CN111127276A - Hand-held electric fire data processing terminal - Google Patents

Hand-held electric fire data processing terminal Download PDF

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CN111127276A
CN111127276A CN201911331635.9A CN201911331635A CN111127276A CN 111127276 A CN111127276 A CN 111127276A CN 201911331635 A CN201911331635 A CN 201911331635A CN 111127276 A CN111127276 A CN 111127276A
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data
time
module
recording
fire detection
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CN111127276B (en
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徐健
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Shenzhen Anshang Security Technology Co ltd
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    • G06F16/24Querying
    • G06F16/248Presentation of query results
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07CTIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
    • G07C1/00Registering, indicating or recording the time of events or elapsed time, e.g. time-recorders for work people
    • G07C1/10Registering, indicating or recording the time of events or elapsed time, e.g. time-recorders for work people together with the recording, indicating or registering of other data, e.g. of signs of identity

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Abstract

The invention relates to a handheld electric fire data processing terminal, which comprises a main control module, a data processing module and a data processing module, wherein the main control module is used for storing and processing data in the terminal; the data acquisition module is used for acquiring fire detection data on a household electric line; the time registration module is used for providing corresponding time nodes when each fire detection data is acquired; the data manual recording module is used for manually recording the acquired fire detection data according to the provided time nodes; the data automatic recording module is used for automatically recording the acquired fire detection data and the corresponding time node; the recording switching module is used for switching the recording mode of the data; and the chart generation module is used for generating a fire data detection table in which the time points correspond to the fire detection data one by one in real time in the process of switching the data recording modes. The invention has the effect of improving the integrity in the data recording process.

