Distributed information issuing system
The distributed information publishing system solved the problem of information sharing and interoperability across multiple sites in aerospace aerodynamic thermal protection testing systems, enabling accurate transmission and adaptive publishing of information across sites, and ensuring the stable operation of testing equipment and the safety of personnel.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- CHINA ACAD OF AEROSPACE AERODYNAMICS
- Filing Date
- 2025-12-26
- Publication Date
- 2026-05-08
AI Technical Summary
In existing aerospace aerodynamic thermal protection test systems, there are difficulties in information sharing and hazard source monitoring among multiple systems and sites. Due to time and space constraints in the construction of test systems, information sharing is currently lacking.
Design a distributed information publishing system, including an information collection, comprehensive processing and publishing system. The system realizes cross-site information transmission and adaptation publishing through a network transmission system. The information processing unit extracts key information and converts it into the default data format of the target site, and the publishing unit displays it.
It enables precise information transmission and adaptive release between different test sites, ensuring timely access to key information at each site during the test, supporting the stable operation of test equipment and the safety of test personnel.
Smart Images

Figure CN122001908A_ABST
Abstract
Description
Technical Field
[0001] This disclosure relates to the field of communication technology, and in particular to a distributed information publishing system. Background Technology
[0002] Aerodynamic thermal protection test systems are core infrastructure for aircraft design and verification. Through hypersonic wind tunnels, arc heaters, material testing equipment, and advanced data acquisition technologies, they simulate extreme aerodynamic thermal environments, verify thermal protection performance, and drive innovation in aerodynamic thermal protection theory and materials technology. Their development directly impacts the reliability and safety of hypersonic vehicles, deep space probes, and novel thermal protection structures. Currently, due to limitations in construction time and space, there are significant differences in system architecture, software platforms and versions, and physical locations among various systems. Information sharing and hazard monitoring between relatively independent multi-system, multi-site locations remain challenging aspects of current test systems, and research in this area is still lacking. Therefore, there is an urgent need to design a system that can comprehensively process and disseminate information from multiple systems and locations to ensure the safety of on-site test equipment and personnel. Summary of the Invention
[0003] The purpose of this disclosure is to provide a distributed information publishing system to solve the problems existing in the prior art.
[0004] The embodiments of this disclosure adopt the following technical solution: a distributed information publishing system, comprising: an information acquisition system, including acquisition units set at each test site, the acquisition units being used to acquire control information of the corresponding test sites respectively; an information integration and processing system, used to receive control information from all sites and convert control information of a first preset site into publishing information for a second preset site; an information publishing system, including publishing units set at each test site, the publishing units being used to display the publishing information upon receiving it; and a network transmission system, used to transmit the control information and the publishing information.
[0005] In some embodiments, the control information includes at least one of the following: test sensor data, operation instructions, warning information, status monitoring information, and test information.
[0006] In some embodiments, the information processing system includes: an information processing unit, configured to extract key information from the control information of the first preset venue according to a rule base; and an information conversion unit, configured to convert the key information into the default data format of the publishing unit of the second preset venue to form the publishing information.
[0007] In some embodiments, the control information further includes: video information; the information processing unit is further configured to integrate the key information with the video information of the first preset venue to form graphic information; the information conversion unit is further configured to convert the graphic information into the default data format of the publishing unit of the second preset venue to form the publishing information.
[0008] In some embodiments, the information processing system further includes: an information storage unit for storing control information for each test site over time.
[0009] In some embodiments, the information processing unit is further configured to, when the received control information includes warning information, identify the alarm level of the warning information as key information; the information conversion unit is further configured to, when the key information is an alarm level, highlight the alarm information and convert the highlighted alarm information into the default data format of the publishing unit of the second preset site to form the publishing information.
[0010] In some embodiments, the highlighting process includes at least one of the following: adding alarm sound effects, adding flashing effects, highlighting font color or font size.
[0011] In some embodiments, the network transmission system includes multiple distributed network switches and optical fibers for transmitting the control information and publishing information between different test sites and the information processing system, and for routing information according to a predetermined network topology.
