State monitoring and management system, method and apparatus, and storage medium
By integrating multiple business systems with monitoring devices and deploying diagnostic agents and plug-in components to collect and process indicator data at different levels, the problems of poor system independence and difficult to ensure data consistency in cross-regional operation and maintenance are solved, and comprehensive monitoring and management of multiple business systems are achieved.
Patent Information
- Application Number
- PCT/CN2024/098585
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2023-11-16
- Filing Date
- 2024-06-12
- Publication Date
- 2025-05-22
AI Technical Summary
The existing technology has poor system independence, difficulty in integration and collaboration, difficulty in ensuring data consistency, and lack of a unified monitoring and management platform in cross-regional operation and maintenance, making it difficult to achieve comprehensive monitoring and management of multiple systems.
It provides a status monitoring and management system, which integrates multiple business systems with monitoring devices, deploys diagnostic agents and plug-in components, collects indicator data at different levels, and determines the operating status of each business system in the function stack module, and displays and monitors the data transmission consistency.
It solves the difficulties in integration and collaboration between systems, realizes comprehensive monitoring and management of multiple business systems, ensures data consistency, and provides a unified monitoring and management platform.
Smart Images

Figure CN2024098585_22052025_PF_FP_ABST
Abstract
Description
Condition monitoring management system, method, device and storage medium Technical Field
[0001] The present application relates to the field of system management technology, and in particular to a status monitoring management system, method, device and storage medium. Background Art
[0002] With the rapid development of information technology and the widespread adoption of the internet, more and more businesses are expanding, their business complexity and data volumes are increasing. Businesses are no longer confined to a single region, but now span multiple regions. This requires establishing branches or offices in different regions to meet market demands. This presents challenges for cross-regional operations and maintenance. Centralized management and monitoring of distributed equipment and systems, as well as ensuring stable cross-regional operations, have become crucial issues.
[0003] Current internet technology operations (OP) systems, as the core software of computer systems, play a crucial role in managing computer hardware and software resources. While these systems have made significant progress in providing basic functions and services, they still face several shortcomings: Existing technologies lack independence, with each system independently developed and managed, making integration and collaboration between systems difficult. Furthermore, data transmission and processing across disparate systems creates the risk of data inconsistencies, making it difficult to ensure data consistency. Furthermore, current technologies lack a unified monitoring and management platform, making it difficult to achieve comprehensive monitoring and management of multiple systems.
[0004] Summary of the Invention
[0005] In view of this, the present application provides a status monitoring management system, method, device and storage medium to solve the problems of poor technical independence of existing technologies, independent development and management of each system, difficulty in integration and collaboration between systems; data transmission and processing between different systems, difficulty in ensuring data consistency and lack of a unified monitoring and management platform.
[0006] In a first aspect, the present application provides a state monitoring and management system, the system comprising: a monitoring device and a plurality of heterogeneous business systems, the monitoring device comprising a function stack module and a presentation module, and a diagnostic agent and a plug-in component deployed in each business system;
[0007] The diagnostic agent is used to collect the host layer indicator data set of the business system and send the host layer indicator data set to the functional stack module; the plug-in component is used to collect the instance layer indicator data set, operating system indicator data set and database layer indicator data set of the business system, and send the instance layer indicator data set, operating system indicator data set and database layer indicator data set to the functional stack module; the functional stack module is used to determine the operating status of each business system based on the host layer indicator data set, instance layer indicator data set, operating system indicator data set and database layer indicator data set, and send display instructions to the display module based on the operating status; the display module is used to display and monitor the operating status of each business system based on the display instructions.
[0008] The status monitoring and management system provided by the present application integrates multiple business systems and monitoring devices into one system, solving the problem of difficult integration and collaboration between systems. At the same time, by deploying diagnostic agents and plug-in components in each business system, comprehensive collection of data at different levels of each business system can be achieved, and then the operating status of each business system can be fully determined in the functional stack module through the collected data at different levels, and displayed through the display module, thereby realizing comprehensive monitoring and management of multiple business systems. Optionally, the corresponding data can be transmitted to the functional stack module through the diagnostic agents and plug-in components deployed in each business system, so that consistency of data transmission can be achieved.
