Visual alarm system

By designing a visual alarm system including Skynet module, data collection module, business view drawing module, indicator binding module and error warning module, the problem of inefficiency of alarm systems in complex multi-service system scenarios is solved, and the ability to quickly locate and solve problems is achieved.

CN119988153APending Publication Date: 2025-05-13HAINAN CHEYOUJIA INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202510090274.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

The existing alarm system is difficult to quickly locate and solve problems in complex multi-service system scenarios, and is inefficient and cannot intuitively browse the node health status of multiple business systems.

Method used

A visual alarm system is designed, including Skynet module, data collection module, business view drawing module, indicator binding module and error warning module. Through the coordinated work of these modules, all-round monitoring and alarm of the business system can be achieved.

Benefits of technology

It significantly improves the speed and efficiency of problem investigation, can accurately point out the source of alarms, reduce communication difficulty, and non-technical personnel can quickly understand it, visually display the problem process nodes through visual views, avoiding cumbersome troubleshooting, and saving time and manpower.

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Abstract

The invention belongs to the field of information technology and safety management cross technology, and discloses a visual alarm system which comprises a skynet module, a data collection module, a business view drawing module, an index binding module and an error early warning module. According to the method, the problem checking speed and efficiency are remarkably improved, an alarm system can be accurately pointed out, a problem conclusion can be directly output, the communication difficulty is reduced, non-technical personnel can quickly understand the problem, problem flow nodes are visually displayed by means of a view technology, tedious checking is avoided, time and labor are saved, meanwhile, system correlation factors are provided for interference judgment, and the problem checking efficiency is improved. The method can quickly lock a corresponding person in charge in the aspect of confirming an alarm owner, displays the upstream and downstream relationship of the system through a visual view, quickly positions the source of the problem, avoids the participation of irrelevant personnel, and improves the troubleshooting efficiency.
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Description

Technical Field

[0001] The present invention belongs to the cross-technical field of information technology and safety management, and specifically is a visual alarm system. Background Art

[0002] With the diversified development of corporate business, business scenarios are becoming increasingly complex. In order to reduce labor costs, companies generally use technical means to build various business systems. However, these business systems are interconnected due to the correlation between businesses, forming complex upstream and downstream relationships. When a problem occurs in the system, it often requires multiple teams to work together to investigate, involving a large number of people, and the problem location is not accurate enough. To solve this problem, it is particularly important to establish a complete alarm system. Most of the existing alarm systems on the market can only alarm for single-point problems, and usually only receive alarm information through communication tools. After receiving the alarm, since it is impossible to intuitively browse the node health status of multiple business systems, the troubleshooter can often only investigate the alarm point and use the elimination method to verify whether the problem originates from the current node. This method is inefficient and difficult to meet the needs of rapid location and problem solving in complex business scenarios. Summary of the invention

[0003] The purpose of the present invention is to provide a visual alarm system to solve the problems raised in the above background technology.

[0004] In order to achieve the above-mentioned purpose, the present invention provides the following technical solutions: a visual alarm system, which includes a Skynet module, a data collection module, a business view drawing module, an indicator binding module, and an error warning module; the Skynet module is used to build a complete monitoring, alarm, analysis, and positioning system, and quickly expand various business scenario monitoring; the data collection module is used to report key indicator data in real time, including errors, requests, time-consuming logs and business data volume, and the interface data dimensions cover indicator identifiers, names, custom sets, reporting identifiers and values; the business view drawing module is used to fully understand and optimize business processes, which requires in-depth analysis of specific business processes and related units, and drawing detailed full business units Flowchart, the indicator binding module is used to add monitoring indicators and set thresholds, and then bind the indicators to the business view nodes, supporting multi-indicator binding. The error warning module is used to trigger an alarm when the data exceeds the threshold, and the email, DingTalk, and SMS notifications; the view warning node turns red, and the upstream and downstream are displayed in sequence to quickly locate the source of the problem. The Skynet module is the core and coordinates the entire system; the data collection module is responsible for collecting information and providing basic data for the system; the business view drawing module builds an intuitive business view based on the data; the indicator binding module associates key indicators with view nodes; the error warning module triggers an alarm in time when the data is abnormal, and dispatches other modules to respond and process through the Skynet module to ensure efficient operation of the system.

