CN201382898Y - Transmission visibility measuring device - Google Patents

Transmission visibility measuring device Download PDF

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Publication number
CN201382898Y
CN201382898Y CN200920041760U CN200920041760U CN201382898Y CN 201382898 Y CN201382898 Y CN 201382898Y CN 200920041760 U CN200920041760 U CN 200920041760U CN 200920041760 U CN200920041760 U CN 200920041760U CN 201382898 Y CN201382898 Y CN 201382898Y
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China
Prior art keywords
quadrant
signal processing
photo detector
transmission
computer control
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Expired - Fee Related
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CN200920041760U
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Chinese (zh)
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肖韶荣
薛鸣方
夏江涛
赵静
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JIANGSU PROVINCIAL RADIO INST CO Ltd
Nanjing University of Information Science and Technology
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JIANGSU PROVINCIAL RADIO INST CO Ltd
Nanjing University of Information Science and Technology
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Abstract

The utility model provides a transmission atmospheric visibility measuring device with high long-term reliability and accurate visibility measurement. The device comprises an emission part and a detection part, wherein the detection part includes a receiving unit, photoelectric signal processing units, a data acquisition unit and a computer control unit; the receiving unit adopts a four-quadrant photoelectric detector; the photoelectric signal processing units are arranged for light beams detected by each quadrant respectively; and the signals output by the photoelectric signal processing units are sent to the computer control unit through the data acquisition unit, which further controls the center coordinate of the four-quadrant photoelectric detector.

Description

Transmission-type visibility measuring device
One, technical field
The utility model designs a kind of optical radiation reception and measurement mechanism, particularly a kind of transmission-type atmospheric visibility measurement mechanism, measurement of extinction coefficient and autotracker when belonging to optical radiation energy and propagating in atmosphere.
Two, background technology
Atmospheric visibility is producing important influence in lasercom, picture transmission and Modern Transportation Technology.Visibility measurement also is subjected to people's attention always, along with the development of Modern Traffic networks development, particularly highway, water transport and aircraft industry, need monitor in real time atmospheric visibility, and it is important that the measurement of visibility also more shows.The measurement of visibility depends on the measurement of light beam extinction coefficient.Typical measuring method has forward scattering method and transmission beam method two classes.The forward scattering method is selected the faint near infrared light of Atmospheric Absorption, becoming 35 ° of directions with the detecting light beam direction of propagation, the measured angular scattering coefficient, again by certain atmospheric optics mode computation total scattering coefficient, and determine visibility according to the Koschmieder law, the measuring error of this method is decided by the measurement of total scattering coefficient.In existing forward scattering subtraction unit, as follows: the background interference that the influence of the influence of optical mode, scatter sounding beam divergence angle, background radiation interference and scattered radiation produce and the influence of proving installation structure thermal deformation etc. to the main determining factor of total scattering coefficient measuring error.These devices are when measuring the scattering coefficient at 35 ° of scattering angle places, the incident beam that light-receiving member is collected not is the parallel beam under the strict difinition, but being distributed in the interior light beam of big cone angle, the scattering coefficient that obtains thus is bigger than the scattering coefficient of this actual direction.Though transmission beam method is the most a kind of method, but different place because the emission of light beam and measurement are separated by, and it is far away at interval, because of reasons such as the vibration of atmospheric disturbance or measurement mechanism, landform variation cause hot spot to drift about on the photodetector receiving plane, it is inaccurate to make the attenuation coefficient of detecting light beam on travel path measure, even causes measuring failure.
Three, summary of the invention
The purpose of this utility model is the transmission-type atmospheric visibility measurement mechanism that a kind of long-term reliability height is provided, can accurately measures visibility.
The purpose of this utility model is achieved through the following technical solutions:
A kind of transmission-type atmospheric visibility measurement mechanism, it comprises radiating portion and probe portion, probe portion comprises receiving element, Photoelectric Signal Processing unit, data acquisition unit and computer control unit, described receiving element adopts four-quadrant photo detector, the light beam that each quadrant is surveyed is equipped with the Photoelectric Signal Processing unit, and the signal of each Photoelectric Signal Processing unit output is sent into computer control unit through data acquisition unit; Centre coordinate by computer control unit control 4 quadrant detector.
Four-quadrant photo detector is provided with and keeps its characterisitic parameter not with the conductor temperature control circuit of variation of ambient temperature.
The mounting seat of described four-quadrant photo detector is provided with X-axis and Y-axis translation stage, and X-axis is connected a stepper motor respectively with the Y-axis translation stage, and two stepper motors connect computer control unit respectively.
The Photoelectric Signal Processing unit comprises: prime amplifier, bandwidth-limited circuit and accurate effective value change-over circuit.Data acquisition unit adopts the multichannel synchronous sampling circuit.The light beam of four quadrants is sent into computer control unit by the multichannel synchronous sampling circuit again after Photoelectric Signal Processing cell processing separately.
The utility model has following advantage compared to existing technology:
The utility model adopts the automatic tracking technique of four-quadrant detecting light beam, follows the tracks of detecting light beam and measurement detecting light beam power or intensity and uses same detector, and the assurance detector is accurately aimed at detecting light beam, can effectively suppress the influence that the detecting light beam drift produces.Guarantee that the position of hot spot on the detector receiving plane is constant substantially, solved the influence problem of the spot drift of existence for many years, can measure described attenuation coefficient comparatively exactly visibility measurement.Another remarkable advantage is, detector is taked the temperature control measure, suppressed the influence of environment temperature, improved long-term reliability.Laser instrument is adopted temperature control technology, make the output wavelength stabilized laser, avoid surveying of the influence of optical wavelength shakiness measuring.
The luminous power sum that method of the present utility model detects with the every quadrant of four-quadrant photo detector is represented the transmitted optical power of transmission-type atmospheric visibility detecting light beam, advantage is to utilize the monochromatic light road to realize simultaneously measuring and following the tracks of, thereby light path system is simple, test macro long-term reliability height.
Four, description of drawings
Fig. 1 is the structured flowchart of transmission-type visibility measuring instrument;
Fig. 2 is the radiating portion assembly structure synoptic diagram of embodiment;
Fig. 3 is the probe portion assembly structure synoptic diagram of embodiment;
Fig. 4 the utility model four-quadrant optical signal processing system schematic diagram;
The theory diagram that Fig. 5 surveys for the utility model four-quadrant.
Among the figure: the a-mounting base; The b-pillar; C-launches assembly; The d-laser beam; The e-detection assembly; The f-pillar; The g-controller case; The h-mounting base.
The 1-laser drive power; The 2-semiconductor laser; The 3-collimating apparatus; The 4-detecting light beam; The 5-convex lens; The 6-four-quadrant photo detector; 7-is the metallic cylinder of convex lens fixedly; The 8-installation base plate; 9-X axle translation stage; 10-X axle translation stepper motor; 11-Y axle translation stage; 12-Y axle translation stepper motor; The 13-data acquisition unit; The 14-stepper motor driving circuit; The 15-stepper motor driving circuit; The 16-computer control unit; The 17-data transmission interface; 18-conductor temperature control circuit.
The 21-24 prime amplifier; The 31-34 bandpass filter; 41-44 multiplier and π type filtering combination.
Five, embodiment
As Fig. 1, Fig. 2, shown in Figure 3, transmission-type atmospheric visibility measurement mechanism of the present utility model, it comprises radiating portion and probe portion, probe portion comprises receiving element, the Photoelectric Signal Processing unit, data acquisition unit 13 and computer control unit 16, receiving element adopts four-quadrant photo detector 6, promptly divide four the tunnel to sample to the light beam after assembling, divide from the orientation by four quadrants, and divide four tunnel outputs with the light beam of surveying, the light beam of each road output is imported Photoelectric Signal Processing unit separately respectively, sends into computer control unit 16 through the signal of each Photoelectric Signal Processing unit output through data acquisition unit and handles; Centre coordinate by four quadrant photodetectors 6 of computer control unit 16 controls.
The Photoelectric Signal Processing unit comprises: prime amplifier 21,22,23,24, bandwidth- limited circuit 31,32,33,34 and accurate multiplier and π type filtering combination 41,42,43,44.Data acquisition unit 13 comprises multichannel synchronous sampling circuit and A/D converter.
Radiating portion comprises semiconductor laser 2, laser drive power 1.Laser drive power 1 is provided with laser temperature control circuit, luminous power modulation circuit and light power stabilising circuit, guarantees that laser instrument sends optical wavelength and power does not change with the variation of environment, and effectively suppresses the influence of surround lighting variation to measuring.
Receiving element comprises laser beam datum system, laser pick-off probe.Wherein semiconductor laser 2 is connected with laser drive power 1, laser beam datum device 3 is made of the anaberration optical lens group, collimating apparatus 3 places laser output, propagate certain distance through collimation back laser beam and arrive the laser pick-off probe, receiving transducer is by the fixedly metallic cylinder 7 and convex lens 5 of convex lens, the installation base plate 8 of four-quadrant photo detector 6 and band conductor temperature control circuit is formed, convex lens 5 are positioned at the front end of receiving transducer, laser beam is focused on the four-quadrant photo detector 6 through convex lens 5, and four-quadrant photo detector 6 is positioned at the receiving transducer rear end; Four-quadrant photo detector 6 is installed on the substrate 8 that is provided with the conductor temperature controller, and the light transfer characteristic parameter that guarantees four-quadrant photo detector 6 is not with variation of ambient temperature.The conductor temperature control circuit 18 of four-quadrant photo detector is connected with computer control unit 16.
Four-quadrant photo detector 6 is divided into four probe units with detecting light beam, and each probe unit is connected with the prime amplifier 21,22,23,24 of separately Photoelectric Signal Processing unit respectively.
The installation base plate 8 of four-quadrant photo detector 6 is arranged on X-axis and the Y-axis translation stage, be that X-axis translation stage 9 and Y-axis translation stage 11 are as tracking unit, X-axis is connected a stepper motor respectively with the Y-axis translation stage, i.e. X-axis translation stepper motor 10 and Y-axis translation stepper motor 12.Two stepper motors are respectively equipped with stepper motor driving circuit, and control moving along X-axis and Y-axis of two stepper motors by computer control unit 16, thereby the tracking Control to hot spot is finished in the adjustment of the centre coordinate of control four-quadrant photo detector 6.
The course of work of the present utility model:
As Fig. 4, shown in Figure 5, semiconductor laser 2 of the present utility model is launched frequency 1.0kHz light pulse sequence under the driving of driving power, behind beam collimation device 3, become parallel beam, after propagating the distance of regulation, arrive the convex lens 5 that the light-receiving list does not have, converge to the surface of four-quadrant photo detector 6, four-quadrant photo detector 6 is divided into four parts with light beam, an i.e. quadrant, two quadrant, three quadrants, four-quadrant.Each quadrant is a photodetection unit, the light signal that receives is converted to electric signal, the photosignal of all quadrants probe unit output is through separately prime amplifier 21,22,23,24, bandpass filter 31,32,33,34 and multiplier and the filtering of π type combination 41,42,43,44 are converted into d. c. voltage signal, its size is directly proportional with the luminous power that probe unit separately receives, computer control unit 12 obtains the average power of each road light signal of four-quadrant photo detector respectively by multichannel synchronous sampling circuit 11 and A/D converter, according to the emission luminous power, by following formula (7), (4) and (1) or (2) or (3) calculate visibility; Calculate the coordinate of spot center on four-quadrant photo detector 6 by formula (8) and formula (9), 13,14 work of control step motor driver, X-axis translation stepper motor 7 and Y-axis translation stepper motor 9, X-axis translation stage 8 and Y-axis translation stage 10 are moved, adjust the orientation of four-quadrant photo detector 6, realize two dimension control.
Principle of work of the present utility model:
Represent visibility with meteorological range, press the regulation of ground observation standard, when distant object thing-background contrasts drop to contrast nearby 0.02 the time, pairing distance definition is a visibility, it is provided by the Koschmieder law
R m = 3.912 κ ex - - - ( 1 )
κ wherein ExBe that atmosphere is the monochromatic extinction coefficient of 550nm to wavelength.With the monochromatic light of other wavelength X as surveying the light time, formula (1) should be rewritten as
R m = 3.912 κ ex ( 0.55 λ ) 0.583 R m 1 / 3 - - - ( 2 )
Formula (2) is a transcendental equation, can only obtain numerical solution.The measuring accuracy of visibility depends on κ ExWith the measuring accuracy of wavelength, high many of the measuring accuracy of the measuring accuracy specific extinction coefficient of actual measurement medium wavelength.
At aviation field, in order to guarantee the safety of aircraft, objective definition thing-background contrasts drops to 0.05 o'clock of contrast nearby, and pairing distance is a visibility
R m = 2.996 κ ex - - - ( 3 )
The collimated laser beam of determining with wavelength is as detecting light beam, measures the transmitance τ behind its transmission certain distance, determines that according to Lambert-Beer's law detecting light beam passes the extinction coefficient κ of regional atmospheric ExThe laser power of surveying optical transmitting set output is I 0, the luminous power that optical receiver receives is I R, extinction coefficient to be measured is
κ ex = ln ( I 0 I R ) - - - ( 4 )
In the utility model, receive detecting light beam with four-quadrant photo detector, detecting light beam is about 1/2nd of diameter detector through the spot diameter that is incident upon on the four-quadrant photo detector face behind the collector lens, corresponding each quadrant is provided with a Photoelectric Signal Processing unit channel, the preposition amplification that each quadrant connected, the performance parameter of Photoelectric Signal Processing unit are the same, as shown in Figure 4.Four d. c. voltage signal u that passage is exported separately iWith this passage respective quadrants luminous power I RiBe directly proportional,
u i=ξ iI Ri (5)
Because each electronic circuit channel performance parameter is identical, i.e. ξ 1234=ξ, computer system is sampled to four tunnel signal Synchronization, and the gained voltage signal sued for peace
u = ξ Σ i = 1 4 I Ri , - - - ( 6 )
The total optical power that arrives optical receiver is
I R = 1 τ 1 · ζ Σ i = 1 4 I Ri = u τ 1 · ζ · ξ - - - ( 7 )
τ wherein 1The transmitance of optical receiver collector lens, ζ is that the four-quadrant photo detector division line is to being transmitted to four-quadrant photo detector surface facula area efficiency factor.Measure emission luminous power and received optical power, utilize formula (7), (4) and (1) or (2) or (3) to calculate visibility.
The luminous power of four passages of four-quadrant photo detector that another importance of the present utility model is a computer control unit to be obtained according to the multichannel synchronized sampling is calculated as follows the position coordinates of spot center on detector
X = α [ ( I R 1 + I R 4 ) - ( I R 2 + I R 3 ) ] I R 1 + I R 2 + I R 3 + I R 4 - - - ( 8 )
Y = α [ ( I R 1 + I R 2 ) - ( I R 3 + I R 4 ) ] I R 1 + I R 2 + I R 3 + I R 4 - - - ( 9 )
Wherein α is the luminous power of detector reception and the conversion coefficient between the spot center coordinate.Computer control unit moves the two-dimension translational platform according to the work of coordinate figure size control step motor driver, almost overlaps with four-quadrant photo detector division line intersection point until spot center, realizes the automatic aligning tracking of detector to light beam.

Claims (5)

1, a kind of transmission-type atmospheric visibility measurement mechanism, it comprises radiating portion and probe portion, probe portion comprises receiving element, Photoelectric Signal Processing unit, data acquisition unit and computer control unit, it is characterized in that: described receiving element adopts four-quadrant photo detector, the light beam that each quadrant is surveyed is equipped with the Photoelectric Signal Processing unit, the signal of each Photoelectric Signal Processing unit output is sent into computer control unit through data acquisition unit, by the centre coordinate of computer control unit control four-quadrant photo detector.
2, transmission-type atmospheric visibility measurement mechanism according to claim 1 is characterized in that: four-quadrant photo detector is provided with and keeps its characterisitic parameter not with the conductor temperature control circuit of variation of ambient temperature.
3, transmission-type atmospheric visibility measurement mechanism according to claim 1, it is characterized in that: the mounting seat of described four-quadrant photo detector is provided with X-axis and Y-axis translation stage, X-axis is connected a stepper motor respectively with the Y-axis translation stage, and two stepper motors connect computer control unit respectively.
4, transmission-type atmospheric visibility measurement mechanism according to claim 1, it is characterized in that: described Photoelectric Signal Processing unit comprises: prime amplifier, bandwidth-limited circuit and effective value change-over circuit.
5, transmission-type atmospheric visibility measurement mechanism according to claim 1 is characterized in that: data acquisition unit adopts the multichannel synchronous sampling circuit.
CN200920041760U 2009-04-10 2009-04-10 Transmission visibility measuring device Expired - Fee Related CN201382898Y (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102305768A (en) * 2011-05-14 2012-01-04 浦国荣 Device for detecting atmospheric visibility
CN104267002A (en) * 2014-10-16 2015-01-07 四川鼎林信息技术有限公司 Transmission type visibility meter for improving measurement accuracy and measurement method of visibility meter

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102305768A (en) * 2011-05-14 2012-01-04 浦国荣 Device for detecting atmospheric visibility
CN104267002A (en) * 2014-10-16 2015-01-07 四川鼎林信息技术有限公司 Transmission type visibility meter for improving measurement accuracy and measurement method of visibility meter
CN104267002B (en) * 2014-10-16 2016-09-07 四川鼎林信息技术有限公司 Improve transmission-type visibility meter and the measuring method thereof of accuracy of measurement

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C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20100113

Termination date: 20110410