Multi-channel fast link-up anti-electricity theft method and system

Through multi-channel fast-blocking method and blockchain technology, the problems of low efficiency in anti-power stolen operations and easy data tampering are solved, efficient and reliable data storage and verification are achieved, and data integrity and credibility are ensured.

CN115248941BActive Publication Date: 2025-08-08SHENZHEN ZHILAI SCI & TECH +1
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Patent Information

Application Number
CN202210864367.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-21
Publication Date
2025-08-08
Estimated Expiration
2042-07-21

AI Technical Summary

Technical Problem

In the prior art, the on-site operation of anti-power stolen power is inefficient and the data is easy to tamper with, and the judicial certification is low credibility and cannot be used as electronic evidence.

Method used

Through the multi-channel fast linking method, the evidence storage management platform is used to query the work task order and issue it to the collection workstation, obtain on-site law enforcement data, automatically upload it to the third-party storage system and verify it, and the evidence storage metadata is archived to the electronic evidence storage platform, and blockchain technology is used to ensure that the data cannot be tampered with.

Benefits of technology

It improves the efficiency of data upload, avoids the risk of data tampering, and ensures the credibility of data and the reliability of electronic evidence.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a multi-channel fast-upload anti-electricity theft method and system, the method comprising: an evidence management platform queries an anti-electricity theft monitoring system at preset time intervals to determine whether a work order has been generated, and issues and pushes the work order to a collection workstation; obtains on-site law enforcement data and records the law enforcement data in a law enforcement instrument; gathers information on all law enforcement metadata associated with the work order number; uploads the law enforcement data and law enforcement metadata corresponding to all work order numbers to the evidence management platform; the evidence management platform stores all law enforcement data in a third-party storage system, synthesizes the work order and the law enforcement metadata corresponding to the work order into complete evidence metadata, and submits the complete evidence metadata to an electronic evidence platform. The anti-electricity theft method provided by the present invention uses blockchain technology to store law enforcement data in a third-party storage system and submits the evidence metadata to an electronic evidence platform, effectively preventing the possibility of data tampering.
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Description

Technical Field

[0001] The present invention belongs to the field of blockchain technology and relates to a multi-channel rapid on-chain anti-electricity theft method and system. Background Art

[0002] In recent years, the number of electricity theft cases detected by power supply companies has steadily increased year by year, leading to a growing number of legal cases. During field operations, manually printing out anti-theft worksheets and entering all enforcement data into a computer after the worksheets are completed is inefficient and prone to misclassification. Furthermore, storing enforcement data locally creates the potential for tampering, reducing the credibility of legal evidence and rendering it unusable as electronic evidence. Summary of the Invention

[0003] In view of the above problems, the present invention provides a multi-channel fast uplink anti-electricity theft method and system to solve the problem of secure storage of judicial data.

[0004] The present invention provides a multi-channel fast uplink anti-electricity theft method, comprising:

[0005] S1: The evidence management platform queries the anti-electricity theft monitoring system at preset time intervals to see whether a work order has been generated. If a work order has been generated, the evidence management platform obtains the work order information and sends the work order to the collection workstation.

[0006] S2: Acquire on-site law enforcement data and record the law enforcement data corresponding to the work order into the body camera;

[0007] S3: Traverse the law enforcement data in the body camera and collect all law enforcement metadata information associated with the work task order number; the collection workstation uploads the law enforcement data and law enforcement metadata corresponding to all work task order numbers to the evidence management platform;

[0008] S4: The evidence management platform receives all law enforcement data and law enforcement metadata sent by the collection workstation and stores all law enforcement data in a third-party storage system; at the same time, the evidence management platform combines the work order and the law enforcement metadata corresponding to the work order into complete evidence metadata, and submits the evidence metadata to the electronic evidence platform;

[0009] S5: The evidence management platform queries the electronic evidence platform for evidence information and work order data to verify whether the work order and the law enforcement metadata corresponding to the work order are accurate; if accurate, the evidence metadata is archived and the entire process and timestamp are recorded.

[0010] Furthermore, step S1 includes:

[0011] S101: The evidence management platform queries the anti-electricity theft monitoring system at a preset time interval to determine whether a work order has been generated. If a work order has been generated, the evidence management platform obtains information about the work order; the work order information includes the work order number, power supply unit, electricity consumption type, work order type, substation number, substation name, user number, work order type, work order status, and energy meter asset number.

