CN207636189U - A kind of anti-mountain fire device of transmission line of electricity infrared thermal imaging - Google Patents

A kind of anti-mountain fire device of transmission line of electricity infrared thermal imaging Download PDF

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Publication number
CN207636189U
CN207636189U CN201721807515.8U CN201721807515U CN207636189U CN 207636189 U CN207636189 U CN 207636189U CN 201721807515 U CN201721807515 U CN 201721807515U CN 207636189 U CN207636189 U CN 207636189U
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China
Prior art keywords
vertical beam
babinet
thermal imaging
support
fagging
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CN201721807515.8U
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Inventor
严澍
郑瑜
黄登煌
詹光星
陈春剑
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Fujian Hoshing Hi-Tech Industrial Ltd
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Fujian Hoshing Hi-Tech Industrial Ltd
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Abstract

The utility model is related to a kind of anti-mountain fire devices of transmission line of electricity infrared thermal imaging, including microclimate monitoring device, binocular thermal imaging holder instrument, anti- mountain fire control device, solar power supply apparatus, first supporting rack and the second supporting rack, anti- mountain fire control device includes host babinet and master control borad, power management chip and wireless router, master control borad is separately connected microclimate monitoring device, infrared thermal imaging and visible light binocular camera, solar energy tracking sensor, holder, power management chip and wireless router, solar power supply apparatus includes solar panel, secondary battery jar and accumulator group, solar panel is erected at the top of secondary battery jar, and connect accumulator group, accumulator group connects power management chip.Compared with prior art, the utility model have the characteristics that reliability height, wide coverage, it is at low cost, facilitate installation maintenance, be particularly adapted to aerial cable channel anti-mountain fire monitoring.

Description

A kind of anti-mountain fire device of transmission line of electricity infrared thermal imaging
Technical field
The utility model is related to transmission line of electricity fields, are filled more particularly, to a kind of anti-mountain fire of transmission line of electricity infrared thermal imaging It sets.
Background technology
Transmission line of electricity forest fire has the randomness that sudden, disaster occurs, can bring about great losses in the short time Feature.Therefore forest fires are found and is put out rapidly, just become the transmission line of electricity forest zone fireproof most important thing.Shorten what fire was scouted Time, prevent fire spreading and it is out of control be urgent problem.
Existing anti-mountain fire device incapability source control, each equipment of special mounting status requirement of anti-mountain fire device is low work( Consumption design, while needing to save energy as far as possible, original system generally uses timing inspection and closing, exists in the down periods Monitor blind area.
Existing anti-mountain fire device is burnt protection without camera solar control, and when assembly monitor mountain fire, it is straight to certainly exist daylight The problem of penetrating, thermal infrared imaging camera un-cooled FPA array in direct sunlight, the service life can strongly reduce, and influence existing Field uses.Current each producer does not have effective solution scheme for this problem.Side according to morning or afternoon without monitoring Formula avoids the occurrence of this problem, can cause monitoring blind area.
Infrared thermal imaging:Any object all externally carries out electromagenetic wave radiation according to the difference of temperature.Wavelength is 2.0 ~ 1000 The part of micron is known as Thermal Infra-Red.Thermal infrared imaging can reflect object by being imaged to object to the sensitive CCD of thermal infrared The temperature field in body surface face.Thermal imaging feature for power equipment is:Local temperature rise is high, and easy-to-use thermal infrared imager is found, if not Energy timely processing is worse off fast, easily forms accident, cause damages.
Micro weather station:Pass through capacitive sensor element Relative Humidity Measuring.Use accurate measurement by capacitance element Measure temperature.Using 24GHz Doppler radars(Doppler radar)The mode of single rain/snow dropleting speed is measured to measure Precipitation intensity.By being associated with for dropleting speed and size, precipitation and precipitation intensity are calculated.Different dropleting speeds determine not Same type of precipitation(Rain/snow).Non-maintaining measuring device keeps tipping bucket type and spoon type head cover easily operated.Ultrasonic sensor technology Commonly used in being used to survey wind.Measurement data is in the form of standard agreement, for further measuring.
Utility model content
The purpose of this utility model is exactly to provide a kind of transmission line of electricity to overcome the problems of the above-mentioned prior art The anti-mountain fire device of infrared thermal imaging, have the characteristics that reliability height, wide coverage, it is at low cost, facilitate installation maintenance, it is especially suitable It should be monitored in the anti-mountain fire in aerial cable channel.
