A real-time based data acquisition system
By employing technologies such as a hyperconverged data platform and an air curtain-type cooling protection mechanism, the real-time performance and reliability issues of the data acquisition system were resolved, enabling rapid retrieval and stable processing of acquired data.
Patent Information
- Application Number
- CN202310979279.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-05
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2043-08-05
AI Technical Summary
Existing data acquisition systems suffer from poor real-time performance and reliability, and are easily affected by power supply and hardware factors, resulting in long data acquisition cycles, frequent interruptions in output aggregation, and reduced data output rate due to the establishment of database indexes.
It adopts a hyper-converged data platform, data acquisition module, big data analysis module, data backup module and security protection module, combined with an air curtain cooling protection mechanism to dissipate heat and protect the data center switches, and utilizes a flexible storage scheduling unit to improve the real-time performance and reliability of data acquisition.
This improved the real-time performance and reliability of data acquisition, reduced the data acquisition cycle, and enhanced the stability and security of data center switches.
Smart Images

Figure CN116991946B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of data acquisition system, and particularly relates to a real-time-based data acquisition system. BACKGROUND
[0002] Data acquisition is a process of collecting, identifying and selecting data sources, and is also a recording process of a digital and electronic scanning system and an encoding process of content and attributes. The data acquisition system comprises a data reporting function module, a visual report function module, a data preprocessing function module, a data review function module, a comprehensive statistical query function module and the like. Through data acquisition and analysis, the data acquisition system realizes modernization of relevant business work management, standardization of procedures, scientific decision-making and networked services.
[0003] The data acquisition system mainly comprises a data processing center, a data acquisition module, a data management processing system and the like hardware and software. In the data acquisition process, a plurality of data acquisition modules are mainly used to collect and output and summarize data. However, the data acquisition process is easily affected by the power supply and cable connection of the data acquisition module and the like hardware factors, resulting in a long data acquisition cycle, easy interruption of data output and summary, poor real-time performance of the data acquisition system, and the need to index the data in the database for real-time query, which reduces the data output and summary rate and the real-time performance of data acquisition and query of the data acquisition system, and reduces the data acquisition reliability of the data acquisition system.
[0004] Therefore, in view of the above technical problems, it is necessary to provide a real-time-based data acquisition system. SUMMARY
[0005] The application aims to provide a real-time-based data acquisition system to solve the problems of poor real-time performance and reliability of the data acquisition system.
[0006] To achieve the above-mentioned purpose, the technical scheme provided by an embodiment of the application is as follows.
[0007] A real-time-based data acquisition system comprises an ultra-converged data platform, a data acquisition module, a big data analysis module, a data backup module and a security protection module.
[0008] The ultra-converged data platform is composed of an ultra-converged platform software and a data center switch, a PoE optical fiber transceiver and an asteroid switch hardware.
[0009] The data collection module is used for data collection and convergence of the hyper-converged platform software, and comprises a data convergence library unit, a standard management unit and a graphical analysis management unit.
[0010] The big data analysis module is used for data analysis of the data convergence library unit, and comprises a model construction unit, a multifunctional data analysis unit, a flexible storage scheduling unit and a data life cycle management unit.
[0011] The data backup module is used for backup processing of the data convergence library, and comprises a real-time backup unit, an off-site backup unit and a flexible backup unit.
[0012] The security protection module is used for data security protection of the hyper-converged platform software, and comprises a security detection and repair unit, a penetration testing service unit, a security reinforcement unit and a website security detection service unit.
[0013] Further, the hyper-converged platform software comprises a distributed storage system, a high-speed network channel and a unified management platform, and the data center switch and the PoE optical fiber transceiver are authenticated by using a secret key.
[0014] Further, the model construction unit is used for constructing analysis models and algorithm models, the flexible storage scheduling unit sets cold and hot data indexes according to access frequency, and the real-time backup unit reads database logs by using real-time data stream technology and performs real-time analysis and backup.
[0015] Further, the data center switch is provided with an air curtain type refrigeration protection mechanism outside. The air curtain type refrigeration protection mechanism is convenient for heat dissipation and refrigeration protection of the data center switch, reduces the overheating of the data center switch during data processing, and improves the data processing stability of the data center switch. The air curtain type refrigeration protection mechanism comprises a lower flow guide limiting seat. A lower cooling flow guide cavity is formed by cooperation of the lower flow guide limiting seat and a gas guide liquid storage plate. A fan is connected below the lower flow guide limiting seat. The operation of the fan is controlled to pressurize and transport gas in the lower cooling flow guide cavity, so that a refrigeration air curtain is formed outside the data center switch. A plurality of uniformly distributed positive pressure air curtain spray plates are connected to one side of the lower flow guide limiting seat away from the fan. An upper flow guide limiting seat is arranged above the data center switch. The upper flow guide limiting seat plays a role of assembly limiting and air flow guiding for the plurality of negative pressure air curtain spray plates. Meanwhile, an upper cooling flow guide cavity is formed by cooperation of the upper flow guide limiting seat and the gas guide liquid storage plate.
