A new type of electrical safety monitoring system

Through the new electrical safety monitoring system, the radio frequency and power of user electrical equipment are monitored in real time, protection thresholds are set, and power limit or power outage protection is promptly carried out, which solves the problem that existing systems cannot effectively monitor power safety and reduces the occurrence of power safety accidents.

CN115986934BActive Publication Date: 2025-07-25NANJING XIANGTAI SYSTEM TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202211682912.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-27
Publication Date
2025-07-25
Estimated Expiration
2042-12-27

AI Technical Summary

Technical Problem

The existing electrical safety monitoring system cannot effectively monitor whether users use electricity safely, resulting in lag in the event of power safety accidents and failure to cut off power in time, which may lead to losses and safety accidents.

Method used

A new type of electrical safety monitoring system is designed, including a monitoring processor and a terminal processor. The terminal processor includes an identification unit and a prompt unit. The monitoring processor includes a positioning module and a monitoring module. By identifying the terminal socket to access the power supply line, a positioning mark diagram is generated, the radio wave frequency and power of the power consumption equipment are monitored in real time, the protection threshold is set, and power limit or power outage protection is carried out in a timely manner, and a fire message is generated during open flame detection.

Benefits of technology

Real-time monitoring and safety control of user electricity use is realized, reducing the fire risk caused by overload of electricity use, and improving the monitoring and response efficiency of electricity use safety.

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Patent Text Reader

Abstract

The present invention discloses a novel electrical safety monitoring system. The key points of its technical solution include a monitoring processor and a terminal processor. The terminal processor includes a terminal socket, an identification unit and a prompting unit arranged in the terminal socket. The terminal socket is communicatively connected to the monitoring processor. The identification unit is used to identify whether the terminal socket is connected to the power supply line. The prompting unit includes an indicator light arranged on the terminal socket. The monitoring processor includes a positioning module and a monitoring module. The positioning module is used to position the location of the terminal socket and form a positioning mark map and a building network number table. The monitoring module includes a monitoring unit, a protection unit and a fire protection unit. The monitoring module is used to monitor the user's power consumption situation and provide protection in case of power consumption safety problems. A thermal sensor is also arranged on the terminal socket to generate a fire protection message for reporting when a fire breaks out. The effect of monitoring the power consumption safety of users in the corresponding area is achieved.
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Description

Technical Field

[0001] The present invention relates to the technical field of electrical safety, and more particularly to a new type of electrical safety monitoring system. Background Art

[0002] With the rapid development of the power grid, to achieve stable power supply for electrical facilities, especially for current residential electricity consumption, local power outages were prone to occur in the past for residential electricity use. Now, the power grid power supply has improved power supply stability, enabling stable power supply for residential electricity.

[0003] Currently, whether it is residential electricity or office building electricity, a distribution room is generally equipped to supply power and supervise a certain area. However, the current supervision of the distribution room only monitors the electricity consumption of the corresponding users and cannot effectively supervise whether the users' electricity use is safe. As a result, when users have dangerous electricity use or a fire occurs due to electricity, effective supervision and power cut-off cannot be carried out in a timely manner. Only when a circuit short-circuit or open-circuit occurs, the fuse melts, but this method cannot monitor electrical safety, and the fuse melting in the event of an electricity safety accident has a lag, so losses and safety accidents cannot be avoided. Therefore, a monitoring system that can effectively monitor and respond to control the safety of electricity use and improve electricity use safety is urgently needed. Summary of the Invention

[0004] Aiming at the deficiencies of the existing technology, the purpose of the present invention is to provide a new type of electrical safety monitoring system, which has the effect of accurately monitoring the safety of electric power use and improving electricity use safety.

[0005] To achieve the above object, the present invention provides the following technical solutions:

[0006] A new type of electrical safety monitoring system, comprising: a monitoring processor and a terminal processor;

[0007] The terminal processor includes a terminal socket, an identification unit and a prompting unit arranged in the terminal socket. The identification unit is used to identify whether the terminal socket is connected to the power supply line and send a potential signal when connected to the power supply line. The prompting unit includes an indicator light, and the prompting unit controls the indicator light to indicate when receiving the potential signal;