[0005] Preferably, the Skynet module includes: a business application unit, an alarm configuration unit, a monitoring model unit, an indicator rule setting unit, a basic data unit, and a business data unit: the business application unit, as the business core of the system, relies on the data support provided by the basic data unit and the business data unit; the alarm configuration unit configures corresponding alarm rules according to business needs; the monitoring model unit establishes a monitoring model based on these configurations to monitor the system status in real time; the indicator rule setting unit is responsible for formulating and managing indicator rules to ensure the accuracy and validity of the data; when the monitoring model detects an abnormality, it triggers an alarm and responds and processes it through the business application unit; at the same time, the data and information flow between the units forms a closed-loop, mutually supportive system architecture.

[0006] Preferably, the data collection module includes: a data collection unit, a data processing and reporting unit, an indicator rule setting unit, a data reporting configuration unit, and a monitoring and feedback unit: the data collection unit captures error logs, request logs, time-consuming logs and business data volume, key data from the business system in real time or time-sharing, and then the data processing and reporting unit formats and cleans these data to ensure data accuracy, and selectively reports them to the monitoring or analysis system according to preset rules. In terms of interface data dimension definition, the indicator rule setting unit is responsible for clarifying data dimensions, including indicator identifiers, names and custom indicator sets, and formulating management rules. The data reporting configuration unit configures reporting parameters such as identifiers and cycles according to these rules, and reports data to the corresponding interface. At the same time, the monitoring and feedback unit monitors the reporting process throughout.

[0007] Preferably, the collection module also includes: a data source analysis unit, a data cleaning and conversion unit, and a data storage and management unit: the data source analysis unit deeply analyzes the data structure and format of each business system, accurately defines the scope and method of data collection, covers the database structure, interface documents and log files, and ensures that data collection is comprehensive and accurate; the data cleaning and conversion unit targets data differences, effectively handles missing, abnormal and duplicate data, and unifies data formats to ensure data accuracy and consistency; the data storage and management unit serves as subsequent support and selects an efficient storage architecture and engine.

[0008] Preferably, the collection module also includes: a data access and authorization unit, a system performance monitoring and optimization unit: the data access and authorization unit is responsible for finely managing data access rights, assigning appropriate permissions to different users or system roles, and closely monitoring and recording data access activities; at the same time, the system performance monitoring and optimization unit continuously monitors key performance indicators such as response time, throughput, and error rate, and implements optimization measures based on the monitoring results.

[0009] Preferably, the business view drawing module includes: a business process and system analysis unit, a flowchart drawing and editing unit, and a problem display and feedback unit: the business process and system analysis unit deeply analyzes the business links and data flows, constructs a system flowchart for the entire business, and accurately depicts the business system architecture and processes. On this basis, the flowchart drawing and editing unit carefully depicts the specific business system and highlights key business nodes, ensuring that problems can be quickly located when they occur through special markings. At the same time, the problem display and feedback unit integrates the problem display function into the flowchart, intuitively presents key node problems, and establishes a feedback mechanism to ensure that relevant personnel can be notified in time to handle problems after they are discovered.

[0010] Preferably, the indicator binding module includes: a monitoring indicator management unit and a business view and indicator binding unit: the monitoring indicator management unit is responsible for selecting and adding appropriate monitoring items, and setting reasonable alarm thresholds to ensure that the system can accurately monitor the business status and issue alarms in a timely manner, while the business view and indicator binding unit is responsible for correctly binding the monitoring indicators to the specified view nodes in the drawn business view, and supports binding multiple indicators to one node to fully display the business status.

[0011] Preferably, the error warning module includes: a threshold monitoring and alarm triggering unit, and a view and indicator status update unit: the threshold monitoring and alarm triggering unit continuously monitors the data, and triggers an alarm once the data exceeds the standard, and quickly conveys the alarm information through email, DingTalk, and SMS. At the same time, the view and indicator status update unit reflects the alarm situation in real time in the business view, marks the indicator node that triggers the alarm in red, and intuitively displays the warning status. If there is an upstream and downstream relationship, the unit will also highlight the red nodes in sequence in the view, so that users can quickly locate the source of the problem.

[0012] The beneficial effects of the present invention are as follows:

[0013] The present invention significantly improves the speed and efficiency of problem troubleshooting through the Skynet module, data collection module, business view drawing module, indicator binding module, and error warning module. It can accurately point out the alarm system, directly output the problem conclusion, reduce the difficulty of communication, and non-technical personnel can also quickly understand it. With the help of view technology, the problem process nodes are intuitively displayed to avoid tedious troubleshooting, save time and manpower, and at the same time, provide system-related factor interference judgment, such as manual operation and major events, to help quickly locate the problem. In terms of confirming the alarm stakeholders, the corresponding person in charge can be quickly locked, and the upstream and downstream relationships of the system can be displayed through a visual view to quickly locate the source of the problem, avoid the participation of irrelevant personnel, improve the troubleshooting efficiency, and immediately start the troubleshooting process according to the alarm person in charge, reduce communication costs, and provide a strong guarantee for the stable operation of the business system. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1It is a business visualization view of the present invention;

[0015] Figure 2 The figure is a schematic diagram of the flow chart of the system of the present invention. DETAILED DESCRIPTION

[0016] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0017] like Figure 1 to Figure 2 As shown, an embodiment of the present invention provides a visual alarm system, which includes a Skynet module, a data collection module, a business view drawing module, an indicator binding module, and an error warning module; the Skynet module is used to build a complete monitoring, alarm, analysis, and positioning system, and quickly expand various business scenario monitoring; the data collection module is used to report key indicator data in real time, including errors, requests, time-consuming logs, and business data volume; the interface data dimensions cover indicator identifiers, names, custom sets, reporting identifiers, and values; the business view drawing module is used to fully understand and optimize business processes, which requires in-depth analysis of specific business processes and related units, and drawing a detailed full business unit flow chart, The indicator binding module is used to add monitoring indicators and set thresholds, and then bind the indicators to the business view nodes. It supports multi-indicator binding. The error warning module is used to trigger an alarm when the data exceeds the threshold, and the notification is sent by email, DingTalk, or SMS. The view warning node turns red, and the upstream and downstream are displayed in sequence to quickly locate the source of the problem. The Skynet module serves as the core and coordinates the entire system. The data collection module is responsible for collecting information and providing basic data for the system. The business view drawing module builds an intuitive business view based on the data. The indicator binding module associates key indicators with view nodes. The error warning module triggers an alarm in time when the data is abnormal, and dispatches other modules to respond and process through the Skynet module to ensure efficient operation of the system.

[0018] Among them, the Skynet module includes: business application unit, alarm configuration unit, monitoring model unit, indicator rule setting unit, basic data unit, business data unit: the business application unit, as the business core of the system, relies on the data support provided by the basic data unit and the business data unit. The alarm configuration unit configures the corresponding alarm rules according to business needs. The monitoring model unit establishes a monitoring model based on these configurations to monitor the system status in real time. The indicator rule setting unit is responsible for formulating and managing indicator rules to ensure the accuracy and effectiveness of the data. When the monitoring model detects an abnormality, it will trigger an alarm and respond and process it through the business application unit. At the same time, the data and information flow between the units forms a closed-loop, mutually supportive system architecture.

[0019] The Skynet module integrates business applications, alarm configuration, monitoring models, indicator rule settings, and basic and business data units to form a closed-loop, mutually supportive system architecture. The module ensures that data is accurate and effective, monitors system status in real time, flexibly configures alarm rules according to business needs, and responds to exceptions in a timely manner. This integration improves business processing efficiency and system stability, and provides strong support for business continuity and risk management.

[0020] Among them, the data collection module includes: a data collection unit, a data processing and reporting unit, an indicator rule setting unit, a data reporting configuration unit, and a monitoring and feedback unit: the data collection unit captures error logs, request logs, time-consuming logs and business data volume, key data from the business system in real time or in time-sharing. Subsequently, the data processing and reporting unit formats and cleans these data to ensure data accuracy, and selectively reports them to the monitoring or analysis system according to preset rules. In terms of interface data dimension definition, the indicator rule setting unit is responsible for clarifying data dimensions, including indicator identifiers, names and custom indicator sets, and formulating management rules. The data reporting configuration unit configures reporting parameters such as identifiers and cycles according to these rules, and reports data to the corresponding interface. At the same time, the monitoring and feedback unit monitors the reporting process throughout the process. Ensure that data arrives accurately and timely, and provide feedback and alarms when abnormalities occur to ensure stable operation of the system. These units work together to ensure the efficiency and accuracy of log reporting and interface data dimension definition of the business system.

[0021] Among them, the collection module also includes: data source analysis unit, data cleaning and conversion unit, data storage and management unit: the data source analysis unit deeply analyzes the data structure and format of each business system, accurately defines the scope and method of data collection, covers database structure, interface documents and log files, and ensures that data collection is comprehensive and accurate. The data cleaning and conversion unit targets data differences, effectively handles missing, abnormal and duplicate data, and unifies data formats to ensure data accuracy and consistency. The data storage and management unit serves as subsequent support and selects efficient storage architecture and engine. Ensure data reliability and performance, while providing backup, recovery and security management functions, laying a solid foundation for long-term preservation and efficient use of data. Each unit works together to build an efficient data processing and management system

[0022] The collection module also includes: data access and authorization unit, system performance monitoring and optimization unit: the data access and authorization unit is responsible for fine-grained management of data access rights, assigning appropriate permissions to different users or system roles, and closely monitoring and recording data access activities. At the same time, the system performance monitoring and optimization unit continuously monitors key performance indicators such as response time, throughput, and error rate, and implements optimization measures based on the monitoring results. The unit also comprehensively evaluates the system's scalability, stability, fault tolerance, and maintainability, and puts forward improvement suggestions to ensure that the system always maintains an efficient operating state. The two major units work together to provide dual protection for data security and system performance.

[0023] The indicator binding module accurately sets the alarm threshold through the monitoring indicator management unit to ensure the accuracy and timeliness of business status monitoring. The business view and indicator binding unit realizes the close association between monitoring indicators and business views, supports multi-indicator binding, and fully displays the business status. This module not only improves monitoring efficiency, but also enhances the ability of business visualization management, providing strong support for rapid response to business changes and optimized decision-making.

[0024] Among them, the business view drawing module includes: business process and system analysis unit, flowchart drawing and editing unit, problem display and feedback unit: the business process and system analysis unit deeply analyzes the business links and data flow, builds a system flowchart for the entire business, and accurately depicts the business system architecture and process. On this basis, the flowchart drawing and editing unit carefully depicts the specific business system and highlights the key business nodes. Through special markings, it ensures that problems can be quickly located when they occur. At the same time, the problem display and feedback unit integrates the problem display function into the flowchart, intuitively presents key node problems, and establishes a feedback mechanism to ensure that relevant personnel can be notified in time to deal with problems after they are discovered. The three units work closely together to ensure that the system flowchart is both comprehensive, accurate and practical, providing strong support for the stable operation of the business system, helping enterprises to efficiently respond to business challenges and achieve sustainable development.

[0025] Among them, the indicator binding module includes: a monitoring indicator management unit, a business view and indicator binding unit: the monitoring indicator management unit is responsible for selecting and adding appropriate monitoring items, and setting reasonable alarm thresholds to ensure that the system can accurately monitor the business status and issue alarms in time, while the business view and indicator binding unit is responsible for correctly binding the monitoring indicators to the specified view nodes in the drawn business view, and supports binding multiple indicators to one node to fully display the business status.

[0026] Among them, the error warning module includes: threshold monitoring and alarm triggering unit, view and indicator status update unit: the threshold monitoring and alarm triggering unit continuously monitors the data, and triggers the alarm once the data exceeds the standard, and quickly conveys the alarm information through email, DingTalk, SMS, etc. At the same time, the view and indicator status update unit reflects the alarm situation in real time in the business view, marks the indicator node that triggers the alarm in red (default green), and intuitively displays the warning status. If there is an upstream and downstream relationship, the unit will also highlight the red nodes in the view in sequence, so that users can quickly locate the source of the problem. The two units work together to ensure that the alarm information is communicated in a timely manner and the view status is updated in real time, providing a strong guarantee for the stable operation of the business system and helping users to efficiently respond to potential risks and challenges.

[0027] The error warning module triggers alarms in time through threshold monitoring and quickly conveys them through various communication methods to ensure the timeliness of information. The view and indicator status update unit reflects alarms in real time, intuitively marks and highlights problem nodes, and facilitates users to quickly locate the source of problems. The two work together to not only ensure the stable operation of the business system, but also greatly improve the efficiency of users in dealing with potential risks and challenges, providing strong support for business continuity and security.

[0028] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.

[0029] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A visual alarm system, characterized in that: The system includes a Skynet module, a data collection module, a business view drawing module, an indicator binding module, and an error warning module; The Skynet module is used to build a complete monitoring, alarm, analysis, and positioning system, and quickly expand monitoring of various business scenarios; The data collection module is used to report key indicator data in real time, including errors, requests, time-consuming logs and business data volume. The interface data dimensions cover indicator identification, name, custom set, reporting identification and value. The business view drawing module is used to fully understand and optimize business processes. It requires in-depth analysis of specific business processes and related units, and drawing a detailed full business unit flow chart; The indicator binding module is used to add monitoring indicators and set thresholds, and then bind the indicators to business view nodes, supporting multi-indicator binding; The error warning module is used to trigger an alarm when data exceeds a threshold, and send notifications via email, DingTalk, or SMS. The view warning node turns red, and the upstream and downstream sequences are displayed to quickly locate the source of the problem. The Skynet module serves as the core and coordinates the entire system. The data collection module is responsible for collecting information and providing basic data for the system; The business view drawing module builds intuitive business views based on data; the indicator binding module associates key indicators with view nodes; The error warning module will trigger an alarm in time when the data is abnormal, and dispatch other modules to respond and process through the Skynet module to ensure efficient operation of the system.

2. A visual alarm system according to claim 1, characterized in that: The Skynet module includes: business application unit, alarm configuration unit, monitoring model unit, indicator rule setting unit, basic data unit, business data unit: the business application unit, as the business core of the system, relies on the data support provided by the basic data unit and the business data unit. The alarm configuration unit configures corresponding alarm rules according to business needs. The monitoring model unit establishes a monitoring model based on these configurations to monitor the system status in real time. The indicator rule setting unit is responsible for formulating and managing indicator rules to ensure the accuracy and effectiveness of the data. When the monitoring model detects an abnormality, it will trigger an alarm and respond and process it through the business application unit. At the same time, the data and information flow between the units forms a closed-loop, mutually supportive system architecture.

3. A visual alarm system according to claim 1, characterized in that: The data collection module includes: a data collection unit, a data processing and reporting unit, an indicator rule setting unit, a data reporting configuration unit, and a monitoring and feedback unit; The data collection unit captures error logs, request logs, time-consuming logs, business data volume, and key data from the business system in real time or in different time periods. Subsequently, the data processing and reporting unit formats and cleans these data to ensure data accuracy, and selectively reports them to the monitoring or analysis system based on preset rules. In terms of interface data dimension definition, the indicator rule setting unit is responsible for clarifying data dimensions, including indicator identifiers, names, and custom indicator sets, and formulating management rules. The data reporting configuration unit configures reporting parameters based on these rules and reports data to the corresponding interface. At the same time, the monitoring and feedback unit monitors the entire reporting process.

4. A visual alarm system according to claim 1, characterized in that: The collection module also includes: a data source analysis unit, a data cleaning and conversion unit, and a data storage and management unit; The data source analysis unit deeply analyzes the data structure and format of each business system, accurately defines the scope and method of data collection, covers the database structure, interface documents and log files, and ensures that data collection is comprehensive and accurate. The data cleaning and conversion unit targets data differences, effectively handles missing, abnormal and duplicate data, and unifies data formats to ensure data accuracy and consistency. The data storage and management unit serves as subsequent support and selects efficient storage architecture and engine.

5. A visual alarm system according to claim 1, characterized in that: The collection module also includes: data access and authorization unit, system performance monitoring and optimization unit; The data access and authorization unit is responsible for the detailed management of data access rights, assigning appropriate permissions to different users or system roles, and closely monitoring and recording data access activities. At the same time, the system performance monitoring and optimization unit continuously monitors key performance indicators such as response time, throughput, and error rate, and implements optimization measures based on the monitoring results.

6. A visual alarm system according to claim 1, characterized in that: The business view drawing module includes: a business process and system analysis unit, a flowchart drawing and editing unit, and a problem display and feedback unit; The business process and system analysis unit deeply analyzes business links and data flows, constructs a system flowchart for the entire business, and accurately depicts the business system architecture and processes. On this basis, the flowchart drawing and editing unit carefully depicts the specific business system and highlights key business nodes, ensuring that problems can be quickly located when they occur through special markings. At the same time, the problem display and feedback unit integrates the problem display function into the flowchart, intuitively presents key node problems, and establishes a feedback mechanism to ensure that relevant personnel are notified in a timely manner to handle problems after they are discovered.

7. A visual alarm system according to claim 1, characterized in that: The indicator binding module includes: a monitoring indicator management unit, a business view and an indicator binding unit; The monitoring indicator management unit is responsible for selecting and adding appropriate monitoring items and setting reasonable alarm thresholds to ensure that the system can accurately monitor the business status and issue timely alarms. The business view and indicator binding unit is responsible for correctly binding the monitoring indicators to the specified view nodes in the drawn business view. It supports binding multiple indicators to one node to fully display the business status.

8. A visual alarm system according to claim 1, characterized in that: The error warning module includes: a threshold monitoring and alarm triggering unit, a view and indicator status update sheet; The threshold monitoring and alarm triggering unit continuously monitors data and triggers an alarm once the data exceeds the standard. The alarm information is quickly conveyed via email, DingTalk, and SMS. At the same time, the view and indicator status update unit reflects the alarm situation in real time in the business view, marks the indicator node that triggers the alarm in red, and intuitively displays the warning status. If there is an upstream and downstream relationship, the unit will also highlight the red nodes in sequence in the view, allowing users to quickly locate the source of the problem.