Method for avoiding repeated alarm triggering and intelligent monitoring alarm system
By setting up a database and sensor in the computer system, using the sensing data during the alarm check cycle to determine whether it exceeds the standard value, and updating the data field to confirm that the alarm is triggered and off, the problem of repeated alarm triggering is solved, and the work efficiency and system reliability are improved.
Patent Information
- Application Number
- CN202211459418.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-17
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2042-11-17
AI Technical Summary
In the prior art, the problem of repeated alarm triggering of alarms causes maintenance personnel or staff to be interrupted by unnecessary repeated alarms, affecting work efficiency.
By setting up a database and sensor in the computer system, using the sensing data during the alarm check cycle to determine whether it exceeds the standard value, and updating the data field to confirm that the alarm triggers and closes, avoiding repeated triggers.
It effectively avoids repeated alarm triggering, reduces interference to staff, improves work efficiency and system reliability.
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Figure CN115810259B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to a real-time alarm check, and in particular to a method for avoiding repeated alarm triggering and an intelligent monitoring alarm system. Background Art
[0002] In the application of alarms, for example, when the security alarm of a security system is turned off, the user can simply reset the security card reader to shut down the alarm system and the alarm.
[0003] In addition, the alarms used in the monitoring system for monitoring numerical values are often used as a basis for reminding the occurrence of a situation. Therefore, when an alarm occurs, maintenance personnel need to go to repair or staff need to check and turn off the alarm. When maintenance personnel perform corresponding maintenance work based on the occurrence of the alarm or staff want to check the actual situation of the alarm, it is often impossible to shut down the operation of the entire monitoring system, but they can only turn off the sound of the corresponding alarm.
[0004] Therefore, although the alarm bell is turned off by the maintenance personnel or staff, the alarm program of the entire monitoring system will continue to run until the next time the same alarm is detected, the alarm bell will be turned on again. For the maintenance personnel or staff, the repeated alarm bells will disturb them and affect their work. Summary of the invention
[0005] The technical problem to be solved by the present invention is to provide a method for avoiding repeated alarm triggering in view of the shortcomings of the prior art. The method is used in a computer system, and the computer system is provided with a database. The method comprises: inputting a sensing data obtained by a sensor into the database; the computer system determines whether the sensing data exceeds a standard value according to an alarm check cycle; when the sensing data exceeds the standard value, the computer system updates an alarm activation time of a first data field, and confirms an alarm triggering when judging that a second data field is a null value; the computer system updates the second data field to a state with data according to a manual switching information within the alarm check cycle, and the second data field is an alarm closing time; and the computer system updates the alarm activation time of the first data field, and confirms that an alarm is closed when judging that the second data field has data and the alarm closing time of the second data field is later than the alarm activation time.
[0006] Preferably, the computer system updates the sensing data according to a first program, and the updating of the sensing data is performed according to a sensing data checking cycle, wherein the sensing data checking cycle is longer than the alarm checking cycle.
[0007] Preferably, the computer system checks whether the sensing data within the alarm check cycle exceeds the standard value according to a second program. If it exceeds the standard value, the alarm activation time of the first data field is updated to the time when the sensing data is obtained, and when it is determined that the second data field is an empty value, the alarm is confirmed to be triggered. The computer system updates the alarm closing time of the second data field according to the manual switching information according to the second program and within the alarm check cycle.
[0008] Preferably, when the computer system re-checks the sensing data to exceed the standard value according to the second program during the alarm check cycle, the alarm activation time of the first data field is updated to the time when the sensing data is obtained. When the computer system determines that the alarm off time is later than the alarm activation time according to the second program, the alarm is confirmed to be off.
[0009] Preferably, the alarm check cycle includes at least one alarm check time. When the alarm check time arrives, the computer system checks whether the sensing data exceeds the standard value according to the second program. When the alarm check time of the alarm check cycle arrives again, the computer system checks again according to the second program whether the sensing data exceeds the standard value, and updates the data in the first data field to the same time when the sensing data is obtained. The alarm check time is a fixed time.
[0010] Preferably, when the computer system checks and determines that the sensing data does not exceed the standard value during the alarm check cycle, the computer system sets the first data field and the second data field to empty values and waits to enter the next alarm check cycle.
