CN111130007A - Sequential power transmission line field operation method and system - Google Patents

Sequential power transmission line field operation method and system Download PDF

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Publication number
CN111130007A
CN111130007A CN201911268992.5A CN201911268992A CN111130007A CN 111130007 A CN111130007 A CN 111130007A CN 201911268992 A CN201911268992 A CN 201911268992A CN 111130007 A CN111130007 A CN 111130007A
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China
Prior art keywords
terminal
job
work
transmission line
responsible
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Granted
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CN201911268992.5A
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CN111130007B (en
Inventor
段绍辉
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Shenzhen Power Supply Bureau Co Ltd
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Shenzhen Power Supply Bureau Co Ltd
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Priority to CN201911268992.5A priority Critical patent/CN111130007B/en
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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G1/00Methods or apparatus specially adapted for installing, maintaining, repairing or dismantling electric cables or lines
    • H02G1/02Methods or apparatus specially adapted for installing, maintaining, repairing or dismantling electric cables or lines for overhead lines or cables
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K17/00Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations
    • G06K17/0022Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations arrangements or provisious for transferring data to distant stations, e.g. from a sensing device
    • G06K17/0029Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations arrangements or provisious for transferring data to distant stations, e.g. from a sensing device the arrangement being specially adapted for wireless interrogation of grouped or bundled articles tagged with wireless record carriers
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/10Office automation; Time management
    • G06Q10/103Workflow collaboration or project management
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q50/00Systems or methods specially adapted for specific business sectors, e.g. utilities or tourism
    • G06Q50/06Electricity, gas or water supply

Abstract

The application relates to a sequential power transmission line field operation method and a sequential power transmission line field operation system. According to the sequential on-site operation method for the power transmission line, the operation terminal scans the electronic tag attached to the surface of the operation object corresponding to the operation terminal, and the operation of the link responsible for the operation terminal is executed, so that the rigid binding of the operation terminal and the operation object is realized, the illegal operation condition of the on-site operation of the power transmission line is reduced, and the safety degree of the on-site operation of the power transmission line is improved. In addition, by establishing the operation sequence of the plurality of operation terminals, an ordered transmission line field operation link is formed, and the fluency and the operation efficiency of the transmission line field operation are improved.

Description

Sequential power transmission line field operation method and system
Technical Field
The application relates to the technical field of transmission line field operation, in particular to a sequential transmission line field operation method and system.
Background
The field operation of the power transmission line includes four types, namely inspection operation, maintenance operation, overhaul operation and test operation. The field operation of the power transmission line relates to ten elements, wherein one element is a person, and the other nine elements are object elements used in the operation process, such as an operation vehicle, safety equipment, safety measures, operation equipment, an operation method, an operation position, an operation environment, an operation object, an operation ticket and the like. Each personal element and the matter element interact to form an operation link in the operation.
In the traditional scheme, the operation mode of each operation link of the on-site operation of the power transmission line is that a work staff member is appointed by a work responsible person to interact with a corresponding physical element, so that the operation link is completed. However, the conventional work method has a problem: in actual operation, operators or equipment which do not conform to operation regulations exist, and each operator or equipment cannot meet the requirements only by means of on-site command of a working responsible person, so that the safety of on-site operation of the power transmission line is greatly damaged, and meanwhile, the efficiency of on-site operation of the power transmission line is low.
For example, there are operators who do not operate according to the job rules, operators who do not have the qualifications and capabilities, equipment used during the job do not meet the requirements of the job rules, and so on.
Disclosure of Invention
Therefore, it is necessary to provide a sequential power transmission line field operation method and system for solving the problem that in the conventional power transmission line field operation method, operators or equipment which do not meet operation regulations exist, and each operator or equipment cannot meet requirements only by means of on-site command of a working responsible person.
