Civil air defense alarm notification method and system, storage medium and intelligent terminal

By introducing a node inspection mechanism and replacing the buzzer with news information in the civil defense alarm system, the problems of alarm errors and delays caused by equipment failure and human sabotage have been solved, and the timely and stable dissemination of alarms and the public's ability to respond have been improved.

CN116453318BActive Publication Date: 2026-05-08ZHENGZHOU OULI ELECTRONICS GRP
View PDF 2 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
ZHENGZHOU OULI ELECTRONICS GRP
Filing Date
2023-03-31
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing civil defense alarm systems are prone to errors, delays, and blind spots in alarm transmission due to equipment failure or human sabotage, affecting the accuracy and stability of the alarms.

Method used

By introducing a node inspection mechanism into the civil defense alarm system, real-time information on current time and environmental factors is obtained, matched and analyzed to determine the inspection level and distribution scope, abnormal receiving ends are detected and reported, node time and distribution order are adjusted, news information is used to replace the beeping sound, and civil defense alarm drill information is interspersed to improve the timeliness and flexibility of detection.

Benefits of technology

It improved the timeliness and stability of civil defense alarms, ensured the smooth transmission of alarms, enhanced public vigilance and responsiveness, and extended the service life of the devices.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN116453318B_ABST
    Figure CN116453318B_ABST
Patent Text Reader

Abstract

The application relates to a civil air defense alarm notification method and system, a storage medium and an intelligent terminal, relates to the field of civil air defense alarm technology, and comprises the following steps: acquiring current time information; matching the current time information with node time information; if successful, defining current node information; extracting current node type information; searching for current check level information; determining distribution range information; determining distribution center information; controlling a distribution end to detect alarm distribution of a receiving end and receiving back demonstration result information; if it is fault information, defining an abnormal receiving end, marking the abnormal receiving end and outputting at the distribution end; if all are normal working information, stopping detection; if it is unsuccessful, not performing detection; and resetting the current time information when a formal distribution action occurs. The application has the effects that civil air defense alarms of each level are checked and feedback is received according to set nodes, the smoothness of the alarm is ensured when the alarm is needed, and the timeliness and stability of the alarm are improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of civil defense alarm technology, and in particular to a civil defense alarm notification method, system, storage medium and smart terminal. Background Technology

[0002] Civil air defense, or civil defense for short, refers to the measures and actions taken by the government to mobilize and organize the people to defend against enemy air attacks and eliminate their consequences, such as issuing and canceling civil defense alarms. Command and communication engineering is a component of civil defense projects. To meet the needs of wide-area coverage and timely and accurate dissemination of civil defense alarms, the civil defense alarm notification system must be able to accurately ascertain the issuance status and coverage area of ​​civil defense alarms.

[0003] In related technologies, such as Chinese Patent No. CN109702612A, a civil defense alarm control system based on multiple communication methods is disclosed. This system includes a provincial control center, a municipal alarm system, district / county alarm systems, and a BeiDou satellite. The municipal alarm system includes a main control center, at least one first intermediate station, and multiple first alarm stations. The district / county alarm system includes a sub-control center, at least one second intermediate station, and multiple second alarm stations. The provincial control center, main control center, sub-control center, first intermediate station, first alarm station, second intermediate station, and second alarm stations all communicate with the BeiDou satellite. This invention improves system stability and availability by using multiple communication methods for mutual backup, while reducing system construction difficulty and cost.

[0004] Regarding the aforementioned technologies, the inventors believe that due to the special nature of the system, the equipment needs to operate for a long time and is not activated under normal circumstances. Therefore, if the equipment malfunctions or is damaged by human intervention when issuing civil defense alarms, it is easy to cause the civil defense alarms to be sent incorrectly, not issued in a timely manner, or have blind spots. There is still room for improvement. Summary of the Invention

[0005] To address the issues that could lead to errors, delays, or blind spots in the dissemination of civil defense alarms due to equipment malfunctions or human sabotage, this application provides a method, system, storage medium, and smart terminal for issuing civil defense alarms.

[0006] Firstly, this application provides a method for issuing civil defense alarms, employing the following technical solution:

[0007] A method for issuing civil defense alarm notifications includes:

[0008] Get the current time information;

[0009] Match the current time information with the preset node time information;

[0010] If a match is successful, it is defined as the information of the current node;

[0011] Extract the type of the current node information and define that type as the current node type information;

[0012] Based on the current node type information, retrieve the current inspection level information corresponding to the current node type information from the preset node database;

[0013] The distribution scope information is determined based on the current inspection level information and the current node information;

[0014] Determine the distribution center information based on the distribution scope information;

[0015] The control center's corresponding issuing terminal detects and issues alarms to the receiving terminals within the issuing range information and receives feedback results.

[0016] If the returned result is a preset fault message, then the corresponding receiving end is defined as an abnormal receiving end and marked, and output at the transmitting end;

[0017] If all returned results are normal working information, then stop the detection and continue accumulating the current time information;

[0018] If the match fails, no further detection will be performed and the current time information will continue to be accumulated.

[0019] The current time information is reset when the preset official release action occurs.

[0020] By adopting the above technical solution, each level of civil defense alarm is checked and feedback is received according to the set nodes. When problems occur, feedback can be given in a timely manner, thereby ensuring the normal working status of the civil defense alarm and ensuring the smooth operation of the alarm when it is needed, thus improving the timeliness and stability of the alarm.