[0011] The technical problem to be solved by the present invention is to provide an intelligent monitoring alarm system in view of the shortcomings of the prior art, which includes: a computer system, which is provided with a database; and a sensor, which is communicatively connected to the computer system, and the computer system receives a sensing data obtained by the sensor and inputs it into the database; wherein the computer system determines whether the sensing data exceeds a standard value within an alarm check cycle, and when the sensing data exceeds the standard value, the computer system updates an alarm activation time of a first data field, and when it is determined that a second data field is a null value, confirms that an alarm is triggered; wherein the computer system updates the second data field to a state with data according to a manual switching information within the alarm check cycle, and the second data field is an alarm closing time; wherein the computer system updates the alarm activation time of the first data field, and when the alarm closing time of the second data field is later than the alarm activation time, confirms that an alarm is closed.
[0012] Preferably, the alarm check cycle includes at least one alarm check time. When the alarm check time is reached, the computer system checks whether the sensing data exceeds the standard value according to a second program. When the alarm check time of the alarm check cycle is reached again, the computer system
[0013] When the sensing data exceeds the standard value according to the second program, the data in the first data field is updated to the same time when the sensing data is obtained, and the alarm check time is a fixed time.
[0014] Preferably, when the computer system checks and determines that the sensing data does not exceed the standard value during the alarm check cycle, the computer system sets the first data field and the second data field to empty values and waits to enter the next alarm check cycle.
[0015] Preferably, the computer system updates the sensing data according to a first program, and the updating of the sensing data is performed according to a sensing data checking cycle, and the sensing data checking cycle is longer than the alarm checking cycle.
[0016] One of the beneficial effects of the present invention is that the method for avoiding repeated alarm triggering and the intelligent monitoring alarm system provided by the present invention can be applied to any monitoring system, machine or equipment that senses any numerical value. When used in monitoring, it can confirm whether the alarm is activated based on the logical judgment of the alarm record in the data field, and can avoid the interruption of staff or maintenance personnel by unnecessary repeated alarms.
[0017] To further understand the features and technical contents of the present invention, please refer to the following detailed description and drawings of the present invention. However, the drawings provided are only for reference and description and are not intended to limit the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 A block diagram of an intelligent monitoring alarm system according to an embodiment of the present invention is presented.
[0019] Figure 2 A schematic diagram of actual field application of an intelligent monitoring alarm system according to an embodiment of the present invention is presented.
[0020] Figure 3 The present invention presents a step flow of a method for preventing repeated alarm triggering according to an embodiment of the present invention.
[0021] Figure 4 A flowchart of steps of a method for preventing repeated alarm triggering according to a sensing data update time and an alarm check cycle is presented according to an embodiment of the present invention.
[0022] Figure 5An embodiment of the present invention is presented in which the first data field and the second data field respectively represent the sensing data acquisition time and the null value.
[0023] Figure 5A An embodiment of the present invention is presented to show a state where the second data field is updated to have data. DETAILED DESCRIPTION
[0024] The following is an explanation of the implementation methods of the "method for avoiding repeated alarm triggering and intelligent monitoring alarm system" provided by the present invention through specific embodiments. Those skilled in the art can understand the advantages and effects of the present invention from the content provided in this specification. The present invention can be implemented or applied through other different specific embodiments, and the details in this specification can also be modified and changed in various ways based on different viewpoints and applications without departing from the concept of the present invention. In addition, the drawings of the present invention are only simple schematic illustrations and are not depicted according to actual dimensions. It is stated in advance. The following implementation methods will further explain the relevant technical content of the present invention in detail, but the content provided is not intended to limit the scope of protection of the present invention.
[0025] It should be understood that, although the terms "first", "second", "third", etc. may be used herein to describe various components or signals, these components or signals should not be limited by these terms. These terms are mainly used to distinguish one component from another component, or one signal from another signal. In addition, the term "or" used herein may include any one or more combinations of the associated listed items depending on the actual situation.
[0026] The present invention discloses a method for preventing repeated alarm triggering and an intelligent monitoring alarm system. The present invention is different from the alarm application generated by the comparison of numerical values and threshold values in the general alarm system. The present invention can accurately determine whether the alarm is true, and can also avoid repeated alarm triggering and generating the same alarm ringing according to the update of sensing data, the data update means of alarm check and the logical judgment of data fields.
