CN109857613A - A kind of automation operational system based on acquisition cluster - Google Patents

A kind of automation operational system based on acquisition cluster Download PDF

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Publication number
CN109857613A
CN109857613A CN201811589080.3A CN201811589080A CN109857613A CN 109857613 A CN109857613 A CN 109857613A CN 201811589080 A CN201811589080 A CN 201811589080A CN 109857613 A CN109857613 A CN 109857613A
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acquisition
inspection
layer
management module
information
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CN109857613B (en
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万明
张弛
刘嘉华
张伟
康睿
鄂龙慧
柏永飞
朱江
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Nari Information and Communication Technology Co
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Nari Information and Communication Technology Co
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Abstract

The invention discloses a kind of automation operational systems based on acquisition cluster, are divided into represent layer from top to bottom, functional layer, acquisition layer and resource layer;Wherein, represent layer is used to issue operational order to functional layer;Functional layer calls various acquisition nodes, the completion of resource layer software and hardware resources is automatically configured, Daily Round Check and trouble shooting, acquisition layer configures multinode and acquires cluster, resource level data is acquired, and to functional layer feedback collection as a result, resource layer is all software and hardware resources for automating operational system management.Automation operational system of the invention, for it is different configuration with inspection scene, form the configuration and patrol task of customization, realize the automatic collection of index parameter, automatically analyze with inspection report automatically generate.For the present invention by the co-ordination between multiple acquisition nodes, good load capacity when ensure that in face of a large amount of acquisition tasks ensures that the reliability and high efficiency of collection process.

