CN207067808U - The sunshine lead-in device of positive lightseeking missile can be realized - Google Patents

The sunshine lead-in device of positive lightseeking missile can be realized Download PDF

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Publication number
CN207067808U
CN207067808U CN201621467291.6U CN201621467291U CN207067808U CN 207067808 U CN207067808 U CN 207067808U CN 201621467291 U CN201621467291 U CN 201621467291U CN 207067808 U CN207067808 U CN 207067808U
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China
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plane mirror
resistance
alignment sensor
sunshine
reflective plane
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CN201621467291.6U
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Chinese (zh)
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倪屹
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Individual
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Abstract

A kind of sunshine lead-in device that can realize positive lightseeking missile is the utility model is related to, it includes reflective plane mirror, alignment sensor and gearshift, and fixed light-guiding plane microscope group is set on the reflection sunlight route of the reflective plane mirror;The sunshine lead-in device is powered by solar panel;The reflective plane mirror is installed on gearshift, institute's displacement apparatus electrically connects with sunshine tracing device, the alignment sensor electrically connects with sunshine tracing device, biaxially oriented glazing power deviation of the sunshine tracing device according to alignment sensor detection by reflective plane mirror reflection sunlight, utilize the position of gearshift regulation reflective plane mirror, to cause incident sunlight to be locked area of light position after the reflection of reflective plane mirror, ensure that reflection sunlight is fixed to the transmission route of fixed light-guiding plane microscope group, area of light latched position is determined by alignment sensor position.The utility model is compact-sized, can be placed in field autonomous working, and energy tracks sunlight injects angle, fixed area of light can be kept to collect sunlight, improve the collection rate of sunshine, the sunlight after collection is transmitted to target location with fixed light-guiding plane microscope group in the form of directional light, cost is low, securely and reliably.

Description

The sunshine lead-in device of positive lightseeking missile can be realized
Technical field
A kind of gatherer is the utility model is related to, especially a kind of sunshine lead-in device for possessing positive lightseeking missile, Belong to the technical field of application of solar energy.
Background technology
In recent years, as attention of the people to environment, green energy resource turn into energy industry focus of attention.In green energy In source, solar energy resources is inexhaustible, clean and safe, is optimal regenerative resource, the exploitation to solar energy is non-in the world Normal attention.Sunshine import system is as a kind of new illuminator, and using increasingly popularizing, it has greatly saved energy Source.Inside basement, subway, market and some office buildings, due to lacking illumination, even daytime is also required to electric lighting. According to statistics, the electricity that area is consumed in daytime illumination now accounts for whole day illumination institute subfam. Spiraeoideae more than 20%, and power consumption very may be used See.It is not small contribution to energy-saving and emission-reduction that this part of electric energy saving, which is got off,.
The usage scenario of sunshine lead-in device is can not directly to receive the basement or room of sunshine, existing artificial photograph The narrow light source of bright substantially wave band, if these scenes, only with lamp lighting, meeting is because lack in sunlight after the time is grown Ultraviolet sterilization, infrared ray the increase blood circulation of wealthy blood vessel and the factors such as heat can be provided so that the dark tide in room Wet, human body does not feel well.
It is to be reflected sunshine by plane that existing sunshine, which imports, then realizes leading for sunlight by light-conductive media again Enter, the complexity and cost of importing focus primarily upon light-conductive media used in sunshine importing.Existing sunshine introgressive line Light-conductive media mainly has the photoconductive tube and optical fiber of interior plated film used by system.
Light-conductive optic fibre is larger for the light decay rate difference of different-waveband, currently used silica fibre for ultraviolet and The decay of infrared ray is larger.The diameter of optical fiber is very small simultaneously, it usually needs used together using many root optical fiber splicings, this Cause the cost of optical fiber transmission plan very high, the scheme of sunlight convergence, but the sunshine after convergence also only has despite the use of Very small part can enter optical fiber and transmit.Although it is all band transmission using light pipe, but light pipe is equally faced with light remittance Poly- rear is mobile, lay complex defect to different, and the loss in corner is big, so as to influence transmission range.
