CN206411335U - Panoramic scanning device - Google Patents

Panoramic scanning device Download PDF

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Publication number
CN206411335U
CN206411335U CN201621088178.7U CN201621088178U CN206411335U CN 206411335 U CN206411335 U CN 206411335U CN 201621088178 U CN201621088178 U CN 201621088178U CN 206411335 U CN206411335 U CN 206411335U
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China
Prior art keywords
image
forming module
rotation
galvanometer
scanning device
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Expired - Fee Related
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CN201621088178.7U
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Chinese (zh)
Inventor
刘辉
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Individual
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Individual
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Abstract

The utility model is related to a kind of panoramic scanning device, wherein, the panoramic scanning device includes:Rotation platform, the rotation platform has a rotary shaft;Image-forming module, the image-forming module is set with the rotation platform synchronous rotary, and the light ray parallel into the image-forming module is in the rotary shaft;Galvanometer eyeglass, it is arranged on the light for inciding image-forming module, and the light for inciding galvanometer eyeglass is reflected into image-forming module, the galvanometer eyeglass is used for and counter-rotating positive relative to the direction of rotation of image-forming module, and switches direction of rotation with predeterminated frequency.The panoramic scanning apparatus structure that the utility model is provided is simple, and results in the panoramic picture of high discrimination degree.

Description

Panoramic scanning device
Technical field
The utility model is related to a kind of panoramic scanning device.
Background technology
Typically all can be installed either daytime in public places such as airport, parking lot and roads now or night can The monitoring system of enough implementing monitorings, the monitoring system typically requires 360 degree of panoramic scannings of energy, so could intactly observe week The situation on side.
Camera device in existing monitoring system is in order to realize round-the-clock shooting and 360 degree of panoramic scannings, typically using red Outer camera lens, and the angle of visual field that can be shot according to each camera lens sets multiple camera lenses in circumferencial direction, each camera lens is responsible for oneself Shooting in visual field scope, realizes 360 degree of panoramic scannings by software process quality afterwards.
But, because the camera device includes multiple infrared lens, complete equipment is complicated, and space-consuming is big, in addition Because the camera lens is expensive, so the cost of the camera device is higher.
Utility model content
In view of this, it is necessory to provide the panoramic scanning device that a kind of simple in construction, space-consuming is few and more economic.
A kind of panoramic scanning device, wherein, the panoramic scanning device includes:
Rotation platform, the rotation platform has a rotary shaft;
Image-forming module, the image-forming module is set with the rotation platform synchronous rotary, into the light of the image-forming module Line is parallel to the rotary shaft;
Galvanometer eyeglass, for the light for inciding galvanometer eyeglass to be reflected into image-forming module, the galvanometer eyeglass can Positive and counter-rotating, and direction of rotation is switched with predeterminated frequency.
In one of the embodiments, the rotary shaft of the image-forming module, the rotary shaft of the galvanometer eyeglass rotation and institute The rotary shaft for stating rotation platform is coaxial.
In one of the embodiments, when direction of rotation counter-rotating of the galvanometer eyeglass relative to image-forming module, The size of the galvanometer eyeglass angular velocity of rotation is identical with the size of the image-forming module angular velocity of rotation.
In one of the embodiments, the position relationship of the galvanometer eyeglass and the image-forming module is met, and is incided and is shaken The light of mirror eyeglass enters in image-forming module after galvanometer lens reflecting parallel to the rotary shaft of image-forming module.
In one of the embodiments, rotary shaft of the light along the image-forming module into the image-forming module is propagated.
In one of the embodiments, the galvanometer eyeglass and the image-forming module synchronous rotary, in the base of synchronous rotary On plinth, the galvanometer eyeglass can and counter-rotating positive relative to the direction of rotation of the image-forming module.
In one of the embodiments, the galvanometer eyeglass has initial position, and the galvanometer eyeglass can be first relative to this Position carried out the forward direction in the range of 10 degree with predeterminated frequency or counter-rotating and resetted beginning.
