Computer artificial intelligence information filtering system
By introducing a dynamic adaptive mechanism and a multi-dimensional data processing strategy, combined with sliding components and display modules, the problems of dynamic adaptability and display intuitiveness of information filtering systems in the existing technology are solved, and an efficient, accurate and easy-to-use information filtering effect is achieved.
Patent Information
- Application Number
- CN202510755815.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-07
- Publication Date
- 2025-09-16
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing computer artificial intelligence information filtering systems have deficiencies in dynamic adaptability, multi-dimensional data processing capabilities, and intuitive result presentation, resulting in high maintenance costs and poor user experience.
It introduces dynamic adaptive mechanisms, multi-dimensional data processing strategies and visual display functions, conducts in-depth analysis and outputs results through intelligent analysis modules, and combines sliding components and display modules to achieve efficient processing and intuitive display of information.
It improves the system's intelligence level and user experience, reduces maintenance costs, and improves the accuracy and ease of use of information filtering.
Smart Images

Figure CN120653070A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of artificial intelligence technology, and in particular to a computer artificial intelligence information filtering system. Background Art
[0002] With the rapid development of artificial intelligence (AI), information filtering systems are increasingly being used in the computer field. Existing information filtering systems have made progress in improving the efficiency and accuracy of information screening by combining data processing, machine learning, and text parsing technologies. However, these existing technical solutions still have some shortcomings in practical applications, which affect the performance and applicability of the systems.
[0003] After searching, an "artificial intelligence information filtering system for computers" with publication number CN110909256B was disclosed, and the publication date was November 24, 2020. The patent proposes an information filtering system based on positioning codes, which realizes efficient filtering of information through field definition modules, point establishment modules and processing modules. Specifically, it uses positioning codes to update data, avoiding the need for repeated calculations and returning to the beginning of the data. However, this technical solution mainly focuses on the optimization of data structures and lacks adaptive support for dynamic changes in the information filtering process. For example, when the type or format of the information to be filtered changes, the system may need to redefine the field description and positioning code, which increases maintenance costs and complexity. In addition, the solution does not involve the visual display function of the information filtering results, and the user's intuitive understanding of the filtering process and results has certain limitations.
[0004] After searching, a "computer artificial intelligence information filtering system" with the publication number CN110134202B was disclosed, and the publication date was January 13, 2023. This patent proposes an automatic heat dissipation solution for the heat dissipation problem of the information filtering server. By designing the automatic opening and closing mechanism of the heat dissipation port and the display function, the stability of the system and the user experience are improved. However, the core innovation of this technical solution is concentrated on the hardware heat dissipation design, and the optimization and intelligence improvement of the information filtering algorithm itself are relatively limited. In addition, the solution does not fully consider the multi-dimensional data processing capabilities in the information filtering process. For example, the combination of advanced filtering strategies such as semantic analysis and context association may lead to room for improvement in the accuracy and comprehensiveness of the filtering results.
[0005] The above issues demonstrate that existing computer artificial intelligence information filtering systems still have certain deficiencies in terms of dynamic adaptability, multi-dimensional data processing capabilities, and intuitive display of results. Therefore, the present invention provides a novel computer artificial intelligence information filtering system. This system aims to enhance the system's intelligence and user experience by introducing a dynamic adaptive mechanism, multi-dimensional data processing strategies, and visual display capabilities, thereby meeting the demand for efficient, accurate, and easy-to-use systems in the modern information filtering field. Summary of the Invention
[0006] The purpose of the present invention is to provide a computer artificial intelligence information filtering system that, by introducing a dynamic adaptive mechanism, a multi-dimensional data processing strategy, and a visualization display function, can enhance the intelligence level of the system and the user experience, thereby meeting the needs of the modern information filtering field for an efficient, accurate, and easy-to-use system.
[0007] In order to solve the above technical problems, the technical solution adopted by the present invention is: A computer artificial intelligence information filtering system includes a mainframe case with an operation panel on the front. A data input module, an intelligent analysis module, a result output module, and a display module are sequentially arranged in the cavity within the mainframe case from top to bottom. The intelligent analysis module is fixed to each inner wall of the mainframe case cavity and divides the cavity into an upper analysis chamber and a lower display chamber. The data input module and the intelligent analysis module are arranged in the analysis chamber, and the data input module is connected to an interface terminal on one outer wall of the mainframe case via a signal line. The intelligent analysis module is capable of lateral movement within the analysis chamber. The result output module is arranged in the display chamber, and incompletely processed information is re-analyzed by the intelligent analysis module and then transmitted to the result output module.