[0012] S102: The evidence storage management platform sends and pushes the work order to the collection workstation, and the collection workstation receives the work order and saves it to the local database;

[0013] S103: The collection workstation periodically queries or modifies the status of the work order from the evidence management platform.

[0014] Furthermore, the law enforcement data includes anti-theft movie audio data and anti-telephone text data, and the law enforcement device is used to obtain the anti-theft movie audio data and the anti-telephone text data. There are N law enforcement devices, where N is a natural number.

[0015] Furthermore, step S3 includes:

[0016] S301: The terminal software of the collection workstation traverses the law enforcement data in the body camera and arranges them in order of timestamps; automatically matches the work task order number; if the automatic match fails, the work task order number and the data file time sequence are displayed for the law enforcement personnel to select and confirm; the terminal software of the collection workstation collects all law enforcement metadata information associated with the work task order number;

[0017] S302: The terminal software of the collection workstation initiates an https interface request to upload the law enforcement metadata corresponding to all work task numbers to the evidence management platform;

[0018] S303: Each body camera activates a TCP channel and first transmits the law enforcement metadata information, which includes the work task number, data file type, total number of block data, and current number of blocks; then transmits the fixed block data of the law enforcement data, handshaking once for each block of data transmitted. When an accident occurs, the block data transmission continues from the breakpoint;

[0019] S304: The evidence management platform accepts the TCP channel request and maintains the index tree of the data file and data block of the work order in the memory. Each time a block of work order data file is received, it is cached in sequence in a local temporary buffer file.

[0020] S305: After the law enforcement metadata corresponding to all work task numbers are transmitted, the evidence management platform initiates a summary verification interface to confirm the summary value of each law enforcement metadata file.

[0021] Furthermore, step S4 includes:

[0022] S401: The evidence management platform receives all law enforcement data sent by the collection workstation, checks the integrity of the law enforcement data file corresponding to the work order, initiates a storage command to the third-party storage system, stores the law enforcement data in the third-party storage system, and obtains a hash value of the law enforcement data after successful storage;

[0023] S402: The evidence management platform aggregates the work order, the enforcement metadata corresponding to the work order, and the hash value of the enforcement data into complete evidence metadata, and submits the evidence metadata to the electronic evidence platform; the electronic evidence platform returns the hash value of the zone node after solidifying the evidence;

[0024] S403: The evidence management platform updates the evidence status of the work order in the local database.

[0025] Furthermore, step S5 includes:

[0026] S501: The evidence management platform queries the electronic evidence platform for evidence information and work order data, where the query conditions include the work order number and hash value; the electronic evidence platform returns the query results and evidence information;

[0027] S502: The evidence management platform verifies whether the work order and the law enforcement metadata corresponding to the work order are accurate; if accurate, it sends a read-only request for the work order data file to the third-party storage system, archives the evidence metadata, sets the evidence metadata file to read-only status, and records the entire process and timestamp.

[0028] Furthermore, the summary value is: a verification value obtained by performing a summary operation on an unstructured data file generated by the law enforcement process associated with the work order.

[0029] Furthermore, the evidence metadata is data stored in the blockchain node, including the work task number, trusted timestamp, collection workstation number, and the amount of collected data; each collected data file includes at least the file name, file type, suffix name, file length, storage address URL, summary value and collection timestamp.

[0030] Furthermore, the third-party storage system is an IPFS distributed storage system, and the electronic evidence storage platform is a blockchain node.

[0031] In order to solve the above problems, the present invention further provides a multi-channel fast uplink anti-electricity theft system, which is used to implement the above multi-channel fast uplink anti-electricity theft method, including:

[0032] Anti-electricity theft monitoring system, used to generate work order;

[0033] Evidence management platform, a cloud service management platform deployed on a network node or storage node; used to obtain the work order from the anti-electricity theft monitoring system and send it to the collection workstation;

[0034] The evidence management platform is also used to receive all law enforcement data sent by the collection workstation and store all law enforcement data in a third-party storage system; at the same time, the evidence management platform combines the work order and the law enforcement metadata corresponding to the work order into complete evidence metadata, and submits the evidence metadata to the electronic evidence platform;

[0035] A collection workstation is used to obtain on-site law enforcement data, collect all law enforcement metadata associated with the work task order number, and upload the law enforcement data and law enforcement metadata corresponding to all work task order numbers to the evidence management platform;

[0036] A third-party storage system, either on-premises or in the cloud, for distributed storage of all law enforcement data;

[0037] The electronic evidence storage platform is a blockchain node deployed on a computing node, which is used to archive the evidence metadata.