Description

Hand-held electric fire data processing terminal
Technical Field
The invention relates to the technical field of fire data processing, in particular to a handheld electric fire data processing terminal.
Background
Along with frequent fire accidents caused by household electrical circuits, the importance degree of electrical safety in China is higher and higher, and monitoring and recording of fire detection data which can cause fire on the household electrical circuits are enhanced.
In the prior art, monitoring and recording of fire detection data on a household electrical line generally utilizes a mode of matching an electrical fire monitoring system with manual work, monitors all fire detection data of the household electrical line in a power-on process through the electrical fire monitoring system, and transmits the fire detection data to workers for manual recording.
The above prior art solutions have the following drawbacks: the above-mentioned record to each conflagration detection data on the domestic electric circuit needs to pass through mutually supporting of electric fire monitored control system and staff, and at this in-process, if the staff leaves for the reason, easily make the fire detection data that gas fire monitored control system obtained unmanned record, lead to losing of fire detection data.
Disclosure of Invention
In view of the defects in the prior art, one of the objectives of the present invention is to provide a handheld electrical fire data processing terminal, which can reduce the loss of data and improve the integrity of the data recording process.
The above object of the present invention is achieved by the following technical solutions: a handheld electrical fire data processing terminal, comprising:
the main control module is used for storing and processing data in the terminal;
the data acquisition module is coupled to the main control module and used for acquiring fire detection data on a household electric circuit;
the time registration module is coupled with the main control module and provides a corresponding time node when each fire detection data is acquired;
the data manual recording module is coupled with the data acquisition module and is used for manually recording the acquired fire detection data according to the provided time node;
the automatic data recording module is coupled with the data acquisition module and automatically records the acquired fire detection data and the corresponding time nodes;
the recording switching module is coupled to the main control module and switches the recording mode of the data to automatic recording when the corresponding fire detection data is not recorded at any time node in the manual data recording process;
and the chart generation module is coupled with the record switching module and generates a fire data detection table in which the time points correspond to the fire detection data one by one in real time according to the recorded fire detection data and the time nodes.
By adopting the technical scheme, in the electrifying process of the household electrical line, fire occurrence elements such as current and temperature can be generated on the household electrical line, the data acquisition module acquires data such as current and temperature on the household electrical line in real time as fire detection data, after the data is acquired, the data manual recording module or the data automatic recording module can be switched by the recording switching module to record corresponding fire detection data according to time nodes provided by the time registration module, and the graph generation module generates a corresponding fire data detection table according to the recorded fire detection data and the recorded time nodes so as to report and display the fire detection data on the household electrical line; this kind is through setting up artifical record module of data and data automatic recording module to the accessible is recorded and is switched the module and carry out arbitrary the switching, and then the loss in the reducible artifical record in-process of data improves data record's integrality.
The present invention in a preferred example may be further configured to: the time registration module comprises a peak time unit for providing a peak time node and a stationary time unit for providing a stationary time node;
further comprising:
a threshold module coupled to the graph generation module and recording fire detection data thresholds corresponding to peak time and settling time on the generated graph;
and the early warning module is coupled with the chart generation module and carries out early warning when the fire detection data exceeds a corresponding threshold value.
By adopting the technical scheme, the time of day is divided into the peak time of electric use and the stable time of electric use, corresponding threshold time is set in corresponding time periods, and early warning reminding is carried out when fire detection data of the early warning module in any time period exceeds the corresponding threshold.
The present invention in a preferred example may be further configured to: further comprising:
the problem node registration module is coupled with the chart generation module and registers time nodes when the fire detection data exceed the corresponding threshold value in the peak time and the stable time in real time;
the background monitoring module is preset with a peak preparation time corresponding to the peak time and a stable preparation time corresponding to the temperature time, and is coupled to the problem node registration module and used for reducing the data value of each fire detection data on the household electrical line when the time for recording each fire detection data exceeds the time node of the fire detection data threshold value and reaches the corresponding peak preparation time or stable preparation time.
By adopting the technical scheme, the time nodes exceeding the time threshold are registered by setting the problem node registration module, and in the process of circularly registering fire detection data every day, when the time nodes recording the fire detection data every day reach the corresponding preparation time through the background monitoring module, the data value of the fire detection data on the household electric line is reduced, and the safety of electric use is favorably improved.
The present invention in a preferred example may be further configured to: further comprising:
a constant data module coupled to the graph generating module and recording each of the fire detection data stable values corresponding to the peak time and the stable time on the generated graph;
and the constant data reference module is coupled with the constant data module and stores a peak value reference range database corresponding to each stable value of the fire detection data at each time point of peak time and a stable reference range database corresponding to each stable value of the fire detection data at each time point of stable time, and the maximum value in the peak value reference range database and the maximum value in the stable reference range database are both smaller than the corresponding fire detection data threshold values.
By adopting the technical scheme, the constant data module provides the stable values of the fire detection data in the peak time and the stable time, and the constant data reference module provides the fire detection data reference ranges recorded at the time points in the peak time and the stable time so as to provide references in the recording process of the fire detection data, thereby improving the accuracy of recording the fire detection data.
The present invention in a preferred example may be further configured to: further comprising:
the excess value data registration module is coupled with the chart generation module, registers in real time the excess value time points and the excess value data of all the fires, of which the fire data values exceed the reference ranges of the corresponding stable values at all the time points on the generated chart, and loads the excess value data to the background monitoring module;
and the troubleshooting module is used for storing a troubleshooting personnel contact information database of the troubleshooting personnel contact information, is coupled with the background monitoring module, and extracts the contact information of the investigators from the troubleshooting personnel contact information database and carries out troubleshooting notification of the excess time point when the background monitoring module receives the excess time point loaded by the excess data registration module and the excess data of each fire disaster.
By adopting the technical scheme, the fire detection data exceeding the stable position reference range is registered by setting the overtime data registration module, and the data is checked on the household electrical line on the corresponding time node through the checking module so as to ensure the safety of electrifying the household electrical line.
The present invention in a preferred example may be further configured to: further comprising:
the time preparation switching module is preset with a switching time threshold, is coupled to the time registration module and controls the recording switching module to switch the data recording mode to the manual data recording module when the switching time threshold is entered in a time period when the peak time is converted into the stable time, and controls the recording switching module to switch the data recording mode to the automatic data recording module when the switching time threshold is entered in a time period when the stable time is converted into the peak time.
By adopting the technical scheme, the time preparation switching module is arranged, and the data recording module is switched to the automatic data recording mode within the peak time when the fire detection data change is fast, so that the accuracy of fire detection data recording is improved.
In summary, the invention includes at least one of the following beneficial technical effects:
the data manual recording module and the data automatic recording module are arranged, and the recording switching module can be used for switching at will, so that the loss in the data manual recording process can be reduced, and the integrity of data recording is improved;
the time preparation switching module is arranged to switch the data recording module into the automatic data recording mode within the peak time, so that manual recording of data is prevented, and accuracy of fire detection data recording is improved.
Drawings
Fig. 1 is a first schematic diagram of the present invention.
Fig. 2 is a schematic diagram of the principle of the present invention.
Fig. 3 is a schematic view of a fire data detection table according to the present invention.
In the figure, 1, a main control module; 2. a data acquisition module; 3. a time registration module; 4. a data manual recording module; 5. a data automatic recording module; 6. a record switching module; 7. a chart generation module; 8. a peak time unit; 9. a stationary time unit; 10. a threshold module; 11. an early warning module; 12. a problem node registration module; 13. a background monitoring module; 14. a constant data module; 15. a constant data reference module; 16. a peak reference range database; 17. a stable reference range database; 18. an overflow data registration module; 19. a troubleshooting module; 20. a database of contact information of the investigators; 21. a time preparation switching module.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Referring to fig. 1, the handheld electrical fire data processing terminal disclosed by the invention comprises a main control module 1, a data acquisition module 2, a time registration module 3, a manual data recording module 4, an automatic data recording module 5, a record switching module 6 and a chart generation module 7.
The main control module 1 is used for storing and processing data in the terminal, and in this embodiment, the main control module 1 is preferably a small computer; the data acquisition module 2 is coupled to the main control module 1 and is used for acquiring fire detection data on a household electrical line, when the temperature, the current and the voltage on the household electrical line are too large, the electrical line is easily burnt out and a fire disaster occurs, and the fire detection data in the embodiment is preferably data such as the temperature, the current and the voltage; the time registration module 3 is coupled to the main control module 1 and provides a time node corresponding to each acquired fire detection data.
The data manual recording module 4 is coupled to the data acquisition module 2 and is used for manually recording the acquired fire detection data according to the provided time node, namely, when a worker acquires one data, a data value and the time node are recorded and stored in the main control module 1; the data automatic recording module 5 is coupled to the data acquisition module 2 and automatically records and stores the acquired fire detection data and the corresponding time nodes into the main control module 1; the recording switching module 6 is coupled to the main control module 1 and switches the recording mode of the data to automatic recording when the corresponding fire detection data is not recorded at any time node in the manual data recording process, so as to prevent the data from being lost; the graph generating module 7 is coupled to the main control module 1 and obtains the recorded fire detection data, and generates a fire data detection table (as shown in fig. 3) in which time points and fire detection data correspond to each other in a one-to-one manner in real time.
The time registration module 3 comprises a peak time unit 8 for providing a peak time node and a stable time unit 9 for providing a stable time node, wherein the peak time node is preferably 18:00-8:00 in one day and the stable time node is preferably 8:00-18:00 in one day in the present embodiment; in order to improve the accuracy of the peak time and the stable time for recording the fire detection data, the invention further comprises a time preparation switching module 21, a switching time threshold is preset in the time preparation switching module 21, the time preparation switching module is coupled to the time registration module 3 and controls the recording switching module 6 to switch the data recording mode to the manual data recording module 4 when the switching time threshold is entered in the time period from the peak time to the stable time, the recording switching module 6 is controlled to switch the data recording mode to the automatic data recording module 5 when the switching time threshold is entered in the time period from the stable time to the peak time, the fire detection data change is fast in the peak time, the concentration of the fire detection data relative to the attention of a worker is poor in the peak time, and the data recording mode can be converted into the automatic data recording in the peak time, to improve the accuracy of fire detection data logging.
Referring to fig. 2, the present invention further includes a threshold module 10 and an early warning module 11; the threshold module 10 is coupled to the graph generating module 7 and records each fire detection data threshold corresponding to the peak time and the stable time on the generated graph, and the threshold records of the peak time and the stable time are shown in fig. 3; the early warning module 11 is coupled to the graph generating module 7 and performs an early warning when the fire detection data exceeds the corresponding threshold.
Furthermore, the invention also comprises a problem node registration module 12 and a background monitoring module 13, wherein the problem node registration module 12 is coupled to the chart generation module 7 for registering time nodes when the fire detection data exceeds the corresponding threshold value in the peak time and the stable time in real time; after the threshold data is exceeded for the first time, since the recording of the fire detection data is cyclic, time nodes within the peak time or the stable time when the threshold data is exceeded can be registered by the problem node registration module 12; the background monitoring module 13 is preset with a peak preparation time corresponding to the peak time and a stable preparation time corresponding to the temperature time, and is coupled to the problem node registration module 12, and reduces the data value of each fire detection data on the household electrical line when the time of recording each fire detection data exceeds the time node of the fire detection data threshold value and reaches the corresponding peak preparation time or stable preparation time, so as to achieve the effect of preparation in advance and ensure the safety on the electrical line.
In addition, the invention also comprises a constant data module 14 and a constant data reference module 15; the constant data module 14 is coupled to the graph generating module 7 and records each stable value of the fire detection data corresponding to the peak time and the stable time on the generated graph (as shown in fig. 3); the constant data reference module 15 is coupled to the constant data module 14 and stores a peak reference range database 16 storing stable values of the fire detection data corresponding to the peak time points, a stable reference range database 17 storing stable values of the fire detection data corresponding to the stable time points, and a maximum value in the peak reference range database 16 and a maximum value in the stable reference range database 17 are both smaller than corresponding fire detection data threshold values; the stable value of the fire detection data provides a reference for recording the fire detection data, the fire detection data acquired in this embodiment is different from the stable value of the fire detection data at any time point, and the range of the acquired fire detection data relative to the stable value of the fire detection data is provided by the constant data reference module 15, so that the fire detection data has a stronger reference when being acquired.
The invention further comprises an over-value data registration module 18 and a checking module 19; the excess value data registration module 18 is coupled to the graph generation module 7, registers in real time the excess value time points and the excess value data of each fire disaster, at which each fire disaster data value exceeds the corresponding stable value reference range at each time point on the generated graph, and loads the excess value data into the background monitoring module 13; the troubleshooting module 19 is used for storing a troubleshooting person contact information database 20 of the troubleshooting person contact information, is coupled to the background monitoring module 13, and extracts the contact information of the investigators from the troubleshooting person contact information database 20 and carries out troubleshooting notification of the excess time point when the background monitoring module 13 receives the excess time point and the fire excess data loaded by the excess data registration module 18; the stable value of the fire detection data provided by the constant data module 14 and the reference range value of the fire detection data provided by the constant data reference module 15 are generally within the reference range in the acquired fire detection data, and once the data exceeding the reference range is recorded by the excess data registration module 18, the time point of occurrence of the data needs to be checked to determine the reason of the excess value, so as to further ensure the safety of the household electric line.
The embodiments of the present invention are preferred embodiments of the present invention, and the scope of the present invention is not limited by these embodiments, so: all equivalent changes made according to the structure, shape and principle of the invention are covered by the protection scope of the invention.

