Intelligent data interaction platform for innovation and entrepreneurship talent cultivation
Through the combination of dual-mode operation and temperature sensing feedback unit, the problem of untimely response of the intelligent data interaction platform at high load is solved, the timeliness and stability of data processing is achieved, and the development of cultivating innovative and entrepreneurial talents is promoted.
Patent Information
- Application Number
- CN202510588480.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-08
- Publication Date
- 2025-08-08
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
As the data volume and visit volume continue to increase, the computing speed of existing intelligent data interaction platforms decreases, resulting in untimely response and real-time data reduction, affecting the development of innovative and entrepreneurial talents.
The dual-mode operation mode and the operation conversion control unit are adopted to divert and control access and data updates through time-dividing operation. Combined with the temperature-sensing feedback unit and the heat absorption sensing component, the computing status is monitored, the computing burden is reduced, and the data processing speed and accuracy are ensured.
It improves the timeliness and real-timeness of data processing, reduces the computing burden, ensures the stability and security of platform operation, and promotes the development of cultivating innovative and entrepreneurial talents.
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Figure CN120448343A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to an intelligent data interaction platform, and in particular to an intelligent data interaction platform for cultivating innovative and entrepreneurial talents applied in the field of data processing systems. Background Art
[0002] Cultivating new entrepreneurial talent is a systematic project that requires the joint efforts and support of the government, universities, businesses, and all sectors of society. Through a variety of measures, including education and training, policy support, practical training, mentorship, resource integration, and continuous learning and growth, we can cultivate more outstanding talents with innovative spirit and entrepreneurial ability, injecting new vitality and momentum into economic and social development.
[0003] The Intelligent Data Interaction Platform is a highly integrated, intelligent system designed to efficiently collect, process, analyze, and share data through digital means. The Intelligent Data Interaction Platform for Cultivating Innovative and Entrepreneurial Talent is a comprehensive platform integrating big data, cloud computing, and artificial intelligence technologies, aiming to promote talent development and the development of innovative entrepreneurship through digital means.
[0004] In existing technologies, intelligent data interaction platforms used to cultivate innovative and entrepreneurial talent must not only integrate various entrepreneurial resources and enterprise chains but also monitor data on the talent cultivation and entrepreneurial process. Therefore, these platforms must possess robust data processing and analysis capabilities. However, as data volumes and backend access volume continue to increase, the computational burden on these platforms will also increase. This can lead to issues such as delayed data responses or reduced real-time data availability, hindering the application of these platforms and the development of innovative and entrepreneurial talent cultivation. Summary of the Invention
[0005] In view of the above-mentioned existing technologies, the technical problem to be solved by the present invention is how to ensure the computing speed of the intelligent data interaction platform and promote its timely response and real-time data in the process of continuously increasing data volume and access volume.
[0006] To solve the above problems, the present invention provides an intelligent data interaction platform for cultivating innovative and entrepreneurial talents, comprising an interactive platform body, an interactive data processor installed in the interactive platform body, a mobile terminal connected to the interactive platform body by signal, and a cloud server connected to the interactive platform body by signal. The interactive data processor is equipped with a talent cultivation interaction system, and the talent cultivation interaction system includes a cultivation interaction processing unit. The input end of the cultivation interaction processing unit is connected to the cloud data acquisition unit, the talent cultivation parameter setting unit, the user access unit, the time period monitoring unit and the temperature sensing feedback unit, and the output end of the cultivation interaction processing unit is connected to the dual-mode control unit, the access data transmission unit, the cultivation data storage unit and the cultivation data storage unit; A pair of processor cards are also fixedly connected to the interactive platform body, and the two processor cards are respectively arranged on the left and right sides of the interactive data processor. The two processor cards are fixedly connected to a plurality of grid guide bars on the end close to each other, and the grid guide bars are located on the rear side of the interactive data processor. The rear end of the grid guide bars is slidably provided with a heat absorption sensing component that cooperates with the interactive data processor. The input end of the cloud data acquisition unit is connected to the cloud server signal, the input end of the talent training parameter setting unit is connected to the signal data port set on the interactive platform body, the input end of the user access unit is connected to the mobile terminal signal, the input end of the time period monitoring unit is connected to the system time signal of the interactive platform body, and the input end of the temperature feedback unit is connected to the heat absorption sensing component signal; The output end of the dual-mode control unit is connected to the operation conversion control unit, the output end of the operation conversion control unit is connected to the cultivation interaction processing unit signal, the output end of the access data transmission unit is connected to the mobile end signal, the output end of the cultivation data storage unit is connected to the cloud server signal, and the output end of the cultivation data display unit is connected to the display signal set at the front end of the interactive platform body.