The purpose of this utility model can be achieved through the following technical solutions:
A kind of anti-mountain fire device of transmission line of electricity infrared thermal imaging, including microclimate monitoring device, binocular thermal imaging holder instrument, Anti- mountain fire control device, solar power supply apparatus, the first supporting rack and the second supporting rack, first supporting rack and the second support Parallel above and below frame to be erected on shaft tower, the microclimate monitoring device is set on the second supporting rack, the binocular thermal imaging holder Instrument includes infrared thermal imaging and visible light binocular camera and solar energy tracking sensor, and the infrared thermal imaging and visible light are double Lens camera is set to by holder on the second supporting rack, is equipped with and is hidden above the camera lens of infrared thermal imaging and visible light binocular camera Positive plate, the solar energy tracking sensor are set on sunshading board and positioned at infrared thermal imaging and the camera lenses of visible light binocular camera Front, the anti-mountain fire control device include the host babinet being set on the second supporting rack and the master control in mainframe box body Plate, power management chip and wireless router, the master control borad are separately connected microclimate monitoring device, infrared thermal imaging and visible Light binocular camera, solar energy tracking sensor, holder, power management chip and wireless router, the solar powered dress The secondary battery jar including solar panel, on the first supporting rack and the accumulator group in accumulator box body are set, The solar panel is erected at the top of secondary battery jar, and connects accumulator group, and the accumulator group connects power supply pipe Chip is managed, and connects power interface, infrared thermal imaging and the visible light binocular of microclimate monitoring device through a power switch respectively The control terminal of the power interface of the power interface of video camera, the power interface of holder and wireless router, each power switch is equal Connect master control borad.
The longitudinal section of first supporting rack and the second supporting rack is in inverted l shape, and the first supporting rack includes being connected First support beam and the first support vertical beam, the second supporting rack include the second support beam being connected and the second support vertical beam.
The microclimate monitoring device includes atmospherium, atmospherium pedestal, atmospherium mounting base, the installation of the first inverted L shape Plate and the first inverted L shape fagging, the atmospherium mounting base is set in the second support beam, and atmospherium mounting base and second Support beam is perpendicular, and the atmospherium pedestal is set to the front end of atmospherium mounting base, and the atmospherium is set to atmospherium bottom On seat, and master control borad is connected, the power interface of atmospherium connects accumulator group, the first inverted L shape installation through a power switch Plate includes the first installation crossbeam being connected and the first installation vertical beam, the bottom of the first installation crossbeam and atmospherium mounting base Face connects, and the first installation vertical beam is close to the leading flank of the second support vertical beam, and the first inverted L shape fagging includes being connected First fagging crossbeam and the first fagging vertical beam, the first fagging crossbeam are close to the bottom surface of the second support beam and are pacified with atmospherium Bottom plate connection is filled, the first fagging vertical beam is close to the trailing flank of the second support vertical beam and is connect with the first installation vertical beam.
Tilting rack is equipped with one first support cant beam between the first fagging crossbeam and the first fagging vertical beam.
The binocular thermal imaging holder instrument further includes holder pedestal, video camera mounting base, the second inverted L shape mounting plate and Two inverted L shape faggings, the video camera mounting base are set in the second support beam, and video camera mounting base and the second support are horizontal Beam is perpendicular, and the holder pedestal is set to the front end of video camera mounting base, and the holder is set on holder pedestal, and described second Inverted L shape mounting plate includes the second installation crossbeam being connected and the second installation vertical beam, and the second installation crossbeam is pacified with video camera The bottom surface connection of bottom plate is filled, the second installation vertical beam is close to the leading flank of the second support vertical beam, the second inverted L shape fagging packet The the second fagging crossbeam and the second fagging vertical beam being connected are included, the second fagging crossbeam is close to the bottom surface of the second support beam simultaneously It is connect with video camera mounting base, the second fagging vertical beam is close to the trailing flank of the second support vertical beam and installs vertical beam with second Connection.
Tilting rack is equipped with one second support cant beam between the second fagging crossbeam and the second fagging vertical beam.