[0021] Optionally, it also includes a method for changing node time information, which includes:

[0022] Obtain information on current environmental factors;

[0023] Match the current environmental factors with the preset damage factors;

[0024] If a match is successful, the affected area information will be analyzed based on the current environmental factor information.

[0025] Based on the information on the affected area, determine the type of affected nodes and find the level of impact inspection.

[0026] Matching analysis is performed based on the threshold information and impact inspection level information stored in the preset allowed database to determine the allowable threshold for advance inspection corresponding to the impact inspection level information, and this threshold is defined as the advance threshold information;

[0027] The information about the nodes affecting the nodes is determined by analyzing the node time information based on the type of nodes affecting the nodes.

[0028] The time difference information is calculated based on the information of the affected nodes and the current time.

[0029] Determine whether the time difference information is greater than the advance threshold information;

[0030] If it is greater than, then the associated inspection level information is determined based on the impact inspection level information, and the node time information corresponding to the associated inspection level information is defined as the associated node information;

[0031] The time difference information corresponding to the time difference between the current node information and the subsequent affected and related node information is advanced.

[0032] Based on the impact node information, related node information, and preset overall node information, the overall node information is adjusted.

[0033] If the current time information is greater than the overall node information, reset the current time information and restore the overall node information.

[0034] If it is less than, no change will be made;

[0035] If the match fails, no changes will be made.

[0036] By adopting the above technical solution, in the event of environmental changes, such as floods or typhoons, the corresponding area can be inspected immediately to prevent damage to cables or terminals caused by environmental changes. In such cases, an alarm needs to be issued at the corresponding node, thus improving the accuracy and timeliness of alarm detection.

[0037] Optionally, methods for resetting the current time information when a preset official release action occurs include:

[0038] Analyze the issuance node information and issuance node type information corresponding to the formal issuance action;

[0039] Determine the remaining node information and completed node information based on the current time information and the overall node information;

[0040] Determine advance node information based on issuance node information and remaining node information;

[0041] The node information to be adjusted is determined based on the remaining node information and the advance node information.

[0042] Determine whether the duration corresponding to the adjusted node information is less than the duration corresponding to the completed node information;

[0043] If so, then reset the current time information and overall node information after adjusting the duration corresponding to the node information;

[0044] If not, then directly reset the current time information and overall node information.

[0045] By adopting the above technical solution, it is very likely that an air raid has already occurred when a formal alarm is issued. At this time, it is not clear which parts have been damaged, so the detection needs to be restarted. In order to reduce the possibility that the last node in the queue may never be reached due to frequent formal alarms, it is necessary to determine whether the process is already halfway through, so as to determine whether to start the reset directly or reset after the process is completed, thereby improving the integrity of the detection.

[0046] Optionally, methods for resetting overall node information include:

[0047] The fault node information is determined based on the feedback results.

[0048] The recovery signal information and fault node information in the preset feedback database are matched and analyzed to determine the recovery signal corresponding to the fault node information, and the recovery signal is defined as the feedback signal information.

[0049] Based on the fault node information, determine the associated fault node information, and integrate the fault node information and associated fault node information into the marked node information;

[0050] Match the reset current time information with the marker node information;

[0051] If the match fails, continue accumulating the current time information;

[0052] If a match is successful, the information of the matched marker node is defined as the current marker node information;

[0053] Before the current marked node information, determine whether feedback signal information has been received;

[0054] If not, determine the subsequent node information based on the current marked node information and the overall node information;

[0055] The advance time information is calculated based on the subsequent node information and the current marked node information;

[0056] After removing the information of the current marked node, the time nodes corresponding to the subsequent node information will all advance the time information and continue to accumulate the current time information;

[0057] Rematch the current time information with the earlier / nearer marker node information;

[0058] If so, the overall node information will not be changed.

[0059] By adopting the above technical solution, faulty nodes are marked, and it is determined whether to skip faulty nodes in the next detection process, thus avoiding repeated detection of faulty nodes and improving detection efficiency.

[0060] Optionally, the method for controlling the issuing terminal corresponding to the issuing center information to detect and issue alarms to the receiving terminals within the issuing range information includes:

[0061] The information coverage and distribution scope information stored in the preset information database are matched and analyzed to determine the information coverage corresponding to the distribution scope information, and the information coverage is defined as the information coverage information.

[0062] Retrieve corresponding news content information based on the coverage information of the distributed information;

[0063] News information is obtained by processing news content information based on preset distribution format information;

[0064] Obtain and receive news information;

[0065] The integration of news information is determined based on the receipt and dissemination of news information.

[0066] Integrated news information is distributed to the sending terminal corresponding to the information from the distribution center.

[0067] By adopting the above technical solution and replacing the beeping sound with news related to the area, users are more likely to accept alarm checks, which reduces public dissatisfaction and prevents people from damaging the cables due to excessive noise, thus indirectly increasing the service life of the alarm device.

[0068] Optionally, if no news information is being disseminated, the method for disseminating integrated news information at the sending end corresponding to the information in the dissemination center includes:

[0069] Obtain the adjacent distribution range information corresponding to the current inspection level information;

[0070] Determine the adjacent news information corresponding to the adjacent distribution range information;

[0071] If no adjacent news information is available for distribution, news information will be received and integrated for distribution.