[0007] In the above-mentioned intelligent data interaction platform for cultivating innovative and entrepreneurial talents, access and data updates are operated in different time periods through dual-mode operation. While ensuring its data processing rate and accuracy, it can also improve the applicability of the cultivation interaction processing unit when dealing with increased access and data volume, effectively ensuring the timeliness of the interactive platform's data response and the real-time nature of data display. It can also effectively display the effectiveness of dual-mode operation regulation through physical feedback, disclose regulation anomalies in a timely manner, promote the security and stability of the interactive platform's operation, and effectively promote the development and application of the interactive platform in the direction of cultivating innovative and entrepreneurial talents.
[0008] As a supplement to the present application, the heat absorption sensing component includes a guide plate slidably arranged on the rear side of the grid guide strip, a heat absorption deformation block is fixedly connected between two adjacent guide plates on the same side, the left and right heat absorption deformation blocks are fixedly connected to the processor card block at their respective ends away from each other, and the left and right heat absorption deformation blocks are fixedly connected to the sensing patch at their respective ends close to each other, a heat absorption sensing cavity is provided in the heat absorption deformation block, and deformation trigger columns are fixedly connected to the left and right inner walls of the heat absorption sensing cavity, and a pair of memory deformation strips are fixedly connected between the left and right inner walls of the heat absorption sensing cavity, and the two memory deformation strips are respectively located on the upper and lower sides of the deformation trigger column.
[0009] As a supplement to this application, the input end of the cultivation interaction processing unit is also connected to the identity authentication unit, and the input end of the identity authentication unit is connected to the mobile end signal. The output end of the cultivation interaction processing unit is also connected to the abnormal alarm unit, and the output end of the abnormal alarm unit is respectively connected to the mobile end and the alarm signal set on the interactive platform body.
[0010] As a further improvement of the present application, the temperature sensing feedback unit includes a normal operation sensing module, a computing load sensing module and a computing abnormality sensing module, and the normal operation sensing module, the computing load sensing module and the computing abnormality sensing module are arranged in parallel; The output ends of the normal operation sensing module, the load operation sensing module and the abnormal operation sensing module are all connected to the cultivation interaction processing unit signal; The input end of the normal operation sensing module is connected to the sensing patch signal, the input end of the burden operation sensing module is connected to the sensing patch and the deformation trigger column signal respectively, and the output end of the abnormal operation sensing module is connected to the deformation trigger column signal.
[0011] As a further improvement of the present application, the cultivation interaction processing unit includes a cultivation interaction preprocessing module, the input end of the cultivation interaction preprocessing module is connected to the data receiving and classification module, and the input end of the data receiving and classification module is signal-connected to the cloud data acquisition unit, the talent cultivation parameter setting unit, the user access unit, the temperature sensing feedback unit, and the operation conversion and control unit; The output end of the cultivation interaction pre-processing module is connected to the data update processing module, the access data processing module and the data transmission processing module, and the output end of the data update processing module and the access data processing module is signal-connected to the data transmission processing module; The output end of the data transmission processing module is connected with the dual-mode control unit, the access data transmission unit, the cultivation data unit and the cultivation data display unit signal.
[0012] As a further improvement and supplement to the present application, the cultivation interaction preprocessing module transmits the user access data and the data of the time period monitoring unit to the dual-mode control unit through the data transmission processing module, enabling the dual-mode control unit to analyze the user access trends of each time period, and classify the time periods according to the user access trends, and then transmit the control mode data of the current time period to the operation conversion control unit. The operation conversion control unit transmits the data update and user access operation space required for the current time period to the cultivation interaction preprocessing module through the data receiving and classification module, so that the cultivation interaction preprocessing module can intelligently control and allocate the data processing capacity of the data update processing module and the access data processing module.
[0013] As a further improvement of the present application, the input end of the cultivation interaction processing unit is further connected to an access feedback unit, and the input end of the access feedback unit is connected to the mobile terminal signal.
[0014] As a further improvement supplement to the present application, the output end of the cultivation interaction processing unit is connected to the feedback improvement unit, the output end of the feedback improvement unit is connected to the self-upgrade control unit and the improvement transmission unit, the output end of the self-upgrade control unit is connected to the cultivation interaction processing unit signal, and the output end of the improvement transmission unit is connected to the display signal set at the front end of the interactive platform body.
