Heat supply data grid-connected diagnosis analysis alarm system and method
By setting up data capsules and mirror capsules in the cloud database and using circulating streams for data transmission, the safety of heating data storage is solved, and the safe storage and effective diagnosis of heating data is achieved.
Patent Information
- Application Number
- CN202510245203.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-04
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2045-03-04
AI Technical Summary
During the diagnosis and analysis of heating data connected to the grid, when there is malicious network access, it is difficult to ensure the security of heating data storage, which affects the diagnostic analysis results.
By setting up data capsules and mirror capsules in the cloud database and using circulating streams for data transmission, the status information of the data capsules is obtained to decide to destroy or enable mirror capsules, and at the same time, a diagnostic library is set up in the monitoring center for real-time diagnosis and alarm.
Ensures the secure storage of heating data, can destroy data capsules in a timely manner and enable mirror capsules when accessed by unauthorized networks, protect data integrity, and support effective diagnosis and alarm of heating data.
Smart Images

Figure CN120046940A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of data analysis, and particularly to a heat supply data grid connection diagnosis analysis and alarm system and method. Background Art
[0002] With the continuous expansion of the heat supply market scale and the continuous progress of technology, the heat supply industry needs to continuously upgrade and innovate technologies to meet the needs of market development. Among them, the heat supply data grid connection diagnosis analysis and alarm method, as one of the important achievements of technological innovation in the heat supply industry, can realize real-time monitoring and intelligent analysis of the heat supply system, improve the heat supply efficiency and energy utilization rate, and promote the sustainable development of the heat supply industry. However, in the process of diagnosing and analyzing heat supply data, when there is access from a malicious network, it is difficult to ensure the security of heat supply data storage, thereby affecting the results of heat supply data grid connection diagnosis and analysis. Summary of the Invention
[0003] The purpose of the present invention is to provide a heat supply data grid connection diagnosis analysis and alarm system and method to solve the deficiencies in the background art.
[0004] To achieve the above purpose, the present invention provides the following technical solutions: A heat supply data grid connection diagnosis analysis and alarm system, including: A construction module, configured to obtain heat supply data, transmit the heat supply data to the cloud database in the monitoring center, set a data capsule and a mirror capsule in the cloud database, and perform data transfer between the data capsule and the mirror capsule through a circulating flow; A data storage module, connected to the construction module, configured to obtain the status information of the data capsule, destroy the data capsule based on the status information, and enable the mirror capsule; An alarm module, connected to the data storage module, configured to set a diagnosis library in the corresponding monitoring center, where the diagnosis library includes heat supply data types and corresponding preset diagnosis conditions, perform real-time diagnosis on the heat supply data based on the diagnosis library, and alarm the heat supply data that does not meet the preset diagnosis conditions based on the diagnosis library.
[0005] In a preferred embodiment, the construction module includes: A delimiting unit, configured to delimit a storage space for storing heat supply data in the monitoring center as the cloud database; A setting unit, configured to set a data capsule and a mirror capsule in the cloud database, and set a replication area, a stripping area, a circulating line, and a transfer chain in the circulating line as the circulating flow between the data capsule and the mirror capsule; An establishing unit, configured to establish a transmission port for heat supply data, where the transmission port is respectively communicatively connected to the data capsule and the mirror capsule, and when there is a data capsule, the communication between the transmission port and the mirror capsule is in a disconnected state; A transmission unit, configured to obtain heating data based on a transmission port and transmit the heating data to a data bag in a monitoring center; A transfer unit, configured to copy and transfer the heating data stored in the data bag to a mirror bag through a circulating flow.