[0038] The beneficial effects of the present invention are:

[0039] The present invention provides a multi-channel fast-upload anti-electricity theft method, which standardizes the management of anti-electricity theft law enforcement equipment by associating the issuance of work task orders with the entry and exit of law enforcement equipment; automatically exports law enforcement data through law enforcement equipment and automatically uploads it to a storage node, thereby improving data upload efficiency and avoiding the risk of law enforcement data being tampered with in a local directory file that is stored in the form of a file; and, the evidence management platform stores the law enforcement data in a third-party storage system in the form of a file or an object, and archives the evidence metadata to the electronic evidence platform, effectively avoiding the possibility of data tampering. BRIEF DESCRIPTION OF THE DRAWINGS

[0040] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only part of the embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0041] Figure 1 This is a flow chart of an anti-electricity theft method with multi-channel fast uplink according to an embodiment;

[0042] Figure 2 Issue flow charts for work orders;

[0043] Figure 3 Develop a law enforcement flow chart for the release of law enforcement equipment;

[0044] Figure 4 Export and upload flowcharts for law enforcement equipment storage;

[0045] Figure 5 Flowchart for storing law enforcement data on-chain;

[0046] Figure 6 Archiving a flow chart for law enforcement data validation;

[0047] Figure 7 This is a block diagram of a multi-channel fast uplink anti-electricity theft system according to an embodiment of the present application. DETAILED DESCRIPTION

[0048] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0049] Figure 1 A flowchart of an embodiment of a multi-channel fast uplink anti-electricity theft method disclosed in the present invention is shown as follows: Figure 1 As shown, in this embodiment, the anti-electricity theft method includes the following steps:

[0050] S1: The work order is issued. The evidence management platform queries the anti-electricity theft monitoring system at a preset time interval to see whether a work order has been generated. If a work order has been generated, the work order information is obtained and the work order is issued and pushed to the collection workstation.

[0051] In this embodiment, the evidence management platform obtains the work task list from the anti-electricity theft monitoring system, pushes the work task list to the collection workstation and stores it in the local database.

[0052] Further, if Figure 2 As shown, step S1 includes:

[0053] S100: The anti-electricity theft monitoring system generates a work order;

[0054] S101: The evidence management platform queries the anti-electricity theft monitoring system at a preset time interval to see whether a work order has been generated. If a work order has been generated, the work order information is obtained.

[0055] Specifically, the evidence management platform sends a work order query task to the anti-electricity theft monitoring system through the https protocol API every 60 seconds to obtain the work order. The query conditions include: power supply station number, work order start time, and work order end time.

[0056] Among them, the work task order information includes but is not limited to the work task order number, power supply unit, electricity consumption type, work task order type, substation number, substation name, user number, work task order type, work task order status, and electricity meter asset number.

[0057] S102: The evidence storage management platform sends and pushes the work order to the collection workstation, which receives the work order and saves it to the local database.

[0058] S103: The collection workstation periodically queries or modifies the status of the work order from the evidence management platform.

[0059] Furthermore, after obtaining the work order, the evidence management platform saves it in a local database so that the collection workstation can query or modify the status of the work order from the evidence management platform at regular intervals.

[0060] S2: Obtain on-site law enforcement data and record the law enforcement data corresponding to the work order into the body camera.

[0061] Further, if Figure 3 As shown, step S2 includes:

[0062] S200: Log in to the collection workstation;

[0063] Specifically, law enforcement officers can log in to the collection workstation through three methods: account password, fingerprint recognition, and face recognition.

[0064] S201: Select a work order and ship out the law enforcement device;

[0065] In this embodiment, the collection workstation includes three body cameras, all of which are certified by the standard. Law enforcement officers receive the body camera delivery order, select the work order, and record it in the local database.