[0008] A further improvement of the technical solution of the present invention is that the intelligent analysis module includes a first analysis unit and a second analysis unit that cooperate with each other, and the opposite ends of the first analysis unit and the second analysis unit are provided with mutually matching logic channels and data buffers for in-depth analysis of complex information.
[0009] A further improvement of the technical solution of the present invention is that: the first analysis unit includes a first analysis chip and a first sliding assembly, the first sliding assembly is fixedly mounted on the inner wall of the analysis chamber, the first analysis chip is arranged at the power output end of the first sliding assembly, the bottom of the first analysis chip is slidingly connected to the upper surface of the intelligent analysis module, and the first analysis chip slides back and forth on the intelligent analysis module under the action of the first sliding assembly.
[0010] A further improvement of the technical solution of the present invention is that: the second analysis unit includes a second analysis chip and a second sliding assembly, the second sliding assembly is fixedly mounted on the inner wall of the analysis chamber on the side opposite to the first sliding assembly, the second analysis chip is arranged at the power output end of the second sliding assembly, the bottom of the second analysis chip is slidingly connected to the upper surface of the intelligent analysis module, and the second analysis chip slides back and forth on the intelligent analysis module under the action of the second sliding assembly.
[0011] A further improvement of the technical solution of the present invention is that the data input module includes a first receiving component and a second receiving component that cooperate with each other, and the first receiving component and the second receiving component are respectively provided with a data interface and a signal converter that match each other, and the preliminary reception and classification of information are completed through the collaborative work of the two.
[0012] A further improvement of the technical solution of the present invention is that the first receiving component includes a first receiving port and a first signal processor, both ends of the first receiving port are respectively fixed on the inner wall of the main chassis, and the first signal processor is connected to the first receiving port through a signal line.
[0013] A further improvement of the technical solution of the present invention is that the second receiving component includes a second receiving port, a second signal processor and an external interface, the external interface is fixed on the outer wall of one side of the main case, and the two ends of the second receiving port are respectively connected to the inner wall of the main case through signal lines, one end of which passes through the main case and is connected to the external interface, and the second signal processor is connected to the second receiving port through a signal line.
[0014] A further improvement of the technical solution of the present invention is that the result output module includes a frame and a storage unit fixed to each inner wall of the main box cavity, and the storage unit is fixedly mounted on the frame on all sides for storing information processed by the intelligent analysis module.
[0015] A further improvement of the technical solution of the present invention is that the display module includes a display screen, which is installed on an operation panel opened on the front of the main box, and control buttons for adjusting display parameters are provided on the edge of the display screen.
[0016] A further improvement of the technical solution of the present invention is that protective plates are fixed on the top wall of the main box cavity and on both sides of the data input module, and the two protective plates are arranged at an angle to form an import channel that is convenient for accurately importing information.
[0017] Due to the adoption of the above technical solution, the present invention has the following technical advancements compared to the prior art: The present invention provides a computer artificial intelligence information filtering system. Compared to existing information filtering systems, this system incorporates an intelligent analysis module. This allows information not fully processed by the data input module to be further analyzed in depth by the intelligent analysis module, enabling more comprehensive information processing and enhancing the system's intelligence and user experience. Furthermore, by introducing a dynamic adaptive mechanism and multi-dimensional data processing strategy, the system can automatically adjust its parsing logic based on changes in information type, reducing maintenance costs and complexity. Furthermore, the design of the display module allows users to intuitively understand the information filtering process and results, further improving the system's usability. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 This is a schematic diagram of a computer artificial intelligence information filtering system of the present invention.