The application provides a sequential power transmission line field operation method, which comprises the following steps:
the responsible terminal sends the job token to an operation terminal; the operation token is used for recording an operation flow when the operation terminal executes the operation of the link in charge of the operation terminal;
the operation terminal acquires the operation token, scans an electronic tag attached to the surface of an operation object corresponding to the operation terminal, and starts to execute the operation of a link responsible for the operation terminal;
after the operation terminal finishes the operation of the link responsible by the operation terminal, the operation terminal sends the operation token to the next operation terminal according to the operation sequence in the operation token;
repeatedly executing the operation terminal to obtain the operation token, starting to execute the operation of the link which is responsible for the operation terminal, and sending the operation token to the next operation terminal after the operation is finished until the last operation terminal finishes the operation of the link which is responsible for the last operation terminal;
the responsible terminal acquires the operation token and judges whether the whole operation process is finished;
and if the whole operation process is finished, the responsible terminal closes the operation process of the last operation terminal to finish the whole operation process.
The application further provides a sequential power transmission line field operation system, which adopts the sequential power transmission line field operation method mentioned in the foregoing, and the sequential power transmission line field operation system includes:
the responsible terminal is used for sending a job token to the job terminal which starts the job and receiving the job token sent by the job terminal which finally works;
the operation terminals are connected in sequence according to an operation sequence, and are used for receiving an operation token sent by the responsible terminal, scanning an electronic tag attached to the surface of an operation object corresponding to the operation terminal, starting to execute the operation of the link responsible for the operation terminal, and transmitting the operation token to the next operation terminal until the last operation terminal finishes the operation of the link responsible for the last operation terminal, and returning the operation token to the responsible terminal by the last operation terminal;
the first operation terminal and the last operation terminal in the plurality of operation terminals are respectively connected with the responsible terminal;
each work object is connected with one work terminal and is used for being matched with the work terminal to complete the work of the link which is responsible for the work terminal.
The application relates to a sequential transmission line field operation method and a sequential transmission line field operation system, wherein an operation terminal scans an electronic tag attached to the surface of an operation object corresponding to the operation terminal, and executes the operation of a link which is responsible for the operation terminal, so that the rigid binding of the operation terminal and the operation object is realized, the generation of the illegal operation condition of the transmission line field operation is reduced, and the safety degree of the transmission line field operation is improved. In addition, by establishing the operation sequence of the plurality of operation terminals, an ordered transmission line field operation link is formed, and the fluency and the operation efficiency of the transmission line field operation are improved.
Drawings
Fig. 1 is a schematic flow chart of a sequential power transmission line field operation method according to an embodiment of the present disclosure;
fig. 2 is a schematic structural diagram of a sequential power transmission line field operation system according to an embodiment of the present disclosure;
fig. 3 is a schematic structural diagram of an operation object in the sequential power transmission line field operation system according to an embodiment of the present application.
Reference numerals:
10-sequence type transmission line field operation system
100 responsible terminal
200 operation terminal
300 work object
400 identity authentication module
Detailed Description
In order to make the objects, technical solutions and advantages of the present application more apparent, the present application is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present application and are not intended to limit the present application.
The application provides a sequential power transmission line field operation method.
The sequential power transmission line field operation method provided by the application is not limited to the execution main body. Optionally, an execution main body of the sequential transmission line field operation method provided by the present application may be a sequential transmission line field operation system 10. Alternatively, the execution main body may be a processor or other control device with a control function provided in the sequential transmission line field operation system 10.
As shown in fig. 1, in an embodiment of the present application, the sequential power transmission line field operation method includes the following steps S100 to S600:
s100, the responsible terminal 100 transmits a job token to one job terminal 200. The job token is used for recording a job flow when the job terminal 200 executes a job of a link in which the job terminal 200 is responsible.
Specifically, the responsible terminal 100 may be one of a mobile phone, a notebook computer and a tablet computer, or any other kind of intelligent terminal. Similarly, the operation terminal 200 may be one of a mobile phone, a notebook computer and a tablet computer. The responsible terminal 100 is one. The work terminal 200 may be plural. In this step, the responsible terminal 100 transmits a job token to one job terminal 200, and the job terminal 200 may be understood as a job terminal 200 that first executes a job, also referred to as a job terminal 200 that starts a job.
The job token is used for recording a job flow when the job terminal 200 executes a job of a link in charge of the job terminal 200. The job token is also used to unlock the job authority of the job terminal 200. In other words, one job terminal 200 can start to execute the job of its responsible link only after acquiring the job token.
S200, the job terminal 200 acquires the job token. Further, the work terminal 200 scans the electronic tag attached to the surface of the work object 300 corresponding to the work terminal 200, and starts to execute the work of the link in which the work terminal 200 is responsible.