[0008] The monitoring processor includes a positioning module and a monitoring module. The positioning module includes a positioning unit and a networking unit. The positioning unit is configured with a composition strategy, which includes retrieving the user to whom the monitoring processor belongs, retrieving the household type scan map of the corresponding user, generating a positioning mark on the household type scan map based on the household type scan map and the position of the formed potential signal to form a positioning mark map. The networking unit is configured with a networking strategy, which includes obtaining the positions of the monitoring processors that generate the positioning mark map with the same floor as a subnet and generating a building network number table with the same building as a parent network. The building network number table includes floor information, indoor information, and power information. The indoor information represents the position and user information of the user corresponding to the monitoring processor. The floor information represents the summary of the indoor information corresponding to the users on the same floor. The power information represents the total power consumption of the corresponding user;

[0009] The monitoring module includes a monitoring unit, a protection unit, and a fire protection unit. The monitoring unit is configured with a protection threshold and a monitoring strategy. The protection threshold represents the maximum values of the output power and the radio wave frequency. The monitoring strategy includes real-time monitoring of the radio wave frequency and output power of the electrical equipment connected to the corresponding terminal socket, and analyzing whether the protection threshold is reached. When the protection threshold is reached, a protection signal is generated. The protection unit is configured with a protection strategy, which includes identifying the corresponding terminal socket and performing power limit or power-off protection when receiving the protection signal;

[0010] A thermal sensor is further provided on the terminal socket. The thermal sensor is used to detect whether there is an open fire, and generates a danger signal when an open fire is detected. The fire protection unit is configured with a fire protection strategy, which includes, when the protection unit performs power-off protection, retrieving whether the terminal socket in the user corresponding to the monitoring processor generates a danger signal, and generating a fire protection message for fire alarm when receiving the danger signal.

[0011] As a further improvement of the present invention, the recognition unit is further configured with a multi-bit recognition strategy, which includes:

[0012] When the terminal socket is connected to the electrical equipment, a power supply signal is generated. When the power supply signal is generated, it is also recognized whether there are multiple radio wave signals at the position where the terminal socket generates the power supply signal. The radio wave signal represents the electrical signal fluctuation when the electrical equipment is connected to the power supply line. If multiple radio wave signals are detected at the position of the plug corresponding to a single terminal socket, the formed radio wave signals are counted, and the position of the radio wave signal is identified according to the time when the radio wave signal is generated when the electrical equipment is connected.

[0013] As a further improvement of the present invention, the composition strategy is specifically:

[0014] Retrieve the indoor house type scan map corresponding to any user on the same floor, and assign the house type scan maps of the same floor to the monitoring processors corresponding to all users on the same floor;

[0015] When generating the potential signal, also identify the phase attribute of the corresponding potential signal access. The phase attribute includes single-phase electricity and three-phase electricity. Form a socket model according to the phase attribute and assign it to the terminal socket on the corresponding positioning mark map.

[0016] As a further improvement of the present invention, the composition strategy specifically further includes:

[0017] Retrieve whether there are multiple radio wave signals in the terminal socket of the user. If multiple radio wave signals are detected, form an external connection model according to the counted number of radio wave signals and the time difference when the corresponding radio wave signal type is formed, and assign the external connection model to the corresponding accessed terminal socket for identification.

[0018] As a further improvement of the present invention, the networking strategy is specifically:

[0019] Number the positions of the user buildings in the area, assign non-residential buildings as A, assign residential buildings as B, and sequentially number and name them according to the building numbers, sequentially named A1 - AN and B1 - BN and assign them to the floor information. Number the users in the same building according to the floor and the user and assign them to the user information in the indoor information.

[0020] As a further improvement of the present invention, the monitoring strategy is specifically:

[0021] When the terminal socket detects an electrical device, detect the real-time power of the electrical device, generate a power fluctuation graph, retrieve whether there is a danger signal from the thermal sensor on the terminal socket. When no danger signal is detected, take the maximum real-time power corresponding to the power fluctuation graph as the lower limit, take the protection threshold as the limit power range, and take the maximum power value in the limit power range as the limit power value. At the same time, monitor the radio wave frequency of the corresponding electrical device, and generate a radio wave graph according to the radio wave frequency. Determine the band mark corresponding to the maximum real-time power in the radio wave graph as the high-power band, fit the band at the limit power value with the high-power band, and calibrate the limit band;

[0022] The protection signal includes a current-limiting electronic signal and a power-off electronic signal. When it is detected that the real-time power of the electrical device is within the limit power range and at the same time belongs to the range from the high-power band to the limit band, send the current-limiting electronic signal in the protection signal;

[0023] When it is detected that the real-time power of the electrical device is greater than or equal to the limit power value and at the same time is within the limit band, send the power-off electronic signal in the protection signal.