[0019] In the figure: 1. Main chassis; 2. Operation panel; 3. Data input module; 4. Intelligent analysis module; 5. Result output module; 6. Display module; 7. Interface terminal; 8. First analysis unit; 9. Second analysis unit; 10. Protective plate. DETAILED DESCRIPTION
[0020] The present invention is described in further detail below in conjunction with the embodiments: A computer artificial intelligence information filtering system of the present invention, such as Figure 1 As shown, its structure includes a main chassis 1, an operation panel 2 is provided on the front of the main chassis 1, the interior of the main chassis 1 is a cavity structure, and a data input module 3, an intelligent analysis module 4, a result output module 5 and a display module 6 are arranged in the cavity from top to bottom. The modules work together through signal lines and mechanical connections. An interface terminal 7 is provided on the outer wall of one side of the main chassis 1 for data interaction with external devices. Protective plates 10 are fixed on the top wall of the cavity of the main chassis 1 and on both sides of the data input module 3. The two protective plates 10 are arranged at an angle to form an import channel, which can guide information to enter the data input module 3 accurately, thereby reducing the possibility of information loss or erroneous import.
[0021] The data input module 3 includes a first receiving component and a second receiving component. The first receiving component consists of a first receiving port and a first signal processor. The two ends of the first receiving port are respectively fixed on the inner wall of the main case 1. The first signal processor is connected to the first receiving port through a signal line for performing preliminary processing on the input information. The second receiving component includes a second receiving port, a second signal processor and an external interface. The external interface is fixed on the outer wall of one side of the main case 1. The two ends of the second receiving port are respectively connected to the inner wall of the main case 1 through signal lines, one end of which passes through the main case 1 and is connected to the external interface. The second signal processor is connected to the second receiving port through a signal line. The first receiving component and the second receiving component work together to complete the preliminary reception and classification processing of information.
[0022] The intelligent analysis module 4 is fixed on each inner wall of the cavity of the main chassis 1, dividing the cavity into an upper analysis cavity and a lower display cavity. The intelligent analysis module 4 can move laterally in the analysis cavity to adapt to different information processing needs. The intelligent analysis module 4 includes a first analysis unit 8 and a second analysis unit 9. The first analysis unit 8 is composed of a first analysis chip and a first sliding component. The first sliding component is fixedly installed on the inner wall of the analysis cavity. The first analysis chip is arranged at the power output end of the first sliding component. The bottom of the first analysis chip is slidably connected to the upper surface of the intelligent analysis module 4. The first analysis chip moves forward and backward along the intelligent analysis module 4 under the action of the first sliding component. Sliding, the second analysis unit 9 is composed of a second analysis chip and a second sliding component. The second sliding component is fixedly installed on the inner wall of the analysis chamber on the side opposite to the first sliding component. The second analysis chip is arranged at the power output end of the second sliding component. The bottom of the second analysis chip is slidingly connected to the upper surface of the intelligent analysis module 4. The second analysis chip slides back and forth along the intelligent analysis module 4 under the action of the second sliding component. The first analysis unit 8 and the second analysis unit 9 cooperate with each other through the logic channel and the data buffer. The logic channel is used to transmit analysis instructions, and the data buffer is used to temporarily store data to be analyzed. The two work together to achieve in-depth analysis of complex information.
[0023] The result output module 5 is arranged in the display cavity. The result output module 5 includes a frame and a storage unit. The frame is fixedly mounted on the inner walls of the inner cavity of the main chassis 1. The storage unit is fixedly mounted on the frame on all sides. The storage unit is used to store information processed by the intelligent analysis module 4. The information that has not been fully processed is analyzed again by the intelligent analysis module 4 and transmitted to the result output module 5. The design of the storage unit ensures the integrity and traceability of the information.
[0024] The display module 6 includes a display screen and control buttons. The display screen is installed on the operation panel 2 on the front of the main box 1. Control buttons are provided on the edge of the display screen for adjusting display parameters. The display screen is connected to each module inside the main box 1 through a signal line, and can display the process and results of information filtering in real time. Users can intuitively understand the operating status of the system through the display screen and adjust the display parameters as needed.
[0025] The operation process of this system is as follows: information is transmitted to the second signal processor through the external interface via the second receiving port, and at the same time, another part of the information is transmitted to the first signal processor through the first receiving port. The first signal processor and the second signal processor respectively perform preliminary classification and processing on the information, and the processed information is transmitted to the intelligent analysis module 4. The first parsing unit 8 and the second parsing unit 9 in the intelligent analysis module 4 work together through the logic channel and the data buffer to perform in-depth analysis of the information. During the parsing process, the first parsing chip and the second parsing chip are respectively driven by the first sliding component and the second sliding component to slide back and forth along the intelligent analysis module 4 to improve the parsing efficiency. After the parsing is completed, the information is transmitted to the storage unit in the result output module 5 for storage, and the information that has not been fully processed is returned to the intelligent analysis module 4 for re-parsing. The final processed information is displayed in real time through the display screen. The user can adjust the display parameters through the control button to meet personalized needs. The design of the protective plate 10 ensures that the information will not deviate or be lost during the import process, thereby improving the reliability of the system.