[0027] When the method for avoiding repeated alarm triggering of the present invention is applied in a computer system or implemented in an intelligent monitoring alarm system, the effect of avoiding repeated alarm triggering can be achieved in various environmental fields, machines or equipment. It can not only realize data detection and accurately judge whether the alarm is true, but also avoid repeated alarm triggering so that the staff or maintenance personnel will not be interrupted by repeated alarms when they perform related action processing after knowing the alarm rings.
[0028] The present invention will be further described as follows. According to one embodiment of the present invention, please refer to Figure 1 , Figure 1 A block diagram of an intelligent monitoring alarm system according to an embodiment of the present invention is presented.
[0029] The present invention provides an intelligent monitoring alarm system, which includes but is not limited to: a computer system 10 , a database 11 and a sensor 12 .
[0030] In one embodiment, the computer system 10 can be a monitoring system or a host computer having a monitoring program installed therein. When the computer system 10 is a monitoring system, the sensor 12 can be used to monitor the values. Therefore, the monitoring system can be used to monitor air, water quality or environmental pollution, etc. The monitoring system monitors the values of the environment, such as temperature, humidity or pollutant values. In addition, the computer system 10 can also be a monitoring system used in manufacturing equipment or machines in various industries to monitor the use of the manufacturing equipment or machines, such as monitoring the voltage and current of the machine. The present invention is not limited to the above, and the present invention can also be expanded to be applicable to numerical monitoring in various fields.
[0031] In one embodiment, the sensor 12 can be configured according to the object or environment to be monitored. For example, when environmental pollution problems are to be detected, the sensor 12 can be configured as a trihalomethane (THMs) sensor. Or, when the voltage or current used by a machine is to be detected, the sensor 12 can be configured as a voltage sensor or a current sensor.
[0032] In one embodiment, the computer system 10 is provided with a database 11, and the sensor 12 is communicatively connected to the computer system 10. The database 11 may be a database formed by a server or a database provided by a data storage device corresponding to a mainboard in the computer system 10. The sensor 12 may directly transmit a sensing signal to the computer system 10, and the computer system 10 then transmits the data in the sensing signal including the sensing value and the sensing time to the database 11 for storage.
[0033] Please continue reading Figure 2 as well as Figure 3 , Figure 2 A schematic diagram of actual field application of an intelligent monitoring alarm system according to an embodiment of the present invention is presented. Figure 3 The present invention presents a step flow of a method for preventing repeated alarm triggering according to an embodiment of the present invention.
[0034] In one embodiment, a sensor 12, such as a temperature sensor, a humidity sensor or any environmental sensor, may be installed on the floor or space 200 to detect the ambient temperature or humidity of the floor or space 200, and a computer system 10 and a database 11 may be installed in a computer room or a monitoring center (not shown). This embodiment takes environmental monitoring as an example, but is not limited thereto.
[0035] In execution Figure 3Before steps S1 to S9 and step S31, in one embodiment, the sensor 12 disposed on the floor or space 200 can obtain sensing data of the floor or space 200 and transmit it to the computer system 10. The sensing data may include the sensing value and time.
[0036] In one embodiment, the computer system 10 updates the sensing data according to a first program, and the updating of the sensing data is performed according to a sensing data checking cycle. That is, the sensing data checking cycle is not the cycle time for the sensor 12 to obtain the sensing data, but is only used to confirm the updating of the sensing data by checking the time cycle.
[0037] In one embodiment, the sensing data is updated, for example, once every 30 seconds, for example, once every 0 seconds, 30 seconds, and 60 seconds, so that the sensing data in the database 11 can be kept up to date.
[0038] Depend on Figure 2 as well as Figure 3 As shown, in one embodiment, regarding step S1, when the sensor 12 is a temperature sensor and generates sensing data after sensing a temperature, the computer system 10 inputs the sensing data obtained by the sensor 12 into the database 11. Regarding step S3, the computer system 10 determines whether the sensing data exceeds a standard value. That is, the computer system 10 determines whether the sensing data exceeds a standard value according to an alarm check cycle. For example, the computer system 10 determines whether the sensed temperature exceeds the standard value. In this embodiment, determining whether the sensing data exceeds the standard value also includes the computer system 10 reading data in the sensing data, and the present invention is not limited to this.