[0016] The lower side of the upper flow guide limiting seat is connected with a plurality of uniformly distributed negative pressure air curtain spray plates, and the positive pressure air curtain spray plates are matched with the negative pressure air curtain spray plates. The positive pressure air curtain spray plates and the negative pressure air curtain spray plates are matched with each other to form a refrigeration air curtain outside the data center switch, so that the data center switch is cooled without contact, and the data center switch is not affected. The liquid cooling auxiliary limiting mechanism is arranged between the data center switch and the air curtain type refrigeration protection mechanism. The liquid cooling auxiliary limiting mechanism plays a role in assembling and limiting the data center switch. At the same time, the liquid cooling auxiliary limiting mechanism cools and dissipates heat for the refrigeration air curtain formed outside the data center switch. The outer side of the air curtain type refrigeration protection mechanism is provided with a semiconductor refrigeration mechanism. The semiconductor refrigeration mechanism assists in dissipating heat for the refrigeration air curtain, thereby improving the refrigeration protection effect of the data center switch.
[0017] Further, the lower flow guide limiting seat and the upper flow guide limiting seat are hollow. The lower flow guide limiting seat and the upper flow guide limiting seat have a gas guiding function. The lower side of the lower flow guide limiting seat is connected with a plurality of uniformly distributed supporting legs. The supporting legs support and limit the lower flow guide limiting seat. The upper side of the upper flow guide limiting seat is connected with a negative pressure fan. The operation of the negative pressure fan assists in guiding the air in the upper flow guide limiting seat, thereby improving the stability of the refrigeration air curtain. The fans and the negative pressure fan are connected with dustproof nets away from the data center switch. The dustproof nets protect the fans and the negative pressure fan from dust.
[0018] Further, the plurality of positive pressure air curtain spray plates and negative pressure air curtain spray plates are connected with heat dissipation exhaust plates on the side close to the data center switch. The heat dissipation exhaust plates assist in guiding the gas of the fans and the negative pressure air curtain spray plates, thereby improving the refrigeration protection effect of the refrigeration gas on the data center switch. The heat dissipation exhaust plates are provided with a gas guide partition plate. The gas guide partition plate controls the conduction state of the heat dissipation exhaust plate. At the same time, the angle of the heat dissipation exhaust plate can be adjusted by adjusting the angle of the gas guide partition plate. The gas guide partition plate is fixedly connected with a limiting rotating shaft. The limiting rotating shaft supports and fixes the gas guide partition plate and drives the rotation of the gas guide partition plate. The limiting rotating shaft is fixedly connected with rotating end heads at both ends. The limiting rotating shaft is driven to rotate by applying a force to the rotating end heads, thereby rotating and controlling the heat dissipation exhaust plate.
[0019] Further, the liquid cooling auxiliary limiting mechanism comprises a pair of liquid cooling support plates, and the pair of liquid cooling support plates are in contact with the data center switch. The pair of liquid cooling support plates can support and limit the data center switch and assist in cooling. The side away from the data center switch of the pair of liquid cooling support plates is provided with a gas guide and liquid storage plate, and the gas guide and liquid storage plate is fixedly connected with the lower flow limiting seat and the positive pressure air curtain spray plate. The gas guide and liquid storage plate can store and cool the refrigerant. At the same time, the gas guide and liquid storage plate can guide the air flow of the lower flow limiting seat and the upper flow limiting seat.
[0020] Further, a plurality of groups of assembly fin plates are connected between the liquid cooling support plate and the gas guide and liquid storage plate, and the assembly fin plates are matched with the heat dissipation exhaust plate. The plurality of groups of assembly fin plates can support and limit the liquid cooling support plate and the gas guide and liquid storage plate. At the same time, the refrigerant in the liquid cooling support plate can be conveyed to the gas guide and liquid storage plate along the assembly fin plates, so that the refrigerant can be circulated to cool and protect the data center switch. The side away from the assembly fin plate of the gas guide and liquid storage plate is provided with a circulating pump, and the circulating pump is in communication with the gas guide and liquid storage plate. The circulation of the refrigerant in the liquid cooling support plate can be controlled by controlling the operation of the circulating pump. The two sides of the circulating pump are connected with heat exchange pipes, and the heat exchange pipes are matched with the fan and the negative pressure air curtain spray plate. The refrigerant in the heat exchange pipes can be circulated to cool and dissipate heat of the air in the lower flow limiting seat and the upper flow limiting seat, thereby improving the effect of cooling and protecting the data center switch.