Description

A kind of automation operational system based on acquisition cluster
Technical field
The present invention relates to a kind of automation operational systems based on acquisition cluster, belong to enterprise's operation management technical field.
Background technique
With the expansion of business event range and the enhancing of professional ability, hardware technology ring involved in enterprise operation system Border and software technology environment gradually expand.The operating system that may relate to has Windows, Linux, Aix, Unix etc.;It may relate to And database have Oracle, MongoDB, SQLserver, up to dream etc.;The middleware that may relate to have Weblogic, Tomcat, Jboss etc.;The network equipment is related to interchanger, router, network firewall etc..Part of equipment may be because product There are details differences in mode of operation and technical principle for board difference.Maintenance work is related to that face is excessively wide, to the profession of operation maintenance personnel Capability Requirement is excessively high, increases the cost of O&M and the difficulty of O&M.
The O&M mode of enterprise is still the notice operation maintenance personnel after the failure of user's operation operation system at present, then by Operation maintenance personnel takes corresponding remedial measure.There are intricate operations, low efficiency for the O&M mode of this traditional " slash-and-burn cultivation " formula Under, personnel requirement is high, error rate is high, in face of abnormal the disadvantages of being difficult to fast quick-recovery.In face of increasingly huger O&M scale and The O&M scenarios to become increasingly complex, how reducing O&M cost and improving O&M efficiency has been a project urgently to be resolved.
Traditional O&M mode is unable to satisfy current O&M scenarios completely, and enterprise needs with specialized, mark at present The means of standardization and procedure realize the automatic management of maintenance work, and pure manual operation is converted to automation fortune Dimension.
Summary of the invention
The technical problem to be solved by the present invention is to overcome the deficiencies of existing technologies, provide it is a kind of based on acquisition cluster from Dynamicization operational system constructs inspection knowledge base, and for different configurations and inspection scene, the configuration and inspection for forming customization are appointed Business, realize the automatic collection of index parameter, automatically analyze with inspection report automatically generate, and provide alarming processing and guidance.
In order to solve the above technical problems, the present invention provides a kind of automation operational system based on acquisition cluster, it is divided into exhibition Existing layer, functional layer, acquisition layer and resource layer;The represent layer provides visualized operation administration interface, and user passes through visualization behaviour Make administration interface and issues operational order to functional layer;The functional layer receives the operational order that user issues, and calls various acquisitions Node automatically configures the completion of resource layer software and hardware resources, Daily Round Check and trouble shooting;The acquisition layer is configured with by multiple The multinode that acquisition node is constituted acquires cluster, the acquisition tasks that the multinode acquisition cluster receive capabilities layer issues, to money Active layer data are acquired, and to functional layer feedback collection result;The resource layer is to automate owning for operational system management Software and hardware resource.
Acquisition node above-mentioned configures the acquisition plug-in unit for supporting various network protocols, including SSH acquires plug-in unit, TELNET Plug-in unit is acquired, SNMP acquires plug-in unit, and JMX acquires plug-in unit, and WMI acquires plug-in unit, and JDBC acquires plug-in unit and HTTP acquires plug-in unit.
It is above-mentioned for automation operational system management all software and hardware resources establish corresponding acquisition index and Acquisition protocols, comprising: host system acquisition index have system operation time, operating system version, CPU information, memory information, into Journey information and port information;Database acquisition index has database health operation duration, database table spatial information, database to use Family information and handling capacity;Operation system information acquisition protocols use SNMP or SSH;Database information acquisition protocols use JDBC.
Multinode acquisition cluster above-mentioned elects Leader node according to election regulation, and the Leader node directly receives The acquisition tasks that functional layer is sent issue acquisition tasks according to the loading condition of managed acquisition node;Correspondence is adopted after issuing Collect node according to the acquisition tasks received, calls corresponding acquisition plug-in unit, collect the relevant marker information of collected object;Then will Obtained collection result is back to Leader node.
Leader node above-mentioned issues acquisition tasks, is re-issued once if issuing failure, issues failure twice The task acquisition node delay machine, restarts the acquisition service of the acquisition node.
Functional layer inspection configuration knowledge base above-mentioned and resource distribution library, the interior inspection knowledge base includes inspection index, Acquisition protocols, acquire script and collection result handles script;It include the facility information of inspection device in the resource distribution library.