[0009] In an optional embodiment, the function stack module includes an ABAP function stack and a JAVA function stack; the ABAP function stack is used to receive instance layer indicator data sets, operating system indicator data sets and database layer indicator data sets sent by the plug-in component; the JAVA function stack is used to receive host layer indicator data sets sent by the diagnostic agent.
[0010] This application uses two independent function stacks, ABAP function stack and JAVA function stack, to realize the separate collection of data at different levels, improve the comprehensiveness of data collection, and provide data support for the comprehensive monitoring and management of multiple business systems in the future.
[0011] In an optional embodiment, the ABAP function stack is further used to obtain a preset first threshold data set, and determine a first operating data set for each business system based on the preset first threshold data set, the instance layer indicator data set, the operating system indicator data set, and the database layer indicator data set; the JAVA function stack is further used to obtain a preset second threshold data set, and determine a second operating data set for each business system based on the preset second threshold data set and the host layer indicator data. The second operating data set and the first operating data set are used to determine the operating status of each business system.
[0012] By setting different threshold data sets in the ABAP function stack and the JAVA function stack, this application can determine the status of the corresponding level of the business system after receiving data from different levels of the business system, providing data support for the subsequent comprehensive monitoring and management of multiple business systems.
[0013] In an optional embodiment, the monitoring device also includes: an independent engine module, which is used to receive the host layer indicator data set, instance layer indicator data set, operating system indicator data set and database layer indicator data set sent by the functional stack module, and manage multiple business systems based on the host layer indicator data set, instance layer indicator data set, operating system indicator data set and database layer indicator data set, and send the management results to the display module.
[0014] This application can achieve independent monitoring and management of each business system through independent engine modules.
[0015] In an optional embodiment, the independent engine module includes: a performance management component for managing the functional components of each business system based on the host layer indicator data set, the instance layer indicator data set, the operating system indicator data set and the database layer indicator data set, and sending the management results to the presentation module.
[0016] This application can manage the functional components of each business system through the performance management component.
[0017] In an optional embodiment, the independent engine module also includes: a core search engine, which is used to search the indicator data of each business system after receiving the host layer indicator data set, instance layer indicator data set, operating system indicator data set and database layer indicator data set.
[0018] This application can realize the search of one or more indicator data of each business system through the core search engine.
[0019] In an optional implementation, the monitoring device further includes: a management terminal, configured to receive the operating status of each business system sent by the functional stack module.
[0020] This application can also achieve comprehensive monitoring and management of multiple business systems through the management end.
[0021] In a second aspect, the present application provides a state monitoring management method for use in the state monitoring management system of the first aspect or any corresponding embodiment thereof; the method comprises:
[0022] Obtain host layer indicator datasets, instance layer indicator datasets, operating system indicator datasets, and database layer indicator datasets corresponding to multiple business systems; determine the operating status of each business system based on the host layer indicator datasets, instance layer indicator datasets, operating system indicator datasets, and database layer indicator datasets, and display and monitor the operating status of each business system.
[0023] The status monitoring management method provided in this application can realize comprehensive monitoring and management of multiple business systems through the status monitoring management system of the above-mentioned first aspect or any corresponding embodiment.
[0024] In a third aspect, the present application provides a state monitoring management device for executing the state monitoring management method provided in the second aspect above; the device comprises:
[0025] The acquisition unit is used to obtain the host layer indicator data set, instance layer indicator data set, operating system indicator data set and database layer indicator data set corresponding to multiple business systems; the management unit is used to determine the operating status of each business system based on the host layer indicator data set, instance layer indicator data set, operating system indicator data set and database layer indicator data set, and to display and monitor the operating status of each business system.
[0026] In a fourth aspect, the present application provides a computer-readable storage medium having computer instructions stored thereon, the computer instructions being used to enable a computer to execute the status monitoring management method provided in the second aspect above.