[0039] When the computer system 10 determines that the sensing data exceeds the standard value, step S5 is executed, and the computer system 10 updates an alarm activation time of the first data field to the time when the sensing data is obtained, and when the second data field is determined to be a blank value without data, an alarm is confirmed to be triggered. The computer system 10 can issue a warning through a display screen (not shown) or sound through an alarm (not shown) according to the alarm triggering, and the present invention is not limited to the above.
[0040] According to the above and in one embodiment, when the computer system 10 determines that the temperature data in the sensing data, such as 40° C., exceeds the average temperature of the floor or space 200 by 35° C. and exceeds the standard value, it means that the air conditioner corresponding to the floor or space 200 may need to be turned on.
[0041] In other words, as long as the data in the sensing data exceeds the standard value, the time recorded in the sensing data is updated to the first data field, that is, the alarm activation time. For the computer system 10, the first data field records the time when the sensing data is obtained. Then, when the computer system 10 determines that there is no data in the second data field (that is, null), the alarm is confirmed to be triggered.
[0042] In one embodiment, if the sensing data determined by the computer system 10 in step S3 does not exceed the standard value, step S31 is executed, and the computer system 10 sets the first data field and the second data field to null values, resets the data field, and then returns to step S1. In this embodiment, when the computer system 10 checks and determines that the sensing data does not exceed the standard value within the alarm check cycle, the computer system 10 sets the first data field and the second data field to null values, that is, it has confirmed that the sensing data does not exceed the standard or has a problem, and waits to enter the next alarm check cycle. Moreover, the alarm check cycle is, for example, 0 to 10 seconds or 1 to 11 seconds, and the next alarm check cycle is, for example, 10 to 20 seconds or 11 to 21 seconds, and so on, and the present invention is not limited to the foregoing.
[0043] Before executing step S7, the maintenance personnel or staff will go to perform maintenance, check or handle the situation corresponding to the alarm according to the screen warning or the actual alarm sound triggered by the confirmation alarm generated by the computer system 10. Therefore, the maintenance personnel or staff will turn off the alarm that actually generates the sound to avoid being disturbed by the sound. Therefore, after the alarm is turned off, a manual switching information is generated by the computer system 10, and step S7 is executed again at this time. The computer system 10 updates the second data field to a state with data according to the manual switching information, and the second data field is an alarm closing time.
[0044] In one embodiment, the computer system 10 may execute steps S1 to S7 or S31 within the alarm check cycle. In step S7, the computer system 10 updates the second data field to a state having data according to the manual switching information within the alarm check cycle, and the present invention is not limited to the foregoing.
[0045] In one embodiment, the generation of manual switching information is not limited to the maintenance personnel or staff manually turning off the alarm and causing the computer system 10 to generate the manual switching information. The manual switching information can also be generated when the maintenance personnel or staff want to deal with the problem corresponding to the alarm. For example, when the computer system 10 confirms the alarm trigger and the alarm sounds, and the maintenance personnel want to repair the machine, the machine enters the maintenance mode and automatically turns off the alarm to generate manual switching information. In addition, when the alarm sounds according to the confirmation of the alarm trigger, the manual switching information can also be generated by automatically turning off the alarm after a period of time or after periodically making a sound, and the generation of the manual switching information can indicate that the staff or maintenance personnel have arrived at the site to handle it, and the present invention is not limited to the foregoing.
[0046] In one embodiment, because the computer system 10 has updated the second data field with data according to the manual switching information, that is, the original null value is changed to the time when the manual switching information is generated, that is, the time when the manual switching information is generated is updated to the second data field. The present invention is not limited to the above.
[0047] Finally, step S9 is executed. When the computer system 10 determines that the sensing data exceeds the standard value within the alarm check cycle, the computer system 10 updates the alarm activation time of the first data field, and when it is determined that there is data in the second data field and the alarm closing time of the second data field is later than the alarm activation time, it confirms that an alarm is closed.
[0048] In one embodiment, before executing step S9, there is the first alarm check cycle, such as the aforementioned 0 to 10 seconds, and the second alarm check cycle is 10 to 20 seconds, and so on. Because the aforementioned sensing data is updated, for example, every 30 seconds, and when the alarm check cycle is shorter than the update cycle of the sensing data, the present invention can solve the problem of repeated alarm triggering by executing steps S1 to S9 in this case. In other words, because the sensing data update time is relatively long, the alarm check cycle continues multiple times during the period when the sensing data is not updated, and the present invention can solve this problem.