[0015] In summary, through the setting of the operation conversion control unit and the dual-mode control unit, the intelligent control function of the cultivation interaction processing unit can be effectively realized. The access and data update can be operated in different time periods through the dual-mode operation. While the data in the cultivation interaction processing unit is diverted and regulated to ensure its data processing rate and accuracy, it can also improve the applicability of the cultivation interaction processing unit in dealing with the increase in access volume and data volume, reduce its operation burden, and effectively ensure the timeliness of the data response of the interactive platform body and the real-time nature of the data display. In addition, the operation status of the cultivation interaction processing unit can be physically monitored and fed back through the cooperation of the temperature feedback unit, the interactive data processor and the heat absorption sensing component. While further promoting the accuracy of the cultivation interaction processing unit's dual-mode diversion control of the operation and promoting its data processing rate, it can also effectively display the effectiveness of the dual-mode operation control through physical feedback, and can disclose the control anomalies in a timely manner, promote the safety and stability of the operation of the interactive platform body, and effectively promote the development and application of the interactive platform body in the direction of cultivating innovative and entrepreneurial talents. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a topology diagram of the interactive platform ontology application in the first embodiment of this application; Figure 2 This is a control logic diagram of the talent cultivation interactive system according to the first embodiment of the present application; Figure 3 This is an axonometric diagram of the processor card block and the heat absorption sensing component when the interactive data processor of the first embodiment of the present application is in normal operation; Figure 4 This is an exploded diagram of the interaction data processor of the first embodiment of the present application in normal operation, wherein the processor card block and the heat absorption sensing component cooperate; Figure 5 This is a rear cross-sectional view of the heat absorption sensing component of the interactive data processor according to the first embodiment of the present application when in normal operation; Figure 6This is an axonometric diagram of the interaction data processor in the first embodiment of the present application when the processor card block and the heat absorption sensing component are in abnormal operation; Figure 7 This is an exploded diagram of the interaction data processor of the first embodiment of the present application when it is in abnormal operation and the processor card block and the heat absorption sensing component cooperate; Figure 8 This is a rear cross-sectional view of the heat absorption sensing component of the interactive data processor according to the first embodiment of the present application when the interactive data processor is in abnormal operation; Figure 9 This is the operation topology diagram of the talent cultivation interactive system according to the second embodiment of the present application; Figure 10 This is the operation logic diagram of the talent training interactive system of the second implementation method of this application.
[0017] Description of the numbers in the figure: 1 interactive platform body, 2 interactive data processor, 3 processor card block, 31 grid guide bar, 4 heat absorption sensing component, 41 heat absorption deformation block, 42 guide plate, 43 sensing patch, 44 heat absorption sensing cavity, 45 deformation trigger column, 46 memory deformation bar. DETAILED DESCRIPTION
[0018] Two implementation modes of the present application are described in detail below with reference to the accompanying drawings.
[0019] The first implementation method: Figure 1 - Figure 8 The figure shows an intelligent data interaction platform for cultivating innovative and entrepreneurial talents, which includes an interactive platform body 1, an interactive data processor 2 installed in the interactive platform body 1, a mobile terminal connected to the interactive platform body 1 by signals, and a cloud server connected to the interactive platform body 1 by signals. The interactive data processor 2 is equipped with a talent cultivation interaction system, and the talent cultivation interaction system includes a cultivation interaction processing unit. The input end of the cultivation interaction processing unit is connected to the cloud data acquisition unit, the talent cultivation parameter setting unit, the user access unit, the time period monitoring unit and the temperature sensing feedback unit, and the output end of the cultivation interaction processing unit is connected to the dual-mode control unit, the access data transmission unit, the cultivation data storage unit and the cultivation data storage unit; A pair of processor cards 3 are also fixedly connected to the interactive platform body 1, and the two processor cards 3 are respectively arranged on the left and right sides of the interactive data processor 2. A plurality of grid guide bars 31 are fixedly connected to the adjacent ends of the two processor cards 3, and the grid guide bars 31 are located on the rear side of the interactive data processor 2. A heat absorption sensing component 4 that cooperates with the interactive data processor 2 is slidably provided at the rear end of the grid guide bars 31; The input end of the cloud data acquisition unit is connected to the cloud server signal, the input end of the talent training parameter setting unit is connected to the signal data port set on the interactive platform body 1, the input end of the user access unit is connected to the mobile terminal signal, the input end of the time period monitoring unit is connected to the system time signal of the interactive platform body 1, and the input end of the temperature feedback unit is connected to the heat absorption sensing component 4; The output end of the dual-mode control unit is connected to the operation conversion control unit, the output end of the operation conversion control unit is connected to the cultivation interaction processing unit signal, the output end of the access data transmission unit is connected to the mobile terminal signal, the output end of the cultivation data storage unit is connected to the cloud server signal, and the output end of the cultivation data display unit is connected to the display signal set at the front end of the interactive platform body 1. Through the setting of the operation conversion control unit and the dual-mode control unit, the intelligent control function of the cultivation interaction processing unit can be effectively realized, and the access and data update can be operated in different time periods through the dual-mode operation. While the data in the cultivation interaction processing unit is diverted and regulated to ensure its data processing rate and accuracy, it can also improve the cultivation interaction processing unit. It is applicable when dealing with the increase in access volume and data volume, reduces its computing burden, effectively ensures the timeliness of data response and real-time data display of the interactive platform body 1, and can also physically monitor and feedback the computing status of the interactive processing unit through the cooperation of the temperature sensing feedback unit, the interactive data processor 2 and the heat absorption sensing component 4, while further promoting the accuracy of the interactive processing unit's dual-mode diversion control of the operation and promoting its data processing rate. At the same time, it can also effectively display the effectiveness of the dual-mode operation control through physical feedback, can disclose the control anomalies in time, promote the safety and stability of the operation of the interactive platform body 1, and effectively promote the development and application of the interactive platform body 1 in the direction of cultivating innovative and entrepreneurial talents.