The content of the invention
The purpose of this utility model is to overcome the deficiencies in the prior art, there is provided one kind can realize sunlight automatically with The sunshine lead-in device of track, its is compact-sized, and energy tracks sunlight injects angle, and fixation reflex direction can be kept to collect sunlight, carried The collection rate of high sunshine, the sunlight after collection are transmitted to target location with plane microscope group in the form of directional light, and cost is low, safety Reliably.
According to technical scheme provided by the utility model, the sunshine lead-in device that positive lightseeking missile can be realized, Including the reflective plane mirror for reflecting incident sunlight, reflective plane mirror support, sunshine tracing device and light-guiding plane microscope group, institute State reflective plane mirror to be fixedly installed on reflective plane mirror support, set and use on the reflection sunlight circuit of the reflective plane mirror In the fixation light-guiding plane microscope group that sunlight is transferred to required position;It is characterized in that:Also include being used to adjust the reflective plane The gearshift of mirror position, the positioning for detecting by the luminous power deviation on reflective plane mirror reflection sunlight biaxially oriented pass Sensor and the alignment sensor support for adjusting alignment sensor position, the reflective plane mirror support are reflective for connecting Level crossing and gearshift, reflective plane mirror connection gearshift can be firmly placed, and reflective plane is passed through by gearshift Mirror support drives the movement of reflective plane mirror;Institute's displacement apparatus electrically connects with sunshine tracing device, before the reflective plane mirror Face sets alignment sensor, and the alignment sensor is installed on alignment sensor support, the alignment sensor Stent Implantation In on base, the alignment sensor electrically connects with sunshine tracing device, sunshine tracing device according to alignment sensor detect into Biaxially oriented glazing power deviation of the shining sun light after the reflection of reflective plane mirror, reflective plane mirror is adjusted by gearshift Position so that incident sunlight locks area of light position after the reflection of reflective plane mirror, ensures that the area of light of reflection sunlight is locked in admittedly Determine the transmission entrance of light-guiding plane microscope group.
As further improvement of the utility model, institute's displacement apparatus includes upper strata motor, upper strata machine shaft, lower floor Motor and lower floor's machine shaft, the upper strata motor that the reflective plane mirror support is fixedly mounted on the upper strata motor of gearshift turn On axle, the upper strata motor is fixedly mounted on lower floor's machine shaft of lower floor's motor, and lower floor's motor is fixedly installed in bottom On seat;Lower floor's motor can drive upper strata motor and reflective plane mirror to move left and right, and upper strata motor can drive reflective plane mirror The reflective plane mirror of support connection moves up and down.
As further improvement of the utility model, motor and lower floor's motor are direct current to institute's displacement apparatus at the middle and upper levels Machine.
As further improvement of the utility model, the sunshine tracing device include being installed on controller on base, Solar panel and solar energy power accumulating device, the solar panel electrically connect with solar energy power accumulating device, the solar energy Cell panel can convert light energy into electric energy and be sent in solar energy power accumulating device, there is provided the electricity required for controller normal work Pressure;The controller electrically connects with gearshift, and the controller electrically connects with alignment sensor, and alignment sensor will be reflective flat The sunshine of face mirror reflection is converted into electric signal, is sent to controller, is handled by controller signals, inclined according to left and right voltage Poor, upper and lower voltage deviation, realize that reflective plane mirror biaxially oriented moves using gearshift.