[0049] In one embodiment, when executing step S3 to determine whether the value in the sensing data exceeds the standard value, if the relevant value of the sensing data is normal, the subsequent alarm closing step is no longer executed and step S31 is executed, and the computer system 10 waits for the update of the sensing data again, that is, the computer system 10 waits to receive the next sensing data, and then re-executes step S1. Moreover, when executing step S1, it can also be after executing step S31, and the present invention is not limited to the foregoing.
[0050] In one embodiment, after executing step S5, the alarm triggering can be confirmed to let the maintenance personnel or staff know that the alarm has really occurred, because the maintenance personnel or staff must carry out subsequent disposal of the alarm. Executing step S7 can confirm that the maintenance personnel or staff want to turn off the alarm and avoid letting the computer system 10 or its corresponding monitoring system trigger the alarm again. Therefore, through the data logic judgment of the first data field and the second data field, that is, executing step S9, when entering the (next) alarm check cycle, it can be confirmed that the alarm is turned off, avoiding repeated alarm triggering, allowing the maintenance personnel or staff to smoothly carry out the corresponding disposal and avoid being disturbed by the alarm ringing again, that is, after the computer system 10 confirms that the alarm is turned off, the alarm is turned off through the computer system 10.
[0051] The present invention is further described as follows, please continue to refer to Figure 4 , Figure 4 A flowchart of steps of a method for preventing repeated alarm triggering according to a sensing data update time and an alarm check cycle is presented according to an embodiment of the present invention.
[0052] Depend on Figure 4 In the steps of, taking the sensor 12 sensing the ambient temperature as an example, because the computer system 10 performs a periodic cycle of sensing data update according to the first program, for example, the sensing data is updated at 0 seconds, 30 seconds, and 60 seconds. That is, step S01 is first executed, at 0 seconds, the computer system 10 inputs the sensing data obtained by the sensor 12 into the database 11.
[0053] According to the above, after executing step S01, step S03 is executed. In one embodiment, for example, the update time of the sensing data is 00 seconds, and the next second is 01 seconds, step S03 is executed, and the computer system 10 determines whether the sensing data exceeds the standard value according to the alarm check cycle. When the sensing data does not exceed the standard value, step S032 is executed, and the computer system 10 sets the first data field and the second data field to empty values, and then returns to step S01. When the sensing data exceeds the standard value, step S031 is executed. In step S031, the computer system 10 updates the data of the first data field to the alarm activation time (i.e., the time when the sensing data is obtained), and when it is determined that the second data field is empty, the alarm is confirmed to be triggered.
[0054] Then, step S05 is executed, the computer system 10 updates the second data field to a state with data according to the manual switching information within the alarm check period, and the second data field is the alarm closing time.
[0055] Because the second data field has been updated to the alarm off time according to the manual switching information, step S07 is executed again. When the computer system 10 checks again according to the alarm check cycle and the sensing data exceeds the standard value, the alarm activation time of the first data field is updated to the time obtained by the same sensing data. When the computer system 10 determines that the alarm off time is later than the alarm activation time, it confirms that the alarm is off.
[0056] In one embodiment, the alarm check period is from the 01st second to the 10th second, but is not limited to the foregoing.
[0057] In one embodiment, step S07 is executed in the next alarm check cycle, for example, from the 11th second to the 20th second. If the sensing data still exceeds the standard value in the next alarm check cycle, the data in the first data field is updated to the time when the same sensing data is obtained, which means that the alarm has not been released. Therefore, when the computer system 10 determines that the alarm off time is later than the alarm on time according to the manual switching information, it confirms that the alarm is off. The alarm off time represents the time when the manual switching information is updated, indicating that the maintenance personnel or staff really want to turn off the alarm. The present invention determines whether there is data in the second data field by regularly updating the sensing data and confirming the alarm in each alarm check cycle, and compares the time sequence with the first data field, so as to determine that the alarm must be turned off, and avoid repeated triggering of the alarm.
[0058] In one embodiment, the alarm check cycle includes at least one alarm check time, and the alarm check time may be, for example, the 01st second in step S03 and the 11th second in step S07. That is, when the alarm check time is reached, the computer system 10 checks whether the sensing data exceeds the standard value according to the second program. When the alarm check time of the alarm check cycle is reached again, the computer system 10 checks again according to the second program whether the sensing data exceeds the standard value, and updates the alarm activation time of the data in the first data field to the time when the same sensing data is obtained. The alarm check time is a fixed time, and the present invention is not limited to the above.