[0021] Further, the semiconductor refrigeration mechanism comprises a plurality of groups of semiconductor refrigeration pieces, and the plurality of groups of semiconductor refrigeration pieces are arranged outside the lower flow limiting seat and the upper flow limiting seat. The plurality of groups of semiconductor refrigeration pieces can assist in cooling and dissipating heat of the lower flow limiting seat and the upper flow limiting seat by controlling the operation of the plurality of groups of semiconductor refrigeration pieces, thereby improving the effect of cooling and protecting the data center switch. The outside of the plurality of groups of semiconductor refrigeration pieces is provided with a liquid cooling protection plate. The plurality of groups of liquid cooling protection plates can cool and protect the semiconductor refrigeration pieces. At the same time, the liquid cooling protection plate can prevent the semiconductor refrigeration pieces from causing damage to the health of the operator during use. The plurality of groups of semiconductor refrigeration pieces are connected with a circulation guide pipe and a circulation connection pipe. The circulation guide pipe and the circulation connection pipe can connect the plurality of groups of semiconductor refrigeration pieces, so that the refrigerant can be circulated and flowed in the plurality of groups of semiconductor refrigeration pieces under the action of the circulation guide pipe and the circulation connection pipe.
[0022] Furthermore, a circulating booster pump is provided on the upper flow guide limiting seat. The operation of the circulating booster pump is controlled to extract and pressurize the refrigerant within the thermoelectric cooler. A liquid extraction pipe connects the circulating booster pump and the thermoelectric cooler, facilitating the extraction of refrigerant from the thermoelectric cooler. A drain pipe is connected to the side of the circulating booster pump away from the liquid extraction pipe. The drain pipe connects the circulating booster pump and the liquid extraction pipe.
[0023] Compared with the prior art, the present invention has the following advantages:
[0024] This invention enables real-time data acquisition and processing by employing a hyper-converged data platform software and data center switch hardware. By setting up a flexible storage scheduling unit, data can be retrieved quickly, thus improving the real-time performance and reliability of the data acquisition system.
[0025] Meanwhile, by setting up an air curtain-type cooling protection mechanism for the data center switches, cooling protection can be provided for the data center switches, improving the stability of data acquisition and processing. Attached Figure Description
[0026] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0027] Figure 1 This is a functional diagram of a real-time data acquisition system according to an embodiment of the present invention;
[0028] Figure 2 This is a functional diagram of the hyperconverged platform software in one embodiment of the present invention;
[0029] Figure 3 This is a perspective view of a data center switch according to an embodiment of the present invention;
[0030] Figure 4 for Figure 3 Schematic diagram of the structure at point A in the middle;
[0031] Figure 5 This is a cross-sectional view of a data center switch according to an embodiment of the present invention;
[0032] Figure 6 for Figure 5 Schematic diagram of the structure at point B;
[0033] Figure 7 forFigure 5 Structure schematic diagram at C;
[0034] Figure 8 For Figure 5 Structure schematic diagram at D;
[0035] Figure 9 For Figure 5 Structure schematic diagram at E;
[0036] Figure 10 For Figure 5 Structure schematic diagram at F.
[0037] In the figure: 1. Data center switch, 2. Air curtain refrigeration protection mechanism, 201. Lower flow guide limiting seat, 202. Fan, 203. Positive pressure air curtain spray plate, 204. Upper flow guide limiting seat, 205. Negative pressure air curtain spray plate, 206. Support foot, 207. Negative pressure fan, 208. Dustproof net, 209. Heat dissipation exhaust plate, 210. Air guide partition plate, 211. Limiting rotating shaft, 212. Rotating end, 3. Liquid cooling auxiliary limiting mechanism, 301. Liquid cooling support plate, 302. Air guide liquid storage plate, 303. Assembly fin plate, 304. Circulating pump, 305. Heat exchange pipe, 4. Semiconductor refrigeration mechanism, 401. Semiconductor refrigeration sheet, 402. Liquid cooling protection plate, 403. Circulation guide pipe, 404. Circulation connecting pipe, 405. Circulation booster pump, 406. Liquid suction pipe, 407. Liquid discharge pipe. DETAILED DESCRIPTION
[0038] The present application will be described in detail below with reference to the various embodiments shown in the drawings. However, these embodiments do not limit the present application, and the changes made by those of ordinary skill in the art in structure, method or function based on these embodiments are included in the protection scope of the present application.