[0012] In some embodiments, the network transmission system further includes: a photoelectric conversion module and a network cable; the photoelectric conversion module is used to perform photoelectric conversion of control information and publishing information, and the network cable is used to connect the acquisition units and / or publishing units of different test sites to the distributed network switches of the test sites.
[0013] In some embodiments, the publishing unit is at least one of the following: a monitoring screen, a speaker, or an electronic device with display functionality.
[0014] The beneficial effects of this embodiment are as follows: by uniformly collecting control information of the corresponding test sites through acquisition units set up at each test site, and realizing cross-site transmission of control information of each site through a network transmission system, the control information of the first preset site is transformed into release information adapted to the second preset site through an information integration processing system, and finally displayed through the release units of each site, the problem of information sharing caused by the physical location dispersion and system architecture differences of existing multiple test sites is effectively solved. It realizes the accurate transmission and adaptation release of control information between different sites, ensures the timely acquisition of key information by each site during the test, and thus provides strong support for the stable operation of on-site test equipment and the safety of test personnel. Attached Figure Description
[0015] To more clearly illustrate the technical solutions in one or more embodiments of this specification or in the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments recorded in this specification. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0016] Figure 1 This is a schematic diagram of the structure of the distributed information publishing system in this embodiment of the disclosure; Figure 2 This is a schematic diagram of the structure of the information integration and processing system in the embodiments of this disclosure. Detailed Implementation
[0017] To enable those skilled in the art to better understand the technical solutions in one or more embodiments of this specification, the technical solutions in one or more embodiments of this specification will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this specification, and not all of the embodiments. Based on one or more embodiments of this specification, all other embodiments obtained by those skilled in the art without creative effort should fall within the protection scope of this document.
[0018] To address the problems existing in the prior art, this disclosure provides a distributed information publishing system suitable for various test sites, as shown in the schematic diagram below. Figure 1 As shown, it mainly includes: an information collection system 10, an information processing system 20, an information publishing system 30, and a network transmission system 40.
[0019] Specifically, the information acquisition system 10 mainly includes acquisition units set up at each test site. These acquisition units are used to collect control information for their respective test sites. In this embodiment, the control information includes, but is not limited to, any of the following: test sensor data, operation instructions, warning information, status monitoring information, test information, etc. The acquisition units can communicate with different test equipment and / or test data processing equipment at the test site to obtain the aforementioned control information in real time. It should be noted that test personnel at the test site can independently set the specific types and content of the control information to be reported. The acquisition units can be designed and implemented according to the specific types of control information actually reported. This embodiment does not limit the specific acquisition method and implementation method, as long as real-time acquisition and reporting of control data can be guaranteed.
[0020] In some embodiments, the control information may also include video information collected by real-time monitoring of the test site, and the corresponding acquisition unit may include video acquisition function to realize the transmission of video stream.
[0021] The information processing system 20 is used to receive control information from all sites and convert the control information of the first preset site into the release information of the second preset site. That is, after the control information of all sites is integrated at the information processing system 20, the corresponding control information that needs to be displayed in other test sites can be converted and released according to the pre-set information release requirements. This enables the accurate transmission and adaptation of control information from each site, ensuring that each site can obtain key information in a timely manner during the test, and effectively supporting the smooth operation of test work between test sites and ensuring site safety.
[0022] In this embodiment, the second preset site can be one or more other test sites that have collaborative requirements with the first preset site. For example, the first preset site is the main site responsible for initiating test commands and collecting key sensor data, while the second preset site is the site responsible for equipment support, data backup, and emergency support for the main site. By converting the control information of the main site into release information that can be directly identified by the auxiliary site, cross-site collaborative operation can be achieved to improve the collaborative efficiency between test sites.