[0027] In the fifth aspect, the present application provides a computer device comprising: a memory and a processor, the memory and the processor being communicatively connected to each other, computer instructions being stored in the memory, and the processor executing the status monitoring and management method provided in the second aspect above by executing the computer instructions. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] In order to more clearly illustrate the specific implementation methods of the present application or the technical solutions in the prior art, the following is a brief introduction to the drawings required for use in the specific implementation methods or the description of the prior art. Obviously, the drawings described below are some implementation methods of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.
[0029] FIG1 is a structural block diagram of a status monitoring and management system according to an embodiment of the present application;
[0030] FIG2 is a schematic diagram of an operation and maintenance environment monitoring system for a cross-regional intelligent operation and maintenance monitoring and management system according to an embodiment of the present application;
[0031] FIG3 is a schematic diagram of the structure of a cross-regional intelligent operation and maintenance monitoring management system according to an embodiment of the present application;
[0032] FIG4 is a flow chart of a state monitoring management method according to an embodiment of the present application;
[0033] FIG5 is a structural block diagram of a state monitoring management device according to an embodiment of the present application;
[0034] FIG6 is a schematic diagram of the hardware structure of a computer device according to an embodiment of the present application. DETAILED DESCRIPTION
[0035] To make the purpose, technical solutions, and advantages of the embodiments of the present application more clear, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without making creative efforts shall fall within the scope of protection of this application.
[0036] An embodiment of the present application provides a status monitoring and management system that achieves comprehensive monitoring and management of multiple business systems by integrating multiple business systems and monitoring devices into one system and deploying diagnostic agents and plug-in components in each business system.
[0037] According to an embodiment of the present application, a state monitoring management system embodiment is provided. Figure 1 is a flow chart of the state monitoring management system according to an embodiment of the present application. As shown in Figure 1, the state monitoring management system 1 includes: a monitoring device 11 and multiple heterogeneous business systems 12.
[0038] It should be understood that the above system also includes other devices and equipment.
[0039] Optionally, a diagnostic agent 121 and a plug-in component 122 are deployed in each business system 12 .
[0040] The plug-in component 122 (plug-in component) represents the ST-PI & ST-API component.
[0041] Optionally, the monitoring device 11 includes: a function stack module 111 and a display module 112. The function stack module 111 includes: an ABAP function stack 1111 and a JAVA function stack 1112.
[0042] Optionally, the monitoring device 11 further includes an independent engine module 113 , wherein the independent engine module 113 includes a performance management component 1131 and a core search engine 1132 .
[0043] Optionally, the monitoring device 11 further includes: a management terminal 114 .
[0044] Optionally, the functions of each device in the above system are described.
[0045] Optionally, the diagnostic agent 121 is used to collect a host layer indicator data set of each business system 12 and send the collected host layer indicator data set to the function stack module 111 .
[0046] Specifically, the monitoring layer of each business system 12 includes an instance layer, an operating system layer, a database layer, and a host layer.
[0047] Optionally, multiple indicator data of each business system 12 at the host layer can be collected through the diagnostic agent 121.
[0048] Optionally, the diagnostic agent 121 may also perform consistency verification on the collected host layer indicator data set, so that when the collected host layer indicator data is sent to the function stack module 111 , consistency of data transmission may be achieved.
[0049] Optionally, the function stack module 111 receives the host layer indicator data set sent by the diagnosis agent 121 through the JAVA function stack 1112 .
[0050] Optionally, the plug-in component 122 is used to collect the instance layer indicator data set, operating system indicator data set and database layer indicator data set of each business system 12, and send the collected instance layer indicator data set, operating system indicator data set and database layer indicator data set to the corresponding function stack module 111.
[0051] Specifically, the plug-in component 122 can collect multiple indicator data of each business system 12 at the instance layer, operating system layer and database layer.
[0052] Optionally, the plug-in component 122 can also perform consistency verification on multiple indicator data collected at the instance layer, operating system layer and database layer, so that when the collected instance layer indicator data set, operating system indicator data set and database layer indicator data set are sent to the functional stack module 111, consistency of data transmission can be achieved.