Functional layer inspection configuration knowledge base management module above-mentioned, examined in determination management module, inspection script management module, Inspection job management module, patrol task management module, patrol task scheduler module, inspection operation execution module, inspection report Management module and alarm management module;The functional layer forms the configuration of customization and patrols for different configurations and inspection scene Inspection task realizes the automatic collection of inspection index parameter, automatically analyzes and automatically generate with inspection report, and provides alarming processing With guidance.
Alarm management module above-mentioned configuration alarm rule of response and alarming processing rule, the alarm rule of response according to Inspection collection result judges whether to generate alarm, if the alarming processing regulation management generates processing mode when alerting.
The implementation procedure of patrol task above-mentioned is as follows:
1) the equipment details of inspection device are taken out in resource distribution library;
2) specific examined in determination is generated in examined in determination management module;
3) routine inspection mode is selected according to device type in inspection knowledge base, to generate in inspection script management module specific Inspection script;
4) inspection operation is generated in inspection job management module combination examined in determination and inspection script;
5) routine inspection mode is customized according to trigger condition in patrol task management module, generates patrol task;
6) task schedule is carried out in patrol task scheduler module, patrol task is distributed to inspection operation execution module and is held Row;
7) inspection operation execution module executes inspection, acquires equipment operation information, at the alarm configured in conjunction with alarm management module Reason strategy generates warning information, while the result of inspection generates inspection report by pattern requirement in inspection report management module.
A patrol task above-mentioned includes whether a certain inspection index is in normal range (NR) within some period, including patrols Examine the alarm range of resource metrics, collection period and index.
The beneficial effects obtained by the present invention are as follows are as follows:
The present invention is by the co-ordination between multiple acquisition nodes, good load energy when ensure that in face of a large amount of acquisition tasks Power ensures that the reliability and high efficiency of O&M process.
Detailed description of the invention
Fig. 1 is software environment and hardware environment involved in existing enterprise's operation system;
Fig. 2 is the automation operational system architecture diagram of the invention based on acquisition cluster;
Fig. 3 is the flow chart that automation operational system of the invention executes patrol task;
Fig. 4 is the work flow diagram that multinode of the invention acquires cluster;
Fig. 5 is that multinode of the invention acquires cluster schematic diagram.
Specific embodiment
The invention will be further described below.Following embodiment is only used for clearly illustrating technical side of the invention Case, and not intended to limit the protection scope of the present invention.
The present invention provides a kind of automation operational system based on acquisition cluster, as shown in Fig. 2, from top to bottom including showing Layer, functional layer, acquisition layer and four layers of resource layer.Wherein, represent layer provides visualized operation administration interface, and user passes through visualization Operational administrative interface issues operational order to functional layer.Functional layer receives the operational order that user issues, and realizes every automation The function of operational system calls various acquisition nodes by task schedule and enforcement engine, complete to software and hardware resources in resources bank At automatically configure, the O&Ms task such as Daily Round Check and trouble shooting.In acquisition layer, the more piece being made of multiple acquisition nodes is configured Point acquisition cluster, acquisition node, that is, acquisition server, referring to Fig. 5, each acquisition node, which configures, supports various network protocols Plug-in unit is acquired, such as: SSH acquires plug-in unit, and TELNET acquires plug-in unit, and SNMP acquires plug-in unit, and JMX acquires plug-in unit, and WMI acquires plug-in unit, JDBC acquires plug-in unit and HTTP acquires plug-in unit, and the acquisition tasks that acquisition cluster receive capabilities layer issues acquire the leader of cluster Node distributes acquisition tasks to each acquisition node according to load balancing, and acquisition node calls corresponding acquisition to insert according to task definition Part is acquired resource level data, and to functional layer feedback collection result.Resource layer is the institute for automating operational system management There is software and hardware resource, software environment includes operating system, database and middleware, and hardware environment includes host system, net Network equipment and other hardware devices such as store equipment, load balancer, safety equipment etc., referring specifically to Fig. 1.
Corresponding acquisition is established for most popular software environment and hardware environment involved in current O&M process Index storehouse and acquisition protocols.As host system acquisition index mainly has system operation time, operating system version, CPU information, interior Deposit information, progress information and port information etc.;Database acquisition index mainly has database health operation duration, database table empty Between information, database user information, handling capacity etc.;SNMP and SSH etc. can be used in operation system information acquisition protocols;Database Information collection agreement uses JDBC.So as to cope with most O&M scenarios, while expansible acquisition plug-in unit being provided and is connect Mouthful, convenient for extending operational system application range when current operational system is unable to satisfy demand.
