CN206281789U - Transmission line of electricity image monitoring equipment with circuit temp sensing function - Google Patents
Transmission line of electricity image monitoring equipment with circuit temp sensing function Download PDFInfo
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- CN206281789U CN206281789U CN201621332060.4U CN201621332060U CN206281789U CN 206281789 U CN206281789 U CN 206281789U CN 201621332060 U CN201621332060 U CN 201621332060U CN 206281789 U CN206281789 U CN 206281789U
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- transmission line
- electricity
- monitoring equipment
- power supply
- image monitoring
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Abstract
The utility model is related to a kind of transmission line of electricity image monitoring equipment with circuit temp sensing function, it is characterized in that, feature board, receiver board, temperature collect module, power supply, feature board, temperature collect module is fixed on transmission line of electricity, temperature collect module is in communication with each other with receiver board, and receiver board is in communication with each other with feature board again;Power supply provides supply of electric power.The utility model is rational in infrastructure, easy to use, and device integration is high, the advantages of system compatibility is good.Increase circuit thermometric on ripe transmission line of electricity image monitoring equipment platform, rate of not only reaching the standard grade is high, working stability, and further highlights the visual concept of transmission line of electricity.
Description
Technical field:
The utility model is related to a kind of transmission line of electricity image monitoring equipment with circuit temp sensing function.
Background technology:
Existing electric line image monitoring equipment and transmission line wire temperature measuring equipment, have the disadvantage that:
(1) simple IMAQ cannot monitor whether the state on circuit is abnormal.
(2) simple transmission line wire thermometric rate of reaching the standard grade is too low, it is impossible to really reflect line status.
(3) electric line image monitoring equipment and transmission line wire temperature measuring equipment system are incompatible, in system platform very
Hardly possible is unified, and user uses trouble.
Utility model content:
To solve the deficiency in above-mentioned technical problem, the purpose of this utility model is, there is provided one kind can overcome above-mentioned
Defect, meets the transmission line of electricity image monitoring equipment with circuit temp sensing function of use demand.
A kind of transmission line of electricity image monitoring equipment with circuit temp sensing function provided by the utility model, its feature
It is that feature board, receiver board, temperature collect module, power supply, feature board, temperature collect module are fixed on transmission line of electricity, and temperature is adopted
Collection module is in communication with each other with receiver board, and receiver board is in communication with each other with feature board again;Power supply provides supply of electric power.
Communicated by UART interface between described receiver board and feature board.
Described power supply includes solar panel, ferric phosphate lithium cell, super capacitor, solar panel connection phosphoric acid
Lithium iron battery and super capacitor;Ferric phosphate lithium cell and super capacitor provide supply of electric power, and ferric phosphate lithium cell and super
Voltage comparator circuit is set between electric capacity.
Described temperature collect module includes thermocouple temperature measurement probe, induction power supply and wireless communication module, described heat
Galvanic couple temperature probe is welded on aluminium base, and aluminium base is fixed on transmission line of electricity;The temperature number that thermocouple temperature measurement probe is measured
Receiver board is sent to according to by wireless communication module;Induction power supply by induced-current power taking pattern be thermocouple temperature measurement pop one's head in,
Wireless communication module power supply.
There is beryllium copper layer between described thermocouple temperature measurement probe and aluminium base.
The beneficial effects of the utility model are:
Rational in infrastructure, easy to use, device integration is high, the advantages of system compatibility is good.In ripe transmission line of electricity figure
As increasing circuit thermometric on monitoring device platform, rate of not only reaching the standard grade is high, working stability, and further highlight transmission line of electricity can
Depending on the concept changed.
Brief description of the drawings
Below in conjunction with the accompanying drawings and implementation method is described in further detail to the utility model:
Fig. 1 is the utility model frame principle figure;
Specific embodiment
The utility model as shown in Figure 1 includes feature board, receiver board, temperature collect module, power supply.
Feature board is designed using integrated chip solution, it is integrated take pictures, 2G/3G/4G transmission, the functional module, tool such as coding
Have the advantages that small volume, low in energy consumption, integrated level be high, scheme cost performance is high.Feature board is mainly realized taking pictures, image/video, data
Transfer function, by default automatic switching time and scheme of taking pictures, takes pictures and passes within the time period of setting to monitoring point
Defeated, remaining time is transferred to resting state, farthest reduces electric energy loss.
Receiver board plate is designed using the MCU of low-power consumption, and row data communication is entered by UART between feature board and receiver board plate.
Receiver board has radio communication function, and resting state, the start by set date under feature board control are entered when no data communicates after upper electricity
Monitoring whether there is data communication.
Temperature collect module is installed on transmission line of electricity, and electric energy is provided by sensing power taking unit.When storage electric energy reaches
During temperature collect module condition of work, temperature collect module starts wireless module as data transmit-receive passage, under MCU controls,
Temperature data is sent to receiver board, temperature data is delivered to feature board by receiver board by the uart being connected with feature board.
Using solar energy+ferric phosphate lithium cell+super capacitor power supply mode, solar panel by DC/DC change to
Super capacitor and ferric phosphate lithium cell charge.Because super capacitor has, charge efficiency is high, fireballing advantage, can quickly fill
It is full.Because super-capacitor voltage is higher than ferric phosphate lithium cell after being full of, so super capacitor is first under voltage comparator circuit control
First powered using super capacitor mode;LiFePO4 mode is automatically switched to when super-capacitor voltage is less than ferric phosphate lithium cell
Power supply.The life-span of super capacitor, up to hundreds of thousands, according to this mode of operation, can efficiently reduce filling for ferric phosphate lithium cell
Discharge time, extends the service life of battery, it is thus possible to the service life of extension device.