[0026] The various modules of this system are closely connected through signal lines and mechanical structures to form a complete closed-loop system. The data input module 3 is responsible for the initial reception and classification of information, the intelligent analysis module 4 is responsible for the in-depth analysis of information, the result output module 5 is responsible for the storage and output of information, and the display module 6 is responsible for the visual display of information. The collaborative work between the modules ensures that the system can complete the information filtering task efficiently and accurately.
[0027] In order to better enable relevant personnel in this technical field to fully understand and implement the present invention, the specific implementation principle of the present invention is further supplemented below in combination with a specific application scenario.
[0028] In practical applications, this system can be deployed within an enterprise's internal information management system to filter critical information that meets specific criteria from massive data streams. For example, a company might need to filter information related to a specific project from daily emails, documents, and database records, categorizing and storing it for subsequent analysis. The following is a detailed description of the system's operational steps and implementation principles.
[0029] First, the external device transmits the information to be processed to the data input module 3 inside the main chassis 1 through the interface terminal 7. The information is preliminarily received and classified by the first receiving component and the second receiving component respectively. The first receiving port and the first signal processor are responsible for processing structured data, such as tables or database records, while the second receiving port and the second signal processor focus on unstructured data, such as email body or document content. The two groups of receiving components work together to ensure that different types of information can be accurately classified and passed to the intelligent analysis module 4. The design of the protective plate 10 plays a key role in this process. The import channel formed by its inclined setting effectively reduces the loss or incorrect import of information during transmission, thereby improving the reliability of the system.
[0030] Next, the intelligent analysis module 4 performs an in-depth analysis of the classified information. The first analysis unit 8 and the second analysis unit 9 jointly complete the processing of complex information through the cooperation of logical channels and data buffers. Driven by the first sliding component, the first analysis chip slides back and forth along the intelligent analysis module 4, and is mainly responsible for extracting core features in the information, such as keywords or data patterns. At the same time, the second analysis chip slides in the relative direction driven by the second sliding component, focusing on contextual association analysis and semantic understanding. The dynamic movement design of the two analysis units significantly improves the efficiency of information analysis, especially when processing multi-dimensional data, it can quickly locate key information and reduce redundant calculations. In addition, the lateral movement capability of the intelligent analysis module 4 enables it to automatically adjust the analysis range according to changes in the amount of information, thereby adapting to data processing needs of different scales.
[0031] After analysis is complete, the processed information is transmitted to the storage unit in the result output module 5. The storage unit's design ensures information integrity and traceability. Incompletely analyzed information is returned to the intelligent analysis module 4 via a feedback mechanism for further analysis. This closed-loop design effectively prevents information omissions and ensures that all input data is fully processed. Furthermore, the storage unit's frame structure is fixed to the inner walls of the main chassis 1, enhancing system stability and enabling efficient operation even under high loads.
[0032] Finally, the processed information is displayed in real time on the display screen of the operation panel 2 via the display module 6. Users can adjust display parameters, such as the information classification view or the level of detail of the filtered results, using control buttons. The display screen not only displays the results of the information filtering but also provides a visual representation of the filtering process, including the status of the information classification, parsing progress, and storage status. This intuitive display allows users to fully understand the system's operating status and make personalized adjustments based on their actual needs.
[0033] Through the above steps, the system achieves efficient filtering and precise processing of complex information. For example, when processing email data, the first parsing unit 8 can quickly identify the email subject and sender information, while the second parsing unit 9 performs semantic analysis of the email body to determine its relevance to the target project. The collaborative work of these two ensures the accuracy and comprehensiveness of the filtering results. Furthermore, the system's dynamic adaptive mechanism automatically adjusts the parsing logic based on changes in message type, avoiding the need to redefine field descriptions due to changes in message format or type, significantly reducing maintenance costs.