The anti-mountain fire control device further includes two host babinet mounting assemblies, and each host babinet mounting assembly is wrapped A second L-type babinet mounting and fixing support and two the second inverted L shape babinet platform slings are included, each second inverted L shape babinet platform sling wraps Include the second platform sling crossbeam and the second platform sling vertical beam being connected, second support beam be located at two the second platform sling crossbeams it Between, and the end of two the second platform sling crossbeams is connected, the second support vertical beam is located between two the second platform sling vertical beams, and The end of two the second platform sling vertical beams is connected, and the second L-type babinet mounting and fixing support includes the second of orthogonal connection Babinet installs front side board and the second babinet installs back side panel, and the mainframe box body is located at the leading flank of the second support vertical beam, described Second babinet installation front side board is connect with the one side of host babinet, and the second babinet installation back side panel is supported with positioned at second Second platform sling vertical beam of vertical beam leading flank connects.
The solar power supply apparatus further includes two secondary battery jar mounting assemblies, each secondary battery jar mounting assembly Include a first L-type babinet mounting and fixing support and two the first inverted L shape babinet platform slings, each first inverted L shape babinet platform sling Include the first platform sling crossbeam and the first platform sling vertical beam being connected, first support beam is located at two the first platform sling crossbeams Between, and the end of two the first platform sling crossbeams is connected, the first support vertical beam is located between two the first platform sling vertical beams, And the end of two the first platform sling vertical beams is connected, the first L-type babinet mounting and fixing support includes the of orthogonal connection One babinet installs front side board and the first babinet installs back side panel, and the secondary battery jar is located at the leading flank of the first support vertical beam, The one side of first babinet installation front side board and secondary battery jar connects, the first babinet installation back side panel with positioned at the The first platform sling vertical beam connection of one support vertical beam leading flank.
The master control borad is connected with audible-visual annunciator.
It is equipped with handle on the top surface of the host babinet and secondary battery jar.
Compared with prior art, the utility model has the following advantages:
(1)Master control borad using infrared thermal imaging and visible light binocular camera can automatic identification fire point, positioning mountain fire position It sets, and accurately takes pictures and record a video, by wireless router by data remote to state's net standard background.
(2)The intensity of illumination that master control borad is acquired according to solar energy tracking sensor sends out holder the order of position adjustment, The angle of binocular camera is effectively protected video camera to avoid camera lens by sunlight direct irradiation on control holder, Improve service life.
(3)Master control borad can obtain the energy state of accumulator group using power management chip, and according to energy state control The working condition of power switch processed.The rainfall product data etc. that master control borad can also be acquired according to atmospherium, to control power switch Working condition, be better achieved equipment intelligent energy distribution and management.Use energy management, can according to season, when Between, weather carries out smart allocation, provides maximum usage time to the user, reduces monitoring blind area.
(4)For specific environment, there is the occasion of particular/special requirement to use installation dimension(Such as:110KV or more transmits electricity Line steel tower)The fire point monitoring of upper monitoring power transmission line corridor, uses various auxiliary stands, babinet etc. and ensures various types of hardware dress Set the stabilization of installation, wherein the installation fixation of the first inverted L shape mounting plate and the first inverted L shape fagging and the second inverted L shape mounting plate Installation fixation with the second inverted L shape fagging is all made of " shape of chinese word Ji " buckle structure, and installation is simple and convenient.
(5)It splits into using proper host babinet and secondary battery jar, installation carrying is more convenient, while host It is equipped with handle easy to operation on the top surface of babinet and secondary battery jar.
(6)It is simple in structure, it is easy for construction, be conducive to batch micro operations and the application of package unit.
Description of the drawings
Fig. 1 is the overall structure diagram of the anti-mountain fire device of the utility model transmission line of electricity infrared thermal imaging;
Fig. 2 is the anti-mountain fire device internal circuit connection diagram of the utility model transmission line of electricity infrared thermal imaging;
Fig. 3 is the forward sight solid signal of transmission line of electricity infrared thermal imaging anti-mountain fire device when not installing solar panel Figure;
Fig. 4 is the rear perspective signal of transmission line of electricity infrared thermal imaging anti-mountain fire device when not installing solar panel Figure.