[0039] The present application discloses a real-time-based data acquisition system, as shown in Figures 1-10 , including a hyper-converged data platform, a data acquisition module, a big data analysis module, a data backup module and a security protection module.
[0040] As shown in Figures 1-2 , the hyper-converged data platform is composed of hyper-converged platform software and data center switch 1, PoE optical fiber transceiver and asteroid switch hardware.
[0041] Specifically, the hyper-converged data platform is based on hardware servers to maximize the scalability of data center capacity and data availability. The hyper-converged architecture takes virtual machines as the core to improve the computing performance and storage space of the cluster, and has the advantages of simplicity, efficiency, high performance, easy deployment, etc. In terms of cost control and risk prevention, there is no need to purchase servers and storage separately, which saves a lot of cabinet space and consumes less power. The software and hardware used by the system have unified technical interfaces, and there is no resource contention problem in the virtualization environment, so resources can be flexibly allocated, which is convenient and fast. Under the hyper-converged architecture mode, the virtual machines and storage space used by users are built by software, which keeps the underlying physical devices isolated from users and realizes the complete fusion of hardware resources and virtualization platforms. Users can add nodes in a stacked form to expand the capacity of the hyper-converged architecture cluster.
[0042] Referring to Figures 1-2 As shown, the hyper-converged platform software includes a distributed storage system, a high-speed network channel, and a unified management platform, the data center switch 1 and the PoE fiber transceiver are authenticated by a secret key.
[0043] Specifically, the high-speed network channel is a GE / 10GE Ethernet switch or an Infiniband fiber switch that provides scalable and highly available network channels for distributed computing and storage clusters.
[0044] Referring to Figures 1-2 As shown, the unified management platform is used to provide workload adjacency, redundancy, failover, management, and containerization.
[0045] Referring to Figures 1-2 As shown, the data collection module is used to collect and aggregate data for the hyper-converged platform software, and the data collection module includes a data aggregation library unit, a standard management unit, and a graphical analysis management unit. The data aggregation library unit supports data synchronization between relational databases, big data storage, unstructured storage, and NoSql databases. The standard management unit is used to perform various basic operations such as adding, deleting, modifying, querying, publishing, and auditing data modules.
[0046] Specifically, the data aggregation library unit supports data synchronization between relational databases, big data storage, unstructured storage, and NoSql databases, and supports domestic databases. At the same time, it supports batch offline full / incremental synchronization, supports real-time synchronization of single tables or entire databases, supports ETL, and supports database and table synchronization.
[0047] Referring to Figures 1-2As shown, the graphical analysis management unit is used to provide graphical metadata-based analysis and advanced application analysis. Starting from a certain entity, the blood analysis is performed, and the processing process is traced back to the data source interface. The data source and processing process are quickly traced back, and the influence analysis can grasp the mutual influence between the metadata.
[0048] Reference Figures 1-2 As shown, the big data analysis module is used for data analysis on the data aggregation library unit, and the big data analysis module includes a model construction unit, a multifunctional data analysis unit, a flexible storage scheduling unit, and a data life cycle management unit.
[0049] Specifically, the model construction unit is based on the RBF, DLM, and intelligent block selection based on resource utilization.
[0050] Reference Figures 1-2 As shown, the data backup module is used for backup processing of the data aggregation library, and the data backup module includes a real-time backup unit, an off-site backup unit, and a flexible backup unit.
[0051] Specifically, the real-time backup unit is used for real-time capture of log memory, and the RPO reaches seconds; the DBS reads the database log and performs real-time analysis by using the real-time data stream technology, and then backs up to the cloud storage to realize incremental backup of the database. Generally, the DBS can control the delay of incremental backup within seconds, and the delay time will be different according to the actual network environment.
[0052] Reference Figures 1-2 As shown, the off-site backup unit is used to improve the data protection level.
[0053] Reference Figures 1-2 As shown, the security protection module is used for data security protection of the hyper-converged platform software, and the security protection module includes a security detection and repair unit, a penetration testing service unit, a security reinforcement unit, and a website security detection service unit.
[0054] The security detection and repair unit is used for regular inspection and policy optimization of the network system, network security evaluation inspection, daily monitoring and operation, security inspection, and technical support services, to improve the reliability and availability of the device; timely and effective technical treatment is provided for the problems found, to reduce the impact of faults on business; the network security device is regularly analyzed to find out the security vulnerabilities and hidden dangers of the network system, and a solution is proposed to assist customers to complete the rectification and repair.