[0053] Optionally, in the function stack module 111 , the ABAP function stack 1111 receives the instance layer indicator dataset, the operating system indicator dataset, and the database layer indicator dataset sent by the plug-in component 122 .
[0054] Optionally, the ABAP function stack 1111 in the function stack module 111 is further used to obtain a preset first threshold data set, and determine the first operating data set of each business system based on the preset first threshold data set, the instance layer indicator data set, the operating system indicator data set and the database layer indicator data set.
[0055] Specifically, by comparing the received instance layer indicator data set, operating system indicator data set and database layer indicator data set with the corresponding preset thresholds in the preset first threshold data set, the operating status of the instance layer, operating system layer and database layer of each business system can be obtained, and a first operating data set can be formed.
[0056] In one example, the following tables 1 to 3 are summary tables of data comparison at the instance layer, operating system layer, and database layer, respectively:
[0057] Table 1. Summary of instance layer data comparison
[0058] Table 2. Summary of operating system layer data comparison
[0059] Table 3. Summary of database layer data comparison
[0060] Optionally, the JAVA function stack 1112 in the function stack module 111 is further configured to obtain a preset second threshold data set, and determine a second operating data set for each business system based on the preset second threshold data set and host layer indicator data.
[0061] Specifically, by comparing the received host layer indicator data with the corresponding preset thresholds in the preset second threshold data set, the operating status of the host layer of each business system can be obtained, and a second operating data set can be formed.
[0062] Optionally, the function stack module 111 may determine the operating status of each business system by using the obtained first operating data set and second operating data set, such as whether the business system is operating normally or not.
[0063] In one example, as shown in Table 4 below, it is a summary table of data comparison at the host layer:
[0064] Table 4. Summary of host layer data comparison
[0065] Optionally, after determining the operating status of each business system, the function stack module 111 sends a corresponding display instruction to the display module 112 .
[0066] Optionally, after receiving the display instruction, the display module 112 displays the operating status of each business system corresponding to the display instruction under the control of the display instruction, thereby achieving comprehensive monitoring of the operating status of each business system.
[0067] Optionally, the management terminal 114 is configured to receive the operating status of each business system sent by the function stack module 111 .
[0068] Specifically, the function stack module 111 may also send the obtained operating status of each business system to the corresponding management terminal 114 , so that the administrator user corresponding to the management terminal 114 can achieve comprehensive monitoring and management of multiple business systems.
[0069] Optionally, the independent engine module 113 is used to receive the host layer indicator data set, instance layer indicator data set, operating system indicator data set and database layer indicator data set sent by the functional stack module 111, and monitor and manage multiple business systems based on the host layer indicator data set, instance layer indicator data set, operating system indicator data set and database layer indicator data set.
[0070] Specifically, after receiving the host layer indicator data set, instance layer indicator data set, operating system indicator data set and database layer indicator data set sent by the functional stack module 111, the monitoring and management of the functional components of multiple business systems can be realized. At the same time, the search for one or more indicator data of each business system can also be realized.
[0071] Optionally, the performance management component 1131 can implement operation management of functional components in each business system 12 based on the host layer indicator data set, instance layer indicator data set, operating system indicator data set and database layer indicator data set corresponding to each business system 12.
[0072] Optionally, by receiving the host layer indicator data set, instance layer indicator data set, operating system indicator data set and database layer indicator data set of multiple business systems sent by the functional stack module 111, comprehensive operation management of functional components of multiple business systems can be achieved.
[0073] Optionally, the operation management results of the functional components of each business system 12 in the performance management component 1131 can be sent to the corresponding display module 112 for display, so as to achieve comprehensive monitoring and management of the functional components of multiple business systems.
[0074] Optionally, the operation management results may also be sent to the corresponding management terminal 114 to enable the corresponding administrator user to comprehensively monitor and manage the functional components of multiple business systems.
[0075] Optionally, after receiving the host layer indicator data set, instance layer indicator data set, operating system indicator data set and database layer indicator data set of multiple business systems sent by the functional stack module 111, the search for different levels of indicator data of each business system can be implemented in the core search engine 1132, thereby better realizing the comprehensive operation and maintenance management of multiple business systems.