As further improvement of the utility model, the alignment sensor includes alignment sensor housing and driving electricity Road, the drive circuit are arranged in alignment sensor housing;The drive circuit is connected with controller;The drive circuit bag Include silicon photocell, lower silicon photocell, left silicon photocell, right silicon photocell, the first amplifier, the second amplifier, the 3rd amplification Device, the 4th amplifier, first resistor, second resistance, 3rd resistor, the 4th resistance, the 5th resistance, the 6th resistance, the 7th resistance, 8th resistance, the 9th resistance, the tenth resistance, the 11st resistance and the 12nd resistance;The upper silicon photocell positive pole connection the 4th Resistance is followed by the first amplifier anode, and the upper silicon photocell negative pole connects the 5th resistance and is followed by the first amplifier negative pole, described First amplifier is connected after connecting the 6th resistance with controller, and the tenth resistance of the lower silicon photocell positive pole connection is followed by second and put Big device positive pole, the lower silicon photocell negative pole connect the 11st resistance and are followed by the second amplifier negative pole, and second amplifier connects It is connected after connecing the 12nd resistance with controller, the left silicon photocell positive pole connection first resistor is followed by the 3rd amplifier anode, The left silicon photocell negative pole connection second resistance is followed by the 3rd amplifier negative pole, after the 3rd amplifier connects 3rd resistor It is connected with controller, the right silicon photocell positive pole connects the 7th resistance and is followed by the 4th amplifier anode, the right silicon photocell Negative pole connects the 8th resistance and is followed by the 4th amplifier negative pole, and the 4th amplifier is connected after connecting the 9th resistance with controller, The drive circuit is sent to controller after the electric signal that silicon photocell is changed is amplified;When sunlight reflects by plane of reflection mirror Afterwards, the sunlight of reflection is converted into voltage signal by the silicon photocell on alignment sensor, is transferred to sunshine tracing device.
The upper and lower silicon photocell is used to judge because the time causes sunshine entry angle change reflective plane caused by Angle change on mirror reflection sunlight above-below direction, it is described left and right so as to cause the change in location reflected on area of light above-below direction Silicon photocell is used to judge because the time causes sunshine entry angle change reflective plane mirror reflection sunlight right and left caused by Upward angle change, so as to cause the change in location reflected on area of light left and right directions, the silicon photocell is by reflective plane mirror The light of reflection is converted into electric signal and is sent to controller.
As further improvement of the utility model, the alignment sensor is installed on alignment sensor by the first knob On support, the alignment sensor support includes for the first knob of stationary positioned sensor and for adjusting orientation sensing Second knob and rotating shaft of the device relative to the position of reflective plane mirror, the alignment sensor support are placed in by connecting magnetic support On base;The alignment sensor passes through the second knob and the rotation shaft regulated position relative to reflective plane mirror.
As further improvement of the utility model, the alignment sensor support is made up of ferrous material.
As further improvement of the utility model, the fixed light-guiding plane microscope group keeps solid after including some pieces of installations Determine the fixation light-guiding plane mirror of state, the fixed light-guiding plane mirror uses fully-reflected plane mirror.
As further improvement of the utility model, connect the reflective plane mirror support of reflective plane mirror and gearshift by Aluminium alloy is made.
As further improvement of the utility model, the fully-reflected plane mirror of the fixed light-guiding plane microscope group is by plating metal The glass of reflectance coating is made, is made up or with regular reflection performance of the surface polishing metal device with regular reflection performance Metallic film is made.
As further improvement of the utility model, magnetic support switch is installed on magnetic support.
The advantages of the utility model:Transmission directional light, nothing are coordinated by reflective plane mirror and fixed light-guiding plane microscope group Light requirement is fine, and reflectivity is more than 95%, and order of reflection is much smaller than optical fiber, and transmission loss rate is low;Compared to optical fiber have greatly into This advantage, while there is excellent install convenient;Sunlight is reflected by sunshine tracing device and alignment sensor to lock Entrance is transmitted in light-guiding plane microscope group so that the area of light of reflection sunlight of the reflective plane mirror to fixed light-guiding plane microscope group keeps permanent It is fixed, so as to efficiency operation in daily different time sections and Various Seasonal, securely and reliably.
Brief description of the drawings
Fig. 1 is a kind of optical schematic diagram of performance of the utility model.
Fig. 2 is mounting structure schematic diagram when implementing in Fig. 1.
Fig. 3 is alignment sensor schematic diagram in the utility model.
Fig. 4 is tracking schematic diagram when implementing in Fig. 1.
Fig. 5 is the utility model reflective plane mirror and the cooperation schematic diagram of fixed light-guiding plane microscope group.
