CN104089903B - A kind of snowflakes beef detection apparatus and method - Google Patents
A kind of snowflakes beef detection apparatus and method Download PDFInfo
- Publication number
- CN104089903B CN104089903B CN201410125400.5A CN201410125400A CN104089903B CN 104089903 B CN104089903 B CN 104089903B CN 201410125400 A CN201410125400 A CN 201410125400A CN 104089903 B CN104089903 B CN 104089903B
- Authority
- CN
- China
- Prior art keywords
- radiation source
- beef
- receptor
- drives
- motion
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Fee Related
Links
Landscapes
- Investigating Or Analysing Materials By Optical Means (AREA)
Abstract
The invention discloses a kind of snowflakes beef detection apparatus and method.This device includes controller and detection platform, controller includes CPU, touch screen and light source control module, detection platform includes base, base is provided with sample splint, sample splint is connected with base by the first support column, the middle part of sample splint is provided with transparent window, transparent window is arranged over radiation source, receptor it is provided with below transparent window, the first motion driving radiation source to move and the second motion driving receptor to move it is additionally provided with on base, CPU respectively with touch screen, light source control module, receptor, first motion and the electrical connection of the second motion, light source control module also electrically connects with radiation source.The present invention can quickly, easy, detect whether beef is snowflakes beef exactly.
Description
Technical field
The present invention relates to technical field of food detection, particularly relate to a kind of snowflakes beef detection apparatus and method.
Background technology
Top grade beef refers to make the high quality beef of international luxury food, it is desirable to muscle fiber is delicate, succulence, contains between muscle
A certain amount of fat, lipochondrion is tiny, is evenly distributed in muscular tissue, becomes marble grain, is commonly called as " snowflakes beef ".Mesh
Before, snowflakes beef typically judges by people's naked eyes, it is judged that not accurate enough, and human error easily occurs.
China Patent Publication No. CN1603794, publication date on April 6th, 2005, the entitled near infrared technology of invention is quick
Detection tenderness of beef utilizing method and apparatus, this application case disclose a kind of rapidly detecting tenderness of beef utilizing near infrared technology method and
Device, it is by near-infrared light source, near infrared detector, diffuse-reflectance fiber plant, microprocessor, display and recording equipment and can turn
Dynamic object stage composition.Its weak point is, this detection device can not detect whether beef is snowflakes beef.
Summary of the invention
Technology that whether beef is snowflakes beef is asked to it is an object of the invention to overcome current beef detection device not detect
Topic, it is provided that a kind of snowflakes beef detection apparatus and method, its can quickly, simplicity, detect whether beef is snow exactly
Flower beef.
In order to solve the problems referred to above, the present invention is achieved by the following technical solutions:
A kind of snowflakes beef detection device of the present invention, including controller and detection platform, described controller includes central authorities
Processing unit, touch screen and light source control module, described detection platform includes that base, described base are provided with sample splint, institute
Stating sample splint to be connected with base by the first support column, the middle part of described sample splint is provided with transparent window, described transparency window
Mouth is arranged over radiation source, is provided with receptor below described transparent window, described base is additionally provided with drive radiation source and moves
The first dynamic motion and drive the second motion that receptor moves, described CPU respectively with touch screen,
Light source control module, receptor, the first motion and the second motion electrical connection, described light source control module also with irradiation
Light source electrically connects.
In the technical program, radiation source is Halogen light or generating laser.During detection, beef sample to be measured is placed
At the transparent window of sample splint.CPU controls radiation source by the first motion and moves, by second
Motion controls receptor motion, it is ensured that receptor be able to receive that radiation source sends all the time through beef sample and thoroughly
The detection light of bright window.
Controller controls radiation source and rotates a circle with certain irradiating angle, often horizontally rotates 5 degree and stops and detect once light
Modal data.During detection spectroscopic data, the intensity curve of the detection light that radiation source sends first rises to according to tangent cutve from 0
Big value, then drops to 0 from maximum according to cotangent curve.Receptor detects the transmitted intensity received, and is sent to
To controller, after controller carries out respective handling to detection data, it is judged that whether beef sample to be measured is snowflakes beef.
The present invention is that the incident illumination using light intensity to be continually changing irradiates sample, and the intensity at incident illumination is gradually big or reduces
Change procedure in, different groups are gradually big to the absorption of respective wavelength light or reduce, now at the degree of absorption of group
During unsaturation, saturated diminuendo, transmission light comprises more detection information, so that the detection signal arrived can be more
Symbolize whether beef is snowflakes beef accurately.