[0034] In summary, the present invention forms a complete closed-loop information filtering process through the close collaboration between various modules. Data input module 3 is responsible for initial data reception and classification, intelligent analysis module 4 is responsible for in-depth analysis, result output module 5 is responsible for storage and feedback, and display module 6 provides visual display. The collaborative operation of these modules not only enhances the intelligence level of the system but also significantly improves the user experience, meeting the demand for efficient, accurate, and easy-to-use systems in the modern information filtering field.
[0035] The above generally describes the present invention in detail. However, it is obvious to those skilled in the art that modifications or improvements may be made based on the present invention. Therefore, modifications or improvements that do not depart from the spirit of the present invention are within the scope of protection of the present invention.
Claims
1. A computer artificial intelligence information filtering system, comprising a main box (1), wherein the front of the main box (1) is provided with an operation panel (2), characterized in that: The cavity inside the main box (1) is provided with a data input module (3), an intelligent analysis module (4), a result output module (5) and a display module (6) in order from top to bottom. The intelligent analysis module (4) is fixed on each inner wall of the cavity of the main box (1). The intelligent analysis module (4) divides the cavity into an upper analysis cavity and a lower display cavity. The data input module (3) and the intelligent analysis module (4) are provided in the analysis cavity, and the data input module (3) is connected to an interface terminal (7) on one side outer wall of the main box (1) through a signal line. The intelligent analysis module (4) can move laterally in the analysis cavity. The result output module (5) is provided in the display cavity. Information that has not been fully processed is analyzed again by the intelligent analysis module (4) and then transmitted to the result output module (5).
2. A computer artificial intelligence information filtering system according to claim 1, characterized in that: The intelligent analysis module (4) comprises a first analysis unit (8) and a second analysis unit (9) that cooperate with each other, and mutually matching logical channels and data buffers are provided at opposite ends of the first analysis unit (8) and the second analysis unit (9).
3. A computer artificial intelligence information filtering system according to claim 2, characterized in that: The first analysis unit (8) includes a first analysis chip and a first sliding assembly. The first sliding assembly is fixedly mounted on the inner wall of the analysis chamber. The first analysis chip is arranged at the power output end of the first sliding assembly. The bottom of the first analysis chip is slidably connected to the upper surface of the intelligent analysis module (4). The first analysis chip slides back and forth on the intelligent analysis module (4) under the action of the first sliding assembly.
4. A computer artificial intelligence information filtering system according to claim 3, characterized in that: The second analysis unit (9) includes a second analysis chip and a second sliding assembly. The second sliding assembly is fixedly mounted on an inner wall of the analysis chamber on a side opposite to the first sliding assembly. The second analysis chip is arranged at a power output end of the second sliding assembly. The bottom of the second analysis chip is slidably connected to the upper surface of the intelligent analysis module (4). The second analysis chip slides back and forth on the intelligent analysis module (4) under the action of the second sliding assembly.
5. The computer artificial intelligence information filtering system according to claim 1, characterized in that: The data input module (3) comprises a first receiving component and a second receiving component that cooperate with each other, and the first receiving component and the second receiving component are respectively provided with a data interface and a signal converter that match each other.
6. A computer artificial intelligence information filtering system according to claim 5, characterized in that: The first receiving component comprises a first receiving port and a first signal processor, the two ends of the first receiving port are respectively fixed on the inner wall of the main box (1), and the first signal processor is connected to the first receiving port via a signal line.
7. A computer artificial intelligence information filtering system according to claim 6, characterized in that: The second receiving component includes a second receiving port, a second signal processor and an external interface, wherein the external interface is fixed on an outer wall of one side of the main chassis (1), and both ends of the second receiving port are connected to the inner wall of the main chassis (1) through signal lines, one end of which passes through the main chassis (1) and is connected to the external interface, and the second signal processor is connected to the second receiving port through a signal line.
8. The computer artificial intelligence information filtering system according to claim 1, characterized in that: Protective plates (10) are fixed on the top wall of the cavity of the main box (1) and on both sides of the data input module (3), respectively. The two protective plates (10) are arranged at an angle to form an introduction channel.
Citation Information
Patent Citations
A computer artificial intelligence information filtering system
CN110134202B
Computer-based artificial intelligence information filtering system
CN110909256B