[0055] Specifically, the penetration testing service unit is a complete simulation of the attack techniques and vulnerability discovery techniques that hackers may use to deeply probe the security of the target system, find the weak links of the system, and find the threat vulnerabilities in the information security defense system.
[0056] Referring to Figures 1-2 As shown, the security reinforcement unit refers to the system security configuration standards of domestic and international authorities, and combines the actual situation of the user information system. Under the premise of user permission, the security reinforcement unit reinforces the vulnerable systems of the network server, network equipment, workstation, etc. of the network. The security reinforcement unit establishes a security guarantee baseline for the user, builds an information system security dam, enhances the ability of the user information system to resist attacks, reduces the overall security risk of the system, and comprehensively resists intrusion from the outside and the inside, 7x24 real-time protection of business security. The security reinforcement unit improves the security protection level of the information system and reduces the occurrence of security incidents.
[0057] Referring to Figures 3-4 As shown, the outer side of the data center switch 1 is provided with an air curtain type refrigeration protection mechanism 2. The air curtain type refrigeration protection mechanism 2 can play a role in heat dissipation and refrigeration protection for the data center switch 1, reducing the overheating of the data center switch 1 during data processing and improving the data processing stability of the data center switch 1. At the same time, the air curtain type refrigeration protection mechanism 2 can also play a role in dust removal and dehumidification protection for the data center switch 1.
[0058] Referring to Figures 3-4 As shown, the air curtain type refrigeration protection mechanism 2 includes a lower flow guiding limiting seat 201. The lower flow guiding limiting seat 201 and the gas guiding and liquid storing plate 302 form a lower cooling flow guiding cavity. The lower side of the lower flow guiding limiting seat 201 is connected with a fan 202. The operation of the fan 202 can be controlled to conduct gas pressurization and delivery in the lower cooling flow guiding cavity, so as to form a refrigeration air curtain outside the data center switch 1.
[0059] Referring to Figures 3-9 As shown, the side of the lower flow guiding limiting seat 201 away from the fan 202 is connected with a plurality of uniformly distributed positive pressure air curtain spray plates 203, and the upper side of the data center switch 1 is provided with an upper flow guiding limiting seat 204. The upper flow guiding limiting seat 204 plays a role in assembly limiting and airflow guiding for a plurality of negative pressure air curtain spray plates 205. At the same time, the upper flow guiding limiting seat 204 and the gas guiding and liquid storing plate 302 form an upper cooling flow guiding cavity.
[0060] Referring to Figures 3-9 As shown, the lower side of the upper flow guiding limiting seat 204 is connected with a plurality of uniformly distributed negative pressure air curtain spray plates 205, and the positive pressure air curtain spray plates 203 and the negative pressure air curtain spray plates 205 are matched. The positive pressure air curtain spray plates 203 and the negative pressure air curtain spray plates 205 can form a refrigeration air curtain outside the data center switch 1, so as to conduct non-contact refrigeration for the data center switch 1 without causing adverse effects on the data center switch 1.
[0061] Specifically, the lower air guide limiting seat 201 and the upper air guide limiting seat 204 are hollow. The lower air guide limiting seat 201 and the upper air guide limiting seat 204 have the air guide function.
[0062] Referring to Figure 3 As shown, the lower air guide limiting seat 201 is connected with a plurality of support feet 206 which are evenly distributed. The support feet 206 support the lower air guide limiting seat 201.
[0063] Referring to Figures 5-10 As shown, the upper air guide limiting seat 204 is connected with a negative pressure fan 207. The negative pressure fan 207 is controlled to assist the air in the upper air guide limiting seat 204 to be discharged, thereby improving the stability of the refrigeration air curtain. The fan 202 and the negative pressure fan 207 are connected with dustproof nets 208 away from the side of the data center switch 1. The dustproof nets 208 protect the fan 202 and the negative pressure fan 207 from dust.
[0064] Referring to Figures 5-8 As shown, the plurality of positive pressure air curtain spray plates 203 and the negative pressure air curtain spray plates 205 are connected with heat dissipation exhaust plates 209 close to the side of the data center switch 1. The heat dissipation exhaust plates 209 assist the air of the fan 202 and the negative pressure air curtain spray plates 205 to be discharged, thereby improving the refrigeration protection effect of the refrigeration air on the data center switch 1.
[0065] Referring to Figures 5-8 As shown, the heat dissipation exhaust plate 209 is provided with a gas guide partition plate 210. The gas guide partition plate 210 controls the conduction state of the heat dissipation exhaust plate 209. At the same time, the angle of the heat dissipation exhaust plate 209 can be adjusted by adjusting the angle of the gas guide partition plate 210.