As preferably, described first motion includes elevating mechanism, transverse link, longitudinal rod, the first driving motor
Driving motor with second, described elevating mechanism is arranged on base, and described transverse link one end is connected with elevating mechanism, laterally connects
The bar other end and first drives motor to be connected, and described first drives the rotating shaft of motor straight down, the top of described longitudinal rod
Driving the rotating shaft of motor to be connected with first, the bottom of described longitudinal rod drives motor to be connected with second, and described second drives electricity
The rotating shaft of machine is horizontally disposed with, described radiation source and second drive motor rotating shaft be connected, the direction of illumination of radiation source towards
Transparent window, described elevating mechanism, the first driving motor and second drive motor to electrically connect with CPU respectively.
Elevating mechanism can drive transverse link to lift, thus drive and move under radiation source in the vertical direction;First drives
Galvanic electricity machine can drive longitudinal rod to rotate, thus drives radiation source to rotate in the horizontal direction;Second drives motor can drive photograph
Penetrate light source to rotate at vertical direction.Controller drives motor to adjust irradiation light by elevating mechanism, the first driving motor and second
The position in source and send the incident angle of detection light.
As preferably, described second motion includes the rotating mechanism being arranged on base and is arranged on rotating mechanism
The arc track at top, described receptor is arranged on arc track, and the bottom surface of described arc track is provided with two and is parallel to each other
Arc groove, be provided with curved tooth bar in arc groove, the bottom of described receptor be provided with two gears and drive tooth
The 3rd driving motor that wheel rotates, said two gear engages with two tooth bars respectively, on two sidewalls of described arc track
Be arranged with curved stopper slot, described receptor be respectively provided on two sides with the limited block coordinated with stopper slot, described rotation
Mechanism and the 3rd drives motor to electrically connect with CPU respectively.
Radiation source is positioned at the arc core position of arc track, and receptor is towards the arc core position of arc track.Rotating mechanism
Arc track can be driven to horizontally rotate, make radiation source and arc track be generally aligned in the same plane, as long as therefore receptor moves to
Correspondence position on arc track just can receive the detection light that radiation source sends.3rd drives motor that gear can be driven to turn
Dynamic, so that receptor moves on arc track, limited block can limit the position of receptor, prevents receptor from leaving arc
Track.
As preferably, described light source control module includes the digital capture card of NI and power amplifier, and described NI is digital to be adopted
The input of truck electrically connects with CPU, the outfan of the digital capture card of described NI and the input of power amplifier
Electrical connection, the outfan of described power amplifier electrically connects with radiation source.The digital capture card of NI gathers CPU and sends out
The control signal gone out, and the detection light of varying strength is sent by power amplifier control radiation source.
As preferably, described transparent window is the quartz glass of 0.4mm-0.5mm.
As preferably, described elevating mechanism includes screw mandrel, support bar and the 4 wheel driven galvanic electricity machine driving screw mandrel to rotate, silk
Bar and support bar are vertically arranged on base, and one end that transverse link is connected with elevating mechanism is provided with the screw thread being set on screw mandrel
Set and the sleeve pipe being set on support bar, 4 wheel driven galvanic electricity machine electrically connects with CPU.
As preferably, described rotating mechanism includes the second support column and the 5th driving electricity driving the second support column to rotate
Machine, the second support column is arranged on base, and the 5th drives motor to electrically connect with CPU.
A kind of snowflakes beef detection method of the present invention, comprises the following steps:
S1: preparation lamellar beef sample, is placed on beef sample at the transparent window of sample splint, makes beef sample
It is centrally located at the underface of longitudinal rod;
S2: controller controls radiation source by the second driving motor and rotates, and makes the angle of radiation source and vertical direction
For 20-40 degree, controller adjusts the position of receptor by the second motion, enables a receiver to receive radiation source and send out
The detection light through beef sample and transparent window gone out;
The detection light that S3: controller sends certain light intensity by light source control module control radiation source is radiated at beef sample
On product, detection light intensity first rises to maximum from 0 according to tangent cutve, then declines according to cotangent curve from maximum
To 0, controller acquisition of transmission spectroscopic data Spect (t), then controller controls longitudinal rod rotation by the first driving motor
5 degree, make radiation source horizontally rotate 5 degree, control receptor and move to correspondence position, gather the light of now radiation source point of irradiation
Modal data, so controls radiation source and horizontally rotates one week, often horizontally rotates 5 degree and stops and detect spectroscopic datas, thus
Spectroscopic data Spect (t) of 72 diverse locations is gathered on beef sample;
S4: collect 72 spectroscopic datas Spect (t) are all carried out same data and processes, calculate 72 noises