Referring to fig. 4, the work of multinode of the invention acquisition cluster is as follows: being had first according to election regulation election relatively strong Stability, the Leader node to work long hours can be competent at;Leader node directly receives functional layer transmission later Acquisition tasks issue acquisition tasks, re-issue if issuing failure according to the loading condition of managed common acquisition node Once, failure then task acquisition node delay machine is issued twice, restarts the acquisition service of the acquisition node;Corresponding acquisition after issuing Node calls corresponding acquisition plug-in unit, collects the relevant marker information of collected object according to the acquisition tasks received;Then, respectively Obtained collection result is returned to Leader node by common acquisition node, after the processing of function layer analysis by operational administrative interface into Row is shown.
In functional layer, according to experience and method that O&M process accumulates software and hardware system collection process, present invention building Inspection knowledge base.It include inspection index (such as: CPU, memory, disk space), the acquisition of resource layer system and equipment in library Agreement (SSH, TELNET, SNMP, JMX, WMI, JDBC, HTTP etc.), acquisition script (Shell/Perl) and collection result processing Script etc..For different configurations and inspection scene, the configuration and patrol plan of customization are formed, realizes adopting automatically for index parameter Collect, automatically analyze with inspection report automatically generate, and provide alarming processing and guidance.Inspection knowledge base can patrol one kind Inspection plan, provides general method for inspecting, main if the relevant marker information of oracle database can be acquired using JDBC agreement CPU, the memory information of machine can pass through SNMP and SSH agreement acquisition etc..
Fig. 3 is task schedule flow chart when automation operational system of the invention executes patrol task, wherein rectangular be The system function module being related in process, cylindricality are the database data that is related to of process, waveform diagram indicate process generate and The average information used.Referring to Fig. 3, inspection configuration knowledge base management module, examined in determination management module, inspection script management mould Block, inspection job management module, patrol task management module, patrol task scheduler module, inspection operation execution module, inspection report Accuse management module and alarm management module.Database includes resource distribution library and inspection knowledge base.
During a task schedule, the equipment details of inspection device are taken out in resource distribution library, in inspection Object management module generates specific examined in determination, includes the information of equipment routing inspection concern in examined in determination, and such as device type is set Spare unit board, device address, management port etc..Suitable routine inspection mode is selected according to device type in inspection knowledge base, thus Generate specific inspection script in inspection script management module, including remotely connect script, database-driven and connection string etc..? Inspection job management module combination examined in determination and inspection script generate inspection operation.In patrol task management module according to triggering Condition customizes routine inspection mode, such as generates the patrol task of timing inspection, period inspection type, and a patrol task includes a certain Whether resource metrics are in normal range (NR) within some period, the alarm model including inspection resource metrics, collection period and index It encloses.In face of all kinds of patrol tasks, task schedule is carried out in patrol task scheduler module, patrol task is distributed to inspection operation Execution module is executed.It executes inspection and collects equipment operation information, the alarming processing plan configured in conjunction with alarm management module Slightly, warning information is generated, while the result of inspection generates inspection report by pattern requirement in inspection report management module.
Alarm management module configuration alarm rule of response and alarming processing rule, alarm rule of response are acquired according to inspection and are tied Fruit judges whether to generate alarm, if alarming processing regulation management generates processing mode when alerting, as alarm is ignored, mail is accused Alert and short message alarm lamp etc..Simultaneously according to collection result and alarm situation, report is periodically formulated, inspection report is generated, for tieing up Nurse makees.
Functional layer, which also configures the function that collecting flowchart management module includes, to be had: configuration acquisition tasks, are returned starting acquisition tasks The parts such as collection result are gone back to, suitable acquisition protocols can be selected according to acquisition target in this module, what configuration protocol needed Acquisition parameter starts collecting flowchart.Customization patrol plan module to acquisition tasks customized in collecting flowchart management module into The planned control of row alerts range etc. by customizing corresponding inspection resource metrics, collection period, index, makes and conform to The patrol plan asked, regular visit acquires O&M resource according to schedule.
The above is only a preferred embodiment of the present invention, it is noted that for the ordinary skill people of the art For member, without departing from the technical principles of the invention, several improvement and deformations can also be made, these improvement and deformations Also it should be regarded as protection scope of the present invention.