In figure, 1, microclimate monitoring device, 11, atmospherium, 12, atmospherium pedestal, 13, atmospherium mounting base, 14, One inverted L shape mounting plate, the 141, first installation crossbeam, the 142, first installation vertical beam, the 15, first inverted L shape fagging, the 151, first fagging Crossbeam, the 152, first fagging vertical beam, the 153, first support cant beam;
2, binocular thermal imaging holder instrument, 21, infrared thermal imaging and visible light binocular camera, 22, solar energy tracking sensing Device, 23, holder, 24, sunshading board, 25, holder pedestal, 26, video camera mounting base, the 27, second inverted L shape mounting plate, 271, Two installation crossbeams, the 272, second installation vertical beam, the 28, second inverted L shape fagging, the 281, second fagging crossbeam, the 282, second fagging are perpendicular Beam, the 283, second support cant beam;
3, anti-mountain fire control device, 31, host babinet, 32, master control borad, 33, power management chip, 34, wireless router, 35, the second L-type babinet mounting and fixing support, the 351, second babinet install front side board, and the 352, second babinet installs back side panel, and 36, the Two inverted L shape babinet platform slings, the 361, second platform sling crossbeam, the 362, second platform sling vertical beam;
4, solar power supply apparatus, 41, solar panel, 42, secondary battery jar, 43, accumulator group, 44, power supply opens It closes, the 45, first L-type babinet mounting and fixing support, the 451, first babinet installation front side board, the 452, first babinet installation back side panel, 46, First inverted L shape babinet platform sling, the 461, first platform sling crossbeam, the 462, first platform sling vertical beam;
5, the first supporting rack, the 51, first support beam, the 52, first support vertical beam;
6, the second supporting rack, the 61, second support beam, the 62, second support vertical beam;
7, audible-visual annunciator, 8, handle, 9, mounting hole, 10, mushroom antenna.
Specific implementation mode
The utility model is described in detail in the following with reference to the drawings and specific embodiments.The present embodiment is with the utility model Implemented premised on technical solution, gives detailed embodiment and specific operating process, but the guarantor of the utility model Shield range is not limited to following embodiments.
As Figure 1-Figure 4, the anti-mountain fire device of a kind of transmission line of electricity infrared thermal imaging, including it is microclimate monitoring device 1, double Mesh thermal imaging holder instrument 2, anti-mountain fire control device 3, solar power supply apparatus 4, the first supporting rack 5 and the second supporting rack 6, first Supporting rack 5 is parallel with the second about 6 supporting rack to be erected on shaft tower, and solar power supply apparatus 4 is arranged on the first supporting rack 5, Binocular thermal imaging holder instrument 2, anti-mountain fire control device 3, microclimate monitoring device 1 are set in sequence in successively on the second supporting rack 6, The longitudinal section of first supporting rack 5 and the second supporting rack 6 is in inverted l shape, and the first supporting rack 5 includes the first support cross being connected It includes the second support beam 61 and second support vertical beam 62 being connected that beam 51 and first, which supports vertical beam 52, the second supporting rack 6,.
Microclimate monitoring device 1 is transferred to anti-for weather informations such as real-time monitoring temperature, humidity, rainfall, wind speed Master control borad 32 in mountain fire control device 3.Microclimate monitoring device 1 includes atmospherium 11, atmospherium pedestal 12, atmospherium installation Bottom plate 13, the first inverted L shape mounting plate 14 and the first inverted L shape fagging 15, atmospherium mounting base 13 are set to the second support beam 61 On, and atmospherium mounting base 13 and the second support beam 61 are perpendicular, atmospherium pedestal 12 is set to atmospherium mounting base 13 Front end, atmospherium 11 be set to atmospherium pedestal 12 on, the first inverted L shape mounting plate 14 include be connected first installation crossbeam 141 and first install vertical beam 142, and the first installation crossbeam 141 is connect with the bottom surface of atmospherium mounting base 13, the first installation vertical beam 142 are close to the leading flank of the second support vertical beam 62, and the first inverted L shape fagging 15 includes the first fagging crossbeam 151 being connected and the One fagging vertical beam 152, the first fagging crossbeam 151 are close to the bottom surface of the second support beam 61 and are connected with atmospherium mounting base 13 It connects, the first fagging vertical beam 152 is close to the trailing flank of the second support vertical beam 62 and is connect with the first installation vertical beam 142, the first fagging Tilting rack is equipped with a first support cant beam 153 for reinforcement structure stability between crossbeam 151 and the first fagging vertical beam 152. It is equipped with for detachable connection on atmospherium mounting base 13, the first inverted L shape mounting plate 14 and the first inverted L shape fagging 15 Mounting hole 9.Wherein, the signal of atmospherium 11 is WXA100, is integrated with totally five kinds of wind speed, wind direction, temperature, humidity, atmospheric pressure The measurement of parameter, have the characteristics that it is compact-sized, without any moving parts, sturdy and durable, and be not required to safeguard and live school It is accurate.The installation of first inverted L shape mounting plate 14 and the first inverted L shape fagging 15, which is fixed, uses " shape of chinese word Ji " buckle structure, and installation is simple It is convenient.
