Heating data grid-connected diagnosis analysis alarm system and method

By setting up a cyclical transmission of data capsules and mirror capsules in the cloud database and implementing real-time diagnostic alarms, the security issues of heating data when accessed by malicious networks are resolved, ensuring the security of data storage and the effectiveness of analysis.

CN120046940BActive Publication Date: 2026-02-27YANTAI POWER PLANT OF HUANENG SHANDONG POWER GENERATION CO LTD +1
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Patent Information

Application Number
CN202510245203.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2026-02-27
Estimated Expiration
2045-03-04

AI Technical Summary

Technical Problem

During the diagnosis and analysis of heating data connected to the grid, the security of heating data is difficult to guarantee when malicious network access occurs, affecting data storage and analysis results.

Method used

A heating data grid connection diagnostic analysis and alarm system is constructed. By setting up data capsules and mirror capsules in the cloud database, data is transmitted using a circulating flow. When an abnormal state is detected, the data capsule is destroyed, and the mirror capsule is enabled for data storage and diagnosis. A diagnostic library is set up for real-time diagnosis and alarm.

Benefits of technology

It enables the timely destruction of data capsules and their conversion to mirror capsule storage during malicious network access, ensuring the security and effectiveness of heating data analysis, preventing data leakage, and improving data protection effectiveness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a heat supply data grid-connected diagnosis analysis alarm system and method, relates to the technical field of data analysis, and comprises the following steps: acquiring heat supply data, transmitting the heat supply data to a cloud database of a monitoring center, setting a data capsule and a mirror capsule in the cloud database, acquiring state information of the data capsule, destroying the data capsule and enabling the mirror capsule based on the state information, setting a diagnosis library corresponding to the monitoring center, wherein the diagnosis library comprises heat supply data types and corresponding preset diagnosis conditions, performing real-time diagnosis on the heat supply data based on the diagnosis library, and performing alarm on heat supply data that does not meet the preset diagnosis conditions based on the diagnosis library. The application can destroy the database in time when unauthorized network accesses the information of the database, and the converted and mirrored capsule is used, so that the storage of the heat supply data is not affected, and the data protection effect is good.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of data analysis, in particular to a heating data grid-connected diagnosis analysis alarm system and method. BACKGROUND

[0002] With the continuous expansion of the heating market and the continuous progress of technology, the heating industry needs to continuously upgrade and innovate technology to meet the needs of market development. Among them, the heating data grid-connected diagnosis analysis alarm method, as one of the important achievements of technological innovation in the heating industry, can realize real-time monitoring and intelligent analysis of the heating system, improve heating efficiency and energy utilization, and promote the sustainable development of the heating industry. However, in the process of diagnosing and analyzing heating data, when there is malicious network access, it is difficult to ensure the security of heating data storage, thereby affecting the grid-connected diagnosis analysis result of heating data. SUMMARY

[0003] The purpose of the present application is to provide a heating data grid-connected diagnosis analysis alarm system and method to solve the problems in the background art.

[0004] In order to achieve the above purpose, the present application provides the following technical scheme: a heating data grid-connected diagnosis analysis alarm system, comprising:

[0005] A construction module is used to obtain heating data, transmit the heating data to a cloud database of a monitoring center, set a data capsule and a mirror capsule in the cloud database, and perform data transmission between the data capsule and the mirror capsule through a circulating flow;

[0006] A data storage module is connected with the construction module and is used to obtain state information of the data capsule, destroy the data capsule and enable the mirror capsule based on the state information;

[0007] An alarm module is connected with the data storage module and is used to set a diagnosis library corresponding to the monitoring center, wherein the diagnosis library includes heating data types and corresponding preset diagnosis conditions, perform real-time diagnosis on the heating data based on the diagnosis library, and alarm the heating data that does not meet the preset diagnosis conditions based on the diagnosis library.

