples;
[0041] Import the key technical points in step S1 into the cloud database, compare them with the publicly available domestic and foreign environmental science and technology literature or periodicals and the scientific and technological achievement information of related products in the Internet big data, calculate the similarity between the target environmental science and technology achievement data samples and the source data samples, eliminate the target environmental science and technology achievement data samples that exceed the preset similarity threshold, and calculate the weights of the target environmental science and technology achievement data samples that exceed the preset similarity threshold; then classify the environmental science and technology achievement data samples after eliminating the similarity that exceeds the preset similarity threshold, and calculate the weights of each type of data sample;
[0042] S3. Feasibility evaluation;
[0043] Analyze the innovation degree of each type of environmental science and technology achievement data sample obtained in step S2, and combine the weights of each type of data sample obtained in step S3 and the weights of the target environmental science and technology achievement data samples that exceed the preset similarity threshold to conduct a basic evaluation model drill to obtain a feasibility evaluation model;
[0044] S4. Feedback of evaluation results;
[0045] Use the feasibility evaluation model obtained in step S3 to conduct a deduction analysis on the domestic environmental science and technology achievement data samples, and determine the feasibility evaluation results of the transfer and transformation of domestic environmental science and technology achievements.
[0046] A feasibility evaluation system for the transfer and transformation of environmental science and technology achievements applicable to the above method, including a data entry module, a data processing module, a feasibility evaluation module, a feedback module, a cloud database, and a central processor; the data entry module, the data processing module, the feasibility evaluation module, the feedback module, and the cloud database are respectively in two-way data interaction with the central processor;
[0047] The data entry module is used to enable users to enter environmental science and technology achievements and conduct data interaction with the data processing module and the cloud database; the data entry module includes a text entry unit and a picture entry unit;
[0048] The data processing module is used to collect and organize the information of the domestic environmental science and technology achievement data samples, and eliminate the data sample information with poor relevance. The data processing module conducts data interaction with the feasibility evaluation module. The data processing module includes a classification unit and a similarity comparison unit; the similarity comparison unit includes an environmental safety comparison subunit, a technology investment subunit, a capital investment subunit, and a social and economic efficiency subunit;
[0049] The feasibility evaluation module is used to conduct an intelligent evaluation on the information of a single domestic environmental science and technology achievement processed by the data processing module, and store and feedback the evaluation results; the feasibility evaluation module conducts data interaction with the feedback module; the feasibility evaluation module includes a tracking unit, and the tracking unit is used to track the feasibility evaluation results, which is beneficial to improving the operability of the subsequent feasibility evaluation work for the transfer and transformation of domestic environmental science and technology achievements;
[0050] The feedback module is used to feedback the feasibility evaluation results of the transfer and transformation of environmental science and technology achievements to the user, so as to enable the user to understand the actual situation of the feasibility evaluation results in real time;
[0051] The central processor is used to overall plan and coordinate the reliable operation among the data entry module, the data processing module, the feasibility evaluation module, the feedback module, and the cloud database.
[0052] Example 2: This example is basically the same as Example 1, except that
[0053] In step S1, the environmental science and technology achievement data samples include text samples and image samples. The image samples are imported into a preset image sample recognition model for text recognition, and the text information corresponding to the image samples is output. The text information is compared with the text samples, and consistency analysis is carried out, which greatly improves the accuracy of the feasibility assessment of the transfer and transformation of environmental science and technology achievements and increases the economic efficiency after the transfer and transformation of environmental science and technology achievements. After step S1 is completed, the importance weights of the key technical points are statistically analyzed, and the key technical points are sorted according to the importance weights. By sorting the key technical points, the accuracy and scientificity of the subsequent evaluation results can be improved, providing rich reference data for environmental science and technology work and facilitating the smooth development of environmental science and technology work.
[0054] Example 3: This example is basically the same as Example 2, except that
[0055] After step S4 is completed, the feasibility assessment results of the transfer and transformation of environmental science and technology achievements are fed back to the operator in the form of a table. The table includes pentagonal coordinate diagrams at the technical level and industrialization level of the scientific and technological achievements. By setting the pentagonal coordinate diagrams at the technical level and industrialization level of the scientific and technological achievements, it is convenient for scientific research personnel to further understand the specific process of the assessment work, thus providing clear scientific research goals for scientific research work. The table also includes a pentagonal coordinate diagram at the process transformation level. Through the pentagonal coordinate diagram at the process transformation level, a corresponding process transformation guide can be provided for users, further enhancing the feasibility of the transfer and transformation of environmental science and technology achievements.