[0076] Optionally, the search results may also be sent to a corresponding management terminal 114 to enable the corresponding administrator user to comprehensively manage the operation and maintenance of multiple business systems.
[0077] The status monitoring and management system provided by this embodiment integrates multiple business systems and monitoring devices into one system, solving the problem of difficult integration and collaboration between systems. At the same time, by deploying diagnostic agents and plug-in components in each business system, comprehensive collection of data at different levels of each business system can be achieved, and then the operating status of each business system can be fully determined in the functional stack module through the collected data at different levels, and displayed through the display module, thereby realizing comprehensive monitoring and management of multiple business systems. Optionally, by transmitting the corresponding data to the functional stack module through the diagnostic agents and plug-in components deployed in each business system, consistency of data transmission can be achieved.
[0078] In one embodiment, a cross-regional intelligent operation and maintenance monitoring and management system is provided, as shown in Figure 2, including a management system and multiple managed systems. The managed systems may include S / 4HANA, BPC, FIORI, SLT, PO, KB, GRC systems, etc.
[0079] Among them, the operation and maintenance environment of the management system includes the SOLMAN production environment and the SOLMAN development and testing environment.
[0080] Specifically, the production environment is used to monitor the production environment of each managed system; the development and test environment is used to monitor the development environment and test environment of each managed system.
[0081] Optionally, as shown in FIG3 , a diagnostic agent and plug-in components are deployed in each managed system; system monitoring management may include a monitoring screen, an administrator alert inbox, a Solman independent engine, and a Solman function stack.
[0082] The Solman independent engine includes the CA Introscope performance management component and the SAP TREX core search engine; the Solman function stack includes the ABAP function stack and the JAVA function stack.
[0083] According to an embodiment of the present application, an embodiment of a status monitoring management method is provided. It should be noted that the steps shown in the flowchart of the accompanying drawings can be executed in a computer system such as a set of computer executable instructions, and although a logical order is shown in the flowchart, in some cases, the steps shown or described can be executed in an order different from that shown here.
[0084] In this embodiment, a state monitoring management method is provided, which can be used in the above-mentioned state monitoring management system 1. FIG4 is a flow chart of the state monitoring management method according to an embodiment of the present application. As shown in FIG4 , the flow chart includes the following steps:
[0085] Step S401 : obtaining a host layer indicator data set, an instance layer indicator data set, an operating system indicator data set, and a database layer indicator data set corresponding to a plurality of business systems.
[0086] The specific implementation process refers to the functional description of the diagnosis agent 121 and the plug-in component 122 in the above-mentioned status monitoring and management system 1, which will not be repeated here.
[0087] Step S402 : determining the operating status of each business system based on the host layer indicator data set, the instance layer indicator data set, the operating system indicator data set, and the database layer indicator data set, and displaying and monitoring the operating status of each business system.
[0088] The specific implementation process refers to the functional description of the functional stack module 111 and the display module 112 in the above-mentioned status monitoring and management system 1, which will not be repeated here.
[0089] The status monitoring management method provided in this embodiment can realize comprehensive monitoring and management of multiple business systems through the status monitoring management system provided in the embodiment of this application.
[0090] This embodiment also provides a state monitoring and management device for implementing the above-described embodiments and preferred implementations. Details already described will not be repeated. As used below, the term "module" may refer to a combination of software and / or hardware that implements a predetermined function. Although the devices described in the following embodiments are preferably implemented in software, implementation using hardware, or a combination of software and hardware, is also possible and contemplated.
[0091] This embodiment provides a state monitoring management device for executing the state monitoring management method provided in the above embodiment of this application. As shown in Figure 5, the device includes:
[0092] The acquisition unit 501 is used to acquire a host layer indicator data set, an instance layer indicator data set, an operating system indicator data set, and a database layer indicator data set corresponding to multiple business systems.
[0093] The management unit 502 is used to determine the operating status of each business system based on the host layer indicator data set, the instance layer indicator data set, the operating system indicator data set and the database layer indicator data set, and to display and monitor the operating status of each business system.