[0066] S202: On-site law enforcement.

[0067] After receiving the body camera, the law enforcement officer goes to the scene to enforce the law, records the law enforcement data in multiple files and data in various formats corresponding to the work order, and records the law enforcement data corresponding to the work order number in the body camera.

[0068] Specifically, the law enforcement data includes anti-theft movie audio data and anti-electricity theft text data, and the body law enforcement device is used to obtain the anti-theft movie audio data and anti-electricity theft text data.

[0069] Among them, the anti-theft audio and video data includes law enforcement data in audio MP3, video MP4 and picture JPG formats; the anti-theft text data includes law enforcement data in WORD file, EXECL table and TXT log file formats.

[0070] S3: Return the law enforcement device to the collection workstation (i.e., put the law enforcement device into storage). The terminal software in the collection workstation traverses the law enforcement data in the law enforcement device and collects all law enforcement metadata information associated with the work task order number. The collection workstation uploads all law enforcement data and law enforcement metadata corresponding to the work task order number to the evidence management platform.

[0071] Further, if Figure 4 As shown, step S3 includes:

[0072] S300: Law enforcement equipment is put into storage;

[0073] Specifically, law enforcement personnel log into the collection workstation and insert the law enforcement device.

[0074] As an embodiment of the present invention, law enforcement personnel can log in to the collection workstation through three methods: account password, fingerprint recognition, and face recognition, and connect the law enforcement instrument to the collection workstation.

[0075] S301: The collection workstation matches law enforcement data and law enforcement metadata according to the work task order number;

[0076] Specifically, the terminal software of the collection workstation traverses the law enforcement data in the law enforcement instrument, arranges them in timestamp order, and automatically matches the work task order number. If the automatic match fails, the work task order number and the data file time sorting will be displayed for the law enforcement personnel to select and confirm; the terminal software of the collection workstation collects all law enforcement metadata information associated with the work task order number.

[0077] In this embodiment, the collection workstation arranges the law enforcement data in timestamp order and matches the work task order number; the collection workstation associates the work task order number with the law enforcement metadata.

[0078] Specifically, the collection workstation traverses the law enforcement data format, timestamp, etc. on the law enforcement instrument, sorts the law enforcement data files by time and automatically matches the work task number. The law enforcement data that cannot be automatically matched with the work task number is handed over to the law enforcement personnel for manual selection and confirmation.

[0079] The collection workstation collects all law enforcement metadata information associated with the work task order number.

[0080] S302: Upload law enforcement metadata to the evidence management platform;

[0081] As an embodiment of the present invention, the terminal software of the collection workstation initiates an https interface request to upload the law enforcement metadata corresponding to all work task numbers to the evidence management platform.

[0082] Preferably, law enforcement metadata is reported to the evidence management platform through the https interface; law enforcement data is uploaded to the evidence management platform in the form of block data through the tcp transmission channel. The size of the block data is dynamically adjusted according to the bandwidth of the collection workstation, and breakpoint resumption is supported.

[0083] S303: Upload law enforcement data to the evidence management platform;

[0084] As an embodiment of the present invention, the collection workstation uploads the law enforcement data to the evidence management platform in the form of block data through the TCP transmission channel.

[0085] Preferably, there are multiple body cameras, each of which uses a TCP transmission channel to facilitate real-time upload of law enforcement data to the evidence management platform in the form of block data. During data transmission, law enforcement metadata information including the work order number, data file type, total number of block data, and current block number is first transmitted, followed by the fixed block data of the law enforcement data. Block data refers to the data generated during the law enforcement process, such as large audio and video data, which is obtained by segmenting into blocks.

[0086] Preferably, the upload of block data supports breakpoint resumption. When an abnormal transmission interruption occurs, it is not necessary to start the transmission from the beginning every time. It is only necessary to re-upload from the breakpoint block number. In addition, the size of the block data can be dynamically adjusted according to the bandwidth of the acquisition workstation.

[0087] S304: The evidence management platform accepts the TCP channel request and maintains the index tree of the work order data file and data block in memory. Each block data of a work order data file is sequentially cached in a local temporary buffer file.

[0088] S305: After all law enforcement metadata corresponding to the work task numbers are transmitted, the evidence management platform initiates a summary verification interface to confirm the summary value of each law enforcement metadata file.

[0089] As an embodiment of the present invention, after the law enforcement metadata is transmitted, the evidence management platform initiates a summary verification interface to confirm the summary value of each law enforcement metadata file.

[0090] The digest value is a verification value obtained by performing a digest operation on the unstructured data file generated during the enforcement process associated with the work order. Digest algorithms used include, but are not limited to, md5, sha64, and sha256.

[0091] As an embodiment of the present invention, the law enforcement data is automatically exported by the law enforcement instrument and automatically uploaded to the storage node, which improves the efficiency of data uploading and avoids the risk of law enforcement data being tampered with in the local directory file stored in the form of a file.

[0092] S4: The evidence management platform receives all law enforcement data sent by the collection workstation and stores all law enforcement data in a third-party storage system; at the same time, the evidence management platform combines the work order and the law enforcement metadata corresponding to the work order into complete evidence metadata, and submits the evidence metadata to the electronic evidence platform.

[0093] Further, if Figure 5 As shown, step S4 includes:

[0094] S401: The evidence management platform receives all law enforcement data sent by the collection workstation, checks the integrity of the law enforcement data file corresponding to the work order, initiates a storage command to the third-party storage system, stores the law enforcement data in the third-party storage system, and obtains the hash value of the law enforcement data after successful storage;

[0095] In this embodiment, the evidence management platform receives law enforcement data in blocks, checks the integrity of the law enforcement data corresponding to the work order, stores the law enforcement data in a third-party storage system as a file or object, and obtains the hash value of the law enforcement data after successful storage.

[0096] S402: The evidence storage management platform submits the evidence storage metadata to the electronic evidence storage platform;

[0097] Specifically, the evidence management platform combines the work order, the hash value of the law enforcement data, and the law enforcement metadata corresponding to the work order into complete evidence metadata, initiates an evidence command to the electronic evidence platform, and submits the evidence metadata to the electronic evidence platform. After the electronic evidence platform solidifies the evidence, it returns the hash value of the district node.

[0098] S403: The evidence management platform updates the evidence status of the work order in the local database.

[0099] S5: Verification and archiving of law enforcement data. The evidence management platform queries the electronic evidence platform for evidence information and work order data to verify whether the work order and the law enforcement metadata corresponding to the work order are accurate. If accurate, the evidence metadata will be archived and the entire process and timestamp will be recorded.

[0100] Further, if Figure 6 As shown, Figure 6 For the law enforcement data verification and archiving flow chart, step S5 includes:

[0101] S501: The evidence storage management platform queries the electronic evidence storage platform for evidence information;

[0102] Specifically, the evidence management platform queries the electronic evidence platform for evidence information and work order data, and the query conditions include the work order number and hash value; the electronic evidence platform returns the query results and evidence information.

[0103] S502: Data archiving.

[0104] Specifically, the evidence management platform verifies whether the work order and the law enforcement metadata corresponding to the work order are accurate; if accurate, it sends a read-only request for the work order data file to the third-party storage system, archives the evidence metadata, sets the evidence metadata file to read-only status, and records the entire process and timestamp.

[0105] Preferably, the third-party storage system in the embodiment of the present invention is an IPFS distributed storage system, and the electronic evidence storage platform is a blockchain node.

[0106] An anti-electricity theft method provided by the present invention standardizes the management of anti-electricity theft law enforcement equipment by associating the issuance of work task orders with the entry and exit of law enforcement equipment; automatically exports law enforcement data through law enforcement equipment and automatically uploads it to a storage node, thereby improving data uploading efficiency and avoiding the risk of law enforcement data being tampered with when the law enforcement data is stored in a local directory file in the form of a file; and, the evidence management platform stores law enforcement metadata in a third-party storage system in the form of a file or object, and archives the evidence metadata to the electronic evidence platform, effectively avoiding the possibility of data tampering.

[0107] Figure 7 This is a block diagram of a multi-channel fast uplink anti-electricity theft system according to an embodiment of the present application. Figure 7 As shown in the figure, the anti-electricity theft system includes an anti-electricity theft monitoring system, an evidence management platform, a collection workstation, a third-party storage system, and an electronic evidence storage platform. Among them, the evidence management platform is the core of the entire system.

[0108] The anti-electricity theft monitoring system is used to generate work order.

[0109] The evidence management platform is a cloud service management platform deployed on network nodes or storage nodes. It is used to obtain work orders from the anti-electricity theft monitoring system and distribute them to the collection workstation.

[0110] The collection workstation is used to obtain on-site law enforcement data, collect all law enforcement metadata associated with the work task order number, and upload the law enforcement metadata corresponding to all work task order numbers to the evidence management platform.

[0111] The evidence management platform is also used to receive all law enforcement metadata sent by the collection workstation and store all law enforcement metadata in a third-party storage system; at the same time, the evidence management platform synthesizes the work order and the law enforcement metadata corresponding to the work order into complete evidence metadata, and submits the evidence metadata to the electronic evidence platform.

[0112] The third-party storage system is a local or cloud storage system that distributes all law enforcement metadata.

[0113] The electronic evidence storage platform is a blockchain node deployed on the computing node, which is used to archive evidence metadata. In addition, the anti-electricity theft system can also store all the above data information in the local database.

[0114] This system uses blockchain and distributed storage to solve the problem of large-scale data on-chain. It stores law enforcement data in the IPFS distributed system and permanently stores the evidence metadata on the blockchain. Users can access this data at any time through the address information of the file on the blockchain. At the same time, to ensure that the data on IPFS is not tampered with, the hash algorithm results of the file are also stored on the blockchain. This allows users to verify the integrity and reliability of the obtained on-chain data.

[0115] The above is a detailed introduction to a multi-channel fast uplink anti-electricity theft method and system disclosed in an embodiment of the present invention, but it is only an example, and the present invention is not limited to the specific implementation methods described above. For those skilled in the art, based on the ideas of the present invention, equivalent modifications or substitutions made to the invention are also within the scope of the present invention. Therefore, equal transformations, modifications, improvements, etc. made without departing from the spirit and principle of the present invention should be included in the scope of the present invention. In summary, the content of this specification should not be understood as limiting the present invention.

Claims

1. A multi-channel fast link-up anti-electricity theft method, characterized in that: include: S1: The evidence management platform queries the anti-electricity theft monitoring system at preset time intervals to see whether a work order has been generated. If a work order has been generated, the evidence management platform obtains the work order information and sends the work order to the collection workstation. S2: Acquire on-site law enforcement data and record the law enforcement data corresponding to the work order into the body camera; S3: Traverse the law enforcement data in the body camera and collect all law enforcement metadata information associated with the work task order number; the collection workstation uploads the law enforcement data and law enforcement metadata corresponding to all work task order numbers to the evidence management platform; S4: The evidence management platform receives all law enforcement data and law enforcement metadata sent by the collection workstation and stores all law enforcement data in a third-party storage system; at the same time, the evidence management platform combines the work order and the law enforcement metadata corresponding to the work order into complete evidence metadata, and submits the evidence metadata to the electronic evidence platform; S5: The evidence storage management platform queries the electronic evidence storage platform for evidence information and work order data to verify whether the work order and the law enforcement metadata corresponding to the work order are accurate; If accurate, the evidence metadata will be archived and the entire process and timestamp will be recorded; Step S3 includes: S301: The terminal software of the collection workstation traverses the law enforcement data in the body camera and arranges them in order of timestamps; Automatically match the work task order number; if the automatic match fails, the work task order number and the data file time sequence are displayed for law enforcement personnel to select and confirm; the terminal software of the collection workstation collects all law enforcement metadata information associated with the work task order number; S302: The terminal software of the collection workstation initiates an https interface request to upload the law enforcement metadata corresponding to all work task numbers to the evidence management platform; S303: Each body camera activates a TCP channel and first transmits the law enforcement metadata information, which includes the work order number, data file type, total number of block data, and current number of blocks; then transmits the fixed block data of the law enforcement data, handshaking once for each block of data transmitted. If an accident occurs, the block data transmission continues from the breakpoint; S304: The evidence management platform accepts the TCP channel request and maintains the index tree of the data file and data block of the work order in the memory. Each time a block of work order data file is received, it is cached in sequence in a local temporary buffer file. S305: After the law enforcement metadata corresponding to all work task numbers are transmitted, the evidence management platform initiates a summary verification interface to confirm the summary value of each law enforcement metadata file.

2. The anti-electricity theft method with multi-channel fast uplink according to claim 1 is characterized in that: Step S1 includes: S101: The evidence storage management platform queries the anti-electricity theft monitoring system at a preset time interval to determine whether a work order has been generated. If a work order has been generated, the evidence storage management platform obtains information about the work order; the work order information includes the work order number, power supplier, electricity consumption type, work order type, substation number, substation name, user number, work order type, work order status, and energy meter asset number. S102: The evidence storage management platform sends and pushes the work order to the collection workstation, and the collection workstation receives the work order and saves it to the local database; S103: The collection workstation periodically queries or modifies the status of the work order from the evidence management platform.

3. The anti-electricity theft method with multi-channel fast uplink according to claim 1, characterized in that: The law enforcement data includes anti-theft movie audio data and anti-telephone text data. The law enforcement device is used to obtain the anti-theft movie audio data and the anti-telephone text data. There are N law enforcement devices, where N is a natural number.

4. The anti-electricity theft method with multi-channel fast uplink according to claim 1, characterized in that: Step S4 includes: S401: The evidence management platform receives all law enforcement data sent by the collection workstation, checks the integrity of the law enforcement data file corresponding to the work order, initiates a storage command to the third-party storage system, stores the law enforcement data in the third-party storage system, and obtains a hash value of the law enforcement data after successful storage; S402: The evidence management platform aggregates the work order, the enforcement metadata corresponding to the work order, and the hash value of the enforcement data into complete evidence metadata, and submits the evidence metadata to the electronic evidence platform; the electronic evidence platform returns the hash value of the zone node after solidifying the evidence; S403: The evidence management platform updates the evidence status of the work order in the local database.

5. The anti-electricity theft method with multi-channel fast uplink according to claim 1, characterized in that: Step S5 includes: S501: The evidence management platform queries the electronic evidence platform for evidence information and work order data, where the query conditions include the work order number and hash value; the electronic evidence platform returns the query results and evidence information; S502: The evidence management platform verifies whether the work order and the law enforcement metadata corresponding to the work order are accurate; if accurate, it sends a read-only request for the work order data file to the third-party storage system, archives the evidence metadata, sets the evidence metadata file to read-only status, and records the entire process and timestamp.

6. The anti-electricity theft method with multi-channel fast uplink according to claim 1, characterized in that: The summary value is: a verification value obtained by performing a summary operation on an unstructured data file generated by the law enforcement process associated with the work order.

7. The anti-electricity theft method with multi-channel fast uplink according to claim 4, characterized in that: The evidence metadata is the data stored in the blockchain node, including the work task number, trusted timestamp, collection workstation number and the amount of collected data; each collected data file includes at least the file name, file type, suffix name, file length, storage address URL, summary value and collection timestamp.

8. The anti-electricity theft method with multi-channel fast uplink according to claim 1, characterized in that: The third-party storage system is an IPFS distributed storage system, and the electronic evidence storage platform is a blockchain node.

9. A multi-channel fast uplink anti-electricity theft system, used to implement the multi-channel fast uplink anti-electricity theft method according to any one of claims 1 to 8, characterized in that: include: Anti-electricity theft monitoring system, used to generate work order; Evidence management platform, a cloud service management platform deployed on network nodes or storage nodes; Used to obtain the work order from the anti-electricity theft monitoring system and send it to the collection workstation; The evidence management platform is also used to receive all law enforcement data sent by the collection workstation and store all law enforcement data in a third-party storage system; at the same time, the evidence management platform combines the work order and the law enforcement metadata corresponding to the work order into complete evidence metadata, and submits the evidence metadata to the electronic evidence platform; A collection workstation is used to obtain on-site law enforcement data, collect all law enforcement metadata associated with the work task order number, and upload the law enforcement data and law enforcement metadata corresponding to all work task order numbers to the evidence management platform; A third-party storage system, either on-premises or in the cloud, for distributed storage of all law enforcement data; The electronic evidence storage platform is a blockchain node deployed on a computing node, which is used to archive the evidence metadata.

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