[0056] Example 4: This example is basically the same as Example 2, except that
[0057] In step S2, according to the preset feasibility risk assessment coefficient for the transfer and transformation of environmental science and technology achievements, the risk coefficient of the target environmental science and technology achievement data samples exceeding the preset similarity threshold is calculated. By calculating the risk coefficient, the risk avoidance ability of the intelligent department in the credibility assessment work can be improved, reducing economic losses. During the comparison of the key technical points with the Internet big data, the comparison is carried out respectively from the aspects of environmental safety, technology investment, capital investment, and social and economic efficiency. By comparing the differences in environmental safety, technology investment, capital investment, and social and economic efficiency, the participation of human subjective factors in the feasibility assessment work of the transfer and transformation of environmental science and technology achievements can be reduced, improving the accuracy and authenticity of the feasibility assessment results.
[0058] Example 5: This example is basically the same as Example 4, except that
[0059] In step S3, during the analysis of the innovation degree of various environmental science and technology achievement data samples, an innovation degree evaluation model is established. The innovation degree evaluation model includes an innovation ability evaluation index and an innovation intellectual property evaluation index. By setting different evaluation indexes, the influence degree of the evaluation indexes on the feasibility evaluation work can be effectively reduced, ensuring the rationality of the evaluation results.
[0060] Experimental example: Use the methods of Embodiments 1-5 of the present invention to evaluate the transfer and transformation feasibility of the environmental science and technology achievements of a certain scientific research institution in China from 2020 to 2021; the specific method is: classify and count the environmental science and technology achievement samples of a certain scientific research institution from 2020 to 2021, and randomly divide the various environmental science and technology achievement samples into 6 equal groups, and then randomly combine the grouped environmental science and technology achievement samples. The feasibility of the combined 66 groups of data samples is evaluated by using the methods of Embodiments 1-5 of the present invention and the comparative example. The method used in the comparative example is CN201810092291.X, a general-purpose scientific and technological achievement transformation feasibility evaluation system; after the evaluation, the average values of the conversion rates of the environmental science and technology achievement samples in each group are statistically calculated respectively, and the statistical results are shown in Table 1:
[0061] Table 1: The influence of different method steps on the conversion rate of environmental science and technology achievements;
[0062] Example Conversion rate of environmental science and technology achievements / % 1 46 2 55 3 69 4 78 5 85 Comparative example 29
[0063] It can be seen from the data in Table 1:
[0064] Comparing Embodiments 1-5 with the comparative example, it can be seen that the method for evaluating the transfer and transformation feasibility of the environmental science and technology achievements of the present invention can greatly improve the conversion rate of the environmental science and technology achievements under the same conditions compared with the existing evaluation methods;
[0065] Comparing Embodiment 2 with Embodiment 1, since text samples and image samples are set in the environmental science and technology achievement data samples, and the importance weights of the key technical points are statistically calculated, and the key technical points are sorted according to the importance weights. By sorting the key technical points, the accuracy and scientificity of the subsequent evaluation results can be improved, providing rich reference data for environmental science and technology work, facilitating the smooth development of environmental science and technology work, improving the accuracy of the evaluation of the transfer and transformation feasibility of environmental science and technology achievements, and further improving the transfer conversion rate of environmental science and technology achievements;
[0066] Compared with Example 2, in Example 3, after the end of step S4, the feasibility evaluation results of environmental science and technology achievements transfer and transformation are fed back to the operator in the form of a table. The table includes the five-point coordinate diagrams of the technical and industrialization levels of the science and technology achievements. By setting the five-point coordinate diagrams of the technical and industrialization levels of the science and technology achievements, it is convenient for scientific research personnel to further understand the specific process of the evaluation work, so as to provide clear scientific research goals for scientific research work. At the same time, the table also includes the five-point coordinate diagram of the process transformation level. Through the five-point coordinate diagram of the process transformation level, a corresponding simple process transformation can be provided for users, further improving the feasibility of the transfer and transformation of environmental science and technology achievements.
[0067] Compared with Example 3, in Example 4, in step S2, the risk coefficient of the target environmental science and technology achievement data sample exceeding the preset similarity threshold is calculated according to the preset feasibility risk assessment coefficient of environmental science and technology achievements transfer and transformation. By calculating the risk coefficient, the risk aversion ability of the intelligent department in the credibility assessment work can be improved, and the economic loss can be reduced. In the process of comparing the key technical points with the Internet big data, the comparison is carried out from the aspects of environmental safety level, technology investment level, capital investment level and social and economic efficiency level. By comparing the differences in the environmental safety level, technology investment level, capital investment level and social and economic efficiency level, the participation degree of human subjective factors in the feasibility evaluation work of environmental science and technology achievements transfer and transformation can be reduced, and the accuracy and authenticity of the feasibility evaluation results can be improved, thus improving the conversion rate of environmental science and technology achievements.