Claims (6)

1. A handheld electric fire data processing terminal is characterized in that: the method comprises the following steps:
the main control module (1) is used for storing and processing data in the terminal;
the data acquisition module (2) is coupled to the main control module (1) and is used for acquiring fire detection data on a household electric circuit;
the time registration module (3) is coupled with the main control module (1) and provides a corresponding time node when acquiring each fire detection data;
the data manual recording module (4) is coupled with the data acquisition module (2) and is used for manually recording the acquired fire detection data according to the provided time node;
the data automatic recording module (5) is coupled with the data acquisition module (2) and is used for automatically recording the acquired fire detection data and the corresponding time node;
the recording switching module (6) is coupled to the main control module (1) and switches the recording mode of the data to automatic recording when the corresponding fire detection data is not recorded at any time node in the manual data recording process;
and the chart generation module (7) is coupled with the record switching module (6) and generates a fire data detection table in which the time points and the fire detection data correspond to one another in real time according to the recorded fire detection data and the time nodes.
2. The hand-held electrical fire data processing terminal of claim 1, wherein: the time registration module (3) comprises a peak time unit (8) for providing a peak time node and a stationary time unit (9) for providing a stationary time node;
further comprising:
a threshold module (10) coupled to the graph generating module (7) and recording fire detection data thresholds corresponding to peak time and settling time on the generated graph;
and the early warning module (11) is coupled with the chart generation module (7) and carries out early warning when the fire detection data exceeds a corresponding threshold value.
3. The hand-held electrical fire data processing terminal of claim 2, wherein: further comprising:
a problem node registration module (12) coupled to the graph generation module (7) for registering time nodes when the fire detection data exceeds the corresponding threshold value in real time within the peak time and the stable time;
and a background monitoring module (13) which is preset with a peak preparation time corresponding to the peak time and a stable preparation time corresponding to the temperature time, is coupled to the problem node registration module (12) and reduces the data value of each fire detection data on the household electrical line when the time for recording each fire detection data exceeds the fire detection data threshold time node and reaches the corresponding peak preparation time or stable preparation time.
4. The hand-held electrical fire data processing terminal of claim 2, wherein: further comprising:
a constant data module (14) coupled to the graph generating module (7) and recording each of the fire detection data stable values corresponding to the peak time and the stable time on the generated graph;
and a constant data reference module (15) coupled to the constant data module (14) and storing a peak reference range database (16) corresponding to each stable value of the fire detection data at each time point of a peak time, and a stable reference range database (17) corresponding to each stable value of the fire detection data at each time point of a stable time, wherein a maximum value in the peak reference range database (16) and a maximum value in the stable reference range database (17) are both smaller than each corresponding fire detection data threshold.
5. A hand-held electrical fire data processing terminal according to claim 3, wherein: further comprising:
an excess data registration module (18), which is coupled to the graph generation module (7), registers in real time the excess time points and the excess data of each fire when the fire data value exceeds the reference range of the corresponding stable value at each time point on the generated graph, and loads the excess time points and the excess data of each fire on the background monitoring module (13);
the troubleshooting module (19) is used for storing a troubleshooting person contact information database (20) of the troubleshooting person contact information, is coupled to the background monitoring module (13), and extracts the contact information of the investigators from the troubleshooting person contact information database (20) and carries out troubleshooting notification of the excess time point when the background monitoring module (13) receives the excess time point and the fire excess data loaded by the excess data registration module (18).
6. The hand-held electrical fire data processing terminal of claim 2, wherein: further comprising:
and the time preparation switching module (21) is preset with a switching time threshold, is coupled to the time registration module (3) and controls the recording switching module (6) to switch the data recording mode to the manual data recording module (4) when the switching time threshold is entered in the time period from the peak time to the stable time, and controls the recording switching module (6) to switch the data recording mode to the automatic data recording module (5) when the switching time threshold is entered in the time period from the stable time to the peak time.
CN201911331635.9A 2019-12-21 2019-12-21 Handheld electric fire data processing terminal Active CN111127276B (en)

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CN201229642Y (en) * 2008-07-31 2009-04-29 珠海派诺电子有限公司 Electric fire disaster detector
CN201917991U (en) * 2011-01-12 2011-08-03 沈阳三丰电气有限公司 Electric fire-monitoring system with direct printing function
CN103440725A (en) * 2013-09-03 2013-12-11 苏州太谷电力股份有限公司 Electrical fire warning service method and system
CN106251561A (en) * 2016-10-18 2016-12-21 湖南威胜信息技术有限公司 Multifunctional electric fire early-warning system and method for early warning thereof
CN106652296A (en) * 2016-10-17 2017-05-10 天津汇智物联科技有限公司 Automatic fire detection system
CN108107298A (en) * 2018-02-05 2018-06-01 天津住总科技发展有限公司 A kind of Portable integrated electric wiring intelligent monitor
CN109066602A (en) * 2018-08-28 2018-12-21 合肥兴东电器开关有限责任公司 High Voltage Outdoor vacuum switch
CN109299667A (en) * 2018-08-30 2019-02-01 安徽北斗易通信息技术有限公司 A kind of electric fire-control safety check portable detector

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201229642Y (en) * 2008-07-31 2009-04-29 珠海派诺电子有限公司 Electric fire disaster detector
CN201917991U (en) * 2011-01-12 2011-08-03 沈阳三丰电气有限公司 Electric fire-monitoring system with direct printing function
CN103440725A (en) * 2013-09-03 2013-12-11 苏州太谷电力股份有限公司 Electrical fire warning service method and system
CN106652296A (en) * 2016-10-17 2017-05-10 天津汇智物联科技有限公司 Automatic fire detection system
CN106251561A (en) * 2016-10-18 2016-12-21 湖南威胜信息技术有限公司 Multifunctional electric fire early-warning system and method for early warning thereof
CN108107298A (en) * 2018-02-05 2018-06-01 天津住总科技发展有限公司 A kind of Portable integrated electric wiring intelligent monitor
CN109066602A (en) * 2018-08-28 2018-12-21 合肥兴东电器开关有限责任公司 High Voltage Outdoor vacuum switch
CN109299667A (en) * 2018-08-30 2019-02-01 安徽北斗易通信息技术有限公司 A kind of electric fire-control safety check portable detector

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