[0020] Figure 1 and Figure 2 The training interaction processing unit includes a training interaction preprocessing module, the input end of which is connected to a data receiving and classification module, and the input end of which is signal-connected to a cloud data acquisition unit, a talent training parameter setting unit, a user access unit, a temperature sensing feedback unit, and an operation conversion and control unit. The output end of the cultivation interaction pre-processing module is connected to the data update processing module, the access data processing module and the data transmission processing module, and the output end of the data update processing module and the access data processing module is signal-connected to the data transmission processing module; The output end of the data transmission processing module is connected to the dual-mode control unit, the access data transmission unit, the cultivation data storage unit and the cultivation data display unit signal. The setting of the cultivation interaction preprocessing module, the data update processing module and the access data processing module can effectively process and feedback the system data of the interactive platform body 1 itself, while also being able to effectively divert access data and data updates, effectively ensuring the accuracy of data processing, promoting the effectiveness of dual-mode control, and effectively ensuring the timeliness of data feedback when users access, promoting user experience, and improving interaction effects. When data is updated, it effectively guarantees the processing and iteration of data updates, and promotes the real-time nature of data for the cultivation of innovative and entrepreneurial talents.
[0021] Figure 1 and Figure 2 The cultivation interaction preprocessing module transmits user access data and data from the time period monitoring unit to the dual-mode control unit through the data transmission processing module, enabling the dual-mode control unit to analyze user access trends in each time period and classify the time period according to the user access trends. The control mode data for the current time period is then transmitted to the operation conversion control unit. The operation conversion control unit transmits the data update and user access operation space required for the current time period to the cultivation interaction preprocessing module through the data reception and classification module, so that the cultivation interaction preprocessing module intelligently controls and allocates the data processing capacity of the data update processing module and the access data processing module. The cooperation between the dual-mode control unit and the operation conversion control unit can effectively predict and control the application period of the interactive platform 1 based on the changes in the user access volume of the interactive platform 1 in each time period and the changes in the subsequent data update processing capacity, thereby ensuring the stability and effectiveness of the operation of the interactive platform 1 and promoting the interactive effect of the interactive platform 1. In addition, as the application of the interactive platform 1 continues, the accuracy of the dual-mode control can be continuously improved, thereby effectively promoting the intelligence of the interactive platform 1 and improving the economic benefits of the application of the interactive platform 1 in the field of innovative and entrepreneurial talents.
[0022] Figure 3 - Figure 8The heat absorption sensing component 4 is shown to include a guide piece 42 slidably arranged on the rear side of the grid guide bar 31. The guide piece 42 is made of an elastic material that can be deformed in the left and right directions, such as a corrugated elastic plate. A heat absorption deformation block 41 is fixedly connected between two adjacent guide pieces 42 on the same side. The left and right heat absorption deformation blocks 41 are fixedly connected to the processor card block 3 at one end away from each other. The left and right heat absorption deformation blocks 41 are fixedly connected to the sensing patch 43 at one end close to each other. A heat absorption sensing cavity 44 is opened in the heat absorption deformation block 41. The left and right inner walls of the heat absorption sensing cavity 44 are fixedly connected to the deformation trigger column 45. A pair of memory deformation strips 46 are fixedly connected between the left and right inner walls of the thermal sensing cavity 44. The memory deformation strips 46 are made of multi-segment memory metal material and can produce multiple thermal contraction actions according to temperature changes. After the temperature recovers, they produce recovery actions. The two memory deformation strips 46 are respectively located on the upper and lower sides of the deformation trigger column 45. The cooperation between the sensing patch 43 and the deformation trigger column 45 can transmit data during the imaging process of the temperature-sensing deformation of the memory deformation strip 46, promote the effectiveness of physical monitoring feedback, and effectively ensure the effectiveness of the operation and control of the interactive platform body 1 during actual application.