[0068] Compared with Example 4, in Example 5, in the process of analyzing the innovation degree of various environmental science and technology achievement data samples, an innovation degree evaluation model is established. The innovation degree evaluation model includes an innovation ability evaluation index and an innovation intellectual property evaluation index. By setting different evaluation indexes, the influence degree of the evaluation indexes on the feasibility evaluation work can be effectively reduced, and the rationality of the evaluation results is improved.
Claims
1. A feasibility evaluation method for the transfer and transformation of environmental science and technology achievements, characterized in that, It includes the following steps: S1. Data sample entry; Enter the environmental science and technology achievement data samples into the sample database, and summarize and organize the key technical points in the environmental science and technology achievement data samples; S2. Data sample processing; Import the key technical points described in step S1 into the cloud database, compare them with the publicly available domestic and foreign environmental science and technology literature or periodicals in the Internet big data and the scientific and technological achievement information of related products, calculate the similarity between the target environmental science and technology achievement data sample and the source data sample, eliminate the target environmental science and technology achievement data samples that exceed the preset similarity threshold, and calculate the weights of the target environmental science and technology achievement data samples whose similarity exceeds the preset similarity threshold; then classify the environmental science and technology achievement data samples after eliminating those whose similarity exceeds the preset similarity threshold, and calculate the weights of various data samples; S3. Feasibility assessment; Analyze the innovation degree of various environmental science and technology achievement data samples obtained in step S2, and combine the weights of various data samples obtained in step S2 and the weights of the target environmental science and technology achievement data samples whose similarity exceeds the preset similarity threshold to conduct a basic evaluation model drill to obtain a feasibility assessment model; S4. Evaluation result feedback; Use the feasibility assessment model obtained in step S3 to conduct a deduction analysis on the environmental science and technology achievement data samples to determine the feasibility assessment result of the transfer and transformation of environmental science and technology achievements; In step S1, the environmental science and technology achievement data samples include text samples and image samples. Import the image samples into a preset image sample recognition model for text recognition, output the text information corresponding to the image samples, compare the text information with the text samples, and conduct consistency analysis; After step S4 is completed, feedback the feasibility assessment result of the transfer and transformation of environmental science and technology achievements to the operator in the form of a table, and the table includes a pentagon coordinate diagram at the technical level and industrialization level of the scientific and technological achievements; In step S2, calculate the risk coefficient of the target environmental science and technology achievement data samples that exceed the preset similarity threshold according to the preset feasibility risk assessment coefficient for the transfer and transformation of environmental science and technology achievements; After step S1 is completed, conduct a statistical analysis of the importance weights of the key technical points, and sort the key technical points according to the importance weights; In step S2, during the comparison of the key technical points with the Internet big data, conduct comparisons from the aspects of environmental safety, technology investment, capital investment, and social and economic efficiency respectively; In step S3, during the analysis of the innovation degree of various environmental science and technology achievement data samples, establish an innovation degree evaluation model, and the innovation degree evaluation model includes an innovation ability evaluation index and an innovation intellectual property evaluation index.
2. An environmental science and technology achievement transfer and transformation feasibility evaluation system applicable to the method described in claim 1, characterized in that, It includes a data entry module, a data processing module, a feasibility assessment module, a feedback module, a cloud database, and a central processing unit; the data entry module, the data processing module, the feasibility assessment module, the feedback module, and the cloud database respectively achieve two-way data interaction with the central processing unit; The data entry module is used to enable users to enter environmental technology achievements, and to interact with the data processing module and the cloud database; the data entry module includes a text entry unit and a picture entry unit; The data processing module is used to collect and organize environmental scientific and technological achievements data sample information and eliminate data sample information with poor relevance. The data processing module interacts with the feasibility assessment module. The data processing module includes a classification unit and a similarity comparison unit. The feasibility assessment module is used to perform intelligent evaluation of a single environmental scientific and technological achievement information after the data processing module is processed, and the evaluation results are stored and fed back; data interaction between the feasibility assessment module and the feedback module; The feedback module is used to feed back the feasibility assessment results of the transfer and transformation of environmental scientific and technological achievements to users, so that users can understand the actual situation of the feasibility assessment results in real time; The central processing unit is used to coordinate and ensure reliable operation among the data entry module, data processing module, feasibility assessment module, feedback module and cloud database; The similarity comparison unit includes an environmental safety comparison subunit, a technical input subunit, a capital input subunit and a social economic efficiency subunit.
Citation Information
Patent Citations
Universal feasibility evaluation system for transformation of scientific and technological achievements
CN108256777A
An urban innovation evaluation method and system based on a clustering random forest
CN109902970A
Science and technology information intelligent pushing system based on big data
CN110209942A
Public service platform system and method based on erection of artificial intelligence
CN111815260A