Description of reference numerals:1- reflective planes mirror, 2- reflective planes mirror support, 3- gearshifts, 4- upper stratas motor, on 5- Layer machine shaft, 6- lower floors motor, 7- lower floors machine shaft, 8- alignment sensors, 9- silicon photocells, the upper silicon photocells of 9a-, The right silicon photocell 10- alignment sensors support of the left silicon photocell of silicon photocell, 9c-, 9d-, the knobs of 11- first, 12- under 9b- Two knobs, 13- rotating shafts, 14- magnetic supports, 15, magnetic support switch, 16- bases, 17- controllers, 18- solar energy power accumulatings device, 19- are fixed Light-guiding plane mirror and 20- solar panels.
Embodiment
With reference to specific drawings and examples, the utility model is described in further detail.
As shown in Figure 1 and Figure 5:In order to which tracks sunlight injects angle, constant reflection direction can be kept to collect sunlight, improved The collection rate of sunshine, the sunlight after reflection are transmitted to target location using plane microscope group in the form of directional light, reduce cost, this Utility model includes being used to reflect the reflective plane mirror 1 of sunlight, the reflective plane mirror support for supporting the reflective plane mirror 1 2, it is provided for sunlight being transferred to the fixation light-guiding plane mirror of required position on the reflected light circuit of the reflective plane mirror 1 Group;The reflective plane mirror support is fixedly installed on gearshift 3, and gearshift 3 electrically connects with sunshine tracing device;Institute Setting alignment sensor 8 before reflective plane mirror is stated, the alignment sensor 8 is installed on alignment sensor support 10, described Alignment sensor support 10 is placed on base 16, and the position relative to reflective plane mirror 1 of alignment sensor 8 can be according to sun Light reflectance target region is adjusted by alignment sensor support 10, and sunshine tracing device is according to upper silicon photoelectricity in alignment sensor 8 Pond 9a, lower silicon photocell 9b are judged because the time causes sunshine entry angle change caused by reflective plane mirror reflection sunlight The upward angle change in lower section, the change in location caused by the above-below direction of reflected light domain, left silicon photocell 9c, right silicon light Battery 9d is judged because the time causes sunshine entry angle change caused by reflective plane mirror reflection sunlight left and right directions Angle change, the change in location caused by the left and right directions of reflected light domain, movement directive, regulation are sent to gearshift 3 The position of reflective plane mirror 1 so that reflect that the area of light of sunlight is constant, the accurate transmission entrance against light-guiding plane microscope group.
As shown in figure 3, the alignment sensor 8 includes alignment sensor housing and drive circuit, the drive circuit is set Put in alignment sensor housing;The drive circuit is connected with controller 17;The drive circuit include upper silicon photocell 9a, Lower silicon photocell 9b, left silicon photocell 9c, right silicon photocell 9d, the first amplifier a, the second amplifier b, the 3rd amplifier c, Four amplifier d, first resistor R1, second resistance R2, 3rd resistor R3, the 4th resistance R4, the 5th resistance R5, the 6th resistance R6, Seven resistance R7, the 8th resistance R8, the 9th resistance R9, the tenth resistance R10, the 11st resistance R11And the 12nd resistance R12;The upper silicon Photocell 9a positive poles connect the 4th resistance R4It is followed by the first amplifier a positive poles, the upper electricity of silicon photocell 9a negative poles connection the 5th Hinder R5It is followed by the first amplifier a negative poles, the resistance R of the first amplifier a connections the 6th6It is connected afterwards with controller 17, the lower silicon Photocell 9b positive poles connect the tenth resistance R10It is followed by the second amplifier b positive poles, the lower silicon photocell 9b negative poles connection the 11st Resistance R11It is followed by the second amplifier b negative poles, the resistance R of the second amplifier b connections the 12nd12It is connected afterwards with controller 17, institute State left silicon photocell 9c positive poles connection first resistor R1It is followed by the 3rd amplifier c positive poles, the left silicon photocell 9c negative poles connection Second resistance R2It is followed by the 3rd amplifier c negative poles, the 3rd amplifier c connection 3rd resistors R3It is connected afterwards with controller 17, institute State right silicon photocell 9d positive poles and connect the 7th resistance R7It is followed by the 4th amplifier d positive poles, the right silicon photocell 9d negative poles connection 8th resistance R8It is followed by the 4th amplifier d negative poles, the resistance R of the 4th amplifier d connections the 9th9It is connected afterwards with controller 17, institute State after drive circuit amplifies the electric signal that silicon photocell 9 is changed and be sent to controller 17.Four silicon photocells are fixedly installed in Upper and lower, left and right position in alignment sensor housing, when sunlight by plane of reflection mirror 1 reflection after, on alignment sensor 8 The sunlight of reflection is converted into voltage signal by silicon photocell 9, is transferred to sunshine tracing device.