[0024] As a further improvement of the present invention, a buzzer is further provided on the terminal socket. The indicator light includes a backup power supply and multiple indication colors, and the indication colors include red, blue, and green. The protection strategy is specifically as follows:

[0025] When the terminal socket is connected to the power line and the electrical equipment is powered normally, the indicator light is displayed in green.

[0026] If the corresponding protection signal is a power limit signal, the indicator light is displayed in yellow and flashes at a frequency of three times per second, controlling the power line of the corresponding terminal socket to reduce the transmission power, so as to limit the power by reducing the output power of the corresponding terminal socket. If the real-time power of the electrical equipment increases at this time, power-off control is performed at the terminal socket.

[0027] If the corresponding protection signal is a power-off signal, control the power line corresponding to the terminal socket where the corresponding electrical equipment is located to disconnect the power supply to the terminal socket, start the backup power supply to supply power to the indicator light and display it in red, and at the same time control the indicator light to flash at a frequency of five times per second. If a danger signal is detected at the same time, control the buzzer to alarm.

[0028] As a further improvement of the present invention, it further includes an operation terminal provided on the user's wall. The operation terminal is used to retrieve the positioning marker map and actively eliminate the fire protection message. A delay threshold is also configured in the fire protection unit. The fire protection strategy is specifically as follows:

[0029] If a danger signal is detected and power-off processing is performed, if the fire protection message is actively eliminated in the corresponding user's operation terminal within the delay threshold range, and no open fire is detected by the thermal sensor after the message is eliminated, a recovery signal is generated, controlling the corresponding terminal socket to restore the indicator light to be displayed in green and eliminate the buzzer alarm.

[0030] If the corresponding operation terminal does not actively eliminate the fire protection message within the delay threshold range, upload the fire protection message.

[0031] As a further improvement of the present invention, the fire protection message includes location information and route information. When generating the location information, retrieve the building network data table, traverse the corresponding floor information and indoor information in the building network data table, and at the same time obtain the corresponding number. According to the location information, retrieve the map tool, and take the fire brigade near the corresponding user where the danger signal appears as the starting point, and take the user corresponding to the danger signal as the end point to retrieve the navigation route map and assign it to the route information.

[0032] As a further improvement of the present invention, the fire protection strategy specifically further includes:

[0033] Retrieve the location of the fire brigade that has received and confirmed the fire message, generate a correction instruction based on the real-time location of the fire brigade, re-obtain the navigation route map according to the correction instruction, and compare the corrected navigation route map with the navigation route map corresponding to the location of the fire brigade in the fire message. If they are inconsistent, generate a correction route based on the corrected navigation route map and send it. If they are consistent, cancel the correction instruction.

[0034] The beneficial effects of the present invention: By setting up a monitoring processor among users in the corresponding area for real-time monitoring, and using a terminal socket with communication functions, a potential signal is generated when the terminal socket is installed in the user, enabling the positioning unit in the monitoring processor to accurately obtain the location of the terminal socket, forming a positioning mark map corresponding to the user's interior. Using the display indication of the indicator light to form an interactive indication to guide the working state of the terminal socket, the output of the terminal socket is monitored in real time under the action of the monitoring unit, and under the action of the protection unit, power limit or power-off protection is realized when there is a power safety problem, and at the same time, a danger prompt is given in cooperation with the indicator light. When there is a power-off and danger signal, a fire message is generated and reported through the fire unit, so as to form an effective real-time monitoring of the power consumption of electrical equipment and reduce the fire caused by power safety accidents due to overloading of equipment power consumption. Description of the Drawings

[0035] Figure 1 To show the system diagram of the present invention. Detailed Embodiments

[0036] The present invention will be further described in detail below in conjunction with the drawings and embodiments. The same reference numerals are used for the same components. It should be noted that the terms "front", "rear", "left", "right", "upper" and "lower" used in the following description refer to the directions in the drawings, and the terms "bottom surface" and "top surface", "inner" and "outer" refer to the directions towards or away from the geometric center of a specific component respectively.