Claims (10)

1. a kind of automation operational system based on acquisition cluster, which is characterized in that be divided into represent layer, functional layer, acquisition layer and Resource layer;The represent layer provides visualized operation administration interface, and user is by visualized operation administration interface under functional layer Send out operational order;The functional layer receives the operational order that user issues, and calls various acquisition nodes, provides to resource layer software and hardware Source completes to automatically configure, Daily Round Check and trouble shooting;The acquisition layer is configured with the multinode being made of multiple acquisition nodes Cluster is acquired, the acquisition tasks that the multinode acquisition cluster receive capabilities layer issues are acquired resource level data, and to Functional layer feedback collection result;The resource layer is all software and hardware resources for automating operational system management.
2. a kind of automation operational system based on acquisition cluster according to claim 1, which is characterized in that the acquisition Node configures the acquisition plug-in unit for supporting various network protocols, including SSH acquires plug-in unit, and TELNET acquires plug-in unit, SNMP acquisition Plug-in unit, JMX acquire plug-in unit, and WMI acquires plug-in unit, and JDBC acquires plug-in unit and HTTP acquires plug-in unit.
3. a kind of automation operational system based on acquisition cluster according to claim 1, which is characterized in that for automatic All software and hardware resources for changing operational system management establish corresponding acquisition index and acquisition protocols, comprising: host system Acquisition index has system operation time, operating system version, CPU information, memory information, progress information and port information;Data Library acquisition index has database health operation duration, database table spatial information, database user information and handling capacity;Operation system Information collection agreement of uniting uses SNMP or SSH;Database information acquisition protocols use JDBC.
4. a kind of automation operational system based on acquisition cluster according to claim 1, which is characterized in that the more piece Point acquisition cluster elects Leader node according to election regulation, and the acquisition that the direct receive capabilities layer of Leader node is sent is appointed Business, according to the loading condition of managed acquisition node, issues acquisition tasks;Acquisition node is corresponded to after issuing to be adopted according to what is received Set task calls corresponding acquisition plug-in unit, collects the relevant marker information of collected object;Then obtained collection result is returned To Leader node.
5. a kind of automation operational system based on acquisition cluster according to claim 4, which is characterized in that described Leader node issues acquisition tasks, is re-issued once if issuing failure, issues the failure task acquisition node twice Delay machine restarts the acquisition service of the acquisition node.
6. a kind of automation operational system based on acquisition cluster according to claim 1, which is characterized in that the function Layer inspection configuration knowledge base and resource distribution library, includes inspection index in the inspection knowledge base, acquisition protocols, acquisition script and Collection result handles script;It include the facility information of inspection device in the resource distribution library.
7. a kind of automation operational system based on acquisition cluster according to claim 1, which is characterized in that the function Layer inspection configuration knowledge base management module, examined in determination management module, inspection script management module, inspection job management module, Management module and alarm management are reported in patrol task management module, patrol task scheduler module, inspection operation execution module, inspection Module;The functional layer forms the configuration and patrol task of customization for different configurations and inspection scene, realizes inspection index The automatic collection of parameter, automatically analyze with inspection report automatically generate, and provide alarming processing and guidance.
8. a kind of automation operational system based on acquisition cluster according to claim 7, which is characterized in that the alarm Management module configuration alarm rule of response and alarming processing rule, the alarm rule of response are according to the judgement of inspection collection result No generation alarm, if the alarming processing regulation management generates processing mode when alerting.
9. a kind of automation operational system based on acquisition cluster according to claim 7, which is characterized in that the inspection The implementation procedure of task is as follows:
1) the equipment details of inspection device are taken out in resource distribution library;
2) specific examined in determination is generated in examined in determination management module;
3) routine inspection mode is selected according to device type in inspection knowledge base, to generate in inspection script management module specific Inspection script;
4) inspection operation is generated in inspection job management module combination examined in determination and inspection script;
5) routine inspection mode is customized according to trigger condition in patrol task management module, generates patrol task;
6) task schedule is carried out in patrol task scheduler module, patrol task is distributed to inspection operation execution module and is held Row;
7) inspection operation execution module executes inspection, acquires equipment operation information, at the alarm configured in conjunction with alarm management module Reason strategy generates warning information, while the result of inspection generates inspection report by pattern requirement in inspection report management module.
10. a kind of automation operational system based on acquisition cluster according to claim 9, which is characterized in that one is patrolled Inspection task includes whether a certain inspection index is in normal range (NR), including inspection resource metrics, collection period within some period With the alarm range of index.
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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110430081A (en) * 2019-08-13 2019-11-08 北京市天元网络技术股份有限公司 The intelligent method for inspecting and device of automatic editing based on instruction
CN110535710A (en) * 2019-09-09 2019-12-03 锐捷网络股份有限公司 Remote diagnosis method and system, the network equipment and Cloud Server of the network equipment
CN111026602A (en) * 2019-10-22 2020-04-17 烽火通信科技股份有限公司 Health inspection scheduling management method and device of cloud platform and electronic equipment
CN111241447A (en) * 2020-01-13 2020-06-05 浙江省北大信息技术高等研究院 Webpage data acquisition method, system and storage medium
CN111541575A (en) * 2020-04-30 2020-08-14 重庆富民银行股份有限公司 Automatic inspection method and system for closed-source network equipment
CN111654411A (en) * 2020-05-14 2020-09-11 山东中创软件商用中间件股份有限公司 Inspection method and related device
CN112000310A (en) * 2020-07-01 2020-11-27 南方电网数字电网研究院有限公司 Electric power automation operation and maintenance system
CN112416902A (en) * 2020-11-20 2021-02-26 上海新炬网络信息技术股份有限公司 One-key inspection method for host and database
CN112990744A (en) * 2021-03-30 2021-06-18 杭州东方通信软件技术有限公司 Automatic operation and maintenance method and device for massive million-level cloud equipment
CN113051147A (en) * 2021-04-25 2021-06-29 中国建设银行股份有限公司 Database cluster monitoring method, device, system and equipment
CN113052993A (en) * 2021-03-16 2021-06-29 中国工商银行股份有限公司 Fault inspection method and device based on alarm information linkage
CN113849244A (en) * 2021-09-13 2021-12-28 广州咨元信息科技有限公司 Configuration method for realizing custom service scene based on layout engine
CN114765571A (en) * 2021-01-14 2022-07-19 中国石油天然气股份有限公司 Management method and device for operation and maintenance of data center and electronic equipment
CN117389843A (en) * 2023-12-13 2024-01-12 广州嘉为科技有限公司 Intelligent operation and maintenance system, method, electronic equipment and storage medium

