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CN112528304A - Self-service debugging system - Google Patents

Self-service debugging system Download PDF

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Publication number
CN112528304A
CN112528304A CN202011470225.5A CN202011470225A CN112528304A CN 112528304 A CN112528304 A CN 112528304A CN 202011470225 A CN202011470225 A CN 202011470225A CN 112528304 A CN112528304 A CN 112528304A
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debugging
data
task
service
self
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CN112528304B (en
Inventor
隽增明
陈向晖
岑宗元
李志勇
钟璐
王启义
梁伟康
王国炎
李继斌
余杰泽
高震
梁铁锋
吴旻蔚
倪安安
郑毅
刘文彬
苏通
王鹏
向刚
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Guigang Power Supply Bureau of Guangxi Power Grid Co Ltd
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Guigang Power Supply Bureau of Guangxi Power Grid Co Ltd
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F21/00Security arrangements for protecting computers, components thereof, programs or data against unauthorised activity
    • G06F21/60Protecting data
    • G06F21/602Providing cryptographic facilities or services
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/20Information retrieval; Database structures therefor; File system structures therefor of structured data, e.g. relational data
    • G06F16/25Integrating or interfacing systems involving database management systems
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F21/00Security arrangements for protecting computers, components thereof, programs or data against unauthorised activity
    • G06F21/60Protecting data
    • G06F21/604Tools and structures for managing or administering access control systems
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F21/00Security arrangements for protecting computers, components thereof, programs or data against unauthorised activity
    • G06F21/60Protecting data
    • G06F21/62Protecting access to data via a platform, e.g. using keys or access control rules
    • G06F21/6218Protecting access to data via a platform, e.g. using keys or access control rules to a system of files or objects, e.g. local or distributed file system or database
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2221/00Indexing scheme relating to security arrangements for protecting computers, components thereof, programs or data against unauthorised activity
    • G06F2221/21Indexing scheme relating to G06F21/00 and subgroups addressing additional information or applications relating to security arrangements for protecting computers, components thereof, programs or data against unauthorised activity
    • G06F2221/2141Access rights, e.g. capability lists, access control lists, access tables, access matrices

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  • Theoretical Computer Science (AREA)
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  • General Engineering & Computer Science (AREA)
  • General Health & Medical Sciences (AREA)
  • Computer Hardware Design (AREA)
  • Computer Security & Cryptography (AREA)
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  • Data Mining & Analysis (AREA)
  • Debugging And Monitoring (AREA)

Abstract

The invention discloses a self-service debugging system, which comprises: the basic function module provides login user information management, role management, authority management and menu management, and after the menu is added, the authority can automatically increase corresponding authority items; the service function module provides debugging summary, debugging module management, debugging data import and export, warehouse debugging and field debugging according to the authority items of the user; the safety protection module is used for carrying out login authentication on a user, and user login data is encrypted through the MD5 to control the access right of the user. The program automatically collects the completion condition of each debugging point number and accurately backfills data into a debugging record table, so that the automation of the distribution network debugging work is realized, and the debugging work efficiency is improved.