A kind of panoramic scanning device, wherein, the panoramic scanning device includes:
Rotating shaft is provided with base, base;
Rotation platform, around rotating shaft rotation;
Image-forming module, with the rotation platform synchronous rotary;
Galvanometer eyeglass, is arranged on the rotation platform, for the light for inciding the galvanometer eyeglass to be reflected into institute State in image-forming module, and the light for inciding the galvanometer eyeglass is incident to image-forming module along the direction parallel to rotating shaft In;
Motor, for driving the rotating shaft to rotate, and drives the rotation platform and galvanometer eyeglass to rotate;
Galvanometer motor, for driving galvanometer eyeglass relative to the direction of rotation forward direction of image-forming module and counter-rotating, and with Predeterminated frequency switches direction of rotation.
In one of the embodiments, when direction of rotation counter-rotating of the galvanometer eyeglass relative to image-forming module, Angular speed during the galvanometer eyeglass counter-rotating is identical with the angular velocity of rotation size of image-forming module.
In one of the embodiments, further comprise support beam, the support beam be arranged on the rotation platform and With the image-forming module synchronous rotary, the galvanometer eyeglass and the galvanometer motor are arranged in the support beam.
In one of the embodiments, the image-forming module is arranged on rotation platform, and the rotation platform includes rotation Upper mounting plate and rotation lower platform, the rotating shaft run through the rotation lower platform, and the rotation upper mounting plate has opening, the imaging Module is arranged in the opening and from the opening is exposed to receive the light of incidence.
In one of the embodiments, the rotary shaft of the galvanometer eyeglass is set with the shaft parallel.
In one of the embodiments, the image-forming module is arranged at rotating shaft top, and the rotary shaft of the galvanometer eyeglass, The rotary shaft of the image-forming module is coaxial with the rotating shaft to be set.
In one of the embodiments, the position relationship of the galvanometer eyeglass and the image-forming module is met, and is incided and is shaken The light of mirror lens surface is vertical with the light into image-forming module after galvanometer lens reflecting.
A kind of panoramic scanning device, wherein, the panoramic scanning device includes:
Image-forming module, the image-forming module has optical axis;
Galvanometer eyeglass, is arranged at on the light of image-forming module, the light for will incide galvanometer lens surface is anti- Inject in the image-forming module, the galvanometer eyeglass is used for relative to the forward and reverse rotation of the image-forming module, and with predeterminated frequency Switch direction of rotation, the rotary shaft of the galvanometer eyeglass is parallel with the optical axis of image-forming module.
In one of the embodiments, housing is further comprised, the housing has form, and the galvanometer eyeglass is arranged at In housing, from the incident light of panorama form incides image-forming module after galvanometer lens reflecting.
Compared with conventional art, panoramic scanning device of the present utility model can be obtained by the rotation of galvanometer eyeglass Panoramic picture, it is simple in construction, occupy little space and cost is relatively low.Further, by galvanometer eyeglass to the benefit in imaging process Repay, can also improve image quality, result in the image of high discrimination degree, so as to be conducive to the monitoring to surrounding enviroment.
Brief description of the drawings
The structural representation for the panoramic scanning device that Fig. 1 provides for the utility model first embodiment.
The structural representation for the panoramic scanning device that Fig. 2 provides for the utility model second embodiment.
Fig. 3 be Fig. 2 shown in panoramic scanning device in rotation platform structural representation.
The structural representation for the panoramic scanning device that Fig. 4 provides for the utility model 3rd embodiment.
The structural representation for the panoramic scanning monitoring system that Fig. 5 provides for the utility model fourth embodiment.
Main element symbol description
Following embodiment will further illustrate the utility model with reference to above-mentioned accompanying drawing.
Embodiment
Below in conjunction with the accompanying drawings and the specific embodiments, the panoramic scanning device provided the utility model and panoramic scanning are supervised Control system is described in further detail.