[0023] Alternatively, the first preset site is a test area involving extreme environments and hazardous sources, and the second preset site is a test site that may be affected by the surrounding test sites of the first preset site, or a safety monitoring site such as a remote monitoring center or emergency command site. In this case, the control information of the first preset site (such as warning information and status monitoring information) will be converted into release information adapted to the second preset site, so that monitoring personnel can keep abreast of the safety status of high-risk sites and respond quickly to potential dangerous situations that may arise from hazardous sources.
[0024] In some embodiments, the first preset site and the second preset site can also be parallel sites that need to exchange test data. For example, when multiple sites need to carry out the same type or related tests, the test information, operation instructions and other control information of the first preset site are converted and published in the second preset site to realize test data reference and result comparison between different sites and realize information sharing between multiple sites.
[0025] Alternatively, there may be a hierarchical management relationship between the first and second pre-designated sites. For example, the first pre-designated site may be a basic test execution site, while the second pre-designated site may be a higher-level management and decision-making site, such as a project management center or a technical review site. The control information of the basic site (such as test progress and equipment status) is converted into release information that conforms to the management scenario, providing data support for higher-level decision-making and realizing hierarchical information transmission throughout the entire test process.
[0026] It should be noted that the first and second preset sites with an association relationship are not limited to one group. Multiple groups of first and second preset sites can be set according to the information requirements between all preset sites. Furthermore, the number of first and second preset sites in the same group is not unique, and the correspondence between them is not limited to one-to-one, many-to-one, or one-to-many. The specific settings are determined according to the actual situation, and this embodiment does not impose specific restrictions.
[0027] Figure 2 A schematic diagram of the information processing system 20 is shown, which mainly includes an information processing unit 21 and an information conversion unit 22. The information processing unit 21 extracts key information from the control information of the first preset site according to a rule base. This key information refers to the information required by the second preset site. The rule base is set according to the information requirements between the first and second preset sites, including but not limited to field requirement rules for different second preset sites, field extraction rules, and format information to be converted. The rules in this rule base can be managed independently by the test personnel, including but not limited to adding, modifying, deleting, and querying. The information conversion unit 22 converts the key information into the default data format of the publishing unit of the second preset site, forming publishing information for direct display in the second preset site. It should be noted that the information conversion unit 22 should have the ability to recognize and understand the file formats of the control information from each test site and should have conversion rules between different file formats. Furthermore, test personnel can independently configure conversion rules according to the data types of each test site to improve the capabilities of the information conversion unit 22. Typically, the default data format for the release unit at the test site is video or audio, meaning that the content needs to be presented through display or playback to achieve intuitive interaction of site information.
[0028] In some embodiments, when the control information includes video information, the information processing unit 21 is further used to integrate the extracted key information with the video information to form graphic information, and the information conversion unit 22 converts the graphic information into the default data format of the publishing unit of the second preset site to form publishing information, so as to realize the information publishing combined with the actual situation on site, which is more conducive to the second preset site to intuitively obtain information.
[0029] In some embodiments, the information processing system 20 may further include an information storage unit 23, which stores control information for each test site over time, and may also store the release information generated by the information conversion unit 22 synchronously as needed, so as to facilitate the query and retrieval of historical information.
[0030] In the actual process of information integration and processing, warning information generated by each test site should be given special attention by other related sites. Therefore, when the received control information includes warning information, the information processing unit 21 will identify the alarm level of the warning information as key information. The information conversion unit 22, when the key information is the alarm level, will highlight the alarm information and convert the highlighted alarm information into the default data format of the publishing unit of the second preset site to form the published information. The highlighting process implemented in this embodiment includes at least one of the following: adding alarm sound effects, adding flashing effects, highlighting the font color or font size, so that after the second preset site receives the corresponding published information, it can prompt the test personnel of the second preset site to pay attention to the warning information and warning content through published information with different display effects, so as to take corresponding measures or precautions in advance.
[0031] The information publishing system 30 includes a publishing unit set up in each test site. The publishing unit is used to display the published information when it is received. It can be at least one of the following: a monitoring screen, a speaker, or an electronic device with display function, so as to realize the real-time presentation of the specific content of the published information.