Description

Self-service debugging system
Technical Field
The invention relates to the field of electric power, in particular to a self-service debugging system.
Background
The operation management of the substation is the most fundamental aspect; secondly, the equipment is scheduled to be stopped/rejuvenated, and all the things after the user trusts the power distribution room need to be fully responsible by a service provider; meanwhile, various operation data including whether the operation condition of the power distribution room is good or not needs to be recorded.
At present, the power distribution operation and maintenance is mostly realized by three modes of manual inspection, paper recording and telephone communication, particularly on a special transformer user side, an original power distribution room is old, no intelligent means is provided, the manual inspection is mainly performed, the paper recording is performed after the inspection is finished, communication is performed with a user through a telephone, information needs to be confirmed through multi-party communication, and the flexibility is poor.
Disclosure of Invention
The invention aims to overcome the defects of the prior art, and provides a self-service debugging system which can acquire the change conditions of remote measurement and remote signaling of the current debugging terminal in real time by constructing a strict data corresponding relation with an automatic distribution network D5000 system.
In order to solve the above technical problem, an embodiment of the present invention provides a self-service debugging system, including:
the basic function module provides login user information management, role management, authority management and menu management, and after the menu is added, the authority can automatically increase corresponding authority items;
the service function module provides debugging summary, debugging module management, debugging data import and export, warehouse debugging and field debugging according to the authority items of the user;
the safety protection module is used for carrying out login authentication on a user, and user login data is encrypted through the MD5 to control the access right of the user.
And the debugging and gathering system finishes all information generation, circulation, auditing, backspacing, automatic execution and filing of the whole debugging work from a warehouse to field debugging, and each link of the debugging work is processed on line.
The importing and exporting of the debugging data comprises the following steps:
automatic synchronization of remote signaling data and backfill of debugging results;
automatic synchronization of telemetering data and backfill of debugging results;
acquiring data to be debugged;
processing a debugging plan;
avoiding a processing mechanism of debugging repetition;
and backfilling OCS data and judging the rationality of the data.
The automatic synchronization of the remote signaling data and the backfill of the debugging result comprise:
firstly, the system starts automatic debugging to initiate a debugging data acquisition request by clicking and starting remote signaling data synchronization service deployed in a safe three-zone on a system foreground interface, automatically creates debugging tasks by the system and adds the tasks into a debugging task management table, and the state is set to be in execution, wherein each task corresponds to a switch debugging plan;
after a task is started, the system is directly connected with data of a three-area distribution network D5000, the distribution network D5000 database is subjected to master-slave hot standby, connection judgment is carried out on a master database, if connection is overtime, the standby machine is connected, after connection is successful, the system checks a protection signal table and a switch displacement information table according to the maximum value of update time to obtain the latest protection signal data and switch displacement information as initial values, polling is carried out on whether data update exists in each point number or not after the initial values are obtained, when data update exists, the system automatically identifies the point to pass debugging until the program is automatically closed after all the point numbers finish displacement information acquisition.
The automatic synchronization of the telemetry data and the backfilling of the debugging result comprise:
the telemetering data needs to maintain the stored table name and the field name corresponding to each telemetering point in the system in advance;
after the automatic debugging task is initiated, the system simultaneously starts another thread to call the telemetry data synchronization service, and queries a database according to the table name and the field name corresponding to each remote measuring point to obtain the latest piece of data and then backfills the system;
and (4) checking before backfilling the data, calculating and checking according to the standard ranges of voltage, power factor, frequency, active value and reactive value and the calculation floating range specified by the state, directly backfilling the data meeting the checking into the system, and displaying the data which does not pass the checking in red and confirming whether the data is input into the system by a watchman.
The obtaining of the data to be debugged comprises the following steps:
and querying all debugging records by reading the T _ test debugging plan and associating with a debugging information T _ log table, and debugging if no data exists in the T _ log, namely the debugging plan is not debugged.
The processing of the commissioning plan comprises:
the foreground clicks automatic debugging, pops up switch template selection, adjusts the task state of the debugging plan to be in operation through post request background interface of ajax, the automatic debugging task can add the task to a task queue, the automatic debugging task scans and debugs the task in the queue when the task plan is carried out, firstly, debugging plan information is obtained, a debugging template is obtained through a t _ log table, a telecommand field in the debugging template is read, then, a table field in a D5000 system is taken from a field comparison table, a database table name defined in the template table is obtained, a corresponding table is inquired in the D5000 system, the latest piece of data is taken out, the comparison table field is mapped, and the numerical value is backfilled to the intelligent operation and maintenance platform of the distribution network terminal;