[0037] Refer to Figure 1 As shown, it is a detailed embodiment of a new type of electrical safety monitoring system of the present invention, including a monitoring processor, a terminal processor, and an operation terminal arranged on the user's wall. The monitoring processor is integrated in the operation terminal. The terminal processor includes a terminal socket, an identification unit and a prompt unit arranged in the terminal socket. The terminal socket is communicatively connected with the monitoring processor. The identification unit is used to identify whether the terminal socket is connected to the power supply line and send a potential signal when connected to the power supply line. The prompt unit includes an indicator light, and the prompt unit controls the indicator light to indicate when receiving the potential signal.

[0038] The monitoring processor includes a positioning module and a monitoring module. The positioning module includes a positioning unit and a networking unit. The positioning unit is configured with a structure layer policy, which includes retrieving the user to whom the monitoring processor belongs, retrieving the household type scan map of the corresponding user, generating a positioning mark on the household type scan map based on the household type scan map and the position of the formed potential signal to form a positioning mark map. The networking unit is configured with a networking policy, which includes obtaining the positions of the monitoring processors that generate the positioning mark map with the same floor as a subnet, and generating a building network number table with the same building as a parent network. The building network number table includes floor information, indoor information, and power information. The indoor information represents the position and user information of the user corresponding to the monitoring processor. The floor information represents the summary of the indoor information corresponding to the users on the same floor. The power information represents the total power consumption of the corresponding user, so that after the monitoring processor is installed, the system cloud can generate the number of users and user distribution within the managed area, and thus can monitor the electrical usage safety of the supervised users in real time and uniformly.

[0039] The monitoring module includes a monitoring unit, a protection unit, and a fire protection unit. The monitoring unit is configured with a protection threshold and a monitoring strategy. The protection threshold represents the maximum values of the output power and radio wave frequency. The monitoring strategy includes real-time monitoring of the radio wave frequency and output power of the electrical equipment connected to the corresponding terminal socket, and analyzing whether the protection threshold is reached. When the protection threshold is reached, a protection signal is generated. The protection unit is configured with a protection strategy, which includes identifying the corresponding terminal socket and performing power limit or power-off protection when the protection signal is received.

[0040] A thermal sensor is also provided on the terminal socket. The thermal sensor is used to detect whether there is an open fire, and generates a danger signal when an open fire is detected. The fire protection unit is configured with a fire protection strategy, which includes, when the protection unit performs power-off protection, retrieving whether the terminal socket in the user corresponding to the monitoring processor emits a danger signal, and generating a fire protection message for fire alarm when the danger signal is received.

[0041] The identification unit is also configured with a multi-bit identification strategy, which includes: generating a power supply signal when the terminal socket is connected to the electrical equipment, and also identifying whether there are multiple radio wave signals at the position where the terminal socket generates the power supply signal when the power supply signal is generated. The radio wave signal represents the electrical signal fluctuation of the electrical equipment when it is connected to the power supply line. If multiple radio wave signals are detected at the corresponding plug position of a single terminal socket, the formed radio wave signals are counted, and the position of the radio wave signal is identified according to the time when the radio wave signal is generated when the electrical equipment is connected.

[0042] The specific structure layer policy is as follows:

[0043] Retrieve the indoor house type scan map corresponding to any user on the same floor, and assign the house type scan maps of the same floor to the monitoring processors corresponding to all users on the same floor;

[0044] When generating the potential signal, also identify the phase attribute of the corresponding potential signal access. The phase attribute includes single-phase electricity and three-phase electricity. Form a socket model according to the phase attribute and assign it to the terminal socket on the corresponding positioning mark map.

[0045] The specific composition strategy further includes:

[0046] Retrieve whether there are multiple radio wave signals in the terminal socket of the user. If multiple radio wave signals are detected, form an external connection model according to the counted number of radio wave signals and the time difference when the corresponding radio wave signal type is formed, and assign the external connection model to the corresponding accessed terminal socket for identification.

[0047] The specific networking strategy is:

[0048] Number the positions of the user buildings in the area, assign non-residential buildings as A and residential buildings as B, and sequentially number and name them according to the building numbers, sequentially named A1 - AN and B1 - BN and assign them to the floor information. Number the users in the same building according to the floor and the users and assign them to the user information in the indoor information, so as to effectively distinguish and monitor the non-residential electricity and residential electricity in the area.

[0049] The specific monitoring strategy is:

[0050] When the terminal socket detects an electrical device, detect the real-time power of the electrical device, generate a power fluctuation graph, retrieve whether there is a danger signal from the thermal sensor on the terminal socket. When no danger signal is detected, take the maximum real-time power corresponding to the power fluctuation graph as the lower limit, take the protection threshold as the limit power range, and take the maximum power value in the limit power range as the limit power value. At the same time, monitor the radio wave frequency of the corresponding electrical device, and generate a radio wave graph according to the radio wave frequency. Determine the band mark corresponding to the maximum real-time power in the radio wave graph as the high-power band, fit the band at the limit power value with the high-power band, and calibrate the limit band;

[0051] The protection signal includes a current-limiting electronic signal and a power-off electronic signal. When it is detected that the real-time power of the electrical device is within the limit power range and at the same time belongs to the range from the high-power band to the limit band, send the current-limiting electronic signal in the protection signal;

[0052] When it is detected that the real-time power of the electrical device is greater than or equal to the limit power value and at the same time is within the limit band, send the power-off electronic signal in the protection signal.

[0053] A buzzer is also provided on the terminal socket. The indicator light includes a backup power supply and multiple indication colors, and the indication colors include red, blue, and green. The protection strategy is specifically as follows:

[0054] When the terminal socket is connected to the power line and the electrical equipment is powered on normally, the indicator light is displayed in green.

[0055] If the corresponding protection signal is a power limit signal, the indicator light is displayed in yellow and flashes at a frequency of three times per second, controlling the power line of the corresponding terminal socket to reduce the transmission power, so as to limit the power by reducing the output power of the corresponding terminal socket. If the real-time power of the electrical equipment increases at this time, power-off control is performed at the terminal socket.

[0056] If the corresponding protection signal is a power-off signal, control the power line corresponding to the terminal socket where the corresponding electrical equipment is located to disconnect the power supply to the terminal socket, start the backup power supply to supply power to the indicator light and display it in red, and at the same time control the indicator light to flash at a frequency of five times per second. If a danger signal is detected at the same time, control the buzzer to alarm.

[0057] The operation terminal is used to retrieve the positioning marker map and actively eliminate the fire protection message. A delay threshold is also configured in the fire protection unit. The fire protection strategy is specifically as follows:

[0058] If a danger signal is detected and power-off processing is performed, if the fire protection message is actively eliminated in the corresponding operation terminal within the delay threshold range, and no open fire is detected by the thermal sensor after the message is eliminated, a recovery signal is generated, controlling the corresponding terminal socket to restore the indicator light to be displayed in green and eliminating the buzzer alarm.

[0059] If the corresponding operation terminal does not actively eliminate the fire protection message within the delay threshold range, upload the fire protection message.

[0060] The fire protection message includes location information and route information. When generating the location information, retrieve the building network data table, traverse the corresponding floor information and indoor information in the building network data table, and at the same time obtain the corresponding number. According to the location information, retrieve the map tool, and take the fire brigade near the corresponding user with the danger signal as the starting point and the user with the corresponding danger signal as the end point to retrieve the navigation route map and assign it to the route information.

[0061] The fire protection strategy specifically further includes:

[0062] Retrieve the location of the fire brigade that has received and confirmed the fire message, generate a correction instruction based on the real-time location of the fire brigade, re-obtain the navigation route map according to the correction instruction, and compare the corrected navigation route map with the navigation route map corresponding to the location of the fire brigade in the fire message. If they are inconsistent, generate a correction route based on the corrected navigation route map and send it. If they are consistent, cancel the correction instruction.

[0063] Working principle and its effects:

[0064] Through the real-time monitoring by setting up monitoring processors among users in the corresponding area, with a terminal socket having a communication function, a potential signal is generated when the terminal socket is installed in the user, enabling the positioning unit in the monitoring processor to accurately obtain the location of the terminal socket, forming a positioning mark map for the corresponding user. The interactive indication is formed by the display indication of the indicator light to guide the working state of the terminal socket. The output of the terminal socket is monitored in real time under the action of the monitoring unit, and power limit or power-off protection is realized under the action of the protection unit in case of power safety problems. At the same time, the danger is prompted in cooperation with the indicator light. When power-off and danger signals occur, a fire message is generated and reported through the fire unit, so as to effectively monitor the power consumption of power equipment in real time and reduce the fire caused by power safety accidents due to overloading of equipment power consumption.