Also referring to Fig. 1, the panoramic scanning device 40 that the utility model first embodiment is provided includes base 11, rotation Turn platform 12, light-guiding mechanism 13 and image-forming module 134.The image-forming module 134 is arranged on the base 11, the guide-lighting machine Structure 13 is arranged at the rotation platform 12, and the rotation platform 12 can rotate relative to the base 11.
The base 11 has support shaft 126, and the rotation platform 12 revolves around the support shaft 126 relative to base 11 Turn, so as to drive light-guiding mechanism 13 to rotate, i.e., the rotary shaft and the support shaft 126 of described rotation platform 12 are coaxial.Specifically, The rotation platform 12 may include rotation upper mounting plate 121, rotation lower platform 122 and rotating shaft 123.The support shaft 126 is arranged at On the base 11, and through the rotation lower platform 122, for supporting image-forming module 134.The rotating shaft 123 is sheathed on In the support shaft 126, and through the lower platform 122, rotating shaft 123 surrounds support shaft under the driving of motor 124 126 are rotated, so as to drive rotation upper mounting plate 121 and rotation lower platform 122 to be rotated around support shaft 126.The panorama is swept Imaging apparatus 40 can further comprise motor 124, and the motor 124 may be disposed at the rotation lower platform 122, the drive Dynamic motor 124 can drive the rotation platform 12 to rotate by drive disk assembly (not shown) drive shaft 123, that is, drive the rotation Turn upper mounting plate 121, rotation lower platform 122 to do rotate in the horizontal direction, be arranged at the light-guiding mechanism 13 of the rotation platform 12 Rotate together with.
The image-forming module 134 may be disposed at the top of rotating shaft 123, can be with rotation platform under the driving of rotating shaft 123 12 synchronous rotaries.Specifically, the rotation upper mounting plate 121 has opening 1211, the camera lens of the image-forming module 134 is opened from described It is exposed in mouth 1211, is imaged with receiving light.The image-forming module 134 can be coaxially disposed with the rotating shaft 123, i.e., The rotary shaft of the image-forming module 134 is coaxial with the rotating shaft 123, and the imaging surface of the image-forming module 134 can be perpendicular to The rotating shaft 123.The image-forming module 134 can be infrared imaging module, or visual light imaging module can be as needed Selected.The image-forming module 134 is array image sensor, clear under the circumference of the high-speed rotation, still to result in Clear image, and with very high resolving accuracy.The image-forming module 134 can be set with the synchronous rotary of rotation platform 12 Put, i.e., described image-forming module 134 rotates while being rotated with the rotation platform 12.It is appreciated that the image-forming module 134 Rotary speed can be identical or different with the rotary speed of the rotation platform 12.In the present embodiment, the image-forming module 124 with The synchronous same-speed of rotation platform 12 rotation.The image-forming module 134 is vertically installed in the base relative to the base 11 On 11, the imaging surface of the image-forming module 134 is parallel with the surface of base 11.