Ratio eigenvalue, the data carrying out each spectroscopic data Spect (t) process and comprise the following steps:
Use input signalAs input matrix, and potential function V (x, t)
Work in coordination with input signal is one layer of accidental resonance model:
Wherein, V (x, t) is potential function, and x (t) is Brownian Particles movement locus function, and t is movement time,For periodic sinusoidal signal, N (t) grasps noise in being, A is signal amplitude, and f is signal frequency, and D is outer making an uproar
Sound intensity, ξ (t) is outer noise,For phase place,
(x, t) for first derivative and the second dervative of x, and makes equation be equal to 0, obtains two layers of accidental resonance to calculate V
Model:
Set noise intensity D=0,Spect (t)=0, N (t)=0, B=1, it is calculated the critical of A
Value isBy AcSubstitute in formula (1), and set x0(t)=0, sn0=0, use quadravalence jade for asking rain Ge Kuta algorithm to ask
Solution formula (1), obtains:
Undetermined coefficient:
Wherein, xnT () is the n order derivative of x (t), snnBeing the n order derivative of S (t) value at t=0, a, b are set normal
Number,
It is calculated x1(t), x2(t)…xn+1T the value of (), to x1(t), x2(t)…xn+1T () is integrated obtaining x(t),
And obtain x(t)When the double-deck stochastic resonance system of one layer of accidental resonance model and two layers of accidental resonance model composition produces resonance
The position x carvedmValue and xmCorresponding resonance moment t1 and the noise D1, D1 corresponding with t1 are a value in D,
Pass through formulaIt is calculated signal to noise ratio eigenvalue SNRFeature, wherein, Δ U
=a2/ 4b;
S5: 72 the signal to noise ratio eigenvalue SNR that will calculateFeatureRespectively with set threshold ratio relatively, if SNRFeature>-
68.74 judge test point that this signal to noise ratio eigenvalue is corresponding as white spectrum point, if SNRFeature<-77.49 judge this signal to noise ratio
The test point that eigenvalue is corresponding is red spectrum point;
S6: number N1 of statistics white spectrum point and number N2 of red spectrum point, ifThen judge that this beef is snowflakes beef, otherwise judge that this beef is not snowflakes beef.
As preferably, the position that described step S2 middle controller adjusts receptor by the second motion includes following step
Rapid: radiation source continues the irradiation light that emissive porwer is constant, controller controls receptor towards right according to radiation source rotation direction
Direction is answered to move, and the irradiation light intensity that monitoring receiver receives, finally make receptor rest on the irradiation light intensity received
The position that degree is maximum.
As preferably, described step S3 middle controller control receptor moves to correspondence position and comprises the following steps: control
Device drives arc track to rotate respective angles according to the rotational angle of longitudinal rod by rotating mechanism.
The substantial effect of the present invention is: can quickly, easy, detect whether beef is snowflakes beef exactly.
Accompanying drawing explanation
Fig. 1 is a kind of structural representation of the present invention;
Fig. 2 is the structural representation of second motion of the present invention;
Fig. 3 is the sectional view of the arc track of the present invention;
Fig. 4 is that the circuit theory of the present invention connects block diagram;
The light intensity curve figure of the detection light that when Fig. 5 is detection, radiation source sends.
In figure: 1, CPU, 2, touch screen, 3, light source control module, 4, base, the 5, second support column, 6, sample
Product supporting plate, 7, transparent window, 8, radiation source, 9, receptor, 10, elevating mechanism, 11, transverse link, 12, longitudinal rod, 13,
First drives motor, and 14, second drives motor, 15, rotating mechanism, 16, arc track, 17, arc groove, 18, gear, 19,
3rd drives motor, and 20, stopper slot, 21, limited block, 22, the digital capture card of NI, 23, power amplifier, the 24, first support column,
25, screw mandrel, 26, support bar, 27, thread bush, 28, sleeve pipe.
Detailed description of the invention
Below by embodiment, and combine accompanying drawing, technical scheme is described in further detail.
Embodiment: a kind of snowflakes beef detection device of the present embodiment, as shown in Figure 1, Figure 2, Figure 3 shows, including controller and
Detection platform, controller includes CPU 1, touch screen 2 and light source control module 3, and light source control module 3 includes NI number
Word formula capture card 22 and power amplifier 23, detection platform includes that base 4, base 4 are provided with sample splint 6, and sample splint 6 passes through
First support column 24 is connected with base 4, and the middle part of sample splint 6 is provided with transparent window 7, and transparent window 7 is arranged over irradiating light
Source 8, is provided with receptor 9 below transparent window 7, base 4 is additionally provided with the first motion and band driving radiation source 8 to move
The second motion that dynamic receptor 9 moves.
First motion includes that elevating mechanism 10, transverse link 11, longitudinal rod 12, first drive motor 13 and second
Driving motor 14, elevating mechanism 10 is arranged on base 4, and transverse link 11 one end is connected with elevating mechanism 10, transverse link 11
The other end and first drives motor 13 to be connected, and first drives the rotating shaft of motor 13 straight down, the top of longitudinal rod 12 and the
One drives the rotating shaft of motor 13 to be connected, and the bottom of longitudinal rod 12 drives motor 14 to be connected with second, and second drives motor 14
Rotating shaft is horizontally disposed with, and radiation source 8 drives the rotating shaft of motor 14 to be connected with second, and the direction of illumination of radiation source 8 is towards transparent
Window 7.