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7624170B2 (en) * 2002-09-26 2009-11-24 International Business Machines Corporation Integrated storage appliance
CN104036025A (en) * 2014-06-27 2014-09-10 蓝盾信息安全技术有限公司 Distribution-base mass log collection system
CN104699759A (en) * 2015-02-10 2015-06-10 上海新炬网络信息技术有限公司 Method for maintaining automatic operation of database
CN105490833A (en) * 2015-11-19 2016-04-13 国家电网公司 Inspection system and method of information system
CN108512691A (en) * 2018-02-07 2018-09-07 复旦大学 Cloud automatic early-warning O&M monitoring system based on Hadoop
CN108959037A (en) * 2018-07-13 2018-12-07 山东汇贸电子口岸有限公司 A kind of data center's automatic detecting method and device

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7624170B2 (en) * 2002-09-26 2009-11-24 International Business Machines Corporation Integrated storage appliance
CN104036025A (en) * 2014-06-27 2014-09-10 蓝盾信息安全技术有限公司 Distribution-base mass log collection system
CN104699759A (en) * 2015-02-10 2015-06-10 上海新炬网络信息技术有限公司 Method for maintaining automatic operation of database
CN105490833A (en) * 2015-11-19 2016-04-13 国家电网公司 Inspection system and method of information system
CN108512691A (en) * 2018-02-07 2018-09-07 复旦大学 Cloud automatic early-warning O&M monitoring system based on Hadoop
CN108959037A (en) * 2018-07-13 2018-12-07 山东汇贸电子口岸有限公司 A kind of data center's automatic detecting method and device

Cited By (16)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110430081A (en) * 2019-08-13 2019-11-08 北京市天元网络技术股份有限公司 The intelligent method for inspecting and device of automatic editing based on instruction
CN110535710A (en) * 2019-09-09 2019-12-03 锐捷网络股份有限公司 Remote diagnosis method and system, the network equipment and Cloud Server of the network equipment
CN111026602A (en) * 2019-10-22 2020-04-17 烽火通信科技股份有限公司 Health inspection scheduling management method and device of cloud platform and electronic equipment
CN111241447A (en) * 2020-01-13 2020-06-05 浙江省北大信息技术高等研究院 Webpage data acquisition method, system and storage medium
CN111541575A (en) * 2020-04-30 2020-08-14 重庆富民银行股份有限公司 Automatic inspection method and system for closed-source network equipment
CN111654411A (en) * 2020-05-14 2020-09-11 山东中创软件商用中间件股份有限公司 Inspection method and related device
CN112000310A (en) * 2020-07-01 2020-11-27 南方电网数字电网研究院有限公司 Electric power automation operation and maintenance system
CN112416902A (en) * 2020-11-20 2021-02-26 上海新炬网络信息技术股份有限公司 One-key inspection method for host and database
CN114765571A (en) * 2021-01-14 2022-07-19 中国石油天然气股份有限公司 Management method and device for operation and maintenance of data center and electronic equipment
CN113052993A (en) * 2021-03-16 2021-06-29 中国工商银行股份有限公司 Fault inspection method and device based on alarm information linkage
CN112990744A (en) * 2021-03-30 2021-06-18 杭州东方通信软件技术有限公司 Automatic operation and maintenance method and device for massive million-level cloud equipment
CN113051147A (en) * 2021-04-25 2021-06-29 中国建设银行股份有限公司 Database cluster monitoring method, device, system and equipment
CN113849244A (en) * 2021-09-13 2021-12-28 广州咨元信息科技有限公司 Configuration method for realizing custom service scene based on layout engine
CN113849244B (en) * 2021-09-13 2024-01-12 广州咨元信息科技有限公司 Configuration method for realizing custom service scene based on orchestration engine
CN117389843A (en) * 2023-12-13 2024-01-12 广州嘉为科技有限公司 Intelligent operation and maintenance system, method, electronic equipment and storage medium
CN117389843B (en) * 2023-12-13 2024-04-09 广州嘉为科技有限公司 Intelligent operation and maintenance system, method, electronic equipment and storage medium

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