Specifically, in this step, the above-mentioned contents have already been mentioned, and the job terminal 200 in this step is the job terminal 200 that starts the job. After the job terminal 200 that starts the job acquires the job token sent by the responsible terminal 100, the job terminal 200 that starts the job is equivalent to being unlocked with the job authority. Further, the work terminal 200 may scan an electronic tag attached to a surface of the work object 300 corresponding to the work terminal 200. The number of the work objects 300 is also plural, and the work terminals 200 correspond to the work objects 300 one to one. The work object 300 may be a vehicle, a work tool, a safety tool, or the like used during the field work of the power transmission line. An electronic tag is attached to the surface of each work object 300. The electronic tag can be a two-dimensional code.
The job terminal 200 scans the electronic tag attached to the surface of the job object 300 corresponding to the job terminal 200, and can establish a job relationship linked with the job object 300, so that the job terminal 200 can cooperate with the job object 300 to complete the job of the link in which the job terminal 200 is responsible.
S300, after the job terminal 200 completes the job of the link in which the job terminal 200 is responsible, the job terminal 200 sends the job token to the next job terminal 200 according to the job sequence in the job token.
Specifically, in the step, the job terminal 200 in this step is the job terminal 200 that starts the job, and after the job terminal 200 that starts the job completes the job of its responsible link, the job token is sent to the next job terminal 200 according to the job sequence in the job token. The job token stores therein a job order.
S400, repeatedly executing steps S200 to S300 until the last job terminal 200 completes the job of the link for which the last job terminal 200 is responsible. After the last job terminal 200 completes the job, the last job terminal 200 returns the job token to the responsible terminal 100.
Specifically, the steps S200 to S300 are repeatedly executed until the last job terminal 200 completes the job of the link for which the last job terminal 200 is responsible. In this process, after one job terminal 200 completes the job, the job token is transmitted to the next job terminal 200 in the order of the job. After the last job terminal 200 completes the job, the last job terminal 200 returns the job token to the in-charge terminal 100.
S500, the responsible terminal 100 obtains the job token and determines whether the whole job process is completed.
Specifically, when one job terminal 200 executes a job of the responsible link thereof, the job token may record a job flow. When the last job terminal 200 returns the job token to the responsible terminal 100, the responsible terminal 100 can check the job flow of all job terminals 200 by the job token. If all the job flows of the job terminal 200 are completed, no missing or error is generated. It is determined that the entire workflow is complete. If any job flow of the job terminal 200 is missing or wrong, it is determined that the whole job flow is not completed.
S600, if the whole job flow is completed, the responsible terminal 100 closes the job flow of the last job terminal 200 to complete the whole job flow.
Specifically, if the entire workflow is completed, the responsible terminal 100 sends a workflow closing instruction to the last job terminal 200 to complete the entire workflow.
If the entire workflow is not completed, the responsible terminal 100 may send the job token to the unfinished workflow job terminal 200, so that the unfinished workflow job terminal 200 may re-execute the job of the responsible link of the job terminal 200.
In the embodiment, one operation terminal 200 scans the electronic tag attached to the surface of the operation object 300 corresponding to the operation terminal 200, and executes the operation of the link in which the operation terminal 200 is responsible, so that the rigid binding of the operation terminal 200 and the operation object 300 is realized, the generation of the illegal operation condition of the field operation of the power transmission line is reduced, and the safety degree of the field operation of the power transmission line is improved. In addition, by establishing the operation sequence of the plurality of operation terminals 200, an ordered transmission line field operation link is formed, and the fluency and the operation efficiency of the transmission line field operation are improved.
In an embodiment of the application, before the step S100, the sequential power transmission line field operation method further includes the following steps S010 to S050:
and S010, the responsible terminal 100 acquires the work ticket. The work ticket includes a job relationship and a job order. The job relationship is used to represent the relationship between each job terminal 200 and the job object 300 corresponding to the job terminal 200. And each job terminal 200 has a job object 300 uniquely corresponding to the job terminal 200. The job sequence is a sequence in which the job tokens are sequentially transmitted by the plurality of job terminals 200 to perform a job.