Binocular thermal imaging holder instrument 2 includes infrared thermal imaging and visible light binocular camera 21, solar energy tracking sensor 22, holder pedestal 25, video camera mounting base 26, the second inverted L shape mounting plate 27 and the second inverted L shape fagging 28, video camera installation Bottom plate 26 is set in the second support beam 61, and video camera mounting base 26 and the second support beam 61 are perpendicular, holder pedestal 25 are set to the front end of video camera mounting base 26, and holder 23 is set on holder pedestal 25, and infrared thermal imaging and visible light binocular are taken the photograph Camera 21 is set on holder 23, and sunshading board 24, the sun are equipped with above the camera lens of infrared thermal imaging and visible light binocular camera 21 Energy tracking transducer 22 is set on sunshading board 24 and in front of the camera lens of infrared thermal imaging and visible light binocular camera 21, the Two inverted L shape mounting plates 27 include be connected second installation crossbeam 271 and second install vertical beam 272, second installation crossbeam 271 with The bottom surface of video camera mounting base 26 connects, and the second installation vertical beam 272 is close to the leading flank of the second support vertical beam 62, the second inverted L Type fagging 28 includes the second fagging crossbeam 281 and the second fagging vertical beam 282 being connected, and the second fagging crossbeam 281 is close to second The bottom surface of support beam 61 is simultaneously connect with video camera mounting base 26, and the second fagging vertical beam 282 is close to the second support vertical beam 62 Trailing flank is simultaneously connect with the second installation vertical beam 272, and tilting rack is equipped between the second fagging crossbeam 281 and the second fagging vertical beam 282 One the second support cant beam 283 for reinforcement structure stability.Video camera mounting base 26, the second inverted L shape mounting plate 27 and The mounting hole 9 for detachable connection is equipped on two inverted L shape faggings 28.Wherein, solar energy tracking sensor 22 can be used Photosensitive part, solar energy tracking sensor 22 are fixed on video camera top, and photosensitive part is consistent with camera direction, photosensitive Component incudes sunlight by aperture, and the direction of aperture and the direction of video camera are consistent, when sun light direct beam to video camera mirror When head, photosensitive part can sense light intensity simultaneously.Solar energy tracking sensor 22 judges whether it is direct sunlight according to light intensity, And intensity signal is sent to master control borad 32.The red binocular camera shooting in Haikang can be used in infrared thermal imaging and visible light binocular camera 21 Machine.The installation of second inverted L shape mounting plate 27 and the second inverted L shape fagging 28, which is fixed, uses " shape of chinese word Ji " buckle structure, and installation is simple It is convenient.
Anti- mountain fire control device 3 includes 31, the two host babinet mounting assemblies of host babinet being set on the second supporting rack 6 And master control borad 32, power management chip 33 and wireless router 34 in host babinet 31, each host babinet installation Component includes a second L-type babinet mounting and fixing support 35 and two the second inverted L shape babinet platform slings 36, each second inverted L shape Babinet platform sling 36 includes the second platform sling crossbeam 361 and the second platform sling vertical beam 362 being connected, and the second support beam 61 is located at two Between a second platform sling crossbeam 361, and the end of two the second platform sling crossbeams 361 is connected, and the second support vertical beam 62 is located at two Between a second platform sling vertical beam 362, and the end of two the second platform sling vertical beams 362 is connected, the second L-type babinet mounting and fixing support 35 include that the second babinet installation front side board 351 of orthogonal connection and the second babinet install back side panel 352, host babinet 31 In the leading flank of the second support vertical beam 62, the second babinet installation front side board 351 is connect with the one side of host babinet 31, the second case Body is installed back side panel 352 and is connect with the second platform sling vertical beam 362 positioned at the second support 62 leading flank of vertical beam, and master control borad 32 connects respectively Connect atmospherium 11, infrared thermal imaging and visible light binocular camera 21, solar energy tracking sensor 22, holder 23, power management Chip 33 and wireless router 34, the connection of master control borad 32 also has audible-visual annunciator 7, it can be achieved that mountain fire is alarmed.Second L-type babinet is pacified The mounting hole 9 for detachable connection is equipped on dress fixed frame 35 and two the second inverted L shape babinet platform slings 36.Power management Chip 33 is monitored the power supplies state such as accumulator electric-quantity, cell voltage, charging and discharging state, operating temperature, and uploads Relevant information is also powered to master control borad 32 to master control borad 32.Wireless router 34 is set there are two mushroom antenna 10.