[0008] In a preferred embodiment, the construction module comprises:

[0009] A demarcation unit is used to demarcate a storage space for storing heating data in the monitoring center as a cloud database;

[0010] A setting unit is used to set a data capsule and a mirror capsule in the cloud database, set a replication area, a stripping area, a circulating line and a transmission chain in the circulating line as a circulating flow between the data capsule and the mirror capsule;

[0011] The establishing unit is configured to establish a transmission port for the heating data, and the transmission port is communicatively connected with the data capsule and the mirror capsule; when the data capsule exists, the communication between the transmission port and the mirror capsule is in a disconnected state;

[0012] The transmission unit is configured to obtain the heating data based on the transmission port and transmit the heating data to the data capsule in the monitoring center;

[0013] The transmission unit is configured to obtain the heating data based on the transmission port and transmit the heating data to the data capsule in the monitoring center;

[0014] In a preferred embodiment, the setting unit comprises:

[0015] The replication construction unit is configured to set the data capsule and the mirror capsule in the cloud database, set two replication ports in the data capsule, connect the two replication ports, set a replication space between the two replication ports in the data capsule, and set the replication space and the two replication ports as a replication area;

[0016] The stripping construction unit is configured to set two stripping ports in the mirror capsule, connect the two stripping ports, set a stripping space between the two stripping ports in the mirror capsule, and set the stripping space and the two stripping ports as a stripping area;

[0017] The circulation unit is configured to connect the two replication ports and the two stripping ports one by one to obtain a circulation line, set a plurality of transmission carriers in the circulation line, and connect the plurality of transmission carriers in a closed chain in the circulation line;

[0018] The management unit is configured to set the replication area, the stripping area, the circulation line, and a transmission chain in the circulation line as a circulation flow.

[0019] In a preferred embodiment, the circulation unit comprises:

[0020] The connection setting unit is configured to set a plurality of transmission carriers in the circulation line, wherein the transmission carrier comprises a storage point and two connection keys, and the connection key is a connection port and connection identification information corresponding to the connection port;

[0021] The connection unit is configured to distribute the plurality of transmission carriers in a chain in the circulation line, connect adjacent transmission carriers with each other through the connection keys, and confirm the connection between the adjacent transmission carriers through the link identification information.

[0022] In a preferred embodiment, the transmission unit comprises:

[0023] An information copying unit is configured to store the heating data of a preset time period in a copying area in the monitoring center, and a transmission carrier copies the heating data of the preset time period in the copying area, and the transmission carrier is separated from the copying area after copying the heating data of the preset time period, and the heating data of the next preset time period is continuously stored in the copying area, and the next transmission carrier copies the heating data of the next preset time period, to complete the cyclic copying.

[0024] An information stripping unit is configured to strip the heating data of the preset time period from the transmission carrier and store the heating data in a mirror capsule after the transmission carrier is transmitted to a stripping area in the circulation line.

[0025] In a preferred embodiment, the data storage module comprises:

[0026] A state acquisition unit is configured to represent the data capsule as an abnormal state when there is a network access data capsule other than the transmission port;

[0027] A protection unit is configured to destroy the data capsule and enable the mirror capsule when the state information of the data capsule is in an abnormal state, and the heating data of the preset time period in the transmission carrier is retained until the stripping of the heating data of the preset time period in all transmission carriers is completed.

[0028] A storage conversion unit is configured to open the communication between the transmission port and the mirror capsule after the data capsule is destroyed, and transmit the heating data collected by the transmission port to the mirror capsule for storage.

[0029] In a preferred embodiment, the alarm module comprises:

[0030] A data construction unit is configured to obtain the heating data type and the corresponding preset diagnostic condition based on the Internet, and store the diagnostic library.

[0031] A diagnosis unit is configured to determine the heating data type of the heating data, and perform real-time matching on the heating data in the cloud database based on the diagnostic library to obtain the corresponding preset diagnostic condition, and alarm the heating data that does not meet the corresponding preset diagnostic condition.

[0032] The application also provides a heating data network diagnosis and analysis alarm method, comprising the following steps:

[0033] Obtaining the heating data, transmitting the heating data to the cloud database in the monitoring center, setting the data capsule and the mirror capsule in the cloud database, and transmitting data between the data capsule and the mirror capsule through a circulation flow;

[0034] Obtaining the state information of the data capsule, destroying the data capsule based on the state information and enabling the mirror capsule;

[0035] The corresponding monitoring center sets a diagnosis library, wherein the diagnosis library comprises a heating data type and a corresponding preset diagnosis condition, real-time diagnosis is performed on the heating data based on the diagnosis library, and the heating data that does not meet the preset diagnosis condition is alarmed based on the diagnosis library.