[0066] Referring to Figures 5-8 As shown, the gas guide partition plate 210 is fixedly connected with a limiting rotating shaft 211. The limiting rotating shaft 211 supports and fixes the gas guide partition plate 210 and drives the rotation of the gas guide partition plate 210.
[0067] Referring to Figures 3-4 As shown, the limiting rotating shaft 211 is fixedly connected with rotating end heads 212 at both ends. The limiting rotating shaft 211 is driven to rotate by applying force to the rotating end heads 212, so as to control the rotation of the heat dissipation exhaust plate 209.
[0068] Referring to Figures 3-6As shown, the data center switch 1 and the air curtain refrigeration protection mechanism 2 are provided with a liquid cooling auxiliary limiting mechanism 3. The liquid cooling auxiliary limiting mechanism 3 plays a role in assembling and limiting the data center switch 1. At the same time, the liquid cooling auxiliary limiting mechanism 3 cools and dissipates heat for the refrigeration air curtain formed outside the data center switch 1.
[0069] Reference Figures 5-7 As shown, the liquid cooling auxiliary limiting mechanism 3 includes a pair of liquid cooling support plates 301, which are in contact with the data center switch 1. The pair of liquid cooling support plates 301 play a role in supporting, limiting and assisting cooling the data center switch 1.
[0070] Reference Figures 5-7 As shown, one side of the pair of liquid cooling support plates 301 away from the data center switch 1 is provided with a gas guide and liquid storage plate 302, and the pair of gas guide and liquid storage plates 302 are fixedly connected with the lower flow limiting seat 201 and the positive pressure air curtain spray plate 203, respectively. The gas guide and liquid storage plate 302 plays a role in storing and cooling the refrigeration liquid. At the same time, the gas guide and liquid storage plate 302 plays a role in guiding the air flow of the lower flow limiting seat 201 and the upper flow limiting seat 204.
[0071] Reference Figures 5-7 As shown, a plurality of groups of assembly fin plates 303 are connected between the liquid cooling support plates 301 and the gas guide and liquid storage plates 302, and the assembly fin plates 303 are matched with the heat dissipation exhaust plate 209. The plurality of groups of assembly fin plates 303 play a role in supporting and limiting the liquid cooling support plates 301 and the gas guide and liquid storage plates 302. At the same time, it is convenient for the refrigeration liquid in the liquid cooling support plate 301 to be transported to the gas guide and liquid storage plate 302 along the assembly fin plate 303. Thus, the refrigeration liquid can be circulated to refrigerate and protect the data center switch 1.
[0072] Reference Figures 5-7 As shown, the gas guide and liquid storage plate 302 away from the assembly fin plate 303 is provided with a circulating pump 304, and the circulating pump 304 is in communication with the gas guide and liquid storage plate 302. The operation of the circulating pump 304 controls the circulation process of the refrigeration liquid in the liquid cooling support plate 301.
[0073] Reference Figures 5-7 As shown, the circulating pump 304 is connected with a heat exchange pipe 305 on both sides, and the heat exchange pipe 305 is matched with the fan 202 and the negative pressure air curtain spray plate 205. The refrigeration liquid flows through the heat exchange pipe 305 to refrigerate and dissipate heat for the gas in the lower flow limiting seat 201 and the upper flow limiting seat 204, thereby improving the refrigeration protection effect of the data center switch 1.
[0074] Reference Figures 5-10As shown, the outer side of the air curtain refrigeration protection mechanism 2 is provided with a semiconductor refrigeration mechanism 4. The semiconductor refrigeration mechanism 4 plays an auxiliary heat dissipation role for the refrigeration air curtain, thereby improving the refrigeration protection effect of the data center switch 1.
[0075] Reference Figures 5-10 As shown, the semiconductor refrigeration mechanism 4 includes a plurality of semiconductor refrigeration pieces 401, and the plurality of semiconductor refrigeration pieces 401 are respectively arranged on the outer sides of the lower flow limiting seat 201 and the upper flow limiting seat 204. The operation of the plurality of semiconductor refrigeration pieces 401 can be controlled to assist in refrigeration and heat dissipation of the lower flow limiting seat 201 and the upper flow limiting seat 204, thereby improving the refrigeration protection effect of the data center switch 1.
[0076] Reference Figures 5-10 As shown, the outer side of the plurality of semiconductor refrigeration pieces 401 is provided with a liquid cooling protection plate 402. The plurality of liquid cooling protection plates 402 can be used to dissipate heat and protect the semiconductor refrigeration pieces 401. At the same time, the liquid cooling protection plate 402 can also play a role in preventing burns on the semiconductor refrigeration pieces 401, thereby avoiding damage to the health of the operator during use.