The light-guiding mechanism 13 is arranged in housing 132 including galvanometer unit 135, and the housing 132 has form 1326, So that light enters in housing 132.The galvanometer unit 135 is vacantly set relative to the image-forming module 134.Specifically, institute Stating galvanometer unit 135 includes support beam 1351, overarm 1352, galvanometer eyeglass 1353 and galvanometer motor 1354.The overarm 1352 Under the support of support beam 1351, it is suspended on the image-forming module 134;The galvanometer eyeglass 1353 hangs on the overarm On 1352, so that the galvanometer eyeglass 1353 is vacantly set relative to the image-forming module 134, with the image-forming module 134 do not contact.The galvanometer eyeglass 1353 can be a symmetrical structure.The galvanometer eyeglass 1353, form 1326 and image-forming module 134 position relationship is met, from the incident light of form 1326 after the reflection of galvanometer eyeglass 1353, can be directly entered it is described into As in module 134.Further, from direction of the incident light edge of the form 1326 parallel to the rotary shaft of rotation platform 12 Incide the image-forming module 134.Further, the rotation that the optical axis of the image-forming module 134 can be with the galvanometer eyeglass 1353 Axle is parallel or is coaxially disposed, also can be parallel or coaxial with the rotary shaft of the image-forming module 134.Specifically, when the galvanometer The size of eyeglass 1353 is sufficiently large and during closer distance of with the image-forming module 134, the rotation of the galvanometer eyeglass 1353 Axle can be parallel with the optical axis of the image-forming module 134, as long as ensureing to pass through galvanometer eyeglass 1353 from the incident light of form 1326 Image-forming module 134 can be entered after reflection.It is preferred that, rotary shaft and the image-forming module of the galvanometer eyeglass 1353 Optical axis it is coaxial.When the rotation platform 12 is rotated with 360 degree, then by the reflection of galvanometer eyeglass 1353, the imaging mould Block 134 can monitor and obtain the image in the range of 360 degree, and in rotary course, the reflection table of the galvanometer eyeglass 1353 The angle that the imaging surface of face and the image-forming module 134 is formed keeps constant.Further, the form 1326 can be one 360 degree of panorama forms, are set around housing 132.
In the present embodiment, the galvanometer eyeglass 1353 is vacantly arranged at the surface of the image-forming module 134, and with it is described The angle of the imaging surface formation of image-forming module 134 is 45 degree, therefore incides galvanometer eyeglass in the horizontal direction from form 1326 The reflected light that 1353 incident light enters image-forming module 134 after being reflected through galvanometer eyeglass 1353 is vertical, and the light after reflection Line enters vertically into the image-forming module 134.The rotary shaft of the galvanometer eyeglass 1353 can be arranged in parallel with rotating shaft 122.Further, The overarm 1352, image-forming module 134 and rotating shaft 122 can be coaxially disposed, i.e., the rotary shaft of the rotation of galvanometer eyeglass 1353, into As the rotary shaft of module 134 and the coaxial setting of rotating shaft 122.It is preferred that, the rotary shaft of the rotation of galvanometer eyeglass 1353, imaging Rotary shaft, the rotary shaft of rotation platform 12 and the coaxial setting of rotating shaft 122 of module 134, so as to more accurately make incidence Light enter in image-forming module 134, and can improve the compensation effect of the galvanometer eyeglass 1353, obtain more clear Clear image.
The galvanometer motor 1354 is used to drive the galvanometer eyeglass 1353 relative to the rotation side of the rotation platform 12 To doing reverse rotation and reset.It is located at initial position when the non-rotation of the galvanometer eyeglass 1353 is compensated.The galvanometer eyeglass 1353 Can be under the driving of galvanometer motor 1354, initial position during relative to galvanometer 1353 non-rotation of eyeglass is with predeterminated frequency positive and negative Rotary oscillation and resetted in the range of 10 degree.Further, the galvanometer eyeglass 1353 can be with institute under the driving of motor 124 State the positive synchronous rotary of rotation platform 12, meanwhile, under the driving of galvanometer motor 1354, can relative to rotation platform 12 rotation side To reverse rotation and reset.Specifically, the galvanometer eyeglass 1353 can be under the driving of galvanometer motor 1354, to hang oneself from a beam 1353 For rotary shaft in the horizontal direction, direction of rotation is switched with predeterminated frequency, namely counterclockwise or clockwise direction is relative to first After 10 degree of beginning position rotation, then quickly return to initial position to reset." predeterminated frequency " can be according to image-forming module 134 Imaging frequency f is selected, so that the predeterminated frequency matches with the imaging frequency f.When the image-forming module 134 is imaged