[0072] Analyze the degree of correlation between adjacent news release information and distribution scope information, and define this degree of correlation as the degree of adjacent correlation information;

[0073] The adjacent correlation information with the highest value is selected and defined as the maximum adjacent correlation information. The adjacent news information corresponding to the maximum adjacent correlation information is defined as the related news information.

[0074] Determine whether the maximum adjacent correlation information is greater than the preset fitting correlation threshold information;

[0075] If the value is greater than the received news information and the associated news information, then the news information will be integrated and distributed accordingly.

[0076] If the number is less than 1, news information will be received, integrated, and then distributed.

[0077] By adopting the above technical solution, when there are no related events or news in the local area, the most relevant news from the relevant area is selected for dissemination, which makes the alarm notification less monotonous and unpleasant, and improves the flexibility and rationality of the detection.

[0078] Optionally, methods for receiving news information, integrating it, and disseminating it include:

[0079] The number of times news information is received is retrieved from the integrated news information and defined as a single count.

[0080] Determine whether a single occurrence of a number of occurrences exceeds a preset threshold for frequent occurrences.

[0081] If the value is greater than the preset civil defense alarm exercise information and received news information, the preset news information will be integrated into integrated news information for output.

[0082] The single-time information is reset after the news information is integrated and output;

[0083] If the number is less than 1, news information will be received, integrated, and then distributed.

[0084] Although the above technical solution issues an alarm detection, users will eventually become accustomed to mistaking it for a normal news broadcast. Therefore, it is necessary to intersperse civil defense alarm drill information in the middle to improve public vigilance and the ability to respond quickly when formal alarms are reported.

[0085] Secondly, this application provides a civil defense alarm notification system, which adopts the following technical solution:

[0086] A civil defense alarm notification system, comprising:

[0087] The acquisition module is used to acquire current time information, feedback result information, current environmental factor information, received news information, adjacent distribution range information, and single distribution frequency information;

[0088] A memory for storing the program of the control method for any of the above-mentioned civil defense alarm notification methods;

[0089] The processor and the program in the memory can be loaded and executed by the processor to implement any of the above-mentioned civil defense alarm notification methods.

[0090] By adopting the above technical solution, each level of civil defense alarm is checked and feedback is received according to the set nodes. When problems occur, feedback can be given in a timely manner, thereby ensuring the normal working status of the civil defense alarm and ensuring the smooth operation of the alarm when it is needed, thus improving the timeliness and stability of the alarm.

[0091] Thirdly, this application provides a smart terminal, which adopts the following technical solution:

[0092] The intelligent terminal includes a memory and a processor. The memory stores a computer program that can be loaded by the processor and executed for any of the aforementioned civil defense alarm notification methods.

[0093] By adopting the above technical solution, each level of civil defense alarm is checked and feedback is received according to the set nodes. When problems occur, feedback can be given in a timely manner, thereby ensuring the normal working status of the civil defense alarm and ensuring the smooth operation of the alarm when it is needed, thus improving the timeliness and stability of the alarm.

[0094] Fourthly, this application provides a computer storage medium capable of storing corresponding programs, and has the following characteristics.

[0095] Computer-readable storage media adopt the following technical solutions:

[0096] A computer-readable storage medium storing a computer program that can be loaded by a processor and executed for any of the aforementioned civil defense alarm notification methods.

[0097] By adopting the above technical solution, each level of civil defense alarm is checked and feedback is received according to the set nodes. When problems occur, feedback can be given in a timely manner, thereby ensuring the normal working status of the civil defense alarm and ensuring the smooth operation of the alarm when it is needed, thus improving the timeliness and stability of the alarm.

[0098] In summary, this application includes at least the following beneficial technical effects:

[0099] 1. Check and receive feedback for each level of civil defense alarm according to the set nodes, and ensure the smooth operation of alarms when they are needed, thereby improving the timeliness and stability of alarms;

[0100] 2. In the event of environmental changes, the corresponding area is immediately inspected, improving the accuracy and timeliness of alarm detection;

[0101] 3. Interweave information about civil defense alarm drills to enhance public awareness and the ability to respond quickly when formal alarms are issued. Attached Figure Description

[0102] Figure 1 This is a flowchart of a civil defense alarm notification method in an embodiment of this application.

[0103] Figure 2 This is a structural diagram of the civil defense alarm system in the embodiments of this application.

[0104] Figure 3 This is a flowchart of the method for changing node time information in the embodiments of this application.

[0105] Figure 4 This is a flowchart of a method for resetting the current time information when a preset formal issuance action occurs, as described in this application embodiment.

[0106] Figure 5 This is a flowchart of the method for resetting overall node information in an embodiment of this application.

[0107] Figure 6 This is a flowchart of a method for issuing alarms to receivers within the issuance range information by the issuing terminal corresponding to the control issuance center information in this application embodiment.

[0108] Figure 7 This is a flowchart illustrating a method for distributing integrated news information at the sending end corresponding to the information in the distribution center when no news information is being distributed, as described in this application embodiment.

[0109] Figure 8 This is a flowchart of a method for receiving news information, integrating it, and distributing it, as described in an embodiment of this application.

