CN101813518B - Method for measuring photometric quantity of mesopic vision - Google Patents

Method for measuring photometric quantity of mesopic vision Download PDF

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CN101813518B
CN101813518B CN2009103065168A CN200910306516A CN101813518B CN 101813518 B CN101813518 B CN 101813518B CN 2009103065168 A CN2009103065168 A CN 2009103065168A CN 200910306516 A CN200910306516 A CN 200910306516A CN 101813518 B CN101813518 B CN 101813518B
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vision
photometry
mesopic
photopic
mesopic vision
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CN101813518A (en
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潘建根
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Hangzhou Everfine Photo E Info Co Ltd
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Hangzhou Everfine Photo E Info Co Ltd
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Abstract

The invention relates to a method and a device for measuring photometric quantity of mesopic vision. In the measuring method, a spectrograph and a photopic vision luminosity probe are used for measuring relative spectral power distribution and photopic vision photometric quantity of measured light respectively; and the absolute spectral power distribution of the measured light is calculated through the relative spectral power distribution and photopic vision photometric quantity so as to calculate the photometric quantity of the mesopic vision of the measured light according to a mesopic vision model. The method can be suitable for any mesopic vision computation model and has higher measurement accuracy. The mesopic vision photometer combines the spectrograph and the photopic vision luminosity probe into measuring equipment, so that the measuring operation of the mesopic vision is convenient and the measuring equipment is suitable for measuring all light sources.

Description

A kind of measuring method of photometric quantity of mesopic vision
Technical field
The invention belongs to the optical radiation measurement field, be specifically related to a kind of measuring method and measurement mechanism thereof of photometric quantity of mesopic vision.
Background technology
When the brightness of human eye light stimulus at about 3 cd/m 2When above, mainly the vision that is obtained by the human eye cones claims photopic vision or cones's vision, the photopic vision luminous efficiency function of CIE regulation
Figure 2009103065168100002DEST_PATH_IMAGE001
Be basis and the foundation that current photometric is learned calculating, measurement and illumination Design.The brightness of light stimulus is about 0.001 cd/m 2Below, promptly the vision that is mainly obtained by rod cells under the dark adatpation situation claims noctovision or rod cells vision, CIE has also stipulated noctovision luminous efficiency function in nineteen fifty-one
Figure 2009103065168100002DEST_PATH_IMAGE002
, noctovision luminous efficiency function curve moves to the shortwave direction with respect to photopic vision luminous efficiency function curve.When brightness of illumination is between photopic vision and noctovision, i.e. brightness is at 0.001 cd/m 2~3 cd/m 2Between the time, such as night-road illumination and traffic lighting etc., belong to the mesopic vision state, the cones of human eye and rod cells are simultaneously movable and interact in this state.The luminous efficiency function of mesopic vision
Figure 2009103065168100002DEST_PATH_IMAGE003
Relevant with concrete illumination level, under mesopic vision conditions such as night illumination, the luminous efficiency function as all using the photopic vision photometric standard, then can produce inappropriate or even wrong result with respect to the skew of photopic vision luminous efficiency function in photometric measurement calculating and illumination Design.
Summary of the invention
In order to overcome defective of the prior art, the present invention aims to provide a kind of method of the easy to use and measurement mesopic vision photometric quantity that measuring accuracy is higher.
The mesopic vision photometric quantity measurement mechanism that provides a kind of precision higher is provided another object of the present invention.
In order to achieve the above object, the present invention has adopted following technical proposal:
A kind of measuring method of photometric quantity of mesopic vision is characterized in that may further comprise the steps:
(1) distributed by the relative spectral power of photometry with spectrometer measurement, the photopic vision luminosity probe that the photopic vision luminous efficiency function of stipulating with spectrum sensitivity and CIE is complementary is measured by the photopic vision light quantity G of photometry;
(2) distribute by photopic vision light quantity G with by the relative spectral power of photometry , calculate by the absolute light spectral power distributions of photometry
Figure 2009103065168100002DEST_PATH_IMAGE005
:
Figure 2009103065168100002DEST_PATH_IMAGE006
(1)
(3) according to by the absolute light spectral power distributions of photometry
Figure 635583DEST_PATH_IMAGE005
, by mesopic vision photometry Model Calculation photometric quantity of mesopic vision.
In the present invention, utilize, obtain,, can guarantee under the condition of using arbitrary model, accurately to obtain the mesopic vision photometric quantity value by this value by the absolute light spectral power of photometry to by the photopic vision light quantity of photometry and the measurements and calculations of relative spectral.The measuring method of photometric quantity of mesopic vision of the present invention is applicable to any light source.
Similarly can also use spectrum sensitivity and noctovision luminosity probe to measure with the method for the invention by the noctovision shading value of photometry, by calculating photometric quantity of mesopic vision with quadrat method, but compare with the photopic vision luminosity probe, scotopic luminosity probe on the market seldom, technology is immature relatively, though therefore this method is feasible, practical application has difficulties.
The present invention can also do further to improve and be perfect:
Record by spectrometer , photopic vision luminous efficiency function
Figure 681085DEST_PATH_IMAGE001
And the relative spectral sensitivity of described photopic vision luminosity probe
Figure DEST_PATH_IMAGE007
, calculate the spectrum correction factor
Figure 2009103065168100002DEST_PATH_IMAGE008
, and be used for revising photopic vision light quantity G and obtain more accurate photopic vision light quantity G c, spectrum resolution is repaiied COEFFICIENT K and can be undertaken by following formula:
Figure DEST_PATH_IMAGE009
(2)
In the formula
Figure 2009103065168100002DEST_PATH_IMAGE010
Be being distributed that described spectroscopic analysis system records by the relative spectral power of photometry,
Figure DEST_PATH_IMAGE011
,
Figure DEST_PATH_IMAGE012
Be respectively the relative spectral sensitivity of described photopic vision luminosity probe and noctovision luminosity probe, Be the known spectra distribute power of the standard sources that is used to calibrate described luminosity probe, Photopic vision luminous efficiency function for the CIE recommendation.
With revised photopic vision light quantity G cSubstitute the G in the formula (1), calculate by the absolute light spectral power distributions of photometry, to obtain higher absolute value precision, computing formula is as follows:
(3)
In the formula
Figure 448196DEST_PATH_IMAGE010
Be being distributed that described spectroscopic analysis system records by the relative spectral power of photometry.
In the such scheme, mesopic vision photometry model is that the model or the X of CIE regulation touches the known mesopic vision photometry model of type or MOVE model or other.At present the reliable method of research mesopic vision photometry is the visual performance method, and people have obtained the various model of mesopic vision luminous efficiency function according to the visual performance method, X model for example, and MOVE model etc.:
1) X model
Figure DEST_PATH_IMAGE015
(5)
Wherein
Figure DEST_PATH_IMAGE016
Expression mesopic vision spectrum is looked the effect function.
Figure DEST_PATH_IMAGE017
(6)
When photopic vision brightness is that 0.001 nit is when following
Figure DEST_PATH_IMAGE018
=0; Photopic vision brightness is 0.6 nit when above,
Figure 498060DEST_PATH_IMAGE018
=1. Be mesopic vision brightness.By formula (5) (6) and record photopic vision and noctovision brightness
Figure DEST_PATH_IMAGE020
Can be in the hope of under any mesopic vision lighting condition
Figure 847002DEST_PATH_IMAGE016
2) MOVE model
Figure DEST_PATH_IMAGE021
(7)
Wherein
Figure DEST_PATH_IMAGE022
(8)
Wherein
Figure DEST_PATH_IMAGE023
=555nm, satisfy the optional position
Figure DEST_PATH_IMAGE024
Record photopic vision and noctovision brightness , can be in the hope of under any mesopic vision lighting condition by formula (7) (8)
Figure 317484DEST_PATH_IMAGE016
Wherein
Figure 916961DEST_PATH_IMAGE023
=555nm,
Figure DEST_PATH_IMAGE025
Go out the luminous efficiency function Vm (λ) of mesopic vision according to mesopic vision photometry Model Calculation, will be tried to achieve by the photometric quantity of mesopic vision of photometry with Vm (λ) weighted integral respectively by the absolute light spectral power P (λ) of photometry.
Perhaps, by (λ) being calculated, calculate by the photometric quantity of mesopic vision of photometry by photopic vision shading value and noctovision shading value according to mesopic vision photometry model by the noctovision shading value of photometry by the absolute light spectral power P (λ) of photometry and the noctovision luminous efficiency function V ' of CIE regulation.
The present invention also provides a kind of device of measuring photometric quantity of mesopic vision, and promptly a kind of mesopic vision photometer comprises the photopic vision luminous efficiency function of a spectrometer that is used for the measure spectrum distribute power and spectrum sensitivity and CIE regulation The photopic vision luminosity probe that is complementary, described spectrometer and photopic vision luminosity probe are electrically connected with same microelectronic processing unit.Be electrically connected with computer by microelectronic processing unit, have computer software directly to calculate mesopic vision photometric quantity.
Mechanical scanning type spectrometer or described spectrometer that above-mentioned spectrometer is made up of monochromator and photodetector are by the rapid spectrometer of detector array as electrooptical device.
In sum, the measuring method of photometric quantity of mesopic vision of the present invention can be used arbitrary mesopic vision computation model, measures easily and accurately by the photometric quantity of mesopic vision of photometry, is applicable to the measurement of any light source.Mesopic vision photometer of the present invention combines spectrometer and photopic vision probe, and easy to operate, applicability is strong.
[description of drawings]
Accompanying drawing 1 is a CIE relative spectral luminous efficiency curve
Figure 64226DEST_PATH_IMAGE001
(photopic vision) and
Figure DEST_PATH_IMAGE026
(noctovision).
Accompanying drawing 2 is mesopic vision photometer structural representations of the present invention.
[embodiment]
Mesopic vision photometer of the present invention as shown in Figure 2, spectrometer 1 and photopic vision luminosity probe 2 are electrically connected with same microelectronic processing unit 3, and are connected to computer.Spectrometer is the rapid spectrometer with detector array 1-1, the photopic vision luminous efficiency function V (λ) of the spectrum sensitivity match CIE regulation of photopic vision luminosity probe.In computer known photopic vision of storage and noctovision spectrum look imitate function V (λ), V ' (λ), the relative spectral sensitivity S of photopic vision luminosity probe Rel(λ), the relative spectral power P of the standard lamp of calibration photopic vision luminosity probe S(λ) and corresponding mesopic vision photometer calculate program.The light signal collection device 1-2 and the luminosity probe of spectrometer are measured simultaneously by photometry, obtain by the relative spectral sensitivity P of photometry t(λ) with photopic vision light quantity G.Calculate the spectrum correction factor according to following formula
Figure 440849DEST_PATH_IMAGE009
, K be multiply by G obtains having more high-precision photopic vision shading value G CUtilize G CWith by the relative spectral of photometry, calculate by the absolute light spectral power of photometry, Utilize the absolute light spectral power, calculate model, calculate by the photometric quantity of mesopic vision of photometry according to the mesopic vision photometer of CIE files specify.

Claims (5)

1. the measuring method of a photometric quantity of mesopic vision is characterized in that may further comprise the steps:
(1) distributed by the relative spectral power of photometry with spectrometer measurement
Figure 2009103065168100001DEST_PATH_IMAGE001
, with the photopic vision luminous efficiency function of spectrum sensitivity and CIE regulation
Figure 767784DEST_PATH_IMAGE002
The photopic vision luminosity probe that is complementary is measured by the photopic vision light quantity G of photometry;
(2) distribute by photopic vision light quantity G with by the relative spectral power of photometry
Figure 590246DEST_PATH_IMAGE001
, calculate by the absolute light spectral power distributions of photometry
Figure DEST_PATH_IMAGE003
:
(3) according to by the absolute light spectral power distributions of photometry
Figure 180813DEST_PATH_IMAGE003
, by mesopic vision photometry Model Calculation photometric quantity of mesopic vision.
2. the measuring method of photometric quantity of mesopic vision according to claim 1 is characterized in that the relative spectral power that is recorded by spectrometer distributes
Figure 849692DEST_PATH_IMAGE001
, photopic vision luminous efficiency function
Figure 780739DEST_PATH_IMAGE002
And the relative spectral sensitivity of photopic vision luminosity probe
Figure DEST_PATH_IMAGE005
, calculate the spectrum correction factor
Figure 739597DEST_PATH_IMAGE006
, and be used for revising photopic vision light quantity G and obtain more accurate photopic vision light quantity G c, with revised photopic vision light quantity G cCalculating is by the absolute light spectral power distributions of photometry.
3. the measuring method of photometric quantity of mesopic vision according to claim 1 and 2 is characterized in that going out according to mesopic vision photometry Model Calculation the luminous efficiency function V of mesopic vision m(λ), will by the absolute light spectral power P (λ) of photometry respectively with V m(λ) weighted integral is tried to achieve by the photometric quantity of mesopic vision of photometry.
4. the measuring method of photometric quantity of mesopic vision according to claim 1 and 2, it is characterized in that calculating by the photometric quantity of mesopic vision of photometry by photopic vision shading value and noctovision shading value according to mesopic vision photometry model according to (λ) being calculated by the noctovision shading value of photometry by the absolute light spectral power P (λ) of photometry and the noctovision luminous efficiency function V ' of CIE regulation.
5. the measuring method of photometric quantity of mesopic vision according to claim 3, it is characterized in that calculating by the photometric quantity of mesopic vision of photometry by photopic vision shading value and noctovision shading value according to mesopic vision photometry model according to (λ) being calculated by the noctovision shading value of photometry by the absolute light spectral power P (λ) of photometry and the noctovision luminous efficiency function V ' of CIE regulation.
CN2009103065168A 2009-09-03 2009-09-03 Method for measuring photometric quantity of mesopic vision Expired - Fee Related CN101813518B (en)

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