[0036] In the above technical solution, the present application provides the following technical effects and advantages:

[0037] After the heating data is transmitted to the data capsule of the monitoring center, the heating data in the data capsule is copied and transmitted to the mirror capsule for storage through the circulating flow, so that the safety of data storage can be ensured, the database can be destroyed in time when unauthorized network accesses the information of the database, the mirror capsule is used for conversion, the storage of the heating data is not affected, and good data protection effect is also achieved, thereby ensuring the effectiveness of the network diagnosis of the heating data. BRIEF DESCRIPTION OF DRAWINGS

[0038] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed in the embodiments will be briefly introduced as follows. Obviously, the drawings described below are only some embodiments described in the present application, and other drawings can also be obtained by those skilled in the art based on these drawings.

[0039] Figure 1 The system block diagram of the present application.

[0040] Figure 2 The method flowchart of the present application. DETAILED DESCRIPTION

[0041] In order to make the purpose, technical solutions and advantages of the embodiments of the present application more clear, the technical solutions in the embodiments of the present application will be described clearly and completely in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only some embodiments of the present application, not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.

[0042] Embodiment 1, please refer to Figure 1 The heating data network diagnosis and analysis alarm system described in the present embodiment comprises:

[0043] The construction module is used for acquiring the heating data, transmitting the heating data to the cloud database of the monitoring center, setting a data capsule and a mirror capsule in the cloud database, and transmitting data between the data capsule and the mirror capsule through a circulating flow.

[0044] The data storage module is connected with the construction module, and is used for obtaining state information of the data capsule, destroying the data capsule and enabling the mirror capsule based on the state information;

[0045] The alarm module is connected with the data storage module, and is used for setting a diagnosis library corresponding to the monitoring center, wherein the diagnosis library includes a heating data type and a corresponding preset diagnosis condition, performing real-time diagnosis on the heating data based on the diagnosis library, and performing alarm on the heating data that does not meet the preset diagnosis condition based on the diagnosis library.

[0046] In one embodiment, the construction module comprises:

[0047] The demarcation unit is used for demarcating a storage space for storing the heating data in the monitoring center as a cloud database;

[0048] The setting unit is used for setting the data capsule and the mirror capsule in the cloud database, and setting a replication area, a stripping area, a circulation line and a transfer chain in the circulation line between the data capsule and the mirror capsule as a circulation flow;

[0049] The establishment unit is used for establishing a transmission port of the heating data, and the transmission port is respectively in communication connection with the data capsule and the mirror capsule, and when the data capsule exists, the communication between the transmission port and the mirror capsule is in a disconnected state;

[0050] The transmission unit is used for obtaining the heating data based on the transmission port, and transmitting the heating data to the data capsule in the monitoring center;

[0051] The transfer unit is used for copying and transferring the heating data by the circulation flow to the mirror capsule for storage;

[0052] It should be noted that the monitoring center is used to store heat supply data and a platform for heat supply data diagnosis. After the heat supply data is collected by the collection point, the collection point is used as a transmission port to transmit the heat supply data to the monitoring center. The storage of the heat supply data in the monitoring center is that a storage space for storing the heat supply data in the monitoring center is a cloud database. Two storage spaces are divided in the cloud database, which are a data capsule and a mirror capsule. The data space of the data capsule and the mirror capsule is less than the data space of the cloud database. The remaining part can be used to set a circulation line and a transmission chain. The transmission port of the heat supply data is used as a port for transmitting the heat supply data to the cloud database. The transmission port is an authorized port. When the data capsule exists, the communication between the transmission port and the mirror capsule is in a disconnected state. After the subsequent data capsule is destroyed, the communication between the transmission port and the mirror capsule is started. After the heat supply data is transmitted to the data capsule in the monitoring center, the heat supply data in the data capsule is copied and transmitted to the mirror capsule for storage through a circulation flow. The safety of data storage can be ensured. The data capsule can be destroyed in time when unauthorized network accesses the database. The mirror capsule is used instead, which does not affect the storage of the heat supply data and has a good data protection effect.

[0053] In one embodiment, the setting unit comprises:

[0054] The replication construction unit is configured to set a data capsule and a mirror capsule in the cloud database, set two replication ports in the data capsule, connect the two replication ports, set a replication space between the two replication ports in the data capsule, and set the replication space and the two replication ports as a replication region.