When, can be transmitted synchronizing signal to galvanometer motor 1354 so that drive galvanometer eyeglass 1353 in response to the synchronizing signal relative into As reverse and positive rotation is done in the direction of rotation of module 134, with imaging in compensating image module 134.When the imaging mould When block 134 is unimaged, the galvanometer eyeglass 1353 is then with the rotation platform 12 with same speed synchronous rotary.Due to described Overarm 1352 is coaxially disposed with the image-forming module 134, therefore the galvanometer eyeglass 1353 is equivalent to being suspended on the imaging mould On block 134.In addition, when carrying out panoramic scanning imaging, direction of rotation and the rotation platform of the galvanometer eyeglass 1353 12 direction of rotation is on the contrary, motion with incident ray during compensated scanning relative to the image-forming module 134.Further, It is preferred that, the size of the angular speed and the angular velocity of rotation of rotation platform 12 of the counter-rotating of galvanometer eyeglass 1353 is essentially identical, makes The image-forming module in image-forming module 134 is obtained in imaging, best compensation effect is reached, becomes apparent from imaging.Work as institute When stating image-forming module 134 and being provided with image-forming module, the reverse vibration of the galvanometer eyeglass 1353 can be used for compensating image process In, the motion of the picture of subject in the image-forming module makes subject in the image-forming module seem quiet Only, i.e. motion of the picture of subject on image-forming module compensate for by the counter rotational movement of galvanometer eyeglass 1353, Subject is set on the array image sensor to seem static, so as to improve the identification of the panoramic picture of acquisition Precision.
When shooting a photo, the initial position of galvanometer eyeglass 1353 from the galvanometer eyeglass 1353 is controlled to open Begin, the direction of rotation counter-rotating with predetermined angular speed relative to image-forming module 134, to compensate the picture of the subject Motion on the array image sensor of the image-forming module 134, makes subject in the face battle array of the image-forming module 134 On imaging sensor seems static, i.e. the counter rotational movement of the galvanometer eyeglass 1353 compensate for subject As motion on the array image sensor, subject is set on the array image sensor to seem static 's.So, the image quality on the array image sensor of the image-forming module 134 is more excellent, and the phenomenon of hangover is not had. After this photograph taking terminates, control the galvanometer eyeglass 1353 quickly to rotate to respective initial position, prepare next Zhang Zhao The shooting of piece;By that analogy, the acquisition of 360 degree of HD images is completed.
Further, the panoramic scanning device 40 can further comprise a motor (not shown), for controlling galvanometer eyeglass 1353 and the pitching motion of image-forming module 134, to control the angle of pitch, so as to control viewfinder range.
Also referring to Fig. 2 and Fig. 3, the panoramic scanning device 50 that the utility model second embodiment is provided includes base 11st, rotation platform 14 and light-guiding mechanism 13.The rotation platform 14 is arranged at the base 11, and the light-guiding mechanism 13 is set In the rotation platform 14, the rotation platform 14 can rotate relative to the base 11.
The panoramic scanning device 50 and first embodiment that the utility model second embodiment is provided are essentially identical, and its difference exists In the rotation platform 14 in embodiment may include rotating disk 141 and electric rotating machine 142, the image-forming module 134 and housing 132 It is arranged in the rotating disk 141, with the synchronous rotary of rotating disk 141.Further, the galvanometer unit 135 is arranged at institute State in rotating disk 141, and under the driving for the electric rotating machine 142 being arranged on base 11 with the synchronous rotary of rotating disk 141.
Specifically, the support beam 1351 and image-forming module 134 are arranged in the rotating disk 141, and in driving electricity Under the driving of machine 14, synchronous rotary is done with the rotating disk 141, the image-forming module 134 may be disposed at the rotating disk At the position of 141 rotary shaft.Further, because the galvanometer eyeglass 1353 by overarm 1352 is connected to the support beam 1351, therefore the galvanometer eyeglass 1353 can carry out 360 degree of rotations relative to the image-forming module 134.During rotation, The form 1326 equally does synchronous rotary with the rotating disk 141, therefore keeps from the incident light warp of the form 1326 Cross after the reflection of galvanometer eyeglass 1353, can enter in the image-forming module 134.In the present embodiment, the rotating disk 141 Can be a swing pinion, for driving support beam 1351 and the synchronous rotary of image-forming module 134.The galvanometer eyeglass 1353 and institute Same level can be located at by stating form 1326.