Solar power supply apparatus 4 includes solar panel 41, the secondary battery jar 42 on the first supporting rack 5, sets In accumulator group 43 and two secondary battery jar mounting assemblies in secondary battery jar 42, each secondary battery jar mounting assembly is equal Including a first L-type babinet mounting and fixing support 45 and two the first inverted L shape babinet platform slings 46, each first inverted L shape babinet is hung Plate 46 includes the first platform sling crossbeam 461 and the first platform sling vertical beam 462 being connected, and the first support beam 51 is located at two first Between platform sling crossbeam 461, and the end of two the first platform sling crossbeams 461 is connected, and the first support vertical beam 52 is located at two first Between platform sling vertical beam 462, and the end of two the first platform sling vertical beams 462 is connected, and the first L-type babinet mounting and fixing support 45 includes The first babinet installation front side board 451 of orthogonal connection and the first babinet install back side panel 452, and secondary battery jar 42 is located at the The leading flank of one support vertical beam 52, the first babinet installation front side board 451 are connect with the one side of secondary battery jar 42, the first babinet Installation back side panel 452 is connect with the first platform sling vertical beam 462 positioned at the first support 52 leading flank of vertical beam, and solar panel 41 is in 45 degree of corner brackets are located at the top of secondary battery jar 42, and connect accumulator group 43, and accumulator group 43 connects power management chip 33, And the power interface of atmospherium 11, the electricity of infrared thermal imaging and visible light binocular camera 21 are connected through a power switch 44 respectively The control terminal of the power interface of source interface, the power interface of holder 23 and wireless router 34, each power switch 44 is all connected with Master control borad 32.It is equipped with for detachable on first L-type babinet mounting and fixing support 45 and two the first inverted L shape babinet platform slings 46 The mounting hole 9 of connection.Solar power supply apparatus 4 has burning voltage, the function of current, has multistage lightning protection, charge protection, electric discharge Defencive function has the management functions such as storage battery auto-float-charging, overvoltage protection, under-voltage protection, overcurrent protection, and has temperature Change adjust automatically charging voltage function.
Solid line indicates that data flow, chain-dotted line indicate power supply flow direction in Fig. 2.The anti-mountain fire device of transmission line of electricity infrared thermal imaging For specific environment is needed, there is the occasion of particular/special requirement to use installation dimension(Such as:Transmission line of electricity (110KV or more) iron Tower)The fire point monitoring of upper monitoring power transmission line corridor, integrates various types of hardware device, realizes acquisition, alarm, teletransmission, the exhibition of data The functions such as show, while using various auxiliary stands, babinet etc. that the stabilization for ensureing the installation of various types of hardware device, transmission line of electricity are infrared The anti-mountain fire device operation principle of thermal imaging is specific as follows:
1, master control borad 32 using infrared thermal imaging and visible light binocular camera 21 can automatic identification fire point, position mountain fire Position, and accurately take pictures and record a video, by wireless router 34 by data remote to state's net standard background.
2, the intensity of illumination that master control borad 32 is acquired according to solar energy tracking sensor 22 sends out position adjustment to holder 23 Order controls the angle of binocular camera on holder 23, until the intensity signal that solar energy tracking sensor 22 is fed back is detached from sun Light direct beam value range is effectively protected video camera, improves service life to avoid camera lens by sunlight direct irradiation.
3, whole device is powered by solar panel 41, and master control borad 32 can be obtained using power management chip 33 The energy state of accumulator group 43 is taken, and controls the working condition of power switch 44 according to energy state, when accumulator group 43 supplies When not enough power supply, then part energy consumption device is suitably closed.The rainfall product data that master control borad 32 can also be acquired according to atmospherium 11 Deng to control the working condition of power switch 44, when encountering the rainy day, the devices such as binocular camera can be closed, preferably in fact The intelligent energy distribution and management of existing equipment.Energy management is used, can be according to season, time, weather carries out smart allocation, It provides maximum usage time to the user, reduces monitoring blind area.
It splits into using proper host babinet 31 and secondary battery jar 42, installation carrying is more convenient, main simultaneously Handle 8 easy to operation is equipped on the top surface of box body 31 and secondary battery jar 42.Babinet is all using stainless steel, tool There is high-protection level, and has waterproof and dampproof measure.Protected by babinet, equipment have strong antijamming capability, anti-strong electromagnetic radiation, Lightning impulse, high-protection level.
It is simple in structure, it is easy for construction, be conducive to batch micro operations and the application of package unit.