[0032] The network transmission system 40 is mainly used for transmitting control and publishing information. It primarily includes multiple distributed network switches and optical fibers. These switches are used to transmit control and publishing information between different test sites and the integrated information processing system, and to route information according to a predetermined network topology, completing the information transfer between the test sites and the integrated information processing system. In this embodiment, the distributed network switches can be configured according to the number of test sites, with one distributed network switch corresponding to each test site. This enables unified transmission of the reported control information and received publishing information. The optical fibers are used for long-distance communication between the test sites and the integrated information processing system. Additionally, the network transmission system 40 includes a photoelectric conversion module and network cables. The photoelectric conversion module performs photoelectric conversion of control and publishing information, converting optical signals to electrical signals when the switches lack photoelectric conversion capabilities. The network cables connect the acquisition units and / or publishing units of different test sites to the distributed network switches at the test sites, facilitating the flow of electrical signals between the test sites and the switches.
[0033] This embodiment collects control information from each test site using acquisition units, transmits the control information across sites via a network transmission system, and then transforms the control information from the first preset site into release information adapted for the second preset site through an information processing system. Finally, the information is displayed through the release units at each site. This effectively solves the problem of information sharing and interoperability caused by the physical location dispersion and system architecture differences of existing multi-test sites, and achieves accurate transmission and adaptation of control information between different sites. It ensures that each site can obtain key information in a timely manner during the test, thereby providing strong support for the stable operation of on-site test equipment and the safety of test personnel.
[0034] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this disclosure, and are not intended to limit them. Although this disclosure has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this disclosure.
Claims
1. A distributed information publishing system, characterized in that, include: The information acquisition system includes an acquisition unit set up at each test site, the acquisition unit being used to acquire control information for the corresponding test site respectively; The information processing system is used to receive control information from all sites and convert the control information of the first preset site into the release information of the second preset site. An information publishing system includes a publishing unit set up at each test site, the publishing unit being used to display the publishing information upon receiving it; A network transmission system is used to transmit the control information and the release information.
2. The distributed information publishing system according to claim 1, characterized in that, The control information includes at least one of the following: test sensor data, operation instructions, warning information, status monitoring information, and test information.
3. The distributed information publishing system according to claim 2, characterized in that, The information processing system includes: The information processing unit is used to extract key information from the control information of the first preset site according to the rule base; The information conversion unit is used to convert the key information into the default data format of the publishing unit of the second preset site to form the publishing information.
4. The distributed information publishing system according to claim 3, characterized in that, The control information also includes: video information; The information processing unit is also used to integrate the key information with the video information of the first preset site to form graphic information; The information conversion unit is further configured to convert the graphic information into the default data format of the publishing unit of the second preset site, thereby forming the published information.
5. The distributed information publishing system according to claim 4, characterized in that, The information processing system also includes: The information storage unit is used to store control information for each test site over time.
6. The distributed information publishing system according to claim 3, characterized in that, The information processing unit is also used to identify the alarm level of the warning information as key information when the received control information includes warning information. The information conversion unit is further configured to, when the key information is an alarm level, highlight the alarm information and convert the highlighted alarm information into the default data format of the publishing unit of the second preset site to form the publishing information.
7. The distributed information publishing system according to claim 6, characterized in that, The highlighted processing includes at least one of the following: adding alarm sound effects, adding flashing effects, and highlighting font color or font size.
8. The distributed information publishing system according to claim 1, characterized in that, The network transmission system includes multiple distributed network switches and optical fibers, used to transmit the control information and release information between different test sites and the information processing system, and to perform information routing according to a predetermined network topology.
9. The distributed information publishing system according to claim 8, characterized in that, The network transmission system further includes: a photoelectric conversion module and a network cable; the photoelectric conversion module is used to perform photoelectric conversion of control information and publishing information, and the network cable is used to connect the acquisition units and / or publishing units of different test sites to the distributed network switch of the test site.
10. The distributed information publishing system according to any one of claims 1 to 9, characterized in that, The publishing unit is at least one of the following: a monitoring screen, a speaker, or an electronic device with display function.