the remote measuring data is compared with the data obtained last time according to the numerical value obtained by the task, if the numerical value is changed, the corresponding point location is selected, after all the point locations are selected, the remote signaling stage is completed, the task is finished, the state of the task state is recorded as the completion, and the task is removed from the task queue;
a user clicks pause, transmits a request to an interface through a post, records the task state as pause, and after the task is paused, a task queue can be scanned normally and cannot process the task;
and after the task queue is dequeued, the task queue enters a thread pool, the length of the default thread pool is 10, 10 tasks can be processed simultaneously, each task is captured abnormally, the task is kicked out after the task is found to be terminated wrongly, the task state is recorded as the termination, and the termination reason is recorded.
The processing mechanism for avoiding debugging repetition comprises:
the task states are distinguished through the tasktatus, the completed tasks are directly deleted from the task queue, meanwhile, the database (d _ test) records that the tasktatus is in the completed state, and when the tasks enter the queue, database retrieval is carried out on task information, so that the tasks are guaranteed to be not debugged.
The backfilling of OCS data and the judgment of the rationality of the data comprise the following steps:
by defining the threshold value of each remote measurement value, and then comparing the acquired value with the threshold value when backfilling data each time, normal data is in the threshold value range, the state of the identification data outside the threshold value range is abnormal, the status value in the database record (d _ log _ data) is-1, and the front end displays the value of the status value of-1 in a red marking mode when acquiring data.
The safety protection module comprises:
the encryption algorithm is used for encrypting the data value of the sensitive data in the database;
the method is used for configuring the security function in the installation and deployment processes.
According to the self-service debugging system provided by the invention, a strict data corresponding relation is established with an automatic distribution network D5000 system, and the change conditions of remote measurement and remote signaling of the current debugging terminal can be acquired in real time; all debugging works are initiated by each power distribution operation and maintenance class uniformly, and the class is automatically checked, so that debugging process management and work closed loop are realized; the program automatically collects the completion condition of each debugging point number and accurately backfills data into a debugging record table, so that the automation of the distribution network debugging work is realized, and the debugging work efficiency is further improved.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
Fig. 1 is a schematic structural diagram of a self-service debugging system.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Examples
Referring to fig. 1, fig. 1 is a schematic structural diagram of a self-service debugging system.
A self-service debugging system comprising:
the basic function module 101 provides login user information management, role management, authority management and menu management, and after the menu is added, the authority can automatically add corresponding authority items;
the service function module 102 provides debugging summary, debugging module management, debugging data import and export, warehouse debugging and field debugging according to the authority items of the user;
the security module 103 mainly performs user login authentication, user login data MD5 encryption, and user access right control.
And the debugging and gathering system finishes all information generation, circulation, auditing, backspacing, automatic execution and filing of the whole debugging work from a warehouse to field debugging, and each link of the debugging work is processed on line.
The importing and exporting of the debugging data comprises the following steps:
automatic synchronization of remote signaling data and backfill of debugging results;
automatic synchronization of telemetering data and backfill of debugging results;
acquiring data to be debugged;
processing a debugging plan;
avoiding a processing mechanism of debugging repetition;
and backfilling OCS data and judging the rationality of the data.
It should be noted that the automatic synchronization of the remote signaling data and the backfilling of the debugging result include:
firstly, the system starts automatic debugging to initiate a debugging data acquisition request by clicking and starting remote signaling data synchronization service deployed in a safe three-zone on a system foreground interface, automatically creates debugging tasks by the system and adds the tasks into a debugging task management table, and the state is set to be in execution, wherein each task corresponds to a switch debugging plan;
after a task is started, the system is directly connected with data of a three-area distribution network D5000, the distribution network D5000 database is subjected to master-slave hot standby, connection judgment is carried out on a master database, if connection is overtime, the standby machine is connected, after connection is successful, the system checks a protection signal table and a switch displacement information table according to the maximum value of update time to obtain the latest protection signal data and switch displacement information as initial values, polling is carried out on whether data update exists in each point number or not after the initial values are obtained, when data update exists, the system automatically identifies the point to pass debugging until the program is automatically closed after all the point numbers finish displacement information acquisition.
It should be noted that the automatic synchronization of the telemetry data and the backfilling of the debugging result include:
the telemetering data needs to maintain the stored table name and the field name corresponding to each telemetering point in the system in advance;
after the automatic debugging task is initiated, the system simultaneously starts another thread to call the telemetry data synchronization service, and queries a database according to the table name and the field name corresponding to each remote measuring point to obtain the latest piece of data and then backfills the system;