Specifically, the work ticket is a written command that permits execution of work on each job object 300, and is also a written basis for execution of a security technical measure. The work ticket is filled in by the person issuing the job task and is generated after filling. After the work ticket is generated, the person who issues the job task inputs the work ticket to the charge terminal 100. The work ticket contains a job relationship and a job order.
S030, the responsible terminal 100 reads the job relation in the work ticket. Further, the responsible terminal 100 generates a plurality of electronic tags according to the job relation. Each electronic tag corresponds to one job object 300 and one job terminal 200.
Specifically, the electronic tag may be a two-dimensional code including a job relation. Each job object 300 corresponds to a unique electronic tag. The electronic tag includes a correspondence relationship between the work terminal 200 and the work object 300.
S050, the responsible terminal 100 sets each electronic tag on the surface of the work object 300 corresponding to the electronic tag.
Specifically, the electronic tag may be attached to the surface of the work object 300 by means of pasting or spraying.
In the embodiment, the responsible terminal 100 reads the job relation in the job ticket, generates the electronic tag containing the job relation and arranges the electronic tag on the surface of the job object 300, so that the job terminal 200 and the job object 300 are rigidly bound, the illegal operation condition of the field operation of the power transmission line is reduced, and the safety degree of the field operation of the power transmission line is improved.
In an embodiment of the application, after the step S010, the method further includes:
and S020, reading the job relation and the job sequence in the work ticket by the responsible terminal 100. Further, the responsible terminal 100 generates a job token according to the job relation and the job sequence.
Specifically, the steps S030 to S050 are a generation process of the electronic tag. The step S020 is a generation process of the job token.
Step S020 may be executed after step S030 to step S050, may be executed before step S030 to step S050, or may be executed in synchronization with step S030 to step S050.
In the embodiment, the operation token is generated according to the operation relation and the operation sequence in the work ticket, so that the operation token can be sequentially transmitted in the plurality of operation terminals 200 to unlock the operation authority of each operation terminal 200, an ordered transmission line field operation link is formed, and the smoothness and the operation efficiency of the transmission line field operation are improved.
In an embodiment of the present application, the step S200 includes the following steps S210 to S270:
s210, the job terminal 200 obtains the job token.
S230, the job terminal 200 reads the job relation in the job token.
S250, the job terminal 200 determines the job object 300 corresponding to the job terminal 200 according to the job relation.
S270, the job terminal 200 scans the electronic tag attached to the surface of the job object 300 corresponding to the job terminal 200, and starts to execute the job of the link in which the job terminal 200 is responsible.
Specifically, steps S210 to S270 are steps for the job terminal 200 to specifically execute the job flow.
In this embodiment, the operation terminal 200 acquires the operation relationship from the operation token, and further determines the operation object 300 corresponding to the operation terminal 200, so that irregular operations of the irregular operation terminal 200 or the irregular operation object 300 can be prevented, and the operation safety is improved.
In an embodiment of the present application, after the step S030, the following steps S041 to S043 are further included:
s041, the preset identity information and identity authentication module 400 corresponding to each job terminal 200 is generated.
Specifically, the preset identity information may be identity information of an operator who operates the work terminal 200. The identity authentication module 400 corresponds to the preset identity information one to one.
S042, searching for the job object 300 corresponding to each preset identity information according to the job relationship.
Specifically, the job relationship in the job ticket has determined the correspondence of the job terminal 200 and the job object 300. Step S041 also determines the correspondence between the preset identity information and the job terminal 200. It is understood that, according to the job relationship, the corresponding relationship between the job object 300 and the preset identity information may be determined. In other words, the correspondence relationship of the job terminal 200, the job object 300, and the preset identification information can be determined.
S043, each preset identity information and identity authentication module 400 is embedded in the job object 300 corresponding to the preset identity information.
In particular, the identity authentication module 400 may include a memory. The preset identity information may be stored in the memory. The identity authentication module 400 storing the preset identity information may be embedded in the job object 300 corresponding to the preset identity information. After this step is performed, the job object 300 includes both the preset identity information and the electronic tag.
In this embodiment, by generating the preset identity information and the identity authentication module 400 corresponding to each operation terminal 200, the preset identity information can be bound to the operation object 300 and the operation terminal 200, so that the identity information of the operation terminal 200 can be conveniently checked by the subsequent operation terminal 200 before scanning the two-dimensional code on the surface of the operation object 300, and the security is improved.