[0059] In one embodiment, the computer system 10 checks whether the sensing data in the alarm check cycle exceeds the standard value according to the second program. If it exceeds the standard value, the alarm activation time of the first data field is updated, and when the second data field is determined to be an empty value, the alarm is confirmed to be triggered. The computer system 10 updates the second data field to a state with data according to the manual switching information during the alarm check cycle according to the second program. Then, when the computer system 10 checks again according to the second program during the alarm check cycle that the sensing data exceeds the standard value, the data in the first data field is updated to the time when the same sensing data is obtained. When the computer system 10 determines according to the second program that the alarm off time is later than the alarm activation time, the alarm is confirmed to be off.
[0060] And then by Figure 5 As shown, Figure 5 An embodiment of the present invention is presented in which the first data field and the second data field respectively represent the sensing data acquisition time and the null value.
[0061] In the process of executing the aforementioned method for avoiding repeated alarm triggering, the computer system 10 can perform data logic judgment based on the status of the first data field 13 and the second data field 14 to determine whether the sensing data obtained by the sensor 12 really exceeds the standard value and must generate an alarm trigger and a corresponding sound, and avoid repeated alarm triggering to turn off the alarm.
[0062] In one embodiment, when the data state of the first data field 13 and the second data field 14 has not been updated, it can be empty, indicating that the computer system 10 is in a standby state or a monitoring state. In addition, the first data field 13 can be set to represent that when the sensed data exceeds the standard value, the data state of the first data field 13 is updated with the time when the sensed data is obtained. The first data field 13 represents that the value of the sensed data is indeed exceeded the standard value, which is indicated by the alarm activation time, and the alarm triggering can be confirmed.
[0063] In addition, the second data field 14 is originally a null value, indicating that there is no data update or no data. Therefore, when the sensed data exceeds the standard value, the data state of the first data field 13 is updated, and when the computer system 10 determines that there is no data in the second data field 14, the alarm is confirmed to be triggered. When the second data field 14 of this embodiment is a null value, it means that the first data field 13 represents that the value of the sensed data is indeed exceeded the standard value, and the alarm can be confirmed to be triggered. The computer system 10 can send an alarm sound through a physical alarm to notify the maintenance personnel or staff to go to handle it.
[0064] For example Figure 5A As shown, Figure 5A An embodiment of the present invention is presented to show a state where the second data field is updated to have data.
[0065] Therefore, after confirming that the alarm is triggered, the computer system 10 updates the second data field 14 to a state with data according to the manual switching information within the alarm check period. The second data field 14 is the alarm closing time.
[0066] When the computer system 10 rechecks the sensing data according to the alarm check cycle and the sensing data exceeds the standard value, the alarm activation time of the first data field 13 is updated to the time when the same sensing data is obtained, and it can be further determined that the alarm is triggered. When the computer system 10 determines that the alarm off time is later than the alarm activation time, it is confirmed that the alarm is off. Figure 5A As shown in , that is, the second data field 14 is not only in a state of having data, but also when the data time is later than the data time of the first data field 13, it can be determined that the alarm is closed.
[0067] In one embodiment, the first program and the second program executed by the computer system 10 may be monitoring programs in the monitoring system and displayed on the display screen 100 of the computer system 10. The first program and the second program may be, for example, a monitoring program for temperature data or an alarm checking program for alarm confirmation. Furthermore, when the computer system 10 is an electronic device or a machine, the execution of the first program and the second program may also be monitoring programs other than the manufacturing programs of the electronic device or the machine to monitor the operation of the electronic device or the machine, and the present invention is not limited to the foregoing.
[0068] [Beneficial effects of the embodiment]:
[0069] One of the beneficial effects of the present invention is that the method for avoiding repeated alarm triggering and the intelligent monitoring alarm system provided by the present invention can be applied to any monitoring system, machine or equipment that senses any numerical value. When used in monitoring, it can confirm whether the alarm is activated based on the logical judgment of the alarm record in the data field, and can avoid the interruption of staff or maintenance personnel by unnecessary repeated alarms.