[0094] The further functional description of each of the above modules and units is the same as that of the above corresponding embodiments and will not be repeated here.
[0095] The status monitoring and management device in this embodiment is presented in the form of a functional unit, where the unit refers to an ASIC (Application Specific Integrated Circuit) circuit, a processor and memory that executes one or more software or fixed programs, and / or other devices that can provide the above functions.
[0096] An embodiment of the present application also provides a computer device having the status monitoring and management device shown in FIG5 above.
[0097] Please refer to Figure 6, which is a structural diagram of a computer device provided by an optional embodiment of the present application. As shown in Figure 6, the computer device includes: one or more processors 10, a memory 20, and interfaces for connecting various components, including high-speed interfaces and low-speed interfaces. The various components are connected to each other using different buses and can be installed on a common motherboard or installed in other ways as needed. The processor can process instructions executed within the computer device, including instructions stored in or on the memory to display graphical information of a GUI on an external input / output device (such as a display device coupled to the interface). In some optional embodiments, if necessary, multiple processors and / or multiple buses can be used together with multiple memories and multiple memories. Similarly, multiple computer devices can be connected, and each device provides some necessary operations (for example, as a server array, a group of blade servers, or a multi-processor system). Figure 6 takes a processor 10 as an example.
[0098] The processor 10 may be a central processing unit (CPU), a network processor (NPU), or a combination thereof. The processor 10 may also include a hardware chip. The hardware chip may be an application-specific integrated circuit (ASIC), a programmable logic device (PLD), or a combination thereof. The programmable logic device (PLD) may be a complex programmable logic device (CPLD), a field programmable gate array (FPGA), a general purpose array logic (GAL), or any combination thereof.
[0099] The memory 20 stores instructions that can be executed by at least one processor 10, so as to enable at least one processor 10 to execute the method shown in the above embodiment.
[0100] The memory 20 may include a program storage area and a data storage area, wherein the program storage area may store an operating system and application programs required for at least one function; the data storage area may store data created based on the use of the computer device, etc. In addition, the memory 20 may include a high-speed random access memory, and may also include a non-transient memory, such as at least one disk storage device, a flash memory device, or other non-transient solid-state storage device. In some optional embodiments, the memory 20 may optionally include a memory remotely located relative to the processor 10, and these remote memories may be connected to the computer device via a network. Examples of the above-mentioned network include, but are not limited to, the Internet, an intranet, a local area network, a mobile communication network, and combinations thereof.
[0101] The memory 20 may include a volatile memory, such as a random access memory; the memory may also include a non-volatile memory, such as a flash memory, a hard disk or a solid-state drive; the memory 20 may also include a combination of the above types of memory.
[0102] The computer device further includes a communication interface 30 for the computer device to communicate with other devices or a communication network.
[0103] The embodiments of the present application also provide a computer-readable storage medium. The above-mentioned method according to the embodiment of the present application can be implemented in hardware, firmware, or implemented as a computer code that can be recorded in a storage medium, or implemented as a computer code that is originally stored in a remote storage medium or a non-temporary machine-readable storage medium and downloaded through a network and will be stored in a local storage medium, so that the method described herein can be stored in such software processing on a storage medium using a general-purpose computer, a dedicated processor, or programmable or dedicated hardware. Among them, the storage medium can be a magnetic disk, an optical disk, a read-only storage memory, a random access memory, a flash memory, a hard disk or a solid-state drive, etc.; optionally, the storage medium can also include a combination of the above-mentioned types of memory. It can be understood that a computer, a processor, a microprocessor controller or programmable hardware includes a storage component that can store or receive software or computer code. When the software or computer code is accessed and executed by a computer, a processor or hardware, the method shown in the above embodiment is implemented.
[0104] Although the embodiments of the present application have been described with reference to the accompanying drawings, those skilled in the art may make various modifications and variations without departing from the spirit and scope of the present application, and such modifications and variations shall fall within the scope defined by the appended claims.
Claims
1. A state monitoring management system, characterized in that: The system comprises: a monitoring device and a plurality of heterogeneous business systems, wherein the monitoring device comprises a function stack module and a display module, and each business system is deployed with a diagnostic agent and a plug-in component; The diagnostic agent is used to collect a host layer indicator data set of the business system and send the host layer indicator data set to the function stack module; The plug-in component is used to collect the instance layer indicator data set, the operating system indicator data set and the database layer indicator data set of the business system, and send the instance layer indicator data set, the operating system indicator data set and the database layer indicator data set to the function stack module; The function stack module is used to determine the operating status of each of the business systems based on the host layer indicator data set, the instance layer indicator data set, the operating system indicator data set and the database layer indicator data set, and send a display instruction to the display module based on the operating status; The display module is used to display and monitor the operating status of each of the business systems based on the display instructions.
2. The system according to claim 1, characterized in that The function stack module includes an ABAP function stack and a JAVA function stack; The ABAP function stack is used to receive the instance layer indicator data set, the operating system indicator data set and the database layer indicator data set sent by the plug-in component; The JAVA function stack is used to receive the host layer indicator data set sent by the diagnosis agent.
3. The system according to claim 2, characterized in that The ABAP function stack is further used to obtain a preset first threshold data set, and determine a first operation data set for each of the business systems based on the preset first threshold data set, the instance layer indicator data set, the operating system indicator data set, and the database layer indicator data set; The JAVA function stack is also used to obtain a preset second threshold data set, and based on the preset second threshold data set and the host layer indicator data set, determine a second operating data set for each of the business systems, and the second operating data set and the first operating data set are used to determine the operating status of each of the business systems.
4. The system according to claim 1, characterized in that The monitoring device also includes: The management end is used to receive the operating status of each of the business systems sent by the functional stack module.
5. The system according to claim 4, characterized in that The monitoring device also includes: An independent engine module is used to receive the host layer indicator data set, the instance layer indicator data set, the operating system indicator data set and the database layer indicator data set sent by the functional stack module, and manage multiple business systems based on the host layer indicator data set, the instance layer indicator data set, the operating system indicator data set and the database layer indicator data set, and send the management results to the display module and the management end.
6. The system according to claim 5, characterized in that The independent engine module comprises: A performance management component is used to manage the functional components of each business system based on the host layer indicator data set, the instance layer indicator data set, the operating system indicator data set and the database layer indicator data set, and send the management results to the display module and the management end.
7. The system according to claim 6, characterized in that The independent engine module also includes: The core search engine is used to search the indicator data of each of the business systems after receiving the host layer indicator data set, the instance layer indicator data set, the operating system indicator data set and the database layer indicator data set.
8. A state monitoring management method, used in the state monitoring management system according to any one of claims 1 to 7; characterized in that: The method comprises: Obtain host layer indicator data sets, instance layer indicator data sets, operating system indicator data sets, and database layer indicator data sets corresponding to multiple business systems; The operating status of each of the business systems is determined based on the host layer indicator data set, the instance layer indicator data set, the operating system indicator data set and the database layer indicator data set, and the operating status of each of the business systems is displayed and monitored.
9. A state monitoring management device, used to execute the state monitoring management method according to claim 8; characterized in that: The device comprises: An acquisition unit, used to acquire a host layer indicator data set, an instance layer indicator data set, an operating system indicator data set, and a database layer indicator data set corresponding to a plurality of business systems; A management unit is used to determine the operating status of each of the business systems based on the host layer indicator data set, the instance layer indicator data set, the operating system indicator data set and the database layer indicator data set, and to display and monitor the operating status of each of the business systems.
10. A computer-readable storage medium, characterized in that: The computer-readable storage medium stores computer instructions, and the computer instructions are used to enable a computer to execute the status monitoring management method described in claim 8.
Citation Information
Patent Citations
Risk control management method and device for business system
CN116204393A
Middleware monitoring system, middleware monitoring method, device and medium
CN116225816A
Intelligent operation and maintenance monitoring platform and method, storage medium and electronic equipment
CN116302826A
State monitoring management system, method and device and storage medium
CN117806902A
Distributed Pluggable Middleware Services
US20080235710A1