[0006] In a preferred embodiment, the setting unit includes: A replication construction unit, configured to set up a data bag and a mirror bag in a cloud database, set two replication ports in the data bag, connect the two replication ports, use the space between the two replication ports in the data bag as a replication space, and use the replication space and the two replication ports as a replication area; A stripping construction unit, configured to set two stripping ports in the mirror bag, connect the two stripping ports, use the space between the two stripping ports in the mirror bag as a stripping space, and use the stripping space and the two stripping ports as a stripping area; A circulation unit, 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 the plurality of transmission carriers are connected in a closed chain in the circulation line; A management unit, configured to use the replication area, the stripping area, the circulation line, and the transfer chain in the circulation line as a circulating flow.
[0007] In a preferred embodiment, the circulation unit includes: A connection setting unit, configured to set a plurality of transmission carriers in the circulation line, where the transmission carrier includes a storage point and two connection keys, and the connection key is a connection port and connection identification information corresponding to the connection port; A connection unit, configured to distribute the plurality of transmission carriers in a chain in the circulation line, and adjacent transmission carriers are connected to each other through a link key, and the connection keys between adjacent transmission carriers are confirmed to be connected through link identification information.
[0008] In a preferred embodiment, the transfer unit includes: An information replication unit, configured to store the heating data for a preset time period in the position of the replication area in the monitoring center, the transmission carrier replicates and obtains the heating data for the preset time period in the replication area, the transmission carrier detaches from the replication area after replicating and obtaining the heating data for the preset time period, and at the same time the heating data for the preset time period detaches from the replication area, the heating data for the next preset time period continues to be stored in the position of the replication area, and the next transmission carrier replicates and obtains the heating data for the next preset time period to complete circular replication; An information stripping unit, configured to move the transmission carrier in the circulation line, and after transmitting to the stripping area, strip the heating data for the preset time period in the transmission carrier and store it in the mirror bag.
[0009] In a preferred embodiment, the data storage module includes: A status acquisition unit, configured to represent the data capsule as an abnormal state when there is network access data capsule other than the transmission port; A protection unit, configured to destroy the data capsule and enable the mirror capsule when the status information of the data capsule is in an abnormal state, and retain the heating data in the transmission carrier for a preset time period until the stripping of the heating data in all transmission carriers for the preset time period is completed; A storage conversion unit, configured to, after the data capsule is destroyed, open the communication between the transmission port and the mirror capsule, and transmit the heating data collected by the transmission port to the mirror capsule for storage.
[0010] In a preferred embodiment, the alarm module includes: A data construction unit, configured to store the heating data type and the corresponding preset diagnosis conditions obtained based on the Internet to obtain a diagnosis library; A diagnosis unit, configured to determine the heating data type of the heating data, perform real-time matching on the heating data in the cloud database based on the diagnosis library to obtain the corresponding preset diagnosis conditions, and alarm the heating data that does not meet the corresponding preset diagnosis conditions.
[0011] The present invention also provides a method for diagnosing, analyzing and alarming the grid connection of heating data, including the following steps: Obtain heating data, transmit the heating data to the cloud database of the monitoring center, set a data capsule and a mirror capsule in the cloud database, and perform data transfer between the data capsule and the mirror capsule through a circulating flow; Obtain the status information of the data capsule, and destroy the data capsule and enable the mirror capsule based on the status information; Set a diagnosis library corresponding to the monitoring center, where the diagnosis library includes the heating data type and the 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.
[0012] In the above technical solution, the technical effects and advantages provided by the present invention are: After the heating data of the present invention 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 a circulating flow, which can ensure the security of data storage, can be destroyed in time when unauthorized network obtains and accesses the information of the database, and is converted to use the mirror capsule, which will not affect the storage of heating data, and also has a good data protection effect, thereby ensuring the effectiveness of the grid connection diagnosis of heating data. Description of the Drawings
[0013] To more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments recorded in the present invention. For those of ordinary skill in the art, other drawings can also be obtained based on these drawings.
[0014] Figure 1 It is the system block diagram of the present invention.
[0015] Figure 2 It is the method flow chart of the present invention. Detailed implementation manners
[0016] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts belong to the scope of protection of the present invention.