Claims (10)

1. a kind of anti-mountain fire device of transmission line of electricity infrared thermal imaging, which is characterized in that including microclimate monitoring device(1), binocular Thermal imaging holder instrument(2), anti-mountain fire control device(3), solar power supply apparatus(4), the first supporting rack(5)With the second supporting rack (6), first supporting rack(5)With the second supporting rack(6)It is parallel up and down to be erected on shaft tower, the microclimate monitoring device (1)Set on the second supporting rack(6)On, the binocular thermal imaging holder instrument(2)Including infrared thermal imaging and visible light binocular camera shooting Machine(21)With solar energy tracking sensor(22), the infrared thermal imaging and visible light binocular camera(21)Pass through holder(23) Set on the second supporting rack(6)On, infrared thermal imaging and visible light binocular camera(21)Camera lens above be equipped with sunshading board(24), The solar energy tracking sensor(22)Set on sunshading board(24)Go up and be located at infrared thermal imaging and visible light binocular camera (21)Camera lens in front of, the anti-mountain fire control device(3)Including being set to the second supporting rack(6)On host babinet(31)And Set on host babinet(31)Interior master control borad(32), power management chip(33)And wireless router(34), the master control borad (32)It is separately connected microclimate monitoring device(1), infrared thermal imaging and visible light binocular camera(21), solar energy tracking sensing Device(22), holder(23), power management chip(33)And wireless router(34), the solar power supply apparatus(4)Including too Positive energy solar panel(41), be set to the first supporting rack(5)On secondary battery jar(42)With set on secondary battery jar(42)Interior storage Battery pack(43), the solar panel(41)It is erected at secondary battery jar(42)Top, and connect accumulator group(43), The accumulator group(43)Connect power management chip(33), and respectively through a power switch(44)Connect microclimate monitoring device (1)Power interface, infrared thermal imaging and visible light binocular camera(21)Power interface, holder(23)Power interface and Wireless router(34)Power interface, each power switch(44)Control terminal be all connected with master control borad(32).
2. the anti-mountain fire device of a kind of transmission line of electricity infrared thermal imaging according to claim 1, which is characterized in that described first Supporting rack(5)With the second supporting rack(6)Longitudinal section be in inverted l shape, the first supporting rack(5)Including the first support being connected Crossbeam(51)With the first support vertical beam(52), the second supporting rack(6)Including the second support beam being connected(61)With second Support vertical beam(62).
3. the anti-mountain fire device of a kind of transmission line of electricity infrared thermal imaging according to claim 2, which is characterized in that micro- gas As monitoring device(1)Including atmospherium(11), atmospherium pedestal(12), atmospherium mounting base(13), the first inverted L shape mounting plate (14)With the first inverted L shape fagging(15), the atmospherium mounting base(13)Set on the second support beam(61)On, and atmospherium Mounting base(13)With the second support beam(61)It is perpendicular, the atmospherium pedestal(12)Set on atmospherium mounting base(13) Front end, the atmospherium(11)Set on atmospherium pedestal(12)On, and connect master control borad(32), atmospherium(11)Power supply connect Mouth is through a power switch(44)Connect accumulator group(43), the first inverted L shape mounting plate(14)Including the first peace being connected Fill crossbeam(141)With the first installation vertical beam(142), the first installation crossbeam(141)With atmospherium mounting base(13)Bottom Face connects, the first installation vertical beam(142)It is close to the second support vertical beam(62)Leading flank, the first inverted L shape fagging (15)Including the first fagging crossbeam being connected(151)With the first fagging vertical beam(152), the first fagging crossbeam(151)Tightly Paste the second support beam(61)Bottom surface and with atmospherium mounting base(13)Connection, the first fagging vertical beam(152)It is close to Second support vertical beam(62)Trailing flank and with first installation vertical beam(142)Connection.
4. the anti-mountain fire device of a kind of transmission line of electricity infrared thermal imaging according to claim 3, which is characterized in that described first Fagging crossbeam(151)With the first fagging vertical beam(152)Between tilting rack be equipped with one first support cant beam(153).