In an embodiment of the present application, before the step S270, the following steps S261 to S264 are further included:
s261, the job terminal 200 sends an authentication request to the authentication module 400 built in the job object 300.
Specifically, after the step S250, that is, after the job object 300 corresponding to the job terminal 200 is determined, the step S270 is not performed at the first time, but the steps S261 to S264 are performed. S261 to S264 are processes of verifying the identity information of the job terminal 200.
S262, the identity authentication module 400 starts the identity verification function, and the operation terminal 200 inputs the identity verification information to the identity authentication module 400.
Specifically, after the identity authentication module 400 receives the identity authentication request, the identity authentication module 400 starts an identity verification function. Alternatively, the job object 300 may pop up an authentication interface, or may pop up the authentication interface on the job terminal 200. Through the authentication interface, the operation terminal 200 may input authentication information. For example, a password is entered.
S263, the identity authentication module 400 determines whether the identity verification information matches the preset identity information.
Specifically, the authentication information is the identity information input by the operation terminal 200. The preset identity information is pre-generated identity information. The identity authentication module 400 determines whether the identity verification information matches the preset identity information.
S264, if the identity verification information matches the preset identity information, the identity authentication module 400 sends an instruction allowing the operation terminal 200 to scan the electronic tag to the operation terminal 200.
Specifically, if the identity verification information matches the preset identity information, it is determined that the operation terminal 200 is a legal operation terminal 200, and the identity authentication module 400 sends an instruction allowing the operation terminal 200 to scan the electronic tag to the operation terminal 200.
If the identity verification information does not match the preset identity information, it is determined that the operation terminal 200 is an illegal operation terminal 200, and the identity authentication module 400 sends an instruction for rejecting the operation terminal 200 to scan the electronic tag to the operation terminal 200, and closes the connection relationship between the operation object 300 and the operation terminal 200.
In this embodiment, the identity authentication module 400 of the operation object 300 performs identity authentication on the operation terminal 200, so that validity verification of the operation terminal 200 is realized, and after the verification is passed, the operation terminal 200 is allowed to scan an instruction of an electronic tag, so that the safety of the field operation process of the whole power transmission line is further improved.
In an embodiment of the present application, the authentication information may be one of a password, fingerprint information, and face image information, which are presented in a digital form.
Specifically, the authentication information may not be limited to the above embodiments. When the authentication information is a password presented in a digital form, the operation terminal 200 inputs a digital password to the authentication module 400 to complete the authentication of the operation terminal 200. When the authentication information is fingerprint information, the operation terminal 200 inputs a fingerprint of an operator to the identity authentication module 400, and completes the identity authentication of the operation terminal 200 through fingerprint identification. When the authentication information is face image information, the operation terminal 200 completes the authentication of the operation terminal 200 through face recognition.
In this embodiment, by setting various forms of authentication information, the authentication process of the operation terminal 200 is simplified and made efficient.
In an embodiment of the present application, when one job terminal 200 acquires the job token, the job flow of the link job for which the previous job terminal 200 is responsible is closed.
Specifically, when one job terminal 200 acquires the job token, the job terminal 200 sends an instruction for closing the job flow to the previous job terminal 200, so that the job flow of the link job for which the previous job terminal 200 is responsible is closed.
In this embodiment, when one job terminal 200 acquires the job token, each job flow is locked by closing the job flow of the link job for which the previous job terminal 200 is responsible, so as to avoid errors and waste of job resources (e.g., electric power) in the job flow.
The application also provides a sequential power transmission line field operation system 10. The sequential transmission line field operation system 10 adopts the sequential transmission line field operation method mentioned in the foregoing.
As shown in fig. 2, in an embodiment of the present application, the sequential transmission line field work system 10 includes a responsible terminal 100, a plurality of work terminals 200, and a plurality of work objects 300. The plurality of job terminals 200 are connected in order in accordance with the job order. The first and last job terminals 200 and 200 of the plurality of job terminals 200 are connected to the in-charge terminal 100, respectively. Each job object 300 is connected to one job terminal 200.