and (4) checking before backfilling the data, calculating and checking according to the standard ranges of voltage, power factor, frequency, active value and reactive value and the calculation floating range specified by the state, directly backfilling the data meeting the checking into the system, and displaying the data which does not pass the checking in red and confirming whether the data is input into the system by a watchman.
It should be noted that the obtaining of the data to be debugged includes: and querying all debugging records by reading the T _ test debugging plan and associating with a debugging information T _ log table, and debugging if no data exists in the T _ log, namely the debugging plan is not debugged.
The processing of the debug plan includes: the foreground clicks automatic debugging, pops up switch template selection, adjusts the task state of the debugging plan to be in operation through post request background interface of ajax, the automatic debugging task can add the task to a task queue, the automatic debugging task scans and debugs the task in the queue when the task plan is carried out, firstly, debugging plan information is obtained, a debugging template is obtained through a t _ log table, a telecommand field in the debugging template is read, then, a table field in a D5000 system is taken from a field comparison table, a database table name defined in the template table is obtained, a corresponding table is inquired in the D5000 system, the latest piece of data is taken out, the comparison table field is mapped, and the numerical value is backfilled to the intelligent operation and maintenance platform of the distribution network terminal;
the remote measuring data is compared with the data obtained last time according to the numerical value obtained by the task, if the numerical value is changed, the corresponding point location is selected, after all the point locations are selected, the remote signaling stage is completed, the task is finished, the state of the task state is recorded as the completion, and the task is removed from the task queue;
a user clicks pause, transmits a request to an interface through a post, records the task state as pause, and after the task is paused, a task queue can be scanned normally and cannot process the task;
and after the task queue is dequeued, the task queue enters a thread pool, the length of the default thread pool is 10, 10 tasks can be processed simultaneously, each task is captured abnormally, the task is kicked out after the task is found to be terminated wrongly, the task state is recorded as the termination, and the termination reason is recorded.
It should be noted that, the processing mechanism for avoiding debugging duplication includes:
the task states are distinguished through the tasktatus, the completed tasks are directly deleted from the task queue, meanwhile, the database (d _ test) records that the tasktatus is in the completed state, and when the tasks enter the queue, database retrieval is carried out on task information, so that the tasks are guaranteed to be not debugged.
It should be noted that, the backfilling of the OCS data and the judgment of the rationality of the data include: by defining the threshold value of each remote measurement value, and then comparing the acquired value with the threshold value when backfilling data each time, normal data is in the threshold value range, the state of the identification data outside the threshold value range is abnormal, the status value in the database record (d _ log _ data) is-1, and the front end displays the value of the status value of-1 in a red marking mode when acquiring data.
The safety protection module 103 comprises:
in the aspect of data security, an encryption algorithm is used for encrypting data values for sensitive data in a database (such as passwords in a user table). Important data are backed up to a specified mobile storage medium every day, so that the data are backed up more, are not lost and are easy to restore. The database global backup is implemented by using a quarterly global backup. Data security, integrity and availability are guaranteed.
The method is used for configuring the security function in the installation and deployment processes, if the configured password strength requires more than 8 bits and at least two combinations of numbers and letters, the number of illegal login is limited to 5, the number of illegal login times is limited to be more than 600s, the operating system opens an audit function, closes an unused account and closes an unused service, such as: telnet, ftp, etc.
According to the self-service debugging system provided by the invention, a strict data corresponding relation is established with an automatic distribution network D5000 system, and the change conditions of remote measurement and remote signaling of the current debugging terminal can be acquired in real time; all debugging works are initiated by each power distribution operation and maintenance class uniformly, and the class is automatically checked, so that debugging process management and work closed loop are realized; the program automatically collects the completion condition of each debugging point number and accurately backfills data into a debugging record table, so that the automation of the distribution network debugging work is realized, and the debugging work efficiency is further improved.
Those skilled in the art will appreciate that all or part of the steps in the methods of the above embodiments may be implemented by instructions associated with hardware via a program, which may be stored in a computer-readable storage medium, and the storage medium may include: read Only Memory (ROM), Random Access Memory (RAM), magnetic or optical disks, and the like.
In addition, the self-service debugging system provided by the embodiment of the present invention is described in detail above, and a specific example should be adopted herein to explain the principle and the implementation manner of the present invention, and the description of the above embodiment is only used to help understanding the method and the core idea of the present invention; meanwhile, for a person skilled in the art, according to the idea of the present invention, there may be variations in the specific embodiments and the application scope, and in summary, the content of the present specification should not be construed as a limitation to the present invention.