[0110] Figure 9 This is a system module diagram of a civil defense alarm notification method in an embodiment of this application. Detailed Implementation

[0111] To make the purpose, technical solution, and advantages of this application clearer, the following description is provided in conjunction with the appendix. Figure 1-9 The present application will be further described in detail below with reference to embodiments. It should be understood that the specific embodiments described herein are for illustrative purposes only and are not intended to limit the scope of the application.

[0112] This application discloses a method for issuing civil defense alarms. (Refer to...) Figure 1 A method for issuing civil defense alarms includes:

[0113] Step 100: Obtain the current time information.

[0114] The current time information refers to the current time, specifically the time when a certain node started timing. This information can be obtained using any timing method, such as a timer.

[0115] Step 101: Match the current time information with the preset node time information.

[0116] The node time information is information from manually set time nodes, such as 5 days. The matching method is numerical comparison.

[0117] Step 1011: If the match is successful, it is defined as the current node information.

[0118] The current node information consists of nodes that have successfully matched at the current time. If a match is successful, it indicates that it is time for the civil defense alarm notification system to detect the problem, and detection is required.

[0119] Step 1012: If the match fails, no detection is performed and the current time information continues to be accumulated.

[0120] Step 102: Extract the type of the current node information and define the type as the current node type information.

[0121] The current node type information refers to the detection type corresponding to the current node. It's important to note that this essentially refers to the detection coverage information. Figure 2 For example, the entire system is configured at three levels: provincial, municipal, and county. Each system has servers, clients, controllers, and routers. Nodes check whether the network at their corresponding location can communicate normally, and they can also check the connectivity from the corresponding network to the lowest level network. For example, if the node type is provincial, it can check the alarm system of the entire network subnet from the provincial level to the municipal level and then to the county level.

[0122] Step 103: Based on the current node type information, retrieve the current inspection level information corresponding to the current node type information from the preset node database.

[0123] The current inspection level information is the level information of the corresponding network, for example, the inspection needs to be carried out at the provincial level.

[0124] Step 104: Determine the distribution scope information based on the current inspection level information and the current node information.

[0125] The distribution scope information refers to the distribution scope corresponding to the current inspection level information. For example, the scope corresponding to the provincial level is the entire province.

[0126] Step 105: Determine the distribution center information based on the distribution scope information.

[0127] The distribution center information refers to the client that issued the distribution. It can also be determined through the current inspection level information or the current node information.

[0128] Step 106: Control the issuing terminal corresponding to the issuing center information to detect and issue alarms to the receiving terminals within the issuing range information and receive feedback result information.

[0129] The feedback result information is the result information fed back to the corresponding transmitting end, such as: signal transmission is normal or signal transmission is abnormal, equipment failure.

[0130] Step 107: If the returned result information is the preset fault information, then define the corresponding receiving end as the abnormal receiving end, mark it, and output it at the transmitting end.

[0131] The fault information indicates equipment malfunction or signal transmission route failure. The purpose of this output is to inform superiors of the problem so that staff can resolve it.

[0132] Step 108: If all returned results are normal working information, stop the detection and continue to accumulate the current time information.

[0133] Step 109: Reset the current time information when the preset official release action occurs.

[0134] The formal issuance of alerts signifies the official notification of civil defense alerts, which is typically triggered by air raids or other issues affecting the public. It's important to note that higher-level leadership usually determines the affected area, and then, within the analyzed area, civil defense alerts are issued at the corresponding issuing terminals of the information distribution center, according to the alert level.

[0135] Reference Figure 3 It also includes a method for changing node time information, which includes:

[0136] Step 200: Obtain current environmental factor information.

[0137] Current environmental factor information refers to information on environmental factors at the current time, including natural factors such as earthquakes, and human factors such as demolition. The information is obtained through all available means; for example, earthquake data can be obtained from earthquake sensors, and demolition data can be obtained from government policy documents published on websites or informational posters.

[0138] Step 201: Match the current environmental factor information with the preset damage factor information.

[0139] Damage factors are those factors that can damage the corresponding cables and networks. For example, earthquakes are damage factors, while rain, which has little impact, is not.

[0140] Step 2011: If the match is successful, the information on the affected area is analyzed based on the current environmental factor information.

[0141] The affected area information refers to the area affected by current environmental factors. For example, demolition affects a village.

[0142] Step 2012: If the match fails, no changes are made.

[0143] Step 202: Determine the type of affected nodes based on the affected area information and find the level of affected inspection information.

[0144] The impact node type information refers to the node information checked at the level corresponding to the area covered by the impact area information. The impact check level information refers to the level information of the affected area. For example, if the demolition involves a village, then it is at the village level, and the node type is a certain type of the village level.

[0145] Step 203: Perform a matching analysis based on the threshold information and impact inspection level information stored in the preset allowed database to determine the allowable threshold for advance inspection corresponding to the impact inspection level information, and define the threshold as the advance threshold information.

[0146] The advance threshold information represents the minimum time allowed for inspection to begin before the designated time point. If the time is less than this threshold, starting the inspection now might not be far from the originally planned time. Therefore, to avoid disrupting the entire inspection process, the inspection can still proceed at the corresponding time point. The database stores a mapping relationship between threshold information and the impact on inspection levels, derived by experts in the field based on experience. For example, the threshold for a village-level inspection is one day; if the corresponding inspection node is one day from the current time point, then starting one day later is acceptable. When the system receives the corresponding impact on inspection level information, it automatically retrieves the corresponding threshold from the database and outputs it as the advance threshold information.