Second motion includes the rotating mechanism 15 being arranged on base 4 and is arranged on the arc at rotating mechanism 15 top
Shape track 16, receptor 9 is arranged on arc track 16, and the bottom surface of arc track 16 is provided with two arc grooves being parallel to each other
17, it is provided with curved tooth bar in arc groove 17, the bottom of receptor 9 is provided with two gears 18 and drives gear 18 to rotate
The 3rd driving motor 19, two gears 18 engage with two tooth bars respectively, and two sidewalls of arc track 16 are arranged with
Curved stopper slot 20, receptor 9 be respectively provided on two sides with the limited block 21 coordinated with stopper slot 20.
As shown in Figure 4, CPU 1 drives motor with touch screen 2, receptor 9, elevating mechanism 10, first respectively
13, second motor 14, rotating mechanism the 15, the 3rd is driven to drive the input electrical connection of motor 19, the digital capture card of NI 22, NI
The outfan of digital capture card 22 electrically connects with the input of power amplifier 23, the outfan of power amplifier 23 and radiation source
8 electrical connections.
Transparent window 7 is the quartz glass of 0.4mm, and radiation source 8 is high brightness halogen lamp.Elevating mechanism includes screw mandrel
25, the 4 wheel driven galvanic electricity machine that support bar 26 and driving screw mandrel 25 rotate, screw mandrel 25 and support bar 26 are vertically arranged in base 4
On, one end that transverse link 11 is connected with elevating mechanism 10 is provided with the thread bush 27 being set on screw mandrel 25 and is set in support
Sleeve pipe 28 on bar 26,4 wheel driven galvanic electricity machine electrically connects with CPU 1.Rotating mechanism 15 include the second support column 5 with
And drive second support column 5 rotate the 5th driving motor, the second support column 5 is arranged on base 4, the 5th drive motor with in
Central Processing Unit 1 electrically connects.
Elevating mechanism 10 can drive transverse link 11 to lift, thus drive and move under radiation source 8 in the vertical direction;The
One drives motor 13 that longitudinal rod 12 can be driven to rotate, thus drives radiation source 8 to rotate in the horizontal direction;Second drives motor
14 can drive radiation source 8 to rotate at vertical direction.Controller drives motor 13 and second to drive by elevating mechanism 10, first
Motor 14 adjusts the position of radiation source 8 and sends the incident angle of detection light.
Radiation source 8 is positioned at the arc core position of arc track 16, and receptor 9 is towards the arc core position of arc track 16.Rotation
Rotation mechanism 15 can drive arc track 16 to horizontally rotate, and makes radiation source 8 and arc track 16 be generally aligned in the same plane, as long as therefore
Receptor 9 moves to the correspondence position on arc track 16 just can receive the detection light that radiation source 8 sends.3rd drives electricity
Machine 19 can drive gear 18 to rotate, so that receptor 9 moves on arc track 16, limited block 21 can limit receptor 9
Position, prevent receptor 9 from leaving arc track 16.The digital capture card of NI 22 gathers the control that CPU 1 sends
Signal, and control radiation source 8 send the detection light of varying strength by power amplifier 23.
During detection, beef sample to be measured is placed at the transparent window 7 of sample splint 6.CPU 1 is by the
One motion controls radiation source 8 and moves, and controls receptor 9 by the second motion and moves, it is ensured that receptor 9 all the time can
Enough receive the detection light through beef sample and transparent window 7 that radiation source 8 sends.
Controller controls radiation source 8 and rotates a circle with certain irradiating angle, often horizontally rotates 5 degree and stops and detect once light
Modal data.During detection spectroscopic data, the intensity curve of the detection light that radiation source 8 sends first rises to according to tangent cutve from 0
Maximum, then drops to 0 from maximum according to cotangent curve, as shown in Figure 5.Receptor 9 detects the transmitted light intensity received
Degree, and send it to controller, after controller carries out respective handling to detection data, it is judged that whether beef sample to be measured is snow
Flower beef.
The present invention is that the incident illumination using light intensity to be continually changing irradiates sample, and the intensity at incident illumination is gradually big or reduces
Change procedure in, different groups are gradually big to the absorption of respective wavelength light or reduce, now at the degree of absorption of group
During unsaturation, saturated diminuendo, transmission light comprises more detection information, so that the detection signal arrived can be more
Symbolize whether beef is snowflakes beef accurately.