[0023] Figure 1 and Figure 2 The temperature feedback unit includes a normal operation sensing module, a load sensing module, and an abnormal operation sensing module, and the normal operation sensing module, the load sensing module, and the abnormal operation sensing module are arranged in parallel; The output ends of the normal operation sensing module, the load operation sensing module and the abnormal operation sensing module are all connected to the cultivation interaction processing unit signal; The input end of the normal operation sensing module is connected to the signal of the sensing patch 43, the input end of the computing burden sensing module is respectively connected to the signal of the sensing patch 43 and the deformation trigger column 45, and the output end of the abnormal operation sensing module is connected to the signal of the deformation trigger column 45. The setting of the normal operation sensing module, the computing burden sensing module and the abnormal operation sensing module simplifies the difficulty of the temperature sensing feedback unit in feedback and identification of physical monitoring actions, thereby reducing the difficulty of cultivating data processing of the interactive processing unit, reducing the computing burden, and improving the response speed to feedback data, ensuring the stability and security of the application of the interactive platform body 1, and improving the interactive performance of the interactive platform body 1.
[0024] Figure 1 and Figure 2It is shown that the input end of the cultivation interaction processing unit is also connected to the identity authentication unit, and the input end of the identity authentication unit is connected to the mobile terminal signal. The output end of the cultivation interaction processing unit is also connected to the abnormal alarm unit, and the output end of the abnormal alarm unit is respectively connected to the mobile terminal and the alarm signal set on the interactive platform body 1. The identity authentication unit and the abnormal alarm unit can effectively ensure the security of the interactive platform body 1 during the application process, reduce the maintenance difficulty of the interactive platform body 1, improve the response speed of the interactive platform body 1 to abnormal operation, and reduce the damage rate of the interactive platform body 1.
[0025] Figure 1 - Figure 8 It is shown that in the process of applying the interactive platform body 1, the technical personnel will first transmit the relevant parameters of talent cultivation to the talent cultivation parameter setting unit through the data signal port of the interactive platform body 1, including course plans, cultivation data, mentor guidance plans, practice data, initial dual-mode time periods and evaluation and assessment mechanisms and other relevant data on the cultivation of innovative and entrepreneurial talents. Then the talent cultivation parameter setting unit transmits these data to the data receiving and classification module in the cultivation interaction processing unit. The data receiving and classification module classifies the received data and transmits it to the cultivation interaction preprocessing module. The cultivation interaction preprocessing module transmits the new policy data on the cultivation of innovative and entrepreneurial talents and the data of each enterprise chain to the data update processing module, and transmits the data on the talent training to the data update processing module. The data related to talent cultivation is transmitted to the access data processing module, and the data displayed and stored in the cloud are transmitted to the data transmission processing module. The data update processing module processes and updates the received data. The access data processing module processes and stores the received data about talent cultivation. Then the data transmission processing module transmits the cultivation-related data to the cultivation data display unit. The cultivation data display unit displays the operating status of the talent cultivation interactive system and the user data of each mobile terminal to the technical personnel and maintenance personnel through the display on the interactive platform body 1. The data transmission processing module will also transmit the cultivation data to the cultivation data storage unit. The cultivation data storage unit will transmit the data that needs to be stored to the cloud server for storage and backup.
[0026] When a user accesses the interactive platform body 1 through a mobile terminal, the mobile terminal transmits the user identity data to the identity authentication unit, and the access data to the user access unit. The identity authentication unit and the user access unit transmit the authentication information and the access information to the cultivation interaction preprocessing module through the data receiving classification module. Only when the user identity authentication is passed, the cultivation interaction preprocessing module will transmit the data to the access data processing module, so that the access data processing module transmits the relevant data to the access data transmission unit through the data transmission processing module according to the access information, and directly displays the access data on the user's mobile terminal through the access data transmission unit. However, when the user identity authentication fails, the cultivation interaction processing module directly transmits the instruction to the abnormal alarm unit through the data transmission processing module, so that the abnormal alarm unit displays the data that failed the identity authentication to the user through the mobile terminal, preventing the user from continuing to access.