5. the anti-mountain fire device of a kind of transmission line of electricity infrared thermal imaging according to claim 2, which is characterized in that the binocular Thermal imaging holder instrument(2)It further include holder pedestal(25), video camera mounting base(26), the second inverted L shape mounting plate(27)With Two inverted L shape faggings(28), the video camera mounting base(26)Set on the second support beam(61)On, and video camera mounting base (26)With the second support beam(61)It is perpendicular, the holder pedestal(25)Set on video camera mounting base(26)Front end, institute State holder(23)Set on holder pedestal(25)On, the second inverted L shape mounting plate(27)Including the second installation crossbeam being connected (271)With the second installation vertical beam(272), the second installation crossbeam(271)With video camera mounting base(26)Bottom surface connection, The second installation vertical beam(272)It is close to the second support vertical beam(62)Leading flank, the second inverted L shape fagging(28)Including phase Second fagging crossbeam of connection(281)With the second fagging vertical beam(282), the second fagging crossbeam(281)It is close to the second support Crossbeam(61)Bottom surface and with video camera mounting base(26)Connection, the second fagging vertical beam(282)It is perpendicular to be close to the second support Beam(62)Trailing flank and with second installation vertical beam(272)Connection.
6. the anti-mountain fire device of a kind of transmission line of electricity infrared thermal imaging according to claim 5, which is characterized in that described second Fagging crossbeam(281)With the second fagging vertical beam(282)Between tilting rack be equipped with one second support cant beam(283).
7. the anti-mountain fire device of a kind of transmission line of electricity infrared thermal imaging according to claim 2, which is characterized in that the anti-mountain Fiery control device(3)Further include two host babinet mounting assemblies, each host babinet mounting assembly includes second L-type Babinet mounting and fixing support(35)With two the second inverted L shape babinet platform slings(36), each second inverted L shape babinet platform sling(36)Include The second platform sling crossbeam being connected(361)With the second platform sling vertical beam(362), second support beam(61)Positioned at two second Platform sling crossbeam(361)Between, and two the second platform sling crossbeams(361)End be connected, it is described second support vertical beam(62)Position In two the second platform sling vertical beams(362)Between, and two the second platform sling vertical beams(362)End be connected, the second L-type case Body mounting and fixing support(35)The second babinet including orthogonal connection installs front side board(351)Back side panel is installed with the second babinet (352), the host babinet(31)Positioned at the second support vertical beam(62)Leading flank, second babinet installs front side board (351)With host babinet(31)One side connection, second babinet installs back side panel(352)Vertical beam is supported with positioned at second (62)Second platform sling vertical beam of leading flank(362)Connection.
8. the anti-mountain fire device of a kind of transmission line of electricity infrared thermal imaging according to claim 2, which is characterized in that the sun It can be for electric installation(4)Further include two secondary battery jar mounting assemblies, each secondary battery jar mounting assembly includes one the One L-type babinet mounting and fixing support(45)With two the first inverted L shape babinet platform slings(46), each first inverted L shape babinet platform sling(46) It include the first platform sling crossbeam being connected(461)With the first platform sling vertical beam(462), first support beam(51)Positioned at two A first platform sling crossbeam(461)Between, and two the first platform sling crossbeams(461)End be connected, it is described first support vertical beam (52)Positioned at two the first platform sling vertical beams(462)Between, and two the first platform sling vertical beams(462)End be connected, described One L-type babinet mounting and fixing support(45)The first babinet including orthogonal connection installs front side board(451)Pacify with the first babinet Fill back side panel(452), the secondary battery jar(42)Positioned at the first support vertical beam(52)Leading flank, first babinet installation Front side board(451)With secondary battery jar(42)One side connection, first babinet installs back side panel(452)With positioned at first Support vertical beam(52)First platform sling vertical beam of leading flank(462)Connection.
9. the anti-mountain fire device of a kind of transmission line of electricity infrared thermal imaging according to claim 1, which is characterized in that the master control Plate(32)It is connected with audible-visual annunciator(7).
10. the anti-mountain fire device of a kind of transmission line of electricity infrared thermal imaging according to claim 1, which is characterized in that the master Box body(31)And secondary battery jar(42)Top surface on be equipped with handle(8).
CN201721807515.8U 2017-12-22 2017-12-22 A kind of anti-mountain fire device of transmission line of electricity infrared thermal imaging Active CN207636189U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110967117A (en) * 2019-12-05 2020-04-07 广东森旭通用设备科技有限公司 Thermal imaging early warning mechanism for power transmission line

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110967117A (en) * 2019-12-05 2020-04-07 广东森旭通用设备科技有限公司 Thermal imaging early warning mechanism for power transmission line
CN110967117B (en) * 2019-12-05 2021-06-15 广东森旭通用设备科技有限公司 Thermal imaging early warning system for power transmission line

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