[0147] Step 204: Analyze the node time information based on the information on the type of affected nodes to determine the information on the affected nodes.

[0148] The impact node information refers to the information on the check nodes corresponding to the areas that may be affected by the current environmental factors.

[0149] Step 205: Calculate the time difference information based on the affected node information and the current time information.

[0150] The time difference information is the difference between the affecting node information and the current time information.

[0151] Step 206: Determine whether the time difference information is greater than the advance threshold information.

[0152] Step 2061: If it is greater than, then determine the associated inspection level information based on the impact inspection level information, and define the node time information corresponding to the associated inspection level information as the associated node information.

[0153] Why does the associated inspection level information affect the inspection level information associated with it? For example, the county-level information affects not only the county level but also the village level. The associated node information refers to the information of the inspection nodes corresponding to the associated inspection level information.

[0154] Step 2062: If it is less than, then no change is made.

[0155] Step 207: Advance the time difference information corresponding to the time difference information of the affected nodes and related nodes after the current node information.

[0156] In order to promptly inspect areas affected by environmental factors, the time difference information corresponding to the time difference between the current node information and the subsequent impact node information and related node information is advanced, thereby inspecting the corresponding areas in advance and improving the timeliness of the inspection.

[0157] Step 208: Analyze and adjust the overall node information based on the impact node information, related node information, and preset overall node information after the early adjustment.

[0158] The overall node information refers to the information of all nodes checked under normal conditions. Adjusting the overall node information refers to modifying the overall node information that affects or relates to node information, both before and after the change. The purpose of the analysis is to determine when a complete round of checks on the entire overall node information is finished.

[0159] Step 209: After the current time information is greater than the overall node information, reset the current time information and restore the overall node information.

[0160] After this time, reset the current time information to 0, then restore the initial overall node information, and repeat steps 100-209.

[0161] Reference Figure 4 Methods for resetting the current time information when a pre-set official release action occurs include:

[0162] Step 300: Analyze the issuance node information and issuance node type information corresponding to the formal issuance action.

[0163] The issuance node information refers to the time point of the formal issuance action. The issuance node type information refers to the type of node being issued.

[0164] Step 301: Determine the remaining node information and completed node information based on the current time information and the overall node information.

[0165] The remaining node information consists of nodes from the current time onwards. The completed node information consists of nodes from the current time onwards.

[0166] Step 302: Determine the advance node information based on the distribution node information and the remaining node information.

[0167] Advance node information refers to the information of the node that issues the distribution node information earlier than the remaining node information. For example, the distribution node information is the information of a county-level inspection node that issues the distribution information earlier than the current time. It should be noted here that, for example, if the provincial level is 'a', the city-level levels under 'a' are 'b1' and 'b2', the county-level levels under 'b1' are 'c1' and 'c2', and the county-level levels under 'b2' are 'c3' and 'c4', then the overall node information is (a, b1, c1, c2, b2, c3, c4).

[0168] Step 303: Determine the adjusted node information based on the remaining node information and the advanced node information.

[0169] The node information is adjusted to include all remaining node information excluding the premature node information. It's important to note that after removing the premature node information, all nodes following it are advanced, and adjacent nodes after the premature node are advanced to their original positions. All subsequent nodes are advanced by the same amount of time.

[0170] Step 304: Determine whether the duration corresponding to the adjusted node information is less than the duration corresponding to the completed node information.

[0171] The purpose of this judgment is to determine whether there are not many nodes that have been checked so that the timer can be restarted without affecting the checking of nodes that have not yet been checked. A default time length can also be set here.

[0172] Step 3041: If so, then reset the current time information and overall node information after adjusting the duration corresponding to the node information.

[0173] If so, it means that the subsequent time is relatively short, and it is perfectly acceptable to reset after completion.

[0174] Step 3042: If not, directly reset the current time information and overall node information.

[0175] If not, it means there is still a long time ahead. Since the damage to the alarm notification system caused by the air raid is still unknown, all the contents need to be checked as soon as possible, so it needs to be reset directly.

[0176] Reference Figure 5 Methods for resetting overall node information include:

[0177] Step 400: Determine the fault node information based on the feedback result information.

[0178] The fault node information refers to the information of the node corresponding to the fault. The purpose of determining this information is to determine the level and type of inspection.

[0179] Step 401: Perform matching analysis based on the recovery signal information and fault node information in the preset feedback database to determine the recovery signal corresponding to the fault node information, and define the recovery signal as feedback signal information.

[0180] The feedback signal information is a signal sent to the host indicating that the fault has been resolved. The database stores a mapping relationship between recovery signal information and fault node information, which is manually set by those skilled in the art; for example, the feedback signal for a provincial level is a'. When the system receives the corresponding fault node information, it automatically retrieves the corresponding recovery signal from the database and outputs it as feedback signal information.

[0181] Step 402: Determine the associated fault node information based on the fault node information, and integrate the fault node information and associated fault node information into the marked node information.

[0182] The associated fault node information refers to fault information related to the fault node itself. For example, if the fault node information is b1, then its subordinate nodes c1 and c2 are also associated fault nodes. The integration method is to form a cluster. The purpose is to mark the corresponding nodes.