As shown in figure 4, incident sunlight, on reflective plane mirror 1, sunlight transmits after the reflection of plane of reflection mirror 1 Entrance is transmitted to light-guiding plane microscope group, the reflective plane mirror 1 is fully-reflected plane mirror.When sunlight is anti-by plane of reflection mirror 1 After penetrating, the sunlight of reflection is converted into voltage signal by the silicon photocell 9 on alignment sensor 8, is transferred to sunshine tracing device, sun During angle of light degree difference, the upper silicon photocell 9a of alignment sensor 8, lower silicon photocell 9b directions silicon photocell receive reflection Sunlight after level crossing reflection is different, and the upper and lower voltage that alignment sensor 8 is sent to sunshine tracing device is different, sunshine tracking The difference for the upper and lower magnitude of voltage that device is sent according to alignment sensor 8, regulation gearshift 3 move up and down so that orientation sensing The sunlight that the upper silicon photocell 9a of device 8, lower silicon photocell 9b directions silicon photocell receive after the reflection of plane of reflection mirror keeps phase Together, similarly the left silicon photocell 9c of alignment sensor 8, right silicon photocell 9d directions silicon photocell receive the reflection of plane of reflection mirror Sunlight afterwards is different, and the left and right voltage that alignment sensor 8 is sent to sunshine tracing device is different, and sunshine tracing device is according to fixed The difference for the left and right magnitude of voltage that level sensor 8 is sent, regulation gearshift 3 move up and down so that the left silicon of alignment sensor 8 The sunlight that photocell 9c, right silicon photocell 9d directions silicon photocell are received after the reflection of plane of reflection mirror keeps identical, and what is made is anti- The real-time tracing sun of optical plane mirror 1, keep the plane of reflection 1 reflection light transmission route of mirror constant, it is accurate against light-guiding plane mirror The transmission entrance of group, improve the collection rate of sunshine.
In the utility model embodiment, the fixed light-guiding plane microscope group keeps consolidating for stationary state after including some installations Determine light-guiding plane mirror 19, the fixed light-guiding plane mirror 19 uses fully-reflected plane mirror.Light-guiding plane mirror 19 is installed on tunable On support, tunable support is made up of metal material, can tune the direction of the reflected light of light-guiding plane mirror 19, ensures solar energy Enough it is transferred to target area.
In the utility model embodiment, the fully-reflected plane mirror of the fixed light-guiding plane mirror 19 is by plating metallic reflective coating Glass is made, is made up of the surface polishing metal device with regular reflection performance or the metallic film with regular reflection performance Supporting.It is related to the position of required transmission that the quantity of light-guiding plane mirror 19 is fixed in fixed light-guiding plane microscope group, particular number root According to needing to be configured, here is omitted.After fixed light-guiding plane microscope group installation, each fixed light-guiding plane mirror keeps current Position is constant, the position and direction that nth block fixes light-guiding plane mirror 19 is regulated during installation, it is ensured that nth block fixes light-guiding plane N-1 blocks can be fixed the sunshine that light-guiding plane mirror 19 transmits and reflex to N+1 blocks fixation light-guiding plane mirror by mirror 19 On 19, by the reflection of every piece in plane microscope group fixed light-guiding plane mirror 19, most sunshine is transferred to specified location at last, so as to Avoid the need for transmitting by the light of optical fiber or light-conductive pipeline, reduce cost.N refers to fix fixed guide-lighting in light-guiding plane microscope group The quantity of level crossing 19.