[0017] Embodiment 1, please refer to Figure 1 As shown, the heat supply data grid connection diagnosis and analysis alarm system in this embodiment includes: A construction module, configured to obtain heat supply data, transmit the heat supply data to the cloud database in the monitoring center, set a data capsule and a mirror capsule in the cloud database, and perform data transfer between the data capsule and the mirror capsule through a circular flow; A data storage module, connected to the construction module, configured to obtain the status information of the data capsule, and destroy the data capsule and enable the mirror capsule based on the status information; An alarm module, connected to the data storage module, configured to set a diagnosis library in the corresponding monitoring center. Among them, the diagnosis library includes heat supply data types and corresponding preset diagnosis conditions, perform real-time diagnosis on the heat supply data based on the diagnosis library, and alarm the heat supply data that does not meet the preset diagnosis conditions based on the diagnosis library.
[0018] In one embodiment, the construction module includes: A delimiting unit, configured to delimit a storage space for storing heat supply data in the monitoring center as the cloud database; A setting unit, configured to set a data capsule and a mirror capsule in the cloud database, and set a replication area, a stripping area, a circular line, and a transfer chain in the circular line as a circular flow between the data capsule and the mirror capsule; An establishing unit, configured to establish a transmission port for heat supply data, and the transmission port is communicatively connected to the data capsule and the mirror capsule respectively. When there is a data capsule, the communication between the transmission port and the mirror capsule is in a disconnected state; A transmission unit, configured to obtain heating data based on a transmission port and transmit the heating data to a data capsule in a monitoring center; A transfer unit, configured to copy and transfer the heating data in the data capsule to a mirror capsule for storage through a circulating flow; It should be noted that the monitoring center is a platform for storing heating data and diagnosing heating data. After the heating data is collected by a collection point, the collection point serves as a transmission port to transmit the heating data to the monitoring center. The storage of heating data in the monitoring center is as follows: A storage space for storing heating data is determined in the monitoring center as a cloud database. Two storage spaces are further divided in the cloud database, namely a data capsule and a mirror capsule. The data space amounts of the data capsule and the mirror capsule are smaller than that of the cloud database. The remaining part can be used to set up a circulation line and a transfer chain. The transmission port of the heating data serves as the port for transmitting the heating data to the cloud database. The transmission port is an authorized port. When there is a data capsule, the communication between the transmission port and the mirror capsule is in a disconnected state. After the data capsule is destroyed subsequently, the communication between the transmission port and the mirror capsule will be enabled. After the heating data is transmitted to the data capsule in the monitoring center, the heating data in the data capsule is copied and transferred to the mirror capsule for storage through a circulating flow, which can ensure the security of data storage, can be timely destroyed, converted and used with the mirror capsule when unauthorized network accesses and obtains information from the database, will not affect the storage of heating data, and also has a good data protection effect.
[0019] In one embodiment, the setting unit includes: A replication construction unit, configured to set up a data capsule and a mirror capsule in the cloud database, set two replication ports in the data capsule, connect the two replication ports, use the space between the two replication ports in the data capsule as a replication space, and use the replication space and the two replication ports as a replication area; A stripping construction unit, configured to set two stripping ports in the mirror capsule, connect the two stripping ports, use the space between the two stripping ports in the mirror capsule as a stripping space, and use the stripping space and the two stripping ports as a stripping area; A circulation unit, configured to connect the two replication ports and the two stripping ports one-to-one to obtain a circulation line, and set a plurality of transmission carriers in the circulation line. The plurality of transmission carriers are connected in a closed chain in the circulation line; A management unit, configured to use the replication area, the stripping area, the circulation line, and the transfer chain in the circulation line as a circulating flow; In one embodiment, the circulation unit includes: A connection setting unit for setting a plurality of transmission carriers in a loop line, wherein the transmission carrier includes a storage point and two connection keys, and the connection key is a connection port and connection identification information corresponding to the connection port; A connection unit for arranging a plurality of transmission carriers in a chain distribution in the loop line, and connecting adjacent transmission carriers to each other through a link key, and the connection keys between adjacent transmission carriers are confirmed to be connected through link identification information.