The in-charge terminal 100 is configured to transmit a job token to the job terminal 200 that starts a job, and to receive a job token transmitted by the job terminal 200 that receives a final job. The job terminal 200 is configured to receive the job token sent by the responsible terminal 100, scan the electronic tag attached to the surface of the job object 300 corresponding to the job terminal 200, start to execute the job of the link responsible for the job terminal 200, and transmit the job token to the next job terminal 200 until the last job terminal 200 completes the job of the link responsible for the last job terminal 200. Further, after the last job terminal 200 completes the job of the responsible link, the last job terminal 200 returns a job token to the responsible terminal 100.
The job object 300 is used for cooperating with the job terminal 200 to complete the job of the link in charge of the job terminal 200.
Specifically, the number of the job terminals 200 may be equal to the number of the job objects 300. One job terminal 200 corresponds to one job object 300. The responsible terminal 100 may be one of a mobile phone, a notebook computer and a tablet computer, or any other kind of intelligent terminal. Similarly, the operation terminal 200 may be one of a mobile phone, a notebook computer and a tablet computer. The work object 300 may be one of a work vehicle, a safety tool, a safety measure, a work tool, a work method, a work location, a work environment, the work object 300, and a work ticket.
In this embodiment, the responsible terminal 100 is provided, so that the entire operation flow is monitored. By setting the rigid binding of the plurality of operation terminals 200 and the plurality of operation objects 300, the generation of the illegal operation condition of the field operation of the power transmission line is reduced, and the safety degree of the field operation of the power transmission line is improved.
As shown in fig. 3, in an embodiment of the present application, the sequential transmission line field operation system 10 further includes a plurality of identity authentication modules 400. Each authentication module 400 is embedded in one of the job objects 300. The identity authentication module 400. The method is used for performing identity verification on the work terminal 200 before the work terminal 200 scans the electronic tag attached to the surface of the work object 300 corresponding to the work terminal 200.
Specifically, the identity authentication module 400 may perform identity authentication on the operation terminal 200 through various implementation manners such as digital password authentication, fingerprint authentication, face authentication, and the like.
In this embodiment, the identity authentication module 400 is arranged to authenticate the identity of the operation terminal 200, so that the validity of the operation terminal 200 is verified, and after the verification is passed, the operation terminal 200 is allowed to scan the instruction of the electronic tag, so that the safety of the field operation process of the whole power transmission line is further improved.
The technical features of the embodiments described above may be arbitrarily combined, and for the sake of brevity, all possible combinations of the technical features in the embodiments described above are not described, but should be considered as being within the scope of the present specification as long as there is no contradiction between the combinations of the technical features.
The above-mentioned embodiments only express several embodiments of the present application, and the description thereof is more specific and detailed, but not construed as limiting the scope of the present application. It should be noted that, for a person skilled in the art, several variations and modifications can be made without departing from the concept of the present application, which falls within the scope of protection of the present application. Therefore, the protection scope of the present application shall be subject to the appended claims.

Claims (10)

1. A sequential power transmission line field operation method is characterized by comprising the following steps:
s100, the responsible terminal (100) sends a job token to a job terminal (200); the operation token is used for recording an operation flow when the operation terminal (200) executes the operation of the link in charge of the operation terminal (200);
s200, the operation terminal (200) acquires the operation token, scans an electronic tag attached to the surface of an operation object (300) corresponding to the operation terminal (200), and starts to execute the operation of a link in charge of the operation terminal (200);
s300, after the operation terminal (200) finishes the operation of the link in charge of the operation terminal (200), the operation terminal (200) sends the operation token to the next operation terminal (200) according to the operation sequence in the operation token;
s400, repeatedly executing the steps S200 to S300 until the last operation terminal (200) finishes the operation of the link which is responsible for the last operation terminal (200), and after the last operation terminal (200) finishes the operation, returning the operation token to the responsible terminal (100) by the last operation terminal (200);
s500, the responsible terminal (100) acquires the operation token and judges whether the whole operation process is finished;
s600, if the whole operation process is finished, the responsible terminal (100) closes the operation process of the last operation terminal (200) to finish the whole operation process.