A kind of snowflakes beef detection method of the present embodiment, comprises the following steps:
S1: prepare the beef sample that thickness is 10mm-11mm, beef sample is placed on the transparent window of sample splint
Place, makes beef sample be centrally located at the underface of longitudinal rod;
S2: controller controls radiation source by the second driving motor and rotates, and makes the angle of radiation source and vertical direction
Being 30 degree, controller adjusts the position of receptor by the second motion, enables a receiver to receive radiation source and sends
The detection light through beef sample and transparent window;
The detection light that S3: controller sends certain light intensity by light source control module control radiation source is radiated at beef sample
On product, detection light intensity first rises to maximum from 0 according to tangent cutve, then declines according to cotangent curve from maximum
To 0, controller acquisition of transmission spectroscopic data Spect (t), then controller controls longitudinal rod rotation by the first driving motor
5 degree, make radiation source horizontally rotate 5 degree, control receptor and move to correspondence position, gather the light of now radiation source point of irradiation
Modal data, so controls radiation source and horizontally rotates one week, often horizontally rotates 5 degree and stops and detect spectroscopic datas, thus
Spectroscopic data Spect (t) of 72 diverse locations is gathered on beef sample;
S4: collect 72 spectroscopic datas Spect (t) are all carried out same data and processes,
Calculating 72 signal to noise ratio eigenvalues, the data carrying out each spectroscopic data Spect (t) process and include following step
Rapid:
Use input signalAs input matrix,
Under adiabatic approximation condition, it is assumed that signal amplitude minimum (A < < 1), bistable system drives not having enough energy
In the case of, Brownian movement particle is offset in the potential well of side, and the signal period was wanted than the system relaxation time in some typical case's potential wells
Long many, the now appearance of cyclic drive power makes potential function run-off the straight, ultimately results in Brownian movement particle from a potential well
To the transition of another one potential well, therefore potential function V (x, t) to work in coordination be one layer of accidental resonance model with input signal:
Wherein, V (x, t) is potential function, and x (t) is Brownian Particles movement locus function, and t is movement time,For periodic sinusoidal signal, N (t) grasps noise in being, A is signal amplitude, and f is signal frequency, and D is outer noise
Intensity, ξ (t) is outer noise,For phase place,
(x, t) for first derivative and the second dervative of x, and makes equation be equal to 0, obtains two layers of accidental resonance to calculate V
Model:
Set noise intensity D=0,Spect (t)=0, N (t)=0, B=1, it is calculated the critical of A
Value isAt A < AcIn the case of, Brownian movement particle is hovered about its home position, can not
Realize the transition between two potential wells, but particle is in the case of obtaining the intervention of outer noise, even if A is < AcIt also can complete
Transition between potential well, here it is the generating process of accidental resonance, by AcSubstitute in formula (1), and set x0(t)=0, sn0=0,
Use quadravalence jade for asking rain Ge Kuta Algorithm for Solving formula (1), obtain:
Undetermined coefficient:
Wherein, xnT () is the n order derivative of x (t), snnBeing the n order derivative of S (t) value at t=0, a, b are set normal
Number,
It is calculated x1(t), x2(t)…xn+1T the value of (), to x1(t), x2(t)…xn+1T () is integrated obtaining x(t),
And obtain x(t)When the double-deck stochastic resonance system of one layer of accidental resonance model and two layers of accidental resonance model composition produces resonance
The position x carvedmValue and xmCorresponding resonance moment t1 and the noise D1, D1 corresponding with t1 are a value in D,
Pass through formulaIt is calculated signal to noise ratio eigenvalue SNRFeature, wherein, Δ U
=a2/ 4b;
S5: 72 the signal to noise ratio eigenvalue SNR that will calculateFeatureRespectively with set threshold ratio relatively, if SNRFeature>-
68.74 judge that the test point that this signal to noise ratio eigenvalue is corresponding selects (fat meat) as white spectrum, if <-77.49 judge SNR feature
The test point that this signal to noise ratio eigenvalue is corresponding is that red spectrum selects (lean meat);
S6: number N1 of statistics white spectrum point and number N2 of red spectrum point, ifThen judge that this beef is snowflakes beef, otherwise judge that this beef is not snowflakes beef.
The position that step S2 middle controller adjusts receptor by the second motion comprises the following steps: radiation source is held
The irradiation light that continuous emissive porwer is constant, controller controls receptor according to radiation source rotation direction and moves towards correspondence direction, and
The irradiation light intensity that monitoring receiver receives, finally makes receptor rest on the position that the irradiation light intensity received is maximum.
Step S3 middle controller control receptor moves to correspondence position and comprises the following steps: controller is according to longitudinal rod
Rotational angle by rotating mechanism drive arc track rotate respective angles.
In the present embodiment, number N1=20 of statistics white spectrum point and number N2=52 of red spectrum point, Judge that beef sample is snowflakes beef.