[0055] The peeling construction unit is configured to set two peeling ports in the mirror capsule, connect the two peeling ports, set a peeling space between the two peeling ports in the mirror capsule, and set the peeling space and the two peeling ports as a peeling region.

[0056] The circulation unit is configured to connect the two replication ports and the two peeling ports one by one to obtain a circulation line, set a plurality of transmission carriers in the circulation line, and connect the plurality of transmission carriers in the circulation line in a closed chain.

[0057] The management unit is configured to set the replication region, the peeling region, the circulation line, and a transmission chain in the circulation line as a circulation flow.

[0058] In one embodiment, the circulation unit comprises:

[0059] The connection setting unit is configured to set a plurality of transmission carriers in the circulation line. The transmission carrier comprises a storage point and two connection keys. The connection key is a connection port and connection identification information corresponding to the connection port.

[0060] A connection unit is configured to chain-distribute a plurality of transmission carriers in a circulation line, and connect adjacent transmission carriers by a link key, and confirm the connection between adjacent transmission carriers by link identification information.

[0061] In one embodiment, the delivery unit comprises:

[0062] An information replication unit is configured to store the heating data of a preset time period in a replication area in a monitoring center, and replicate and acquire the heating data of the preset time period in the replication area by the transmission carrier, and the transmission carrier is separated from the replication area after replicating and acquiring the heating data of the preset time period, and the heating data of the preset time period is separated from the replication area, and the heating data of the next preset time period is continuously stored in the replication area, and the next transmission carrier replicates and acquires the heating data of the next preset time period, and the cycle replication is completed.

[0063] An information stripping unit is configured to transmit and move the transmission carrier in the circulation line, and strip the heating data of the preset time period in the transmission carrier and store it in a mirror capsule after being transmitted to a stripping area.

[0064] In one embodiment, the data storage module comprises:

[0065] A state acquisition unit is configured to represent the data capsule as an abnormal state when there is a network access data capsule other than the transmission port;

[0066] A protection unit is configured to destroy the data capsule and enable the mirror capsule when the state information of the data capsule is in an abnormal state, and to retain the heating data of the preset time period in the transmission carrier until the stripping of the heating data of the preset time period in all transmission carriers is completed.

[0067] A storage conversion unit is configured to open the communication between the transmission port and the mirror capsule after the data capsule is destroyed, and to transmit the heating data collected by the transmission port to the mirror capsule for storage.

[0068] It should be noted that the data capsule and the mirror capsule are defined in the cloud database, the data capsule is used to receive and store the collected heating data, the mirror capsule is used to replicate the information in the data capsule in real time, and is used to enable the mirror capsule to collect and store the heating data and subsequent diagnosis when the data capsule is abnormal, two ports are set on the data capsule as replication ports, one of the replication ports is used as a transmission carrier, and the other replication port is used as a transmission carrier output, the space in the data capsule between the two replication ports is used as a replication space, the data space is divided in the data capsule corresponding to the two replication ports for transmission carrier passing and replicating heating data, in the mirror capsule, two stripping ports are set, the two stripping ports are connected, the space between the two stripping ports in the mirror capsule is used as a stripping space, the stripping space and the two stripping ports are used as a stripping area, the stripping space is divided into two stripping ports for transmission carrier passing and stripping heating data, the transmission carrier is a storage device for temporarily storing heating data, and the transmission carrier is moved in the set circulation line, when the transmission carrier is in the replication area, the current preset time period of the heating data can be continuously replicated and obtained, after the transmission carrier replicates and obtains the heating data of the preset time period, the transmission carrier is separated from the replication area, and the heating data of the preset time period is separated from the replication area, the heating data of the next preset time period continues to be stored in the position of the replication area, the next transmission carrier replicates and obtains the heating data of the next preset time period, and the circulation replication is completed, the heating data in the data capsule can be replicated and obtained in real time according to the collected heating data, the mirror capsule can be separated from the transmission port, the mirror capsule can also be separated from the data capsule, and the data capsule and the mirror capsule only have a relationship of replicating and carrying heating data through the transmission carrier, and there is no port allowing external network connection, so that the safety of the mirror capsule data storage can be ensured, when the data capsule is accessed by an external network, the data capsule has a security risk, in order to avoid further access and acquisition of data by the external network, the data capsule is immediately destroyed, so that the external network cannot further acquire information, then the mirror capsule is enabled, without affecting the normal collection and diagnosis of the heating data, and the safety of the data is ensured, and the data protection effect is good, when the state information of the data capsule is in an abnormal state, the data capsule is destroyed and the mirror capsule is enabled, since the data capsule in the normal state is still in the circulation line when the state information of the data capsule is in the abnormal state, the heating data of the preset time period in the transmission carrier still in the circulation line is retained, until the stripping of the heating data of the preset time period in all transmission carriers is completed, the stability index of the transmission carrier replicating the heating data can be monitored during the transportation of the transmission carrier, and the specific is: wherein, is the stability index, the number of times of discontinuous carrying of the heat supply data by the transmission carriers, the average number of blank transmission carriers discontinuously carrying the heat supply data, the total number of transmission carriers, a constant greater than zero;