Low power dissipation design extends the working time of equipment, and technical grade design is substantially improved the environmental suitability of equipment.
Specific the utility model is the transmission of electricity image monitoring equipment based on high pass chip for cell phone MSM8916 schemes.
Power supply to equipment is realized by solar energy+ferric phosphate lithium cell+super capacitor power supply mode.Wherein solar panels
The armorplate glass of selection power 12WDC12V outputs.Ferric phosphate lithium cell selects 10AH6.4V, super capacitor to select monomer
The super capacitor 4 of 470F is used in series.
Feature board is by based on high pass chip for cell phone MSM8916 realizations, the integrated OTG on high pass chip for cell phone MSM8916
USB module, video encoding module and 4G wireless modules, support LTE standards, while supporting GPS location, integrated digital camera
It is 800W pixels.Feature board is automatic after starting to carry out correcting time in network, current system time clock is obtained, while being carried out with ftp server
Information exchange, obtains the information such as switching on and shutting down time, number of times of taking pictures, and is timed according to working method set in advance and takes pictures, passes
It is defeated, resting state is transferred to after the completion of work.Picture of taking pictures is jpeg format, can set different according to different customer demands
Picture size, resolution ratio etc..
Receiver board MCU has the advantages that low in energy consumption, aboundresources using STM8 8 chip microcontrollers of series.On receiver board
Integrated TI433MHz short-distance wireless module, with low in energy consumption, can dormancy, the advantages of can waking up in the air.
Temperature collect module uses induced-current power taking pattern, is popped one's head in by the thermocouple temperature measurement of particular design and obtains circuit
Temperature data and by being wirelessly sent to receiver board.
It, to understand the utility model example, and is not to the utility model embodiment party that above-mentioned case study on implementation is only
The restriction of formula.To belonging to the obvious change or change still in the utility model that spirit of the present utility model amplifies out
Protection domain in.
Claims (5)
1. a kind of transmission line of electricity image monitoring equipment with circuit temp sensing function, it is characterized in that, including feature board, receiver board,
Temperature collect module, power supply, feature board, temperature collect module are fixed on transmission line of electricity, temperature collect module and receiver board phase
Mutual communication, receiver board is in communication with each other with feature board again;Power supply provides supply of electric power.
2. the transmission line of electricity image monitoring equipment with circuit temp sensing function according to claim 1, it is characterized in that, it is described
Receiver board and feature board between communicated by UART interface.
3. the transmission line of electricity image monitoring equipment with circuit temp sensing function according to claim 1, it is characterized in that, it is described
Power supply include solar panel, ferric phosphate lithium cell, super capacitor, solar panel connection ferric phosphate lithium cell and super
Level electric capacity;Ferric phosphate lithium cell and super capacitor provided and set between supply of electric power, and ferric phosphate lithium cell and super capacitor
Voltage comparator circuit.
4. the transmission line of electricity image monitoring equipment with circuit temp sensing function according to claim 1, it is characterized in that, it is described
Temperature collect module include thermocouple temperature measurement probe, induction power supply and wireless communication module, described thermocouple temperature measurement probe
It is welded on aluminium base, aluminium base is fixed on transmission line of electricity;The temperature data that thermocouple temperature measurement probe is measured passes through channel radio
Letter module is sent to receiver board;Induction power supply is thermocouple temperature measurement probe, wireless communication module by induced-current power taking pattern
Power supply.
5. the transmission line of electricity image monitoring equipment with circuit temp sensing function according to claim 4, it is characterized in that, it is described
Thermocouple temperature measurement probe and aluminium base between have beryllium copper layer.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201621332060.4U CN206281789U (en) | 2016-12-07 | 2016-12-07 | Transmission line of electricity image monitoring equipment with circuit temp sensing function |
Applications Claiming Priority (1)
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CN201621332060.4U CN206281789U (en) | 2016-12-07 | 2016-12-07 | Transmission line of electricity image monitoring equipment with circuit temp sensing function |
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CN206281789U true CN206281789U (en) | 2017-06-27 |
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CN201621332060.4U Active CN206281789U (en) | 2016-12-07 | 2016-12-07 | Transmission line of electricity image monitoring equipment with circuit temp sensing function |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107367345A (en) * | 2017-08-31 | 2017-11-21 | 北京蓝海华业科技股份有限公司 | A kind of system for detecting transmission line of electricity stress state |
CN107820224A (en) * | 2017-10-31 | 2018-03-20 | 山东信通电子股份有限公司 | Wire temperature measuring equipment based on NB iot technologies |
-
2016
- 2016-12-07 CN CN201621332060.4U patent/CN206281789U/en active Active
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107367345A (en) * | 2017-08-31 | 2017-11-21 | 北京蓝海华业科技股份有限公司 | A kind of system for detecting transmission line of electricity stress state |
CN107367345B (en) * | 2017-08-31 | 2023-08-22 | 北京蓝海华业科技股份有限公司 | System for detecting stress state of power transmission line |
CN107820224A (en) * | 2017-10-31 | 2018-03-20 | 山东信通电子股份有限公司 | Wire temperature measuring equipment based on NB iot technologies |
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