2. The method of on-site operation of a sequential power transmission line according to claim 1, further comprising, before the step S100:
s010, the responsible terminal (100) obtains a work ticket, and the work ticket comprises a work relation and a work sequence;
the operation relation is used for representing the relation between each operation terminal (200) and the operation object (300) corresponding to the operation terminal (200), and each operation terminal (200) has the operation object (300) uniquely corresponding to the operation terminal (200); the operation sequence is the sequence of a plurality of operation terminals (200) transmitting the operation tokens in sequence to perform operation;
s030, the responsible terminal (100) reads the operation relation in the work ticket, and generates a plurality of electronic tags according to the operation relation, and each electronic tag corresponds to one operation object (300) and one operation terminal (200);
and S050, wherein each electronic tag is arranged on the surface of the operation object (300) corresponding to the electronic tag by the responsible terminal (100).
3. The method for on-site operation of a sequential power transmission line according to claim 2, further comprising, after the step S010:
and S020, the responsible terminal (100) generates a job token according to the job relation and the job sequence read from the work ticket and the job relation and the job sequence.
4. The method of claim 3, wherein the step S200 comprises:
s210, the job terminal (200) acquires the job token;
s230, the job terminal (200) reads the job relation in the job token;
s250, the operation terminal (200) determines an operation object (300) corresponding to the operation terminal (200) according to the operation relation;
s270, the work terminal (200) scans the electronic tags attached to the surfaces of the work objects (300) corresponding to the work terminal (200) and starts to execute the work of the links in charge of the work terminal (200).
5. The method of claim 4, further comprising, after the step S030:
s041, generating preset identity information and identity authentication modules (400) corresponding to each operation terminal (200);
s042, searching for a working object (300) corresponding to each preset identity information according to the working relation;
s043, each preset identity information and identity authentication module (400) is embedded into the operation object (300) corresponding to the preset identity information.
6. The method of on-site operation of a sequential transmission line according to claim 5, wherein before step S270, the method further comprises:
s261, the work terminal (200) sends an identity authentication request to an identity authentication module (400) built in the work object (300);
s262, the identity authentication module (400) starts an identity verification function, and the operation terminal (200) inputs identity verification information to the identity authentication module (400);
s263, the identity authentication module (400) judges whether the identity verification information conforms to the preset identity information;
s264, if the identity verification information matches the preset identity information, the identity authentication module (400) sends an instruction allowing the operation terminal (200) to scan the electronic tag to the operation terminal (200).
7. The sequential transmission line field work method according to claim 6, wherein the identity verification information may be one of a password, fingerprint information and face image information presented in a digital form.
8. The method according to claim 7, wherein when one operation terminal (200) obtains the operation token, the operation process of the link operation in charge of the previous operation terminal (200) is closed.
9. A sequential transmission line field work system, characterized in that, using the sequential transmission line field work method according to any one of claims 1 to 8, the sequential transmission line field work system (10) comprises:
a charge terminal (100) for transmitting a job token to the job terminal (200) that starts a job, and receiving a job token transmitted by the job terminal (200) that receives a final job;
the operation terminals (200) are sequentially connected according to an operation sequence, the operation terminals (200) are used for receiving operation tokens sent by the responsible terminals (100), scanning electronic tags attached to the surfaces of operation objects (300) corresponding to the operation terminals (200), starting to execute operations of links responsible for the operation terminals (200), and transmitting the operation tokens to the next operation terminal (200) until the last operation terminal (200) finishes the operations of the links responsible for the last operation terminal (200), and the last operation terminal (200) returns operation tokens to the responsible terminals (100);
a first work terminal (200) and a last work terminal (200) of the plurality of work terminals (200) are connected to the in-charge terminal (100), respectively; and
the system comprises a plurality of work objects (300), wherein each work object (300) is connected with one work terminal (200) and is used for being matched with the work terminal (200) to complete the work of the link which is taken charge by the work terminal (200).
10. The sequential transmission line field work system according to claim 9, wherein the sequential transmission line field work system (10) further comprises:
the identity authentication system comprises a plurality of identity authentication modules (400), wherein each identity authentication module (400) is embedded in one operation object (300) and used for carrying out identity authentication on the operation terminal (200) before the operation terminal (200) scans an electronic tag attached to the surface of the operation object (300) corresponding to the operation terminal (200).
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