In addition, during shooting, the galvanometer eyeglass 1353 can be positive and negative under the driving of galvanometer motor 1354 With preset frequency relative to quick playback again after the direction of rotation counter-rotating of image-forming module 134 in the range of 10 degree, to compensate Motion of the picture of the subject in the image-forming module 134, makes subject in the face of the image-forming module 134 On array image sensor seems static, so as to improve the accuracy of identification of the panoramic picture of acquisition.
Also referring to Fig. 4, the panoramic scanning device 60 that the utility model 3rd embodiment is provided includes base 11, rotation Turn platform 14 and light-guiding mechanism 13.The rotation platform 14 is arranged at the base 11, and the light-guiding mechanism 13 is arranged at institute Rotation platform 14 is stated, the rotation platform 14 can rotate relative to the base 11.
The panoramic scanning device 60 that the utility model 3rd embodiment is provided is filled with the panoramic scanning that second embodiment is provided Put 50 structures essentially identical, its difference is, the rotation platform 14 is wholy set in the housing 132, and the form 1326 can be 360 degree of panorama forms, be set around housing 132.During the galvanometer unit 135 rotates, from form 1326 incident light are entered in image-forming module 134 after the reflection of galvanometer eyeglass 1353.Further, due to the form 1326 be panorama form, and is located at same level with the galvanometer eyeglass 1353, therefore in rotary course, is resulted in more The visual field of wide-angle, it is to avoid housing 132 is blocked.
Please refer to fig. 5, the utility model fourth embodiment further provides for a kind of panoramic scanning monitoring system 200, The panoramic scanning monitoring system 200 include panoramic scanning module 210, drive control module 120, communication module 130, at information Reason module 140 and image display 150 are electrically connected.The panoramic scanning module 110 is used to monitoring and obtaining panoramic picture, and The image of acquisition is transferred into signal processing module 130 by communication module group 120 to be handled;The drive control module 120 Panoramic scanning module 110 is driven to be shot for receiving the instruction that signal processing module 130 is sent, and according to control instruction Scanning;The signal processing module 130 is used to send control instruction to drive control module 120, and to the view data of acquisition Handled, the image after processing is shown by image display 140.
The panoramic scanning module 210 is included in panoramic scanning device 40, panoramic scanning device 50, panoramic scanning device 60 At least one, for obtaining monitoring image and scan image.The drive control module 120 is according to signal processing module 130 The control instruction sent, drives the panoramic scanning device to carry out image taking and panoramic scanning, to obtain different angles Image and static map.
Specifically, for convenience of understanding, being described by taking panoramic scanning device 40 as an example.When the panoramic scanning module 210 During including panoramic scanning device 40, the image-forming module 134 is fixed on the base 11, and the drive control module 120 can Control the start and stop of motor 124 and galvanometer motor 1353 described in panoramic scanning device 40, thus control rotation platform 12 and The rotation of galvanometer eyeglass 1353, to obtain the image of different angles, the image-forming module 134 rotation synchronous with the rotation platform 12 Turn.Further, when image-forming module 134 is imaged, the drive control module 120 can control galvanometer eyeglass 1353 and rotary flat Platform 12 rotates in a reverse direction, and the big I and the rotation platform of the counter-rotating angular speed of the galvanometer eyeglass 1353 The size of 12 angular velocity of rotation is identical, so that galvanometer eyeglass 1353 compensates the picture of the subject in image-forming module 134 In motion, make subject on the array image sensor of image-forming module 134 seem it is static, obtained so as to improve The accuracy of identification of the panoramic picture obtained.
It is appreciated that when the panoramic scanning device 40 is used to obtain the scene of fixed viewpoint, the drive control mould Block 120 can be an alternative construction.Now the panoramic scanning device 40 can be at fixed angle, with to some specific regions Carry out lasting monitoring.
The image information that the communication module 130 is used to obtain in panoramic scanning device 40 is transferred to message processing module 140 are handled.The communication module 130 may include wire communication module or wireless communication module, with suitable for different biographies The wireless mediums such as defeated medium, such as optical fiber, netting twine, cable wire medium, and carrier wave.
Described information processing module 140 is used to send drive control instruction to drive control module 120 according to demand, with right Different angles is monitored and carried out panoramic scanning, and the image information passed back to communication module 130 is handled, to obtain Obtain the image and panorama sketch of different angles.Specifically, described information processing module 140 may include at driver element and image Unit is managed, the driver element is used to drive image-forming module 134 to obtain visible images or infrared image, described image processing Unit, which is used to parsing the infrared image or visible images of acquisition, splices, merges etc., to be handled, to obtain different periods Image.
Described image display module 140 is used to show the image that panoramic scanning device 110 is obtained, aobvious by image Show that module 140 can monitor panoramic scanning device 110 in real time to the image acquired in neighboring scan.
Similar, when the panoramic scanning module 210 includes panoramic scanning device 50 or panoramic scanning device 60, institute State drive control module 120 and can control the start and stop of the electric rotating machine 142 and galvanometer motor 1353, so as to control rotation platform 14 And the rotation of galvanometer eyeglass 1353, to obtain the image of different angles.Further, when shooting, the drive control module 120 Can be according to the capture frequency of the image-forming module of selection, control galvanometer eyeglass 1353 to return quickly soon after the predeterminated frequency rotation that matches Position, and galvanometer eyeglass 1353 rotates in a reverse direction with rotation platform 14 so that galvanometer eyeglass 1353 compensate described in be taken Motion of the picture of object in image-forming module 134, makes picture of the subject on the array image sensor of image-forming module 134 It is static, so as to improve the accuracy of identification of the panoramic picture of acquisition.
It is appreciated that above-mentioned panoramic scanning module can be also other panoramic scanning devices, it can carry out according to actual needs Different selection, combination, to reach different monitoring effects.
In addition, those skilled in the art can also do other changes in the utility model spirit, these are according to this practicality The change that new spirit is done, should all be included in the claimed scope of the utility model.

Claims (15)

1. a kind of panoramic scanning device, it is characterised in that the panoramic scanning device includes:
Rotation platform, the rotation platform has a rotary shaft;
Image-forming module, the image-forming module is set with the rotation platform synchronous rotary;
Galvanometer eyeglass, for the light for inciding galvanometer eyeglass to be reflected into image-forming module, makes to enter the image-forming module Light ray parallel in the rotary shaft, the galvanometer eyeglass can positive and counter-rotating, and direction of rotation is switched with predeterminated frequency.
2. panoramic scanning device as claimed in claim 1, it is characterised in that the rotary shaft of the image-forming module, the galvanometer The rotary shaft of eyeglass rotation is coaxial with the rotary shaft of the rotation platform.
3. panoramic scanning device as claimed in claim 1, it is characterised in that when the galvanometer eyeglass is relative to image-forming module During the counter-rotating of direction of rotation, the size of the galvanometer eyeglass angular velocity of rotation and the size of the image-forming module angular velocity of rotation It is identical.
4. panoramic scanning device as claimed in claim 1, it is characterised in that the position of the galvanometer eyeglass and the image-forming module Relation satisfaction is put, rotary shaft of the light of galvanometer eyeglass parallel to image-forming module after galvanometer lens reflecting is incided and enters imaging In module.
5. panoramic scanning device as claimed in claim 1, it is characterised in that enter the light of the image-forming module along it is described into As the rotary shaft of module is propagated.
6. panoramic scanning device as claimed in claim 1, it is characterised in that the galvanometer eyeglass is synchronous with the image-forming module Rotation, on the basis of synchronous rotary, the galvanometer eyeglass can be positive relative to the direction of rotation of the image-forming module and reverse Rotation.
7. panoramic scanning device as claimed in claim 1, it is characterised in that the galvanometer eyeglass has initial position, described Galvanometer eyeglass can carry out the forward direction in the range of 10 degree with predeterminated frequency relative to the initial position or counter-rotating and reset.
8. a kind of panoramic scanning device, it is characterised in that the panoramic scanning device includes:
Rotating shaft is provided with base, base;
Rotation platform, around rotating shaft rotation;
Image-forming module, with the rotation platform synchronous rotary;
Galvanometer eyeglass, is arranged on the rotation platform, for by the light for inciding the galvanometer eyeglass reflect into it is described into In picture module, and the light for inciding the galvanometer eyeglass is incident in image-forming module along the direction parallel to rotating shaft;
Motor, for driving the rotating shaft to rotate, and drives the rotation platform and galvanometer eyeglass to rotate;
Galvanometer motor, for driving galvanometer eyeglass relative to the direction of rotation forward direction of image-forming module and counter-rotating, and with default Frequency error factor direction of rotation.
9. panoramic scanning device as claimed in claim 8, it is characterised in that when the galvanometer eyeglass is relative to image-forming module During the counter-rotating of direction of rotation, the angular velocity of rotation size phase of angular speed and image-forming module during the galvanometer eyeglass counter-rotating Together.
10. panoramic scanning device as claimed in claim 8, it is characterised in that further comprise support beam, the support beam is set Be placed on the rotation platform and with the image-forming module synchronous rotary, the galvanometer eyeglass and the galvanometer motor are arranged at institute State in support beam.
11. panoramic scanning device as claimed in claim 10, it is characterised in that the image-forming module is arranged at rotation platform On, the rotation platform includes rotation upper mounting plate and rotation lower platform, and the rotating shaft runs through the rotation lower platform, the rotation Upper mounting plate has opening, and the image-forming module is arranged in the opening and from the opening be exposed to receive incidence Light.
12. panoramic scanning device as claimed in claim 8, it is characterised in that the rotary shaft of the galvanometer eyeglass and described turn Axle be arranged in parallel.
13. panoramic scanning device as claimed in claim 8, it is characterised in that the image-forming module is arranged at rotating shaft top, and Rotary shaft, the rotary shaft of the image-forming module of the galvanometer eyeglass are coaxial with the rotating shaft to be set.
14. a kind of panoramic scanning device, it is characterised in that the panoramic scanning device includes:
Image-forming module, the image-forming module has optical axis;
Galvanometer eyeglass, is arranged at on the light of image-forming module, for the light for inciding galvanometer lens surface to be reflected into In the image-forming module, the galvanometer eyeglass can switch rotation relative to the forward and reverse rotation of the image-forming module, and with predeterminated frequency Turn direction, the rotary shaft of the galvanometer eyeglass is parallel with the optical axis of image-forming module.
15. panoramic scanning device as claimed in claim 14, it is characterised in that further comprise housing, the housing has Form, the galvanometer eyeglass is arranged in housing, and imaging is incided after galvanometer lens reflecting from the incident light of panorama form In module.
CN201621088178.7U 2016-09-28 2016-09-28 Panoramic scanning device Expired - Fee Related CN206411335U (en)

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Application Number Priority Date Filing Date Title
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107870415A (en) * 2016-09-28 2018-04-03 刘辉 Panoramic scanning device
CN110031908A (en) * 2019-04-18 2019-07-19 西安天和防务技术股份有限公司 Optical mechaical scanning device and optical mechaical scanning imaging system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107870415A (en) * 2016-09-28 2018-04-03 刘辉 Panoramic scanning device
CN110031908A (en) * 2019-04-18 2019-07-19 西安天和防务技术股份有限公司 Optical mechaical scanning device and optical mechaical scanning imaging system

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