[0077] Reference Figures 5-10 As shown, the plurality of semiconductor refrigeration pieces 401 are connected by a circulating guide pipe 403 and a circulating connection pipe 404. The circulating guide pipe 403 and the circulating connection pipe 404 can be used to connect the plurality of semiconductor refrigeration pieces 401, so that the refrigeration liquid can circulate in the plurality of semiconductor refrigeration pieces 401 under the action of the circulating guide pipe 403 and the circulating connection pipe 404.
[0078] Reference Figures 5-10 As shown, the upper flow limiting seat 204 is provided with a circulating booster pump 405. The circulating booster pump 405 can be used to extract and pressurize the refrigeration liquid in the semiconductor refrigeration piece 401.
[0079] Reference Figures 5-10 As shown, the circulating booster pump 405 and the semiconductor refrigeration piece 401 are connected by a liquid extraction pipe 406. The liquid extraction pipe 406 can be used to connect the circulating booster pump 405 and the semiconductor refrigeration piece 401, thereby facilitating the extraction of the refrigeration liquid in the semiconductor refrigeration piece 401.
[0080] Reference Figures 5-10 As shown, the side of the circulating booster pump 405 away from the liquid extraction pipe 406 is connected with a liquid discharge pipe 407. The liquid discharge pipe 407 can be used to connect the circulating booster pump 405 and the liquid extraction pipe 406.
[0081] Specifically, when the data center switch 1 is in data collection processing, the air in the lower air guiding cooling cavity can be accelerated and transported under the action of the fan 202 by controlling the operation of the fan 202, and the high-speed airflow generated in the operation process of the fan 202 is guided by the air guiding and liquid storage plate 302. At the same time, the refrigerant liquid stored in the air guiding and liquid storage plate 302 can be used for refrigeration treatment of the high-speed airflow generated in the operation process of the fan 202, and the refrigerated high-speed airflow is sprayed out along the positive pressure air curtain spray plate 203.
[0082] At the same time, the air in the upper air guiding and limiting seat 204 is accelerated and guided out by controlling the operation of the negative pressure fan 207, and the refrigeration air curtain is formed around the data center switch 1 by the cooperation of the positive pressure air curtain spray plate 203 and the negative pressure air curtain spray plate 205, and the data center switch 1 is protected by the non-contact refrigeration and heat dissipation of the refrigeration air curtain. Compared with the traditional liquid cooling immersion refrigeration and air cooling, the air curtain refrigeration protection will not have adverse effects on the use of the data center switch 1.
[0083] In addition, the refrigerant liquid in the air guiding and liquid storage plate 302 can be pressurized and extracted by controlling the operation of the circulating pump 304, and the gas in the lower air guiding and limiting seat 201 and the upper air guiding and limiting seat 204 is assisted to be refrigerated by the refrigerant liquid flowing through the heat exchange pipe 305. And the refrigerant liquid can flow in the liquid cooling support plate 301, the air guiding and liquid storage plate 302, the assembled fin plate 303 and the heat exchange pipe 305 under the action of the circulating pump 304, and the data center switch 1 is assisted to be refrigerated and cooled by the refrigerant liquid flowing through the liquid cooling support plate 301.
[0084] Among them, the positive pressure air curtain spray plate 203 and the negative pressure air curtain spray plate 205 can assist the refrigeration gas to be guided by the heat dissipation exhaust plate 209 during the transportation of the refrigeration gas, and the data center switch 1 and the assembled fin plate 303 can be assisted to be refrigerated and cooled by the refrigeration gas sprayed out by the heat dissipation exhaust plate 209, which improves the effect of refrigeration and heat dissipation protection of the data center switch 1.
[0085] In addition, the lower air guiding and limiting seat 201 and the upper air guiding and limiting seat 204 can be assisted to be refrigerated by controlling the operation of the plurality of semiconductor refrigeration pieces 401, thereby improving the effect of refrigeration and heat dissipation protection of the data center switch 1.
[0086] It will be obvious to a person skilled in the art that the application is not limited to the details of the foregoing exemplary embodiments and can be implemented in other concrete forms without departing from the spirit or essential characteristics of the application. The embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the application being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. No reference signs in the claims should be considered as limiting the scope of the claims to the identity of the reference signs therein.
[0087] Furthermore, it should be understood that, although the present specification describes exemplary embodiments, not necessarily every embodiment contains only one independent technical solution, and the present specification is described in this way only for the sake of clarity, and a person skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that a person skilled in the art can understand.