[0020] In one embodiment, the transfer unit includes: An information copying unit for storing the heating data of a preset time period in the monitoring center at the position of the copying area, and the transmission carrier copies and obtains the heating data of the preset time period in the copying area. After the transmission carrier copies and obtains the heating data of the preset time period, it leaves the copying area, and at the same time the heating data of the preset time period leaves the copying area. The heating data in the next preset time period continues to be stored at the position of the copying area, and the next transmission carrier copies and obtains the heating data in the next preset time period to complete circular copying; An information stripping unit for the transmission carrier to move in the loop line. After being transmitted to the stripping area, the heating data of the preset time period in the transmission carrier is stripped and stored in the mirror capsule.
[0021] In one embodiment, the data storage module includes: A status acquisition unit for representing that the data capsule is in an abnormal state when there is network access data in the data capsule other than the transmission port; A protection unit for destroying the data capsule and enabling the mirror capsule when the status information of the data capsule is in an abnormal state, and retaining 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; A storage conversion unit for opening the 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; It should be noted that in the cloud database, a data capsule and a mirror capsule are defined. 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 perform subsequent diagnosis when the data capsule is abnormal. Two ports are set on the data capsule as replication ports. One replication port enters as a transmission carrier, and the other replication port outputs as a transmission carrier. The space in the data capsule between the two replication ports is used as a replication space. This data space is the space divided in the data capsule corresponding to the two replication ports for the transmission carrier to pass through and replicate the heating data. In the mirror capsule, two stripping ports are set, and 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. This stripping space is the space divided for the two stripping ports for the transmission carrier to pass through and strip the heating data. The transmission carrier is a storage device for temporarily storing heating data, and it moves in the set circulation line. When the transmission carrier is in the replication area, it can continuously replicate and obtain the heating data within the current preset time period. After a transmission carrier enters the replication area to replicate and obtain the heating data for the preset time period, the transmission carrier leaves the replication area after replicating and obtaining the heating data for the preset time period. At the same time, the heating data for the preset time period leaves the replication area, and the heating data for 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 for the next preset time period to complete the cyclic replication. It can replicate and obtain the heating data in the data capsule in real time according to the collected heating data. Here, the mirror capsule can be detached from the transmission port, and the mirror capsule can also be detached from the data capsule. There is only a relationship of replicating and transporting the heating data through the transmission carrier between the data capsule and the mirror capsule, and there is no port allowing external network connection. Therefore, the security of the data storage in the mirror capsule can be ensured. When there is an external network access to the data capsule, it means that there is a security risk in the data capsule. In order to prevent the external network from further accessing and obtaining the data, the data capsule is immediately destroyed so that the external network cannot further obtain information. Then the mirror capsule is enabled, which does not affect the normal collection and diagnosis of the heating data and at the same time ensures the security of the data, having a good data protection effect. When the status information of the data capsule is in an abnormal state, the data capsule is destroyed and the mirror capsule is enabled. Since when the status information of the data capsule is in an abnormal state, the part of the data capsule that is not in an abnormal state replicated by the transmission carrier is still in the circulation line, the heating data for the preset time period in the transmission carrier still in the circulation line is retained until all the heating data for the preset time period in all the transmission carriers is stripped. During the process of the transmission carrier transporting the heating data, the stability index of the transmission carrier replicating the heating data can be monitored simultaneously. Specifically: , where is the stability index, The number of times the transmission carrier discontinuously carries heating data, The average number of blank transmission carriers that discontinuously carry heating data, is the total number of transmission carriers, a constant greater than zero; In one embodiment, the alarm module includes: A data construction unit for storing the heating data types and corresponding preset diagnostic conditions obtained based on the Internet to obtain a diagnostic library; A diagnosis unit for determining the heating data types of the heating data, performing real-time matching on the heating data in the cloud database based on the diagnostic library to obtain the corresponding preset diagnostic conditions, and alarming the heating data that does not meet the corresponding preset diagnostic conditions; It should be noted that the diagnosis of heating data usually depends on the analysis of the heating database on the Internet. Here, the diagnostic library is obtained by storing the heating data types and the corresponding preset diagnostic conditions. The heating data types are, for example, the temperature information related to the heating inlet and the temperature information during the heating transmission process. Here, it represents the temperature parameter type of the heating data. Then, according to the above temperature information, the preset diagnostic conditions corresponding to the heating data types are obtained through the diagnostic library. For example, the heat loss rate condition of the heating. When the heat loss rate of the temperature information during the heating transmission process exceeds the corresponding preset diagnostic conditions, it means that the preset diagnostic conditions are not met, and then the heating data is alarmed.
[0022] Embodiment 2, please refer to Figure 2 As shown, the method for diagnosing, analyzing and alarming the grid connection of heating data in this embodiment includes the following steps: S1. Obtain heating data, transmit the heating data to the cloud database of the monitoring center, and set a data capsule and a mirror capsule in the cloud database. The data between the data capsule and the mirror capsule is transmitted through a circulating flow; S2. Obtain the status information of the data capsule, destroy the data capsule based on the status information, and enable the mirror capsule; S3. Set a diagnostic library corresponding to the monitoring center. Among them, the diagnostic library includes heating data types and corresponding preset diagnostic conditions. Perform real-time diagnosis on the heating data based on the diagnostic library, and alarm the heating data that does not meet the preset diagnostic conditions based on the diagnostic library; As described in the above steps S1 - S3, after the heating data is transmitted to the data capsule of the monitoring center, the heating data in the data capsule is copied through the circulating flow and transmitted to the mirror capsule for storage, which can ensure the security of data storage, can be destroyed in time when unauthorized access to the information in the database is attempted, and switch to use the mirror capsule, which will not affect the storage of heating data and also has a good data protection effect.
[0023] As described above, it is only the specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present application can easily think of changes or substitutions, which should all be covered within the protection scope of the present application. Therefore, the protection scope of the present application shall be subject to the protection scope of the said claims.
Claims
1. Heating data grid-connected diagnosis and analysis alarm system, characterized by: include: 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 transmit data between the data capsule and the mirror capsule through a circulation flow; A data storage module, connected to the construction module, is used to obtain status information of the data capsule, destroy the data capsule based on the status information and enable the mirror capsule; The alarm module is connected to the data storage module and is used to set up a diagnostic library corresponding to the monitoring center, wherein the diagnostic library includes heating data types and corresponding preset diagnostic conditions, and performs real-time diagnosis on the heating data based on the diagnostic library. Based on the diagnostic library, an alarm is issued for the heating data that does not meet the preset diagnostic conditions.
2. The heating data grid-connected diagnosis, analysis and alarm system according to claim 1 is characterized by: The building blocks include: a demarcation unit for demarcating a storage space for storing heating data in a monitoring center as a cloud database; A setting unit is used to set a data capsule and a mirror capsule in the cloud database, and set a copy area, a stripping area, a circulation line and a transfer chain in the circulation line as a circulation flow between the data capsule and the mirror capsule; An establishing unit, used for establishing a transmission port for heating data, the transmission port being respectively connected to the data capsule and the mirror capsule for communication, and when the data capsule exists, the communication between the transmission port and the mirror capsule is disconnected; A transmission unit, used for acquiring heating data based on a transmission port, and transmitting the heating data to a data capsule in a monitoring center; The transmission unit is used for the data capsule to copy the heating data through the circulation flow and transmit it to the mirror capsule for storage.
3. The heat supply data grid-connected diagnosis, analysis and alarm system according to claim 2, characterized in that: The setting unit comprises: A replication construction unit is used to set up a data capsule and a mirror capsule in a cloud database, set up two replication ports in the data capsule, connect the two replication ports, use the space between the two replication ports in the data capsule as a replication space, and use the replication space and the two replication ports as a replication area; A stripping construction unit is used to set two stripping ports in the mirror capsule, connect the two stripping ports, use the space between the two stripping ports in the mirror capsule as a stripping space, and use the stripping space and the two stripping ports as a stripping area; A circulation unit is used to connect the two replication ports with the two stripping ports one-to-one to obtain a circulation line, in which a plurality of transmission carriers are arranged, and the plurality of transmission carriers are connected in a closed chain in the circulation line; A management unit is used to treat the copy area, the stripping area, the circulation line and the transfer chain in the circulation line as a circulation flow.
4. The heat supply data grid-connected diagnosis, analysis and alarm system according to claim 3, characterized in that: The circulation unit comprises: A connection setting unit, used for setting a plurality of transmission carriers in the circulation line, wherein the transmission carriers include a storage point and two connection keys, and the connection keys are connection ports and connection identification information corresponding to the connection ports; The connection unit is used for distributing a plurality of transmission carriers in a chain in a circulation line, wherein adjacent transmission carriers are connected to each other via link keys, and the connection keys between adjacent transmission carriers confirm the connection via link identification information.
5. The heat supply data grid-connected diagnosis, analysis and alarm system according to claim 2, characterized in that: The transmission unit comprises: An information copying unit is used to store the heating data of the preset time period in the copy area in the monitoring center, and the transmission carrier copies and obtains the heating data of the preset time period in the copy area. After copying and obtaining the heating data of the preset time period, the transmission carrier leaves the copy area, and the heating data of the preset time period leaves the copy area at the same time, and the heating data of the next preset time period continues to be stored in the copy area. The next transmission carrier copies and obtains the heating data of the next preset time period, and the circular copy is completed; The information stripping unit is used to transmit the carrier in the circulation line, and after being transmitted to the stripping area, the heating data of the preset time period in the transmission carrier is stripped and stored in the mirror capsule.
6. The heat supply data grid-connected diagnosis, analysis and alarm system according to claim 1, characterized in that: The data storage module comprises: A state acquisition unit, used for indicating that the data capsule is in an abnormal state when there is a network access data capsule other than the transmission port; A protection unit, used for destroying the data capsule and activating the mirror capsule when the status information of the data capsule is in an abnormal state, retaining 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; The storage conversion unit is used 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.
7. The heat supply data grid-connected diagnosis, analysis and alarm system according to claim 1, characterized in that: The alarm module comprises: A data construction unit, used for acquiring heating data types and corresponding preset diagnostic conditions based on the Internet and storing them to obtain a diagnostic library; The diagnostic unit is used to determine the type of heating data, perform real-time matching of the heating data in the cloud database based on the diagnostic library to obtain corresponding preset diagnostic conditions, and alarm the heating data that does not meet the corresponding preset diagnostic conditions.
8. A method for heat supply data grid-connected diagnosis, analysis and alarm, for realizing a heat supply data grid-connected diagnosis, analysis and alarm system according to any one of claims 1 to 7, characterized in that: The following steps are involved: Acquire heating data, transmit the heating data to the cloud database of the monitoring center, set up data capsules and mirror capsules in the cloud database, and transmit data between the data capsules and the mirror capsules through a circulation flow; Obtaining the status information of the data capsule, destroying the data capsule based on the status information and enabling the mirror capsule; A diagnostic library is set up in the corresponding monitoring center, wherein the diagnostic library includes heating data types and corresponding preset diagnostic conditions, and real-time diagnosis of the heating data is performed based on the diagnostic library. Based on the diagnostic library, an alarm is issued for the heating data that does not meet the preset diagnostic conditions.
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