[0069] In one embodiment, the alarm module comprises:

[0070] a data construction unit configured to obtain heat supply data types and corresponding preset diagnosis conditions based on the Internet and store the heat supply data types and the corresponding preset diagnosis conditions to obtain a diagnosis library;

[0071] a diagnosis unit configured to determine heat supply data types of the heat supply data, perform real-time matching of the heat supply data in the cloud database based on the diagnosis library to obtain corresponding preset diagnosis conditions, and alarm the heat supply data that does not meet the corresponding preset diagnosis conditions;

[0072] It should be noted that the diagnosis of the heat supply data usually relies on the analysis of the heat supply database of the Internet. Here, the heat supply data types and the corresponding preset diagnosis conditions are obtained and stored to obtain a diagnosis library. The heat supply data types are, for example, temperature information related to a heat supply inlet and temperature information in a heat supply transmission process, which represent temperature parameter types of the heat supply data. Then, the preset diagnosis conditions corresponding to the heat supply data types are obtained based on the temperature information through the diagnosis library. For example, the heat loss rate condition of the heat supply. When the heat loss rate of the temperature information in the heat supply transmission process exceeds the corresponding preset diagnosis condition, it represents that the heat supply data does not meet the preset diagnosis condition, and the heat supply data is alarmed.

[0073] Embodiment 2, please refer to Figure 2 The heat supply data grid-connected diagnosis analysis alarm method described in the embodiment comprises the following steps:

[0074] S1, obtaining heat supply data, transmitting the heat supply data to a cloud database of a monitoring center, setting a data capsule and a mirror capsule in the cloud database, and performing data transmission between the data capsule and the mirror capsule through a circulating flow;

[0075] S2, obtaining state information of the data capsule, destroying the data capsule based on the state information and enabling the mirror capsule;

[0076] S3, setting a diagnosis library corresponding to the monitoring center, wherein the diagnosis library comprises heat supply data types and corresponding preset diagnosis conditions, performing real-time diagnosis of the heat supply data based on the diagnosis library, and alarming the heat supply data that does not meet the preset diagnosis conditions based on the diagnosis library;

[0077] After the heating data is transmitted to the data capsule of the monitoring center, the heating data in the data capsule is copied and transmitted to the mirror capsule for storage through the circulating flow according to the steps S1-S3, so that the safety of the data storage can be ensured, the information acquisition and access of the database by the unauthorized network can be destroyed in time, the mirror capsule is used for conversion, the storage of the heating data is not affected, and the data protection effect is good.