As shown in Figure 2 and Figure 4, institute's displacement apparatus 3 include upper strata motor 4, upper strata machine shaft 5, lower floor's motor 6 and under Layer machine shaft 7, reflective plane mirror 1 are fixedly installed on reflective plane mirror support 2, and the reflective plane mirror support 2 fixes peace On the upper strata machine shaft 5 of the upper strata motor 4 of gearshift 3, the upper strata motor 4 is fixedly mounted on lower floor's motor 6 On lower floor's machine shaft 7, lower floor's motor 6 is fixedly installed on base 16;The upper strata motor 4 and lower floor's motor 6 are straight Flow motor;Lower floor's motor 6 can drive upper strata motor 4 and reflective plane mirror 1 to move left and right, and upper strata motor 4 can drive reflective The reflective plane mirror 1 that plane mirror support 2 connects moves up and down.
The alignment sensor 8 is installed on alignment sensor support 10 by the first knob 11, the alignment sensor Support 10 includes for the first knob 11 of stationary positioned sensor and for adjusting alignment sensor relative to reflective plane Second knob 12 of the position of mirror and rotating shaft 13, the alignment sensor support 10 are placed in base 16 by connecting magnetic support 14 On;Magnetic support switch 15 is installed on the magnetic support 14;The alignment sensor 8 by the second knob 12 and rotating shaft 13 adjust relative to The position of reflective plane mirror 1;The alignment sensor support 10 is the conventional common three-dimensional branch with magnetic support switch in laboratory Frame, the alignment sensor support 10 are made up of ferrous material.
The sunshine tracing device includes the controller 17 and solar energy power accumulating device 18 being installed on base 16, and the sun Energy cell panel 20, the solar energy power accumulating device 18 are connected with solar panel 20, and the solar panel 20 can be by light Electric energy can be converted into be sent in solar energy power accumulating device 18, there is provided the voltage required for the normal work of controller 17.The control Device 17 electrically connects with gearshift 3, and the controller 17 electrically connects with alignment sensor 8, and alignment sensor 8 is by reflective plane mirror The sunshine of 1 reflection is converted into electric signal, is sent to controller 17, the signal transacting of via controller 17.The controller 17 is with using In the movement of the twin shaft of the left and right directions of drive displacement device 3 and above-below direction, for driving the movable left/right rotation of reflective plane mirror support 2 Move and rotate upwardly and downwardly, for driving the left-right rotation of reflective plane mirror 1 and rotating upwardly and downwardly.According to left and right voltage deviation, upper and lower voltage Deviation, realize that the biaxially oriented of reflective plane mirror 1 moves using gearshift 3.
In the utility model embodiment, controller 17 can use conventional micro-chip processor, such as single-chip microcomputer, by too It is positive can electric storage means 18 controller 17, gearshift 3 motor 4, lower floor's motor 5, reflective plane mirror support 2 and anti-at the middle and upper levels are provided Optical plane mirror 1 works required voltage.
When it is implemented, reflective plane mirror 1 uses fully-reflected plane mirror of the size for 1000mm × 1000mm.Orientation sensing The area of light position that the position of device 3 can reflect sunlight according to reflective plane mirror 1 determines, due to needing moment tracking sunlight, reflection The area of light alignment light-guiding plane mirror entrance of sunlight, after installation and debugging, it is only necessary to finely tune alignment sensor support in first installation 10 reach optimum efficiency, ensure that reflective plane mirror 1 reflects sunlight and is transferred to fixed first piece of fixation of light-guiding plane microscope group exactly Light-guiding plane mirror 19 can be completed to install.
The utility model coordinates transmission directional light by reflective plane mirror 1 and fixed light-guiding plane microscope group, without optical fiber With pipeline, reflectivity is more than 95%, and order of reflection is much smaller than optical fiber and pipeline, and transmission loss rate is low;There is pole compared to optical fiber Big cost advantage, while there is excellent install convenient;Sunshine tracing device command displacement is coordinated by alignment sensor 8 Device 3 so that the area of light for reflecting sunlight is locked in light-guiding plane microscope group transmission entrance, so as to efficiency operation in daily different Period and Various Seasonal, securely and reliably.