[0070] The contents provided above are only preferred feasible embodiments of the present invention, and are not intended to limit the claims of the present invention. Therefore, all equivalent technical changes made using the contents of the present invention's specification and drawings are included in the claims of the present invention.
Claims
1. A method for preventing repeated alarm triggering, used in a computer system, wherein the computer system is provided with a database, It is characterized in that The method includes: Inputting sensing data obtained by a sensor into the database through the computer system; The computer system determines whether the sensing data exceeds a standard value within an alarm check cycle; If the sensing data exceeds the standard value, the computer system updates an alarm activation time of a first data field, and confirms an alarm triggering when determining that a second data field is a null value; The computer system updates the second data field to a state having data according to a manual switching information within the alarm check cycle, and the second data field is an alarm closing time; and The computer system updates the alarm activation time of the first data field, and confirms that an alarm is closed when it is determined that the second data field has data and the alarm closing time of the second data field is later than the alarm activation time.
2. The method for preventing repeated alarm triggering according to claim 1, It is characterized in that The computer system updates the sensing data according to a first program, and the updating of the sensing data is performed according to a sensing data checking cycle, wherein the sensing data checking cycle is longer than the alarm checking cycle.
3. The method for avoiding repeated triggering of an alarm as claimed in claim 1, It is characterized in that The computer system checks whether the sensing data within the alarm check cycle exceeds the standard value according to a second program. If it exceeds the standard value, the alarm activation time of the first data field is updated to the time when the sensing data is obtained, and when it is determined that the second data field is a null value, the alarm is confirmed to be triggered. The computer system updates the alarm deactivation time of the second data field according to the manual switching information according to the second program and within the alarm check cycle.
4. The method for preventing repeated alarm triggering according to claim 3, It is characterized in that When the computer system checks again according to the second program during the alarm check cycle that the sensing data exceeds the standard value, the alarm activation time of the first data field is updated to the time when the sensing data is obtained. When the computer system determines according to the second program that the alarm closing time is later than the alarm activation time, the alarm is confirmed to be closed.
5. The method for preventing repeated alarm triggering according to claim 1, It is characterized in that The alarm check cycle includes at least one alarm check time. When the alarm check time arrives, the computer system checks whether the sensing data exceeds the standard value according to a second program. When the alarm check time of the alarm check cycle arrives again, the computer system checks again according to the second program whether the sensing data exceeds the standard value, and updates the data in the first data field to the same time when the sensing data is obtained. The alarm check time is a fixed time.
6. The method for preventing repeated alarm triggering according to claim 1, It is characterized in that When the computer system checks and determines that the sensing data does not exceed the standard value during the alarm check cycle, the computer system sets the first data field and the second data field to empty values and waits to enter the next alarm check cycle.
7. An intelligent monitoring alarm system, It is characterized in that include: A computer system having a database; as well as A sensor is communicatively connected to the computer system, and the computer system receives sensing data obtained by the sensor and inputs the data into the database; The computer system determines whether the sensing data exceeds a standard value within an alarm check cycle. When the sensing data exceeds the standard value, the computer system updates an alarm activation time of a first data field, and when determining that a second data field is a null value, confirms that an alarm is triggered; The computer system updates the second data field to a state having data according to a manual switching information within the alarm check cycle, and the second data field is an alarm closing time; When the computer system updates the alarm activation time of the first data field and the alarm deactivation time of the second data field is later than the alarm activation time, an alarm deactivation is confirmed.
8. The intelligent monitoring alarm system according to claim 7, It is characterized in that The alarm check cycle includes at least one alarm check time. When the alarm check time arrives, the computer system checks whether the sensing data exceeds the standard value according to a second program. When the alarm check time of the alarm check cycle arrives again, the computer system checks again according to the second program whether the sensing data exceeds the standard value, and updates the data in the first data field to the same time when the sensing data is obtained. The alarm check time is a fixed time.
9. The intelligent monitoring alarm system according to claim 7, It is characterized in that When the computer system checks and determines that the sensing data does not exceed the standard value during the alarm check cycle, the computer system sets the first data field and the second data field to empty values and waits to enter the next alarm check cycle.
10. The intelligent monitoring alarm system according to claim 7, It is characterized in that The computer system updates the sensing data according to a first program, and the updating of the sensing data is performed according to a sensing data checking cycle, and the sensing data checking cycle is longer than the alarm checking cycle.
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