[0078] The above merely provides a specific implementation of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A heat supply data grid diagnosis analysis and alarm system, characterized in that, include: The module is used to acquire heating data and transmit the heating data to the cloud database of the monitoring center. Data capsules and mirror capsules are set in the cloud database, and data is transferred between the data capsules and mirror capsules through a loop. The building module includes: The designated unit is used to allocate storage space in the monitoring center for storing heating data, serving as a cloud database. The configuration unit is used to set up data capsules and image capsules in the cloud database, and to set up replication areas, stripping areas, loop lines, and transfer chains in the loop lines as a loop flow between the data capsules and image capsules. The setting unit includes: The replication building unit is used to set up data capsules and image capsules in the cloud database. Two replication ports are set up in the data capsule and connected to each other. The space between the two replication ports in the data capsule is used as the replication space, and the replication space and the two replication ports are used as the replication area. The stripping building unit is used to set two stripping ports in the image capsule, connect the two stripping ports, use the space between the two stripping ports in the image capsule as the stripping space, and use the stripping space and the two stripping ports as the stripping area. The loop unit is used to connect two copy ports to two stripping ports one-to-one to obtain a loop line. Multiple transmission carriers are set in the loop line, and the multiple transmission carriers are connected in a closed chain in the loop line. The loop unit includes: The connection setting unit is used to set multiple transmission carriers in the loop line. Each transmission carrier includes a storage point and two connection keys. The connection keys are connection ports and corresponding connection identification information of the connection ports. A connection unit is used for multiple transmission carriers to be distributed in a chain in a loop line. Adjacent transmission carriers are connected to each other by a link key, and the connection between adjacent transmission carriers is confirmed by link identification information. The management unit is used to treat the copy area, stripping area, loop line, and the transfer chain in the loop line as a loop flow; The establishment unit is used to establish a transmission port for heating data. The transmission port is connected to both the data capsule and the mirror capsule. When the data capsule is present, the communication between the transmission port and the mirror capsule is disconnected. The transmission unit is used to acquire heating data based on the transmission port and transmit the heating data to the data capsule in the monitoring center. The transfer unit is used to copy and transfer heating data from the data capsule to the mirror capsule for storage via a circulating flow. The transmission unit includes: The information replication unit is used to store heating data for a preset time period in the replication area of ​​the monitoring center. The transmission carrier replicates the heating data for the preset time period in the replication area. After replicating the heating data for the preset time period, the transmission carrier leaves the replication area. At the same time, the heating data for the preset time period leaves the replication area. The heating data for the next preset time period continues to be stored in the replication area. The next transmission carrier replicates the heating data for the next preset time period, completing the cyclic replication. The information stripping unit is used to strip the heating data for a preset time period from the transmission carrier as it moves in the circulation line and after it is transferred to the stripping zone, and store it in the mirror capsule. The data storage module is connected with the construction module, and is used for obtaining state information of the data capsule, destroying the data capsule and enabling the mirror capsule based on the state information; The alarm module is connected with the data storage module, and is used for setting a diagnosis library corresponding to the monitoring center, wherein the diagnosis library includes a heating data type and a corresponding preset diagnosis condition, performing real-time diagnosis on the heating data based on the diagnosis library, and performing alarm on the heating data that does not meet the preset diagnosis condition based on the diagnosis library.

2. The heat supply data grid-connected diagnostic analysis and alarm system according to claim 1, characterized in that: The data storage module includes: The state acquisition unit is used for representing the data capsule as an abnormal state when there is network access to the data capsule except for the transmission port; The protection unit is used for destroying the data capsule and enabling the mirror capsule when the state information of the data capsule is the abnormal state, retaining the heating data in the transmission carrier for a preset time period, and completing the stripping of the heating data in all transmission carriers for the preset time period; The storage conversion unit is used for opening communication between the transmission port and the mirror capsule after the data capsule is destroyed, and transmitting the heating data collected by the transmission port to the mirror capsule for storage.

3. The heat supply data grid-connected diagnostic analysis and alarm system according to claim 1, characterized in that: The alarm module includes: The data construction unit is used for obtaining the heating data type and the corresponding preset diagnosis condition based on the Internet to store the diagnosis library; The diagnosis unit is used for determining the heating data type of the heating data, performing real-time matching on the heating data in the cloud database based on the diagnosis library to obtain the corresponding preset diagnosis condition, and performing alarm on the heating data that does not meet the corresponding preset diagnosis condition.

4. The method for the heat-supply data grid diagnosis analysis and alarm, which is used for realizing the heat-supply data grid diagnosis analysis and alarm system of any one of claims 1-3, characterized in that, The following steps are included: Obtain the heating data, transmit the heating data to the cloud database of the monitoring center, set the data capsule and the mirror capsule in the cloud database, and perform data transmission between the data capsule and the mirror capsule through the circulating flow; Obtain the state information of the data capsule, destroy the data capsule and enable the mirror capsule based on the state information; Set a diagnosis library corresponding to the monitoring center, wherein the diagnosis library includes a heating data type and a corresponding preset diagnosis condition, perform real-time diagnosis on the heating data based on the diagnosis library, and perform alarm on the heating data that does not meet the preset diagnosis condition based on the diagnosis library.

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