Particular embodiments described above, carry out entering one to the purpose of this utility model, technical scheme and beneficial to benefit Step describes in detail, and institute is not limited to this it is understood that the foregoing is only specific embodiment of the utility model Utility model, it is all within the spirit and principles of the utility model, any modification, equivalent substitution and improvements done etc., it all should wrap It is contained within the protection domain of invention.

Claims (8)

1. a kind of sunshine lead-in device that can realize positive lightseeking missile, including for reflecting the reflective plane mirror of incident sunlight (1), reflective plane mirror support(2), base(16), sunshine tracing device and light-guiding plane microscope group, the reflective plane mirror(1)Gu Dingan County is loaded on reflective plane mirror support(2)On, in the reflective plane mirror(1)Reflection sunlight circuit on be provided for sunlight The fixation light-guiding plane microscope group of position needed for being transferred to;It is characterized in that:Also include being used to adjust the reflective plane mirror(1)Position Gearshift(3), for detect pass through reflective plane mirror(1)The positioning of the luminous power deviation reflected on sunlight biaxially oriented passes Sensor(8)And for adjusting the alignment sensor support of alignment sensor position(10), the reflective plane mirror support(2)With In connection reflective plane mirror(1)With gearshift(3), by gearshift(3)Pass through reflective plane mirror support(2)Drive reflective flat Face mirror(1)It is mobile;Institute's displacement apparatus(3)Electrically connected with sunshine tracing device, in the reflective plane mirror(1)It is fixed above to set Level sensor(8), the alignment sensor(8)It is installed on alignment sensor support(10)On, the alignment sensor support (10)It is placed in base(16)On, the alignment sensor(8)Electrically connected with sunshine tracing device, sunshine tracing device is according to fixed Level sensor(8)Detection incident sunlight passes through reflective plane mirror(1)Biaxially oriented glazing power deviation after reflection, passes through displacement Device(3)Adjust reflective plane mirror(1)Position so that incident sunlight passes through reflective plane mirror(1)Area of light position is locked after reflection It is fixed, ensure that the area of light of reflection sunlight is locked in the transmission entrance of fixed light-guiding plane microscope group.
2. the sunshine lead-in device of positive lightseeking missile can be realized according to claim 1, it is characterized in that:The displacement dress Put(3)Including upper strata motor(4), upper strata machine shaft(5), lower floor's motor(6)And lower floor's machine shaft(7), it is described reflective flat Face mirror support(2)It is fixedly mounted on gearshift(3)Upper strata motor(4)Upper strata machine shaft(5)On, the upper strata motor (4)It is fixedly mounted on lower floor's motor(6)Lower floor's machine shaft(7)On, lower floor's motor(6)It is fixedly installed in base(16) On;Lower floor's motor(6)Upper strata motor can be driven(4)With reflective plane mirror(1)Move left and right, upper strata motor(4)It can drive Reflective plane mirror support(2)The reflective plane mirror of connection(1)Move up and down.
3. the sunshine lead-in device of positive lightseeking missile can be realized according to claim 2, it is characterized in that:The displacement dress Put(3)Motor at the middle and upper levels(4)With lower floor's motor(6)For direct current generator.
4. the sunshine lead-in device of positive lightseeking missile can be realized according to claim 1, it is characterized in that:The sunlight with Track device includes being installed on base(16)On controller(17), solar panel(20)And solar energy power accumulating device(18), The solar energy power accumulating device(18)With solar panel(20)Connection, the solar panel(20)Luminous energy can be changed Solar energy power accumulating device is sent into electric energy(18)In, there is provided controller(17)Voltage required for normal work;The controller (17)With gearshift(3)Electrical connection, the controller(17)With alignment sensor(8)Electrical connection, alignment sensor(8)Will be anti- Optical plane mirror(1)The sunshine of reflection is converted into electric signal, is sent to controller(17), by controller(17)Signal transacting, According to left and right voltage deviation, upper and lower voltage deviation, gearshift is utilized(3)Realize reflective plane mirror(1)Biaxially oriented moves.
