CN111308186A - But distribution table of remote monitoring power consumption based on thing networking - Google Patents
But distribution table of remote monitoring power consumption based on thing networking Download PDFInfo
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- CN111308186A CN111308186A CN202010195721.8A CN202010195721A CN111308186A CN 111308186 A CN111308186 A CN 111308186A CN 202010195721 A CN202010195721 A CN 202010195721A CN 111308186 A CN111308186 A CN 111308186A
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01R—MEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
- G01R22/00—Arrangements for measuring time integral of electric power or current, e.g. electricity meters
- G01R22/06—Arrangements for measuring time integral of electric power or current, e.g. electricity meters by electronic methods
- G01R22/061—Details of electronic electricity meters
- G01R22/065—Details of electronic electricity meters related to mechanical aspects
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- Remote Monitoring And Control Of Power-Distribution Networks (AREA)
Abstract
The invention relates to the technical field of power equipment, and discloses a power distribution meter capable of remotely monitoring power consumption based on the Internet of things. According to the invention, the power supply management system can be used for paying fees, inquiring power consumption and using conditions of step electric quantity on the internet, so that a user cannot visually judge the using conditions of the electric quantity in the month, a good power utilization habit of the user can be developed, the electric power resource is saved, the intelligent electric meter, the leakage protection switch and the air switch are arranged in the outer shell together, and the movable covers are arranged on the front sides of the leakage protection switch and the air switch, so that the intelligent electric meter is convenient to open.
Description
Technical Field
The invention relates to the technical field of power equipment, in particular to a power distribution meter capable of remotely monitoring power consumption based on the Internet of things.
Background
With the progress of the times, the technology of the internet of things has made a rapid and drastic progress, and in the field of smart meters, the application of the technology of the internet of things becomes particularly important, in the times of the internet of things, the function of the smart meter is not better than that of a traditional meter, the current smart meter has a more intelligent function, and the smart meter not only has the function of basically calculating the electric quantity of the traditional meter, but also begins to develop towards the modes of data communication, multi-rate calculation and the like in order to adapt to the use of new energy, and the method is bound to become an inevitable trend of the electric power development of the internet of things.
The chinese patent discloses a smart electric meter for balanced power distribution (No. CN103267893B), this patent technology is through increasing the distribution converting unit that is used for gating any phase line in the three-phase transmission line to the output of single-phase power supply line, make smart electric meter when detecting single-phase user power consumption load, switch the power supply phase line of single-phase power supply line according to the control command that data processing unit sent, in order to balance the power consumption load of a plurality of single-phase users of low pressure side, thereby line loss on the three-phase transmission line has been reduced, the security of power supply is improved, reliability and power supply efficiency, let the electric wire netting high-efficient operation, but its intelligent degree is not high, can't pay fee on the net, power consumption inquiry and the service behavior of ladder electric quantity, and then lead to the user can't judge the electric quantity service behavior of this month directly perceiv. Therefore, those skilled in the art provide a power distribution meter capable of remotely monitoring power consumption based on the internet of things, so as to solve the problems in the background art.
Disclosure of Invention
The invention aims to provide a power distribution meter capable of remotely monitoring power consumption based on the Internet of things, so as to solve the problems in the background technology.
In order to achieve the purpose, the invention provides the following technical scheme:
the utility model provides a but distribution table of remote monitoring power consumption based on thing networking, includes the shell, the inboard upper end embedding of shell is provided with air switch, and the inboard one end embedding that is close to air switch of shell is provided with earth leakage protection switch, the inboard lower extreme that is located earth leakage protection switch and air switch of shell all is provided with the fastener, and the inboard lower extreme embedding of shell is provided with smart electric meter, the upper end of the front side of shell is rotated and is connected with movable cover, and the lower extreme fixed mounting of the front side of shell has the protection casing.
As a further scheme of the invention: the shell includes the shell body, the upper end of the front side of shell body is provided with the switch room, and the lower extreme of the front side of shell body is provided with the ammeter room, the equal fixedly connected with gudgeon of upside at the both ends of shell body, and the four corners that the front side of shell body is close to the ammeter room all sets up threaded hole.
As a still further scheme of the invention: first counter bores have all been seted up in the four corners of the rear side of switch room, a set of buckle of front side fixedly connected with of the lower extreme of switch room, and the rear side of the lower extreme of switch room is opened and is equipped with a set of line hole of going up, the second counter bore has all been seted up in the four corners of the rear side of ammeter room, and the lower extreme of ammeter room has seted up down the line hole.
As a still further scheme of the invention: the protection casing includes preceding housing, the front end embedding of preceding housing is provided with the observation window, and the square frame of outside fixedly connected with of the rear end of preceding housing, the mounting hole has all been seted up near the four corners of preceding housing to the front side of square frame.
As a still further scheme of the invention: the front cover shell is located on the front side of the ammeter chamber, the mounting holes correspond to the threaded holes one to one, and the square frame is fixedly connected with the outer shell through the inner sides of the mounting holes and the threaded holes in a screw penetrating mode.
As a still further scheme of the invention: smart electric meter fixed mounting is in the inboard in ammeter room, the equal fixed mounting of earth leakage protection switch, air switch and fastener is in the inboard of switch room.
As a still further scheme of the invention: the upper end of the movable cover is rotatably connected with the trunnion, a clamping groove matched with the buckle is formed in the lower end of the movable cover, and the buckle is embedded into the corresponding clamping groove.
As a still further scheme of the invention: the intelligent ammeter comprises a current transformer, a voltage transformer, a microprocessor, a current metering module, a safety module, a power failure and transmission module, a master control processor, a storage module, a clock module, a display module and a wireless communication module;
the current transformer is used for converting a large-current signal into a measurable small-current signal; the voltage transformer is used for converting a large voltage signal into a measurable small electric signal; the current metering module is used for converting the electric signals collected by the current transformer and the voltage transformer into digital signals and outputting the digital signals; the wireless communication module is used for transmitting data with the power supply management system through Ethernet, and the display module is used for displaying electric quantity; the clock module is used for providing real-time for the power supply management system and is used as a basis for counting, freezing and switching the rate of electric quantity; the storage module is used for storing electric quantity real-time data and historical data; the power failure and transmission module is used for controlling the power on and off of the leakage protection switch and the air switch, the safety module is used for guaranteeing the safety of data transmission, the microprocessor is used for processing signals of the electric quantity metering module, the safety module and the power failure and transmission module, and the main control processor is used for transmitting information of monitored power utilization data through the Ethernet and the power supply management system.
As a still further scheme of the invention: the electric quantity metering module comprises a multiplier, a P/F converter and a frequency divider, wherein the multiplier is used for converting electric signals converted by a current transformer and a voltage transformer into power signals, the P/F converter is used for shunting and converting input total direct current into direct current with different voltages required by each component so as to transmit the direct current to each component for use, and the frequency divider is used for transmitting various kinds of transmission to a display.
As a still further scheme of the invention: the power supply management system comprises a login service, a payment service, a balance display service, a power consumption display service and a message leaving service;
the registration/login service is used for registering or logging in an account number of a user on the internet, the payment is used for self-service online payment, the balance display service is used for displaying the amount of money in the account number, and the electricity consumption display service is used for displaying the current month, the historical electricity consumption, the electricity consumption of each stage of the current month, and the electricity consumption and the cost of each step.
Compared with the prior art, the invention has the beneficial effects that:
can collect fee on the net through the power management system, the in service behavior of power consumption inquiry and ladder electric quantity, and then make the electric quantity in service behavior that the user can't judge this month directly perceivedly, be favorable to the user to form good power consumption custom, save electric power resources, through smart electric meter, earth leakage protection switch and air switch install in the shell together, and earth leakage protection switch and air switch's front side is provided with movable cover, conveniently open, through set up the protection casing before smart electric meter, can be with the in service behavior of conveniently observing smart electric meter, can prevent again that smart electric meter is stolen, stronger practicality has.
Drawings
Fig. 1 is a schematic structural diagram of a power distribution meter capable of remotely monitoring power consumption based on the internet of things;
FIG. 2 is an assembly diagram of a power distribution meter capable of remotely monitoring power consumption based on the Internet of things;
FIG. 3 is a schematic structural diagram of a shell in a power distribution meter capable of remotely monitoring power consumption based on the Internet of things;
fig. 4 is a schematic structural diagram of a protective cover in a power distribution meter capable of remotely monitoring power consumption based on the internet of things;
FIG. 5 is a working principle diagram of a power distribution meter capable of remotely monitoring power consumption based on the Internet of things;
FIG. 6 is a structural composition diagram of a power distribution meter capable of remotely monitoring power consumption based on the Internet of things;
fig. 7 is a structural diagram of a power supply management system in a power distribution table capable of remotely monitoring power consumption based on the internet of things.
In the figure: 1. a housing; 11. an outer housing; 12. a wire feeding hole; 13. a trunnion; 14. a switch chamber; 15. a first counterbore; 16. buckling; 17. an electricity meter chamber; 18. a second counterbore; 19. a threaded hole; 10. a lower line hole; 2. a smart meter; 3. a leakage protection switch; 4. an air switch; 5. wire clamps; 6. a protective cover; 61. a front cover shell; 62. an observation window; 63. mounting holes; 64. a square frame; 7. a movable cover.
Detailed Description
Referring to fig. 1 to 7, in the embodiment of the invention, a power distribution meter capable of remotely monitoring power consumption based on the internet of things comprises a shell 1, an air switch 4 is embedded in the upper end of the inner side of the shell 1, an electric leakage protection switch 3 is embedded in one end, close to the air switch 4, of the inner side of the shell 1, wire clamps 5 are arranged at the lower ends of the electric leakage protection switch 3 and the air switch 4, an intelligent electric meter 2 is embedded in the lower end of the inner side of the shell 1, a movable cover 7 is rotatably connected to the upper end of the front side of the shell 1, and a protective cover 6 is fixedly installed at the lower end of the front side of the shell 1.
In fig. 3: the shell 1 includes the shell body 11, and the upper end of the front side of shell body 11 is provided with switch room 14, and the lower extreme of the front side of shell body 11 is provided with ammeter room 17, and the equal fixedly connected with trunnion 13 of the upside at the both ends of shell body 11, and the four corners that the front side of shell body 11 is close to ammeter room 17 all sets up threaded hole 19.
In fig. 3: first counter bore 15 has all been seted up in the four corners of the rear side of switch room 14, and a set of buckle 16 of front side fixedly connected with of the lower extreme of switch room 14, a set of line hole 12 of going up has been seted up to the rear side of the lower extreme of switch room 14, and second counter bore 18 has all been seted up in the four corners of the rear side of ammeter room 17, and line hole 10 has been seted up to the lower extreme of ammeter room 17.
In fig. 4: the protection casing 6 includes preceding housing 61, and the front end embedding of preceding housing 61 is provided with observation window 62, and the square frame 64 of the outside fixedly connected with of the rear end of preceding housing 61, the mounting hole 63 has all been seted up near the four corners of preceding housing 61 to the front side of square frame 64.
In fig. 3 and 4: the front cover casing 61 is located at the front side of the electric meter chamber 17, the mounting holes 63 correspond to the threaded holes 19 one by one, and the square frame 64 is fixedly connected with the outer casing 11 through screws penetrating through the mounting holes 63 and the inner sides of the threaded holes 19.
In fig. 1 and 3: smart electric meter 2 fixed mounting is in the inboard of ammeter room 17, and the equal fixed mounting of earth leakage protection switch 3, air switch 4 and fastener 5 is in the inboard of switch room 14.
In fig. 3 and 4: the upper end of the movable cover 7 is rotatably connected with the trunnion 13, the lower end of the movable cover 7 is provided with a clamping groove matched with the buckle 16, and the buckle 16 is embedded in the corresponding clamping groove.
In fig. 5 and 6: the intelligent ammeter 2 comprises a current transformer, a voltage transformer, a microprocessor, a current metering module, a safety module, a power failure and transmission module, a master control processor, a storage module, a clock module, a display module and a wireless communication module;
the current transformer is used for converting a large-current signal into a measurable small-current signal; the voltage transformer is used for converting a large voltage signal into a measurable small electric signal; the current metering module is used for converting the electric signals collected by the current transformer and the voltage transformer into digital signals and outputting the digital signals; the wireless communication module is used for transmitting data with the power supply management system through the Ethernet, and the display module is used for displaying electric quantity; the clock module is used for providing real-time for the power supply management system and is used as a basis for counting, freezing and switching the rate of electric quantity; the storage module is used for storing electric quantity real-time data and historical data; the power failure and transmission module is used for controlling the power on and off of the leakage protection switch 3 and the air switch 4, the safety module is used for guaranteeing the safety of data transmission, the microprocessor is used for processing signals of the electric quantity metering module, the safety module and the power failure and transmission module, and the main control processor is used for transmitting information of monitored power utilization data through the Ethernet and the power supply management system.
In fig. 5: the electric quantity metering module comprises a multiplier, a P/F converter and a frequency divider, wherein the multiplier is used for converting electric signals converted by a current transformer and a voltage transformer into power signals, the P/F converter is used for shunting and converting input total direct current into direct current with different voltages required by each component so as to transmit the direct current to each component for use, and the frequency divider is used for transmitting various kinds of transmission to a display.
In fig. 7: the power supply management system comprises a login service, a payment service, a balance display service, a power consumption display service and a message leaving service;
the registration/login service is used for registering or logging in an account number of a user on the internet, paying for self-service online payment, the balance display service is used for displaying the amount of money in the account number, and the power consumption display service is used for displaying the current month and historical power consumption, the power consumption of each stage of the current month, and the power consumption and the cost of each step.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to be within the technical scope of the present invention, and the technical solutions and the inventive concepts thereof according to the present invention are equivalent to or changed within the technical scope of the present invention.
Claims (10)
1. The utility model provides a but distribution table of remote monitoring power consumption based on thing networking, includes shell (1), its characterized in that, the inboard upper end embedding of shell (1) is provided with air switch (4), and the inboard one end embedding that is close to air switch (4) of shell (1) is provided with earth leakage protection switch (3), the inboard lower extreme that is located earth leakage protection switch (3) and air switch (4) of shell (1) all is provided with fastener (5), and the inboard lower extreme embedding of shell (1) is provided with smart electric meter (2), the upper end of the front side of shell (1) is rotated and is connected with movable cover (7), and the lower extreme fixed mounting of the front side of shell (1) has protection casing (6).
2. The power distribution meter capable of remotely monitoring electricity consumption based on the Internet of things is characterized in that the shell (1) comprises a shell body (11), a switch chamber (14) is arranged at the upper end of the front side of the shell body (11), an electricity meter chamber (17) is arranged at the lower end of the front side of the shell body (11), trunnions (13) are fixedly connected to the upper sides of the two ends of the shell body (11), and threaded holes (19) are formed in four corners, close to the electricity meter chamber (17), of the front side of the shell body (11).
3. The power distribution meter capable of remotely monitoring electricity consumption based on the Internet of things is characterized in that four corners of the rear side of the switch chamber (14) are provided with first counter bores (15), a group of buckles (16) are fixedly connected to the front side of the lower end of the switch chamber (14), a group of upper wire holes (12) are formed in the rear side of the lower end of the switch chamber (14), second counter bores (18) are formed in the four corners of the rear side of the electric meter chamber (17), and a lower wire hole (10) is formed in the lower end of the electric meter chamber (17).
4. The power distribution meter capable of remotely monitoring power consumption based on the Internet of things is characterized in that the protective cover (6) comprises a front cover shell (61), an observation window (62) is embedded into the front end of the front cover shell (61), a square frame (64) is fixedly connected to the outer side of the rear end of the front cover shell (61), and four corners, close to the front cover shell (61), of the front side of the square frame (64) are provided with mounting holes (63).
5. The power distribution meter capable of remotely monitoring power consumption based on the Internet of things is characterized in that the front cover shell (61) is located on the front side of the electric meter chamber (17), the mounting holes (63) correspond to the threaded holes (19) in a one-to-one mode, and the square frame (64) is fixedly connected with the outer shell (11) through the inner sides of the mounting holes (63) and the threaded holes (19) through screws.
6. The power distribution meter capable of remotely monitoring power consumption based on the Internet of things is characterized in that the intelligent power meter (2) is fixedly installed on the inner side of a power meter room (17), and the leakage protection switch (3), the air switch (4) and the wire clamp (5) are fixedly installed on the inner side of a switch room (14).
7. The power distribution meter capable of remotely monitoring power consumption based on the Internet of things is characterized in that the upper end of the movable cover (7) is rotatably connected with the trunnion (13), a clamping groove matched with the buckle (16) is formed in the lower end of the movable cover (7), and the buckle (16) is embedded into the corresponding clamping groove.
8. The power distribution meter capable of remotely monitoring power consumption based on the Internet of things is characterized in that the intelligent power meter (2) comprises a current transformer, a voltage transformer, a microprocessor, a current metering module, a safety module, a power transmission disconnection module, a master control processor, a storage module, a clock module, a display module and a wireless communication module;
the current transformer is used for converting a large-current signal into a measurable small-current signal; the voltage transformer is used for converting a large voltage signal into a measurable small electric signal; the current metering module is used for converting the electric signals collected by the current transformer and the voltage transformer into digital signals and outputting the digital signals; the wireless communication module is used for transmitting data with the power supply management system through Ethernet, and the display module is used for displaying electric quantity; the clock module is used for providing real-time for the power supply management system and is used as a basis for counting, freezing and switching the rate of electric quantity; the storage module is used for storing electric quantity real-time data and historical data; the power failure and transmission module is used for controlling the power on and off of the leakage protection switch (3) and the air switch (4), the safety module is used for guaranteeing the safety of data transmission, the microprocessor is used for processing signals of the electric quantity metering module, the safety module and the power failure and transmission module, and the main control processor is used for transmitting information of monitored power utilization data through the Ethernet and the power supply management system.
9. The power distribution meter capable of remotely monitoring power consumption based on the internet of things as claimed in claim 8, wherein the power metering module comprises a multiplier, a P/F converter and a frequency divider, the multiplier is used for converting electric signals converted by the current transformer and the voltage transformer into power signals, the P/F converter is used for shunting and converting input total direct current into direct current with different voltages required by each component so as to transmit the direct current to each component for use, and the frequency divider is used for transmitting various transmissions to the display.
10. The power distribution table capable of remotely monitoring power consumption based on the internet of things of claim 8, wherein the power supply management system comprises a login service, a payment service, a balance display service, a power consumption display service and a message leaving service;
the registration/login service is used for registering or logging in an account number of a user on the internet, the payment is used for self-service online payment, the balance display service is used for displaying the amount of money in the account number, and the electricity consumption display service is used for displaying the current month, the historical electricity consumption, the electricity consumption of each stage of the current month, and the electricity consumption and the cost of each step.
Priority Applications (1)
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CN202010195721.8A CN111308186A (en) | 2020-03-19 | 2020-03-19 | But distribution table of remote monitoring power consumption based on thing networking |
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CN202010195721.8A CN111308186A (en) | 2020-03-19 | 2020-03-19 | But distribution table of remote monitoring power consumption based on thing networking |
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CN202010195721.8A Withdrawn CN111308186A (en) | 2020-03-19 | 2020-03-19 | But distribution table of remote monitoring power consumption based on thing networking |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113791258A (en) * | 2021-10-22 | 2021-12-14 | 浙江万胜智能科技股份有限公司 | Automatic detection electric energy meter based on Internet of things |
-
2020
- 2020-03-19 CN CN202010195721.8A patent/CN111308186A/en not_active Withdrawn
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113791258A (en) * | 2021-10-22 | 2021-12-14 | 浙江万胜智能科技股份有限公司 | Automatic detection electric energy meter based on Internet of things |
CN113791258B (en) * | 2021-10-22 | 2022-05-24 | 浙江万胜智能科技股份有限公司 | Automatic detection electric energy meter based on Internet of things |
WO2023066380A1 (en) * | 2021-10-22 | 2023-04-27 | 浙江万胜智能科技股份有限公司 | Automatic-measurement electricity meter based on internet of things |
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