Claims (8)
1. a snowflakes beef detection device, it is characterised in that: include that controller and detection platform, described controller include central authorities
Processing unit (1), touch screen (2) and light source control module (3), described detection platform includes base (4), on described base (4)
Being provided with sample splint (6), described sample splint (6) is connected with base (4) by the first support column (24), described sample splint
(6) middle part is provided with transparent window (7), and described transparent window (7) is arranged over radiation source (8), under described transparent window (7)
Side is provided with receptor (9), described base (4) is additionally provided with and drives the first motion of radiation source (8) movement and drive to connect
Receive device (9) movement the second motion, described CPU (1) respectively with touch screen (2), light source control module (3),
Receptor (9), the first motion and the second motion electrical connection, described light source control module (3) also with radiation source (8)
Electrical connection, described first motion includes elevating mechanism (10), transverse link (11), longitudinal rod (12), the first driving electricity
Machine (13) and second drives motor (14), and described elevating mechanism (10) is arranged on base (4), described transverse link (11) one end
Being connected with elevating mechanism (10), transverse link (11) other end and first drives motor (13) to be connected, and described first drives motor
(13) straight down, the top of described longitudinal rod (12) drives the rotating shaft of motor (13) to be connected with first in rotating shaft, described vertical
Driving motor (14) to be connected to the bottom of connecting rod (12) with second, described second drives the rotating shaft of motor (14) to be horizontally disposed with, institute
Stating radiation source (8) drives the rotating shaft of motor (14) to be connected with second, and the direction of illumination of radiation source (8) is towards transparent window
(7), described elevating mechanism (10), first drive motor (13) and second driving motor (14) respectively with CPU (1)
Electrical connection, described transparent window (7) is the quartz glass of 0.4mm-0.5mm.
A kind of snowflakes beef detection device the most according to claim 1, it is characterised in that: described second motion includes
The rotating mechanism (15) being arranged on base (4) and the arc track (16) being arranged on rotating mechanism (15) top, described in connect
Receiving device (9) to be arranged on arc track (16), the bottom surface of described arc track (16) is provided with two arc grooves being parallel to each other
(17), being provided with curved tooth bar in arc groove (17), the bottom of described receptor (9) is provided with two gears (18) and drives
The 3rd driving motor (19) that moving gear (18) rotates, said two gear (18) engages with two tooth bars respectively, described arc
Be arranged with curved stopper slot (20) on two sidewalls of track (16), described receptor (9) be respectively provided on two sides with
The limited block (21) that stopper slot (20) coordinates, it is single that described rotating mechanism (15) and the 3rd drives motor (19) to process with central authorities respectively
Unit (1) electrical connection.
A kind of snowflakes beef detection device the most according to claim 1 and 2, it is characterised in that: described light source control module
(3) the digital capture card of NI (22) and power amplifier (23), the input of the digital capture card of described NI (22) and central authorities are included
Processing unit (1) electrically connects, and the outfan of the digital capture card of described NI (22) electrically connects with the input of power amplifier (23),
The outfan of described power amplifier (23) electrically connects with radiation source (8).
A kind of snowflakes beef detection device the most according to claim 1 and 2, it is characterised in that: described elevating mechanism (10)
The 4 wheel driven galvanic electricity machine rotated including screw mandrel (25), support bar (26) and driving screw mandrel (25), screw mandrel (25) and support bar
(26) being vertically arranged on base (4), one end that transverse link (11) is connected with elevating mechanism (10) is provided with and is set in screw mandrel
(25) thread bush (27) on and the sleeve pipe (28) being set on support bar (26), 4 wheel driven galvanic electricity machine and CPU
(1) electrical connection.
A kind of snowflakes beef detection device the most according to claim 2, it is characterised in that: described rotating mechanism (15) includes
The 5th driving motor that second support column (5) and driving the second support column (5) rotate, the second support column (5) is arranged on base
(4), on, the 5th drives motor to electrically connect with CPU (1).