5. the sunshine lead-in device of positive lightseeking missile can be realized according to claim 1, it is characterized in that:The positioning passes Sensor(8)Including alignment sensor housing and drive circuit, the drive circuit is arranged in alignment sensor housing;The drive Dynamic circuit and controller(17)Connection;The drive circuit includes upper silicon photocell(9a), lower silicon photocell(9b), left silicon photoelectricity Pond(9c), right silicon photocell(9d), the first amplifier a, the second amplifier b, the 3rd amplifier c, the 4th amplifier d, first electricity Hinder R1, second resistance R2, 3rd resistor R3, the 4th resistance R4, the 5th resistance R5, the 6th resistance R6, the 7th resistance R7, the 8th resistance R8, the 9th resistance R9, the tenth resistance R10, the 11st resistance R11And the 12nd resistance R12;The upper silicon photocell(9a)Positive pole connects Meet the 4th resistance R4It is followed by the first amplifier a positive poles, the upper silicon photocell(9a)Negative pole connects the 5th resistance R5First is followed by put Big device a negative poles, the resistance R of the first amplifier a connections the 6th6Afterwards with controller(17)Connection, the lower silicon photocell(9b) Positive pole connects the tenth resistance R10It is followed by the second amplifier b positive poles, the lower silicon photocell(9b)Negative pole connects the 11st resistance R11 It is followed by the second amplifier b negative poles, the resistance R of the second amplifier b connections the 12nd12Afterwards with controller(17)Connection, the left side Silicon photocell(9c)Positive pole connection first resistor R1It is followed by the 3rd amplifier c positive poles, the left silicon photocell(9c)Negative pole connects Second resistance R2It is followed by the 3rd amplifier c negative poles, the 3rd amplifier c connection 3rd resistors R3Afterwards with controller(17)Connection, The right silicon photocell(9d)Positive pole connects the 7th resistance R7It is followed by the 4th amplifier d positive poles, the right silicon photocell(9d)It is negative Pole connects the 8th resistance R8It is followed by the 4th amplifier d negative poles, the resistance R of the 4th amplifier d connections the 9th9Afterwards with controller (17)Connection, the drive circuit is by silicon photocell(9)Controller is sent to after the electric signal amplification of conversion(17);When sunlight passes through Cross plane of reflection mirror(1)After reflection, alignment sensor(8)On silicon photocell(9)The sunlight of reflection is converted into voltage signal, It is transferred to sunshine tracing device.
6. the sunshine lead-in device of positive lightseeking missile can be realized according to claim 1, it is characterized in that:The positioning passes Sensor(8)Pass through the first knob(11)It is installed on alignment sensor support(10)On, the alignment sensor support(10)Including The first knob for stationary positioned sensor(11)And for adjusting position of the alignment sensor relative to reflective plane mirror The second knob(12)And rotating shaft(13), the alignment sensor support(10)By connecting magnetic support(14)It is placed in base(16) On;The alignment sensor(8)Pass through the second knob(12)And rotating shaft(13)Regulation is relative to reflective plane mirror(1)Position.
7. the sunshine lead-in device of positive lightseeking missile can be realized according to claim 1, it is characterized in that:The positioning passes Sensor bracket(10)It is made up of ferrous material.
8. the sunshine lead-in device of positive lightseeking missile can be realized according to claim 6, it is characterized in that:The magnetic support (14)Upper installation magnetic support switch(15).
CN201621467291.6U 2016-12-29 2016-12-29 The sunshine lead-in device of positive lightseeking missile can be realized Expired - Fee Related CN207067808U (en)

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CN201621467291.6U CN207067808U (en) 2016-12-29 2016-12-29 The sunshine lead-in device of positive lightseeking missile can be realized

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Application Number Priority Date Filing Date Title
CN201621467291.6U CN207067808U (en) 2016-12-29 2016-12-29 The sunshine lead-in device of positive lightseeking missile can be realized

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CN207067808U true CN207067808U (en) 2018-03-02

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106527506A (en) * 2016-12-29 2017-03-22 倪屹 Sunlight leading-in device capable of realizing sunlight automatic tracking

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106527506A (en) * 2016-12-29 2017-03-22 倪屹 Sunlight leading-in device capable of realizing sunlight automatic tracking

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