[0183] Step 403: Match the reset current time information with the marker node information.

[0184] The purpose of matching is to determine whether to return to the node that was previously identified as faulty.

[0185] Step 4031: If the match fails, continue to accumulate the current time information.

[0186] Step 4032: If a match is successful, define the information of the successfully matched marker node as the current marker node information.

[0187] Step 404: Determine whether feedback signal information has been received before the current marked node information.

[0188] Step 4041: If not, determine the subsequent node information based on the current marked node information and the overall node information.

[0189] Subsequent node information includes information about nodes adjacent to and following the currently marked node. If no information is received, it means the faulty node has not yet been repaired or is currently under repair; therefore, this node does not need to be checked and can be skipped.

[0190] Step 4042: If yes, then do not change the overall node information.

[0191] If so, it means the fault has been resolved and you can proceed with the normal inspection.

[0192] Step 405: Calculate the advance time information based on the subsequent node information and the current marked node information.

[0193] The advance time information is the amount of time that advances the information of subsequent nodes to the time point corresponding to the information of the currently marked node.

[0194] Step 406: After removing the current marked node information, the time nodes corresponding to subsequent node information are all advanced in time information and the current time information continues to be accumulated.

[0195] Step 407: Rematch the current time information with the earlier and later marker node information.

[0196] Although the current flag node information does not provide feedback on troubleshooting, it is not guaranteed that troubleshooting will occur later. Therefore, a new matching process is required each time the flag node information is about to be reached.

[0197] Reference Figure 6 The methods for controlling the issuing terminal corresponding to the issuing center information to detect and issue alarms to the receiving terminals within the issuing range information include:

[0198] Step 500: Perform matching analysis based on the information coverage information and distribution scope information stored in the preset information database to determine the information coverage corresponding to the distribution scope information, and define the information coverage as the information coverage information.

[0199] The coverage information for information dissemination refers to the scope of coverage of the content corresponding to the information. For example, the coverage of village-wide renovation is the village level, while the coverage of the individual income tax threshold is the entire country. The database stores the mapping relationship between information coverage information and distribution scope information. This is set by professionals in the field based on experience. In essence, it is a conversion between two scopes. That is, when the distribution scope information is at the village level, the information coverage information is also at the village level. It should be noted that if the information coverage information is at the county level, then if it affects village A, but village B is unrelated to the information, the information coverage information can only be at the village level.

[0200] Step 501: Retrieve the corresponding news content information based on the information coverage information.

[0201] News content information refers to news content, such as village-level news about the entire village's renovation, or provincial-level news about the province's GDP.

[0202] Step 502: Process the news content information based on the preset distribution format information to obtain the distributed news information.

[0203] The distribution format information refers to information in a format that the alarm notification system can distribute, such as voice announcements and video playback. The distribution news information is news content obtained by converting the distribution format information.

[0204] Step 503: Obtain news information.

[0205] Receive news information, which is information sent down from the superior level.

[0206] Step 504: Determine the integrated news information based on the received and distributed news information.

[0207] The news information is integrated into both receiving and distributing news information. This is a simple combination, and the purpose of receiving and distributing news information is to provide feedback to the next higher level and check the connectivity between the previous and next levels.

[0208] Step 505: Distribute the integrated news information to the sending terminal corresponding to the information in the distribution center.

[0209] Reference Figure 7 If no news information is being disseminated, the methods for disseminating integrated news information at the sending end corresponding to the information from the dissemination center include:

[0210] Step 600: Obtain the adjacent distribution range information corresponding to the current inspection level information.

[0211] Adjacent distribution range information refers to distribution range information at the same level.

[0212] Step 601: Determine the adjacent news information corresponding to the adjacent distribution range information.

[0213] Adjacent news release information refers to news releases within the adjacent release range.

[0214] Step 602: If there are no adjacent news messages to be released, news messages will be received and integrated for release.

[0215] If none of these apply, it means there is absolutely no news content that can be added, and the only option is to distribute news information simply by integrating existing news.

[0216] Step 603: Analyze the degree of correlation between adjacent news information and distribution scope information, and define this degree of correlation as the degree of correlation between adjacent news information and distribution scope information.

[0217] The degree of relevance information refers to the degree of relevance between adjacent news releases within the same area. This degree of relevance is determined by the type of keywords and the severity of the issue. For example, regarding water pollution, even though the water sources of two villages are interconnected and there has been no immediate impact, vigilance is still warranted.

[0218] Step 604: Filter out the neighbor correlation information with the largest value, define the neighbor correlation information as the maximum neighbor correlation information, and define the adjacent news information corresponding to the maximum neighbor correlation information as the related news information.

[0219] The highest degree of adjacency association information refers to the information of adjacent items with the highest degree of association. Related news release information refers to the news release information of adjacent items with the highest degree of association.

[0220] Step 605: Determine whether the maximum adjacent correlation information is greater than the preset fitting correlation threshold information.

[0221] If the relevance threshold is greater than a certain value, it indicates that the information has a certain degree of relevance to the current level.

[0222] Step 6051: If the value is greater than the received news information and the associated news information, then determine the integrated news information and distribute it.

[0223] If the value is greater than the target value, even if no news is generated within the target area, news from other target areas can be used as a substitute for news to ensure communication duration.

[0224] Step 6052: If it is less than, news information will be received to integrate and distribute the news information.

[0225] If the value is less than the number of associated messages, it means there is no associated message, and you can only send and receive news messages individually.

[0226] Reference Figure 8 Methods for receiving news information, integrating it, and disseminating it include:

[0227] Step 700: Obtain the number of times news information is received from the integrated news information, and define the number of times as a single count information.

[0228] The single-time information refers to the cumulative number of times news information has been sent and received. It is obtained through a counting method.

[0229] Step 701: Determine whether the number of times a single event is greater than the preset threshold for the number of times.

[0230] The frequency threshold information is a manually set value and a manually set time point, which will be explained in detail in the following steps.

[0231] Step 7011: If the value is greater than the preset civil defense alarm exercise information and received news information, then integrate the preset civil defense alarm exercise information and receive news information into integrated news information for output.

[0232] The civil defense alarm drill information is for information regarding a civil defense alarm drill. It can include a situation description and an alarm sound. The purpose of this information is to let the public know the meaning of this signal. If an air raid actually occurs, it can be simply broadcast using an alarm sound to improve the speed of civil defense response. If the alarm value exceeds a certain threshold, it means the pre-set reminder time has arrived. At this point, the civil defense alarm drill information and news information will be output together, both to remind newly arrived residents and to reinforce the message for those already within the affected area to prevent forgetting.

[0233] Step 7012: If it is less than, news information will be received to integrate and distribute the news information.

[0234] Step 702: Reset the single-time information after integrating news information output.

[0235] The purpose of resetting is to create a loop.

[0236] Based on the same inventive concept, embodiments of the present invention provide a civil defense alarm notification system.

[0237] Reference Figure 9 A civil defense alarm notification system, comprising:

[0238] The acquisition module is used to acquire current time information, feedback result information, current environmental factor information, received news information, adjacent distribution range information, and single distribution frequency information;

[0239] A memory used to store the program of a control method for a civil defense alarm notification method;

[0240] A control method for a civil defense alarm notification method, in which a program in the processor and memory can be loaded and executed by the processor.

[0241] Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the above-described division of functional modules is used as an example. In practical applications, the above functions can be assigned to different functional modules as needed, that is, the internal structure of the device can be divided into different functional modules to complete all or part of the functions described above. The specific working process of the system, device, and unit described above can be referred to the corresponding process in the foregoing method embodiments, and will not be repeated here.

[0242] This invention provides a computer-readable storage medium storing a computer program that can be loaded by a processor and executed as a method for issuing civil defense alarms.

[0243] Computer storage media include, for example, USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, optical disks, and other media that can store program code.

[0244] Based on the same inventive concept, embodiments of the present invention provide a smart terminal, including a memory and a processor, wherein the memory stores a computer program that can be loaded and executed by the processor to provide a method for issuing civil defense alarms.

[0245] The above are all preferred embodiments of this application and are not intended to limit the scope of protection of this application. Any feature disclosed in this specification (including the abstract and drawings) may be replaced by other equivalent or similar features unless specifically stated otherwise. That is, unless specifically stated otherwise, each feature is only one example of a series of equivalent or similar features.

Claims

1. A method for issuing civil defense alarms, characterized in that, include: Get the current time information; Match the current time information with the preset node time information; If a match is successful, it is defined as the information of the current node; Extract the type of the current node information and define that type as the current node type information; Based on the current node type information, retrieve the current inspection level information corresponding to the current node type information from the preset node database; The distribution scope information is determined based on the current inspection level information and the current node information; Determine the distribution center information based on the distribution scope information; The control center's corresponding issuing terminal detects and issues alarms to the receiving terminals within the issuing range information and receives feedback results. If the returned result is a preset fault message, then the corresponding receiving end is defined as an abnormal receiving end and marked, and output at the transmitting end; If all returned results are normal working information, then stop the detection and continue accumulating the current time information; If the match fails, no further detection will be performed and the current time information will continue to be accumulated. The current time information is reset when the preset official release action occurs; It also includes a method for changing node time information, which includes: Obtain information on current environmental factors; Match the current environmental factors with the preset damage factors; If a match is successful, the affected area information will be analyzed based on the current environmental factor information. Based on the information on the affected area, determine the type of affected nodes and find the level of impact inspection. Matching analysis is performed based on the threshold information and impact inspection level information stored in the preset allowed database to determine the allowable threshold for advance inspection corresponding to the impact inspection level information, and this threshold is defined as the advance threshold information; Based on the analysis of node time information, the information of influencing nodes is determined. The information of influencing nodes is the information of the inspection nodes in the area that may be affected by the current environmental factors. The time difference information is calculated based on the information of the affected nodes and the current time information. The time difference information is the difference between the information of the affected nodes and the current time information. Determine whether the time difference information is greater than the advance threshold information; If it is greater than, then the associated inspection level information is determined based on the impact inspection level information, and the node time information corresponding to the associated inspection level information is defined as the associated node information; The time difference information corresponding to the time difference between the current node information and the subsequent affected and related node information is advanced. Based on the impact node information, related node information, and preset overall node information, the overall node information is adjusted. If the current time information is greater than the overall node information, reset the current time information and restore the overall node information. If it is less than, no change will be made; If the match fails, no changes will be made; The overall node information is the information of all nodes checked under normal conditions. The overall node information is adjusted to include the overall node information that affects the node information and related node information after the modification. After this time, the current time information is reset to 0, and then the overall node information is restored to its initial state. The above steps are then repeated.

2. The method for issuing civil defense alarms according to claim 1, characterized in that, Methods for resetting the current time information when a preset official release action occurs include: Analyze the issuance node information and issuance node type information corresponding to the formal issuance action; Based on the current time information and the overall node information, the remaining node information and the completed node information are determined. The remaining node information is the information of the nodes after the current time information, and the completed node information is the information of the nodes before the current time information. Determine advance node information based on issuance node information and remaining node information; The adjustment node information is determined based on the remaining node information and the advance node information, wherein the advance node information is the information of the node that is advanced to the point of issuing node information from the remaining node information; Determine whether the duration corresponding to the adjusted node information is less than the duration corresponding to the completed node information. The adjusted node information refers to all node information in the remaining node information excluding the advance node information. If so, then reset the current time information and overall node information after adjusting the duration corresponding to the node information; If not, then directly reset the current time information and overall node information.

3. The method for issuing civil defense alarms according to claim 2, characterized in that, Methods for resetting overall node information include: The fault node information is determined based on the feedback result information. The fault node information is the information of the node corresponding to the fault. The recovery signal information and fault node information in the preset feedback database are matched and analyzed to determine the recovery signal corresponding to the fault node information, and the recovery signal is defined as the feedback signal information. Based on the fault node information, determine the associated fault node information, and integrate the fault node information and associated fault node information into the marked node information; Match the reset current time information with the marker node information; If the match fails, continue accumulating the current time information; If a match is successful, the information of the matched marker node is defined as the current marker node information; Before the current marked node information, determine whether feedback signal information has been received; If not, the subsequent node information is determined based on the current marked node information and the overall node information. The subsequent node information is the node information after the current marked node information. The advance time information is calculated based on the subsequent node information and the current marked node information; After removing the information of the current marked node, the time nodes corresponding to the subsequent node information will all advance the time information and continue to accumulate the current time information; Rematch the current time information with the earlier / nearer marker node information; If so, the overall node information will not be changed.

4. The method for issuing civil defense alarms according to claim 1, characterized in that, The methods for controlling the issuing terminal corresponding to the issuing center information to detect and issue alarms to the receiving terminals within the issuing range information include: The information coverage and distribution scope information stored in the preset information database are matched and analyzed to determine the information coverage corresponding to the distribution scope information, and the information coverage is defined as the information coverage information. Retrieve corresponding news content information based on the coverage information of the distributed information; News information is obtained by processing news content information based on preset distribution format information; To receive news information, which is information sent down from the superior level; The integration of news information is determined based on the receipt and dissemination of news information. Integrated news information is distributed to the sending terminal corresponding to the information from the distribution center.

5. A method for issuing civil defense alarms according to claim 4, characterized in that, If no news information is available for distribution, the methods for distributing integrated news information at the sending end corresponding to the information in the distribution center include: Obtain the adjacent distribution range information corresponding to the current inspection level information; Determine the adjacent news information corresponding to the adjacent distribution range information; If no adjacent news information is available for distribution, news information will be received and integrated for distribution. Analyze the degree of correlation between adjacent news release information and distribution scope information, and define this degree of correlation as the degree of adjacent correlation information; The adjacent correlation information with the highest value is selected and defined as the maximum adjacent correlation information. The adjacent news information corresponding to the maximum adjacent correlation information is defined as the related news information. Determine whether the maximum adjacent correlation information is greater than the preset fitting correlation threshold information; If the value is greater than the received news information and the associated news information, then the news information will be integrated and distributed accordingly. If the number is less than 1, news information will be received, integrated, and then distributed.

6. The method for issuing civil defense alarms according to claim 5, characterized in that, Methods for receiving news information, integrating it, and disseminating it include: The number of times news information is received is retrieved from the integrated news information and defined as a single count. Determine whether a single occurrence of a number of occurrences exceeds a preset threshold for frequent occurrences. If the value is greater than the preset civil defense alarm exercise information and received news information, the preset news information will be integrated into integrated news information for output. The single-time information is reset after the news information is integrated and output; If the number is less than 1, news information will be received, integrated, and then distributed.

7. A civil defense alarm notification system, characterized in that, The system employs the civil defense alarm notification method as described in claim 6, and includes: The acquisition module is used to acquire current time information, feedback result information, current environmental factor information, received news information, adjacent distribution range information, and single distribution frequency information; A memory for storing the program of the control method for the civil defense alarm notification method described above; The processor and the program in the memory can be loaded and executed by the processor to implement the control method of the civil defense alarm notification method.

8. A smart terminal, characterized in that, It includes a memory and a processor, wherein the memory stores a computer program that can be loaded by the processor and executed as described in any one of claims 1 to 6, a method for issuing civil defense alarms.

9. A computer-readable storage medium, characterized in that, The computer program is stored and can be loaded by a processor and executed as any one of claims 1 to 6, which is a method for issuing civil defense alarms.

Citation Information

Patent Citations

  • Bearing inner ring grinding and superfinishing production line

    CN109702612A

  • Air-defense alarming control device

    CN201741243U