Claims (10)

1. A self-service debugging system, characterized in that the system comprises:
the basic function module provides login user information management, role management, authority management and menu management, and after the menu is added, the authority can automatically increase corresponding authority items;
the service function module provides debugging summary, debugging module management, debugging data import and export, warehouse debugging and field debugging according to the authority items of the user;
the safety protection module is used for carrying out login authentication on a user, and user login data is encrypted through the MD5 to control the access right of the user.
2. The self-service debugging system of claim 1, wherein the debugging is summarized, and the system completes the whole debugging work from a warehouse to the field debugging and all information generation, circulation, auditing, rollback, automatic execution and filing, so that each link of the debugging work is processed on line.
3. The self-service debugging system of claim 1, wherein the importing and exporting of the debugging data comprises:
automatic synchronization of remote signaling data and backfill of debugging results;
automatic synchronization of telemetering data and backfill of debugging results;
acquiring data to be debugged;
processing a debugging plan;
avoiding a processing mechanism of debugging repetition;
and backfilling OCS data and judging the rationality of the data.
4. The self-service debugging system of claim 3, wherein the automatic synchronization of the remote signaling data and the backfilling of the debugging results comprise:
firstly, the system starts automatic debugging to initiate a debugging data acquisition request by clicking and starting remote signaling data synchronization service deployed in a safe three-zone on a system foreground interface, automatically creates debugging tasks by the system and adds the tasks into a debugging task management table, and the state is set to be in execution, wherein each task corresponds to a switch debugging plan;
after a task is started, the system is directly connected with data of a three-area distribution network D5000, the distribution network D5000 database is subjected to master-slave hot standby, connection judgment is carried out on a master database, if connection is overtime, the standby machine is connected, after connection is successful, the system checks a protection signal table and a switch displacement information table according to the maximum value of update time to obtain the latest protection signal data and switch displacement information as initial values, polling is carried out on whether data update exists in each point number or not after the initial values are obtained, when data update exists, the system automatically identifies the point to pass debugging until the program is automatically closed after all the point numbers finish displacement information acquisition.
5. The self-service debugging system of claim 3, wherein the automatic synchronization of the telemetry data and the backfilling of the debugging results comprise:
the telemetering data needs to maintain the stored table name and the field name corresponding to each telemetering point in the system in advance;
after the automatic debugging task is initiated, the system simultaneously starts another thread to call the telemetry data synchronization service, and queries a database according to the table name and the field name corresponding to each remote measuring point to obtain the latest piece of data and then backfills the system;
and (4) checking before backfilling the data, calculating and checking according to the standard ranges of voltage, power factor, frequency, active value and reactive value and the calculation floating range specified by the state, directly backfilling the data meeting the checking into the system, and displaying the data which does not pass the checking in red and confirming whether the data is input into the system by a watchman.
6. The self-service debugging system of claim 3, wherein the obtaining of the data to be debugged comprises:
and querying all debugging records by reading the T _ test debugging plan and associating with a debugging information T _ log table, and debugging if no data exists in the T _ log, namely the debugging plan is not debugged.
7. A self-service commissioning system according to claim 3, wherein said processing of the commissioning plan comprises:
the foreground clicks automatic debugging, pops up switch template selection, adjusts the task state of the debugging plan to be in operation through post request background interface of ajax, the automatic debugging task can add the task to a task queue, the automatic debugging task scans and debugs the task in the queue when the task plan is carried out, firstly, debugging plan information is obtained, a debugging template is obtained through a t _ log table, a telecommand field in the debugging template is read, then, a table field in a D5000 system is taken from a field comparison table, a database table name defined in the template table is obtained, a corresponding table is inquired in the D5000 system, the latest piece of data is taken out, the comparison table field is mapped, and the numerical value is backfilled to the intelligent operation and maintenance platform of the distribution network terminal;
the remote measuring data is compared with the data obtained last time according to the numerical value obtained by the task, if the numerical value is changed, the corresponding point location is selected, after all the point locations are selected, the remote signaling stage is completed, the task is finished, the state of the task state is recorded as the completion, and the task is removed from the task queue;
a user clicks pause, transmits a request to an interface through a post, records the task state as pause, and after the task is paused, a task queue scans normally without processing the task;
and after the task queue is dequeued, the task queue enters a thread pool, the length of the thread pool is defaulted to be 10, 10 tasks are processed simultaneously, each task is captured abnormally, the task is kicked out after the task is found to be terminated mistakenly, the task state is recorded as the termination, and the termination reason is recorded.
8. The self-service debugging system of claim 3, wherein the processing mechanism for avoiding debugging duplication comprises:
the task states are distinguished through the tasktatus, the completed tasks are directly deleted from the task queue, meanwhile, the database (d _ test) records that the tasktatus is in the completed state, and when the tasks enter the queue, database retrieval is carried out on task information, so that the tasks are guaranteed to be not debugged.
9. The self-service debugging system of claim 3, wherein the backfilling of OCS data and the judgment of the rationality of the data comprise:
by defining the threshold value of each remote measurement value, and then comparing the acquired value with the threshold value when backfilling data each time, normal data is in the threshold value range, the state of the identification data outside the threshold value range is abnormal, the status value in the database record (d _ log _ data) is-1, and the front end displays the value of the status value of-1 in a red marking mode when acquiring data.
10. The self-service debugging system of claim 1, wherein the security protection module comprises:
the encryption algorithm is used for encrypting the data value of the sensitive data in the database;
the method is used for configuring the security function in the installation and deployment processes.
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