[0065] The above is only the preferred embodiment of the present invention, and the protection scope of the present invention is not limited to the above embodiments. All technical solutions falling within the idea of the present invention belong to the protection scope of the present invention. It should be noted that for those of ordinary skill in the art, several improvements and refinements made without departing from the principle of the present invention should also be regarded as within the protection scope of the present invention.

Claims

1. A new type of electrical safety monitoring system, characterized in that, Including: A monitoring processor and a terminal processor; The terminal processor includes a terminal socket, an identification unit and a prompting unit arranged in the terminal socket. The terminal socket is communicatively connected to the monitoring processor. The identification unit is used to identify whether the terminal socket is connected to a power supply line, and send a potential signal when connected to the power supply line. The prompting unit includes an indicator light, and the prompting unit controls the indicator light to indicate when receiving the potential signal; The monitoring processor includes a positioning module and a monitoring module. The positioning module includes a positioning unit and a networking unit. A layer construction strategy is configured in the positioning unit. The layer construction strategy includes retrieving the location of the user to whom the monitoring processor belongs, retrieving the floor plan scan of the corresponding user, and generating a positioning mark on the floor plan scan according to the floor plan scan and the location of the formed potential signal to form a positioning mark map. A networking strategy is configured in the networking unit. The networking strategy includes obtaining the locations of the monitoring processors that generate the positioning mark map with the same floor as a subnet, and generating a building network number table with the same building as the parent network. The building network number table includes floor information, indoor information and power information. The indoor information represents the location and user information of the user corresponding to the monitoring processor. The floor information represents the summary of the indoor information corresponding to the users on the same floor. The power information represents the total power consumption of the corresponding user; The monitoring module includes a monitoring unit, a protection unit and a fire protection unit. A protection threshold and a monitoring strategy are configured in the monitoring unit. The protection threshold represents the maximum values of the output power and the radio wave frequency. The monitoring strategy includes real-time monitoring of the radio wave frequency and output power of the electrical equipment connected to the corresponding terminal socket, and analyzing whether the protection threshold is reached. When the protection threshold is reached, a protection signal is generated. A protection strategy is configured in the protection unit. The protection strategy includes identifying the corresponding terminal socket and performing power limit or power-off protection when receiving the protection signal; A thermal sensor is further provided on the terminal socket. The thermal sensor is used to detect whether there is an open fire, and generate a danger signal when detecting an open fire. A fire protection strategy is configured in the fire protection unit. The fire protection strategy includes, when the protection unit performs a power-off protection, retrieving whether the terminal socket in the user corresponding to the monitoring processor emits a danger signal, and generating a fire protection message for fire alarm when receiving the danger signal.

2. A novel electrical safety monitoring system according to claim 1, characterized in that: A multi-bit identification strategy is further configured in the identification unit. The multi-bit identification strategy includes: Generating a power supply signal when the terminal socket is connected to an electrical equipment. When generating the power supply signal, it also identifies whether there are multiple radio wave signals at the location where the terminal socket generates the power supply signal. The radio wave signal represents the electrical signal fluctuation of the electrical equipment when accessing the power supply line. If multiple radio wave signals are detected at the plug position corresponding to a single terminal socket, the formed radio wave signals are counted, and the position of the radio wave signal is identified according to the time when the radio wave signal is generated when the electrical equipment is accessed.

3. A novel electrical safety monitoring system according to claim 2, characterized in that: The specific layer construction strategy is: Retrieving the indoor floor plan scan corresponding to any user on the same floor, and assigning the floor plan scans of the same floor to the monitoring processors corresponding to all users on the same floor; When generating a potential signal, the phase attribute corresponding to the access of the potential signal is also identified. The phase attribute includes single-phase electricity and three-phase electricity. According to the phase attribute, a socket model is formed and given to the corresponding positioning mark on the terminal socket in the figure.

4. A novel electrical safety monitoring system according to claim 3, characterized in that: The layer construction strategy specifically further includes: Retrieve whether multiple radio signals appear in the terminal socket of the user. When multiple radio signals are detected, an external connection model is formed based on the counted number of radio signals and the time difference when the corresponding radio signal type is formed, and the external connection model is given for identification on the corresponding accessed terminal socket.

5. A novel electrical safety monitoring system according to claim 4, characterized in that: The networking strategy is specifically: Number the positions of user buildings in the area, assign non-residential buildings as A and residential buildings as B, and sequentially number and name them according to the building numbers, sequentially named A1 - AN and B1 - BN and assign them to the floor information. Number the users in the same building according to the floor and the users and assign them to the user information in the indoor information.

6. A novel electrical safety monitoring system according to claim 5, characterized in that: The monitoring strategy is specifically: When the terminal socket detects an electrical device, detect the real-time power of the electrical device, generate a power fluctuation graph, retrieve whether a danger signal appears on the thermal sensor on the terminal socket. When no danger signal is detected, use the maximum real-time power corresponding to the power fluctuation graph as the lower limit, use the protection threshold as the limit power range, and use the maximum power value in the limit power range as the limit power value. At the same time, monitor the radio frequency of the corresponding electrical device and generate a radio wave graph according to the radio frequency. Determine the band mark corresponding to the maximum real-time power in the radio wave graph as the high-power band, fit the band at the limit power value with the high-power band, and calibrate the limit band; The protection signal includes a current-limiting electronic signal and a power-off electronic signal. When it is detected that the real-time power of the electrical device is within the limit power range and at the same time belongs to the range from the high-power band to the limit band, send the current-limiting electronic signal in the protection signal; When it is detected that the real-time power of the electrical device is greater than or equal to the limit power value and at the same time is in the limit band, send the power-off electronic signal in the protection signal.

7. A novel electrical safety monitoring system according to claim 6, characterized in that: A buzzer is also provided on the terminal socket. The indicator light includes a backup power supply and multiple indicator colors. The indicator colors include red, blue, and green. The protection strategy is specifically: When the terminal socket is connected to the power line and the electrical device is operating normally, the indicator light is displayed in green; If the corresponding protection signal is a current-limiting electronic signal, the indicator light is displayed in yellow and flashes at a frequency of three times per second, control the power line of the corresponding terminal socket to reduce the transmitted power, so as to limit the power of the output of the corresponding terminal socket. If the real-time power of the electrical device increases at this time, perform a power-off control on the terminal socket; If the corresponding protection signal is a power-off electronic signal, control the power line corresponding to the terminal socket where the electrical device is located to disconnect the power supply to the terminal socket, start the backup power supply to supply power to the indicator light and display it in red, and at the same time control the indicator light to flash at a frequency of five times per second. If a danger signal is detected at the same time, control the buzzer to alarm.

8. A novel electrical safety monitoring system according to claim 7, characterized in that: It further includes an operation terminal disposed on the user's wall, and the operation terminal is used to retrieve the positioning mark map and actively eliminate the fire protection message. A delay threshold time is also configured in the fire protection unit, and the fire protection strategy is specifically as follows: After detecting a danger signal and performing a power-off process, if it is detected within the delay threshold time that the fire protection message is actively eliminated in the corresponding user's operation terminal, and no open fire is detected by the thermal sensor after eliminating the message, a restoration signal is generated, and the corresponding terminal socket restoration indicator is controlled to display in green and the buzzer alarm is eliminated; If the corresponding operation terminal does not actively eliminate the fire protection message within the delay threshold time, the fire protection message is uploaded.

9. A novel electrical safety monitoring system according to claim 8, characterized in that: The fire protection message includes location information and route information. When generating the location information, the building network data table is retrieved, the corresponding floor information and indoor information in the building network data table are traversed, and the corresponding number is obtained at the same time. According to the location information, the map tool is retrieved, and starting from the fire brigade near the corresponding user where the danger signal appears and ending with the user corresponding to the danger signal, the navigation route map is retrieved and assigned to the route information.

10. A novel electrical safety monitoring system according to claim 9, characterized in that: The fire protection strategy specifically further includes: Retrieve the location of the fire brigade that has received and confirmed the fire protection message, generate a correction instruction according to the real-time location of the fire brigade, re-obtain the navigation route map according to the correction instruction, and compare the corrected navigation route map with the navigation route map corresponding to the location of the fire brigade in the fire protection message. If they are inconsistent, a corrected route is generated according to the corrected navigation route map and sent. If they are consistent, the correction instruction is eliminated.

Citation Information

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