Claims
1. A real-time based data acquisition system, characterized by, Include: Superfusion data platform, the superfusion data platform is composed of superfusion platform software and data center switch, PoE fiber transceiver and asteroid switch hardware; Data acquisition module for data acquisition of superfusion platform software, the data acquisition module includes data aggregation library unit, standard management unit, graphical analysis management unit, the data aggregation library unit supports relational database, big data storage, unstructured storage, data synchronization between NoSql databases, the standard management unit is used for standard increase, delete, change, search, release, audit various basic operations of data module; Big data analysis module for data analysis of data aggregation library unit, the big data analysis module includes model building unit, multifunctional data analysis unit, flexible storage scheduling unit, data life cycle management unit; Data backup module for backup processing of data aggregation library, the data backup module includes real-time backup unit, off-site backup unit and flexible backup unit; Security protection module for data security protection of superfusion platform software, the security protection module includes security detection repair unit, penetration testing service unit, security reinforcement unit and website security detection service unit; The outer side of the data center switch is provided with an air curtain type refrigeration protection mechanism, the air curtain type refrigeration protection mechanism includes a lower flow guide limiting seat, a fan is connected below the lower flow guide limiting seat, a plurality of uniformly distributed positive pressure air curtain spray plates are connected on the side of the lower flow guide limiting seat away from the fan, an upper flow guide limiting seat is arranged above the data center switch, a plurality of uniformly distributed negative pressure air curtain spray plates are connected below the upper flow guide limiting seat, the positive pressure air curtain spray plate is matched with the negative pressure air curtain spray plate, a liquid cooling auxiliary limiting mechanism is arranged between the data center switch and the air curtain type refrigeration protection mechanism, and a semiconductor refrigeration mechanism is arranged outside the air curtain type refrigeration protection mechanism; A plurality of positive pressure air curtain spray plates and negative pressure air curtain spray plates are connected with heat dissipation exhaust plates on the side close to the data center switch, a gas guide partition plate is arranged in the heat dissipation exhaust plate, a limiting shaft is fixedly connected in the gas guide partition plate, and rotating end heads are fixedly connected at both ends of the limiting shaft; The liquid cooling auxiliary limiting mechanism includes a pair of liquid cooling support plates, the liquid cooling support plates are in contact with the data center switch, and the liquid cooling support plates are provided with gas guide liquid storage plates on the side away from the data center switch.
2. A real-time based data acquisition system as claimed in claim 1, wherein, The superfusion platform software includes a distributed storage system, a high-speed network channel and a unified management platform, and the data center switch and the PoE fiber transceiver are authenticated by using a secret key.
3. A real-time based data acquisition system as claimed in claim 1 wherein, The model building unit is used for building analysis model and algorithm model, the flexible storage scheduling unit sets cold and hot data index according to access frequency, and the real-time backup unit reads database log by using real-time data stream technology and performs real-time analysis and backup.
4. The real-time based data acquisition system of claim 1, wherein, The lower and upper flow guide limit seats are hollow, the lower flow guide limit seat is connected with multiple evenly distributed supporting legs below, the upper flow guide limit seat is connected with a negative pressure fan above, and the fan and the negative pressure fan are both connected with dust screens away from one side of the data center switch.
5. A real-time based data acquisition system as claimed in claim 1, wherein, Multiple groups of evenly distributed assembly fin plates are connected between the liquid cooling support plate and the air guide liquid storage plate, the assembly fin plates are matched with the heat dissipation exhaust plate, the air guide liquid storage plate is provided with a circulating pump away from one side of the assembly fin plate, the circulating pump is communicated with the air guide liquid storage plate, heat exchange pipes are connected to two sides of the circulating pump, and the heat exchange pipes are matched with the fan and the negative pressure air curtain spray plate.
6. A real-time based data acquisition system as claimed in claim 1, wherein, The semiconductor refrigeration mechanism comprises multiple groups of semiconductor refrigeration pieces, multiple groups of the semiconductor refrigeration pieces are respectively arranged outside the lower and upper flow guide limit seats, liquid cooling protection plates are arranged outside multiple groups of the semiconductor refrigeration pieces, and circulating guide pipes and circulating connection pipes are connected between multiple groups of the semiconductor refrigeration pieces.
7. A real-time based data acquisition system as claimed in claim 6, wherein, A circulating booster pump is arranged on the upper flow guide limit seat, a liquid pumping pipe is connected between the circulating booster pump and the semiconductor refrigeration piece, and a liquid discharging pipe is connected to one side of the circulating booster pump away from the liquid pumping pipe.
Citation Information
Patent Citations
Data monitoring system
CN112947201A
A community-integrated security network system based on hyperconverged technology
CN218868288U