[0027] At the same time, the data transmission processing module will also transmit the time period data to the dual-mode control unit. The dual-mode control unit analyzes and processes the time period data and then transmits it to the operation conversion control unit, so that the operation conversion control unit transmits the control data to the data receiving classification module. After the data receiving classification module transmits the data to the cultivation interaction preprocessing module, the cultivation interaction preprocessing module processes the received time period data, and then according to the system time transmitted by the time period monitoring unit, in the early period of the operation of the interactive platform body 1, the data update processing module and the access data processing module are controlled according to the preset traffic data volume, and the data update processing module and the access data processing module are intelligently controlled to occupy the operation space, and then after the access data continuously transmitted by the subsequent user access unit increases, the cultivation interaction preprocessing module receives the user access frequency and quantity data transmitted by the data receiving classification module and the time data transmitted by the time period monitoring unit, and transmits them through the digital The data is transmitted to the dual-mode control unit by the transmission processing module. The dual-mode control unit analyzes the operation trend of the talent cultivation interaction system according to the data of user access volume and time period, and then transmits the adjusted dual-mode data to the operation conversion control unit. The operation conversion control unit transmits the control data of allocating the operation space according to the time period to the cultivation interaction preprocessing module through the data receiving and classification module according to the mode control data, so that the cultivation interaction preprocessing module can effectively and intelligently allocate the operation space according to the control data, increase the access volume and operation space of the data processing module during the period of large user access volume, ensure the smoothness of user access, improve user experience, and improve the timeliness of user access data feedback, increase the access volume and operation space of the data update processing module during the period of small user access volume, and can timely and effectively update the relevant data about talent cultivation in the interactive platform body 1, ensure the real-time nature of the cultivation data, and promote the development of innovative and entrepreneurial talent cultivation.
[0028] In the process of the cultivation interaction preprocessing module intelligently regulating the traffic volume and operation space between the data update processing module and the access data processing module through the dual-mode control unit and the operation conversion control unit, due to the dual-mode operation mode, the operation efficiency of the cultivation interaction processing unit is effectively guaranteed, and its operation burden is reduced, thereby reducing the heat generation and accumulation of the interactive data processor 2 during operation. Therefore, the memory deformation bar 46 in the heat-absorbing deformation block 41 located on the rear side of the interactive data processor 2 remains in an extended state, so that the sensing patches 43 on the left and right sides remain in a continuous abutment state, and then the operation normal sensing module in the temperature feedback unit is continuously triggered to sense, and the normal data is transmitted to the cultivation interaction preprocessing module through the data receiving and classification module, so that the cultivation interaction preprocessing module determines that the data update processing module and the access data processing module are operating normally at this time; However, when the number of user visits suddenly increases or the data is updated too much, the computing burden of the user data processing module and the data update processing module continues to increase, causing the interactive data processor 2 to generate more heat, and the heat-absorbing deformation block 41 and the memory deformation bar 46 absorb the heat, and then the memory deformation bar 46 produces thermal contraction deformation after reaching the deformation temperature, driving the heat-absorbing deformation block 41 to produce contraction deformation under the guidance of the guide piece 42 and the grid guide bar 31, causing the sensing patches 43 on the left and right sides to separate. At this time, the computing normal sensing module is no longer triggered, and the computing burden sensing module is turned on and sensed when the sensing patch 43 and the deformation trigger column 45 are not triggered, and the burden data is transmitted to the cultivation interaction preprocessing module through the data receiving and classification module, so that The cultivation interaction pre-processing module can timely further regulate the operating space and traffic between the data update processing and access data processing modules, and even close the channel of the data update processing module when the number of users is large, or close the channel of the access data processing module when the data update volume is large. After closing, the cultivation interaction pre-processing module transmits the relatively closed data waiting for processing to the cloud server through the cultivation data storage unit through the data transmission processing module for temporary storage. After the subsequent user access volume or data update volume is restored, the temporarily stored data is transmitted again to the data receiving and classification module through the cloud data collection unit for subsequent classification processing to complete the feedback on user access or the continuous update of data content; After the cultivation interaction preprocessing module shuts down the operation and communication of the data update processing module or the access data processing module, the corresponding data processing volume continues to increase, causing the interactive data processor 2 to continuously generate a large amount of heat accumulation, causing the memory deformation bar 46 to produce continuous thermal contraction deformation, driving the heat-absorbing deformation block 41 to continuously shrink under the guidance of the guide piece 42 and the grid guide bar 31, causing the left and right deformation triggering columns 45 in the guide piece 42 to abut and contact each other. Due to the triggering of the deformation triggering columns 45, the computing load sensing module is disconnected, and the computing abnormality sensing module is triggered to sense, and transmits the abnormal data to the cultivation interaction preprocessing module through the data receiving and classification module. The cultivation interaction preprocessing module transmits the abnormal data to the abnormal alarm unit through the data transmission processing module, so that the abnormal alarm unit activates the alarm of the interactive platform body 1, and sends an abnormal alarm action to the technician or maintenance personnel, reminding them to perform maintenance and protection on the interactive platform body 1, avoiding damage to the interactive platform body 1 and the interactive data processor 2 caused by continuous high-load operation, and ensuring the safety of the interactive platform body 1; Finally, the interaction preprocessing module will also transmit the operating status data transmitted by the temperature feedback unit to the dual-mode control unit, increase the data reference amount of the dual-mode control unit, and promote the high-precision control of the operating mode by the dual-mode control unit according to the time period, thereby ensuring the smooth operation of the interactive platform body 1 and promoting the effectiveness of the interaction.
[0029] Second implementation method: Figure 9 and Figure 10 An intelligent data interaction platform for cultivating innovative and entrepreneurial talents is shown. As a further improvement of the first embodiment, the input end of the cultivation interaction processing unit is also connected to an access feedback unit, and the input end of the access feedback unit is connected to the mobile terminal signal. The setting of the access feedback unit can effectively collect and feedback user opinions, provide feedback on user access issues, and promote the sustainable development of the interactive platform body 1.
[0030] Figure 9 and Figure 10 It is shown that the output end of the cultivation interaction processing unit is connected to the feedback improvement unit, the output end of the feedback improvement unit is connected to the self-upgrade control unit and the improvement transmission unit, the output end of the self-upgrade control unit is connected to the cultivation interaction processing unit signal, and the output end of the improvement transmission unit is connected to the display signal set at the front end of the interactive platform body 1. The setting of the feedback improvement unit, the self-upgrade control unit and the improvement transmission unit can, on the one hand, promote the self-optimization function of the interactive platform body 1, enhance the intelligence level of the interactive platform body 1, and achieve more accurate prediction and decision support. On the other hand, it can also timely feedback real and effective data opinions to technical personnel, facilitate technical personnel to improve and upgrade the interactive platform body 1, and improve the practicality of the interactive platform body 1.
[0031] Figure 9 and Figure 10 It is shown that when the interactive platform body 1 is running and being accessed by the user, the mobile terminal will also transmit the access data to the access feedback unit. The access feedback unit transmits the data to the cultivation interaction preprocessing module through the data receiving and classification module. After the cultivation interaction preprocessing module processes the access feedback data, it is transmitted to the feedback improvement unit through the data transmission processing module. The access improvement unit analyzes and processes the data, such as feedback data such as access page freeze, unsmooth identity authentication, and no display of access. Then, the data that can be improved by its own system is transmitted to the self-upgrade control unit. The self-upgrade control unit intelligently optimizes the operation through deep learning and natural language processing, and transmits the self-upgraded optimized data to the data receiving and classification module, so that the cultivation interaction preprocessing module, the data update processing module, the access data processing module and the data transmission processing module can be effectively upgraded and optimized, promoting interactive portability and improving user experience. The feedback improvement unit transmits the improved data to the improvement transmission unit, so that it displays the data to the technicians through the display on the interactive platform body 1, so that the technicians can directly and effectively obtain the user's real data feedback, and promote the effectiveness of subsequent technicians' upgrades and optimizations of the interactive platform body 1 and the talent cultivation interactive system.
[0032] In view of current actual needs, the protection scope of the above-mentioned implementation mode adopted in this application is not limited to this. Various changes made within the knowledge scope of technical personnel in this field without departing from the concept of this application still fall within the protection scope of the present invention.
Claims
1. An intelligent data interaction platform for cultivating innovative and entrepreneurial talents, characterized by: The invention comprises an interactive platform body (1), an interactive data processor (2) installed in the interactive platform body (1), a mobile terminal connected to the interactive platform body (1) by signal, and a cloud server connected to the interactive platform body (1) by signal, wherein the interactive data processor (2) is equipped with a talent cultivation interactive system, and the talent cultivation interactive system includes a cultivation interactive processing unit; The input end of the cultivation interaction processing unit is connected to the cloud data acquisition unit, the talent cultivation parameter setting unit, the user access unit, the time period monitoring unit and the temperature feedback unit, and the output end of the cultivation interaction processing unit is connected to the dual-mode control unit, the access data transmission unit, the cultivation data storage unit and the cultivation data storage unit; A pair of processor card blocks (3) are fixedly connected to the interactive platform body (1), and the two processor card blocks (3) are respectively arranged on the left and right sides of the interactive data processor (2), and a plurality of grid guide bars (31) are fixedly connected to the adjacent ends of the two processor card blocks (3), and the grid guide bars (31) are located at the rear side of the interactive data processor (2), and a heat absorption sensing component (4) that cooperates with the interactive data processor (2) is slidably provided at the rear end of the grid guide bars (31); The input end of the cloud data acquisition unit is connected to the cloud server signal, the input end of the talent training parameter setting unit is connected to the signal data port provided on the interactive platform body (1), the input end of the user access unit is connected to the mobile terminal signal, the input end of the time period monitoring unit is connected to the system time signal of the interactive platform body (1), and the input end of the temperature sensing feedback unit is connected to the heat absorption sensing component (4); The output end of the dual-mode control unit is connected to the operation conversion control unit, the output end of the operation conversion control unit is connected to the cultivation interaction processing unit signal, the output end of the access data transmission unit is connected to the mobile terminal signal, the output end of the cultivation data storage unit is connected to the cloud server signal, and the output end of the cultivation data display unit is connected to the display signal set at the front end of the interactive platform body (1).
2. The intelligent data interaction platform for cultivating innovative and entrepreneurial talents according to claim 1, characterized in that: The heat absorption sensing component (4) includes a guide piece (42) slidably arranged on the rear side of the grid guide bar (31), a heat absorption deformation block (41) is fixedly connected between two adjacent guide pieces (42) located on the same side, the two left and right heat absorption deformation blocks (41) are fixedly connected to the processor card block (3) at their ends away from each other, and the two left and right heat absorption deformation blocks (41) are fixedly connected to the sensing patch (43) at their ends close to each other, a heat absorption sensing cavity (44) is provided in the heat absorption deformation block (41), the left and right inner walls of the heat absorption sensing cavity (44) are fixedly connected to deformation triggering columns (45), and a pair of memory deformation bars (46) are fixedly connected between the left and right inner walls of the heat absorption sensing cavity (44), and the two memory deformation bars (46) are respectively located on the upper and lower sides of the deformation triggering column (45).
3. The intelligent data interaction platform for cultivating innovative and entrepreneurial talents according to claim 2 is characterized by: The temperature feedback unit includes a normal operation sensing module, a load operation sensing module and an abnormal operation sensing module, and the normal operation sensing module, the load operation sensing module and the abnormal operation sensing module are arranged in parallel; The output ends of the computing normality sensing module, computing burden sensing module and computing abnormality sensing module are all connected to the cultivation interaction processing unit signal; The input end of the normal operation sensing module is connected to the sensing patch (43) signal, the input end of the burden operation sensing module is connected to the sensing patch (43) and the deformation trigger column (45) signal respectively, and the output end of the abnormal operation sensing module is connected to the deformation trigger column (45) signal.
4. The intelligent data interaction platform for cultivating innovative and entrepreneurial talents according to claim 1 is characterized by: The cultivation interaction processing unit includes a cultivation interaction preprocessing module, the input end of which is connected to a data receiving and classification module, and the input end of which is signal-connected to a cloud data acquisition unit, a talent cultivation parameter setting unit, a user access unit, a temperature sensing feedback unit, and an operation conversion and control unit; The output end of the cultivation interaction preprocessing module is connected to the data update processing module, the access data processing module and the data transmission processing module, and the output ends of the data update processing module and the access data processing module are signal-connected to the data transmission processing module; The output end of the data transmission processing module is connected to the dual-mode control unit, the access data transmission unit, the cultivation data unit and the cultivation data display unit by signal.
5. The intelligent data interaction platform for cultivating innovative and entrepreneurial talents according to claim 4 is characterized by: The cultivation interaction preprocessing module transmits the user access data and the data of the time period monitoring unit to the dual-mode control unit through the data transmission processing module, enabling the dual-mode control unit to analyze the user access trends of each time period, and classify the time periods according to the user access trends, and then transmit the control mode data of the current time period to the operation conversion control unit. The operation conversion control unit transmits the data update and user access operation space required for the current time period to the cultivation interaction preprocessing module through the data receiving and classification module, so that the cultivation interaction preprocessing module can intelligently control and allocate the data processing capacity of the data update processing module and the access data processing module.
6. The intelligent data interaction platform for cultivating innovative and entrepreneurial talents according to claim 1 is characterized by: The input end of the cultivation interaction processing unit is also connected to an access feedback unit, and the input end of the access feedback unit is connected to the mobile terminal signal.
7. The intelligent data interaction platform for cultivating innovative and entrepreneurial talents according to claim 1 is characterized by: The output end of the cultivation interaction processing unit is connected to the feedback improvement unit, the output end of the feedback improvement unit is connected to the self-upgrade control unit and the improvement transmission unit, the output end of the self-upgrade control unit is connected to the cultivation interaction processing unit signal, and the output end of the improvement transmission unit is connected to the display signal arranged at the front end of the interactive platform body (1).
8. The intelligent data interaction platform for cultivating innovative and entrepreneurial talents according to claim 1 is characterized by: The input end of the cultivation interaction processing unit is also connected to an identity authentication unit, and the input end of the identity authentication unit is connected to the mobile terminal signal. The output end of the cultivation interaction processing unit is also connected to an abnormal alarm unit, and the output end of the abnormal alarm unit is respectively connected to the mobile terminal and the alarm signal set on the interactive platform body (1).
Citation Information
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