6. a snowflakes beef detection method, it is characterised in that detect dress for a kind of snowflakes beef described in claim 2
Put, comprise the following steps:
S1: preparation lamellar beef sample, is placed on beef sample at the transparent window of sample splint, makes the center of beef sample
It is positioned at the underface of longitudinal rod;
S2: controller controls radiation source by the second driving motor and rotates, and making radiation source is 20-with the angle of vertical direction
40 degree, controller adjusts the position of receptor by the second motion, enables a receiver to receive what radiation source sent
Detection light through beef sample and transparent window;
The detection light that S3: controller sends certain light intensity by light source control module control radiation source is radiated at beef sample
On, detection light intensity first rises to maximum from 0 according to tangent cutve, then drops to according to cotangent curve from maximum
0, controller acquisition of transmission spectroscopic data Spect (t), then controller controls longitudinal rod rotation 5 by the first driving motor
Degree, makes radiation source horizontally rotate 5 degree, controls receptor and moves to correspondence position, gathers the light of now radiation source point of irradiation
Modal data, so controls radiation source and horizontally rotates one week, often horizontally rotates 5 degree and stops and detect spectroscopic datas, thus
Spectroscopic data Spect (t) of 72 diverse locations is gathered on beef sample;
S4: collect 72 spectroscopic datas Spect (t) are all carried out same data and processes, calculate 72 noise bits
Value indicative, the data carrying out each spectroscopic data Spect (t) process and comprise the following steps:
Use input signalAs input matrix, (x, t) with defeated for potential function V
Enter signal working in coordination with is one layer of accidental resonance model:
Wherein, V (x, t) is potential function, and x (t) is Brownian Particles movement locus function, and t is movement time,For
Periodic sinusoidal signal, N (t) grasps noise in being, A is signal amplitude, and f is signal frequency, and D is outer noise intensity, outside ξ (t) is
Noise,For phase place, B is the constant set,
Calculate V (x, t) for first derivative and the second dervative of x, and makes equation be equal to 0, obtains two layers of accidental resonance model:
Set noise intensity D=0,Spect (t)=0, N (t)=0, B=1, it is calculated the marginal value of A
ForBy AcSubstitute in formula (1), and set x0(t)=0, sn0=0, use quadravalence jade for asking rain Ge Kuta algorithm to ask
Solution formula (1), obtains:
Undetermined coefficient:
Wherein, xnT () is the n order derivative of x (t), snnBeing the n order derivative of S (t) value at t=0, a, b are the constant set,
It is calculated x1(t), x2(t)…xn+1T the value of (), to x1(t), x2(t)…xn+1T () is integrated obtaining x (t), and obtain
The resonance moment is produced in the double-deck stochastic resonance system of one layer of accidental resonance model and two layers of accidental resonance model composition to x (t)
Position xmValue and xmCorresponding resonance moment t1 and the noise D1, D1 corresponding with t1 are a value in D,
Pass through formulaIt is calculated signal to noise ratio eigenvalue SNRFeature, wherein, Δ U=a2/
4b;
S5: 72 the signal to noise ratio eigenvalue SNR that will calculateFeatureRespectively with set threshold ratio relatively, if SNRFeature>-68.74
Judge test point that this signal to noise ratio eigenvalue is corresponding as white spectrum point, if SNRFeature<-77.49 judges this signal to noise ratio feature
The test point of value correspondence is red spectrum point;
S6: number N1 of statistics white spectrum point and number N2 of red spectrum point, ifAndThen
Judge that this beef is snowflakes beef, otherwise judge that this beef is not snowflakes beef.
A kind of snowflakes beef detection method the most according to claim 6, it is characterised in that described step S2 middle controller leads to
The position crossing the second motion adjustment receptor comprises the following steps: radiation source continues the irradiation light that emissive porwer is constant,
Controller controls receptor according to radiation source rotation direction and moves towards correspondence direction, and the irradiation light that monitoring receiver receives
Intensity, finally makes receptor rest on the position that the irradiation light intensity received is maximum.
8. according to a kind of snowflakes beef detection method described in claim 6 or 7, it is characterised in that described step S3 controls
Device control receptor moves to correspondence position and comprises the following steps: controller passes through whirler according to the rotational angle of longitudinal rod
Structure drives arc track to rotate respective angles.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201410125400.5A CN104089903B (en) | 2014-03-31 | 2014-03-31 | A kind of snowflakes beef detection apparatus and method |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201410125400.5A CN104089903B (en) | 2014-03-31 | 2014-03-31 | A kind of snowflakes beef detection apparatus and method |
Publications (2)
Publication Number | Publication Date |
---|---|
CN104089903A CN104089903A (en) | 2014-10-08 |
CN104089903B true CN104089903B (en) | 2017-01-04 |
Family
ID=51637639
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201410125400.5A Expired - Fee Related CN104089903B (en) | 2014-03-31 | 2014-03-31 | A kind of snowflakes beef detection apparatus and method |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN104089903B (en) |
Families Citing this family (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104089900B (en) * | 2014-03-31 | 2017-01-04 | 浙江工商大学 | Snowflakes beef detection apparatus and method |
CN104089899A (en) * | 2014-03-31 | 2014-10-08 | 浙江工商大学 | Device and method for detecting snowflake beef |
Citations (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH11241990A (en) * | 1998-02-25 | 1999-09-07 | Nippon Steel Corp | Method for measuring cross-section structure of thermoplastic resin having optical isomerization |
JP2002122540A (en) * | 2000-10-12 | 2002-04-26 | Mitsui Mining & Smelting Co Ltd | Fresh product evaluating device and method |
JP2006098106A (en) * | 2004-09-28 | 2006-04-13 | Mitsui Mining & Smelting Co Ltd | Internal quality evaluation device for produce |
CN101144780A (en) * | 2006-09-14 | 2008-03-19 | 郭培源 | Pork freshness intelligent detection device |
CN102735612A (en) * | 2011-04-02 | 2012-10-17 | 北京神农谷科技有限公司 | Light source position detection and positioning system |
CN102854148A (en) * | 2012-08-30 | 2013-01-02 | 中国农业大学 | Detection and grading system for tenderness of fresh beef based on multispectral imagery |
CN103257109A (en) * | 2013-04-09 | 2013-08-21 | 中国农业大学 | Detection system and method for total number of bacteria in livestock meat |
CN103424521A (en) * | 2013-08-01 | 2013-12-04 | 浙江工商大学 | Device and method for detecting freshness of beef |
Family Cites Families (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
NO329603B1 (en) * | 2007-11-22 | 2010-11-22 | Integrated Optoelectronics As | Method and system for painting and determining / recognizing different materials |
-
2014
- 2014-03-31 CN CN201410125400.5A patent/CN104089903B/en not_active Expired - Fee Related
Patent Citations (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH11241990A (en) * | 1998-02-25 | 1999-09-07 | Nippon Steel Corp | Method for measuring cross-section structure of thermoplastic resin having optical isomerization |
JP2002122540A (en) * | 2000-10-12 | 2002-04-26 | Mitsui Mining & Smelting Co Ltd | Fresh product evaluating device and method |
JP2006098106A (en) * | 2004-09-28 | 2006-04-13 | Mitsui Mining & Smelting Co Ltd | Internal quality evaluation device for produce |
CN101144780A (en) * | 2006-09-14 | 2008-03-19 | 郭培源 | Pork freshness intelligent detection device |
CN102735612A (en) * | 2011-04-02 | 2012-10-17 | 北京神农谷科技有限公司 | Light source position detection and positioning system |
CN102854148A (en) * | 2012-08-30 | 2013-01-02 | 中国农业大学 | Detection and grading system for tenderness of fresh beef based on multispectral imagery |
CN103257109A (en) * | 2013-04-09 | 2013-08-21 | 中国农业大学 | Detection system and method for total number of bacteria in livestock meat |
CN103424521A (en) * | 2013-08-01 | 2013-12-04 | 浙江工商大学 | Device and method for detecting freshness of beef |
Non-Patent Citations (4)
Title |
---|
"Visible and near-infrared light transmission: A hybrid imaging method for non-destructive meat quality evaluation";A. Ziadi 等;《Infrared Physics & Technology》;20120601;第55卷;第412-420页 * |
"手持式牛肉大理石花纹检测系统";郭辉 等;《农业机械学报》;20121031;第43卷;第207-210页 * |
"牛肉品质快速检测装置的设计";郭辉 等;《食品安全质量检测学报》;20121231;第3卷(第6期);第617-620页 * |
"猪肉糜中脂肪、蛋白质和水分含量可见/近红外光谱检测研究";刘魁武;《浙江大学硕士学位论文》;20100531;正文第30页第3.3.3节 * |
Also Published As
Publication number | Publication date |
---|---|
CN104089903A (en) | 2014-10-08 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN104089885B (en) | Beef quality rapid detection system and method | |
CN104089900B (en) | Snowflakes beef detection apparatus and method | |
CN104089903B (en) | A kind of snowflakes beef detection apparatus and method | |
CN105092518B (en) | A kind of navel orange pol fast non-destructive detection method | |
CN104089959A (en) | Fast and accurate beef quality detection system and method | |
CN104089888B (en) | Fast and accurate beef quality detection system and method | |
CN104089889B (en) | Beef freshness detection system and method | |
CN206342458U (en) | A kind of device for eye test | |
CN110251107A (en) | A kind of device that wrist blood pressure state continuously changes and its detection method | |
CN104089891A (en) | Beef freshness detection system and method | |
CN103230253B (en) | Eye adjustment force training devices | |
CN104251817A (en) | Device and method for rapid detection of snowflake beef | |
CN104089899A (en) | Device and method for detecting snowflake beef | |
CN104089892B (en) | Meat freshness detection system and method | |
CN104089887A (en) | Device and method for detecting snowflake beef | |
CN104089905A (en) | Detection device and method for spliced beef | |
CN104089893B (en) | beef quality detection system and method | |
CN104089909A (en) | Device and method for detecting spliced beef | |
CN104374709B (en) | Beef freshness rapid nondestructive detection device and detection method | |
CN108692928A (en) | A kind of damper detection method | |
CN104089904A (en) | Detection device and method for spliced mutton | |
CN104374721B (en) | Spliced beef rapid detection system and method | |
CN104251828A (en) | Device and method for rapid detection of splicing mutton | |
CN206630592U (en) | A kind of refractor | |
CN104374703B (en) | Snow beef rapid detection system and method |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
C06 | Publication | ||
PB01 | Publication | ||
C10 | Entry into substantive examination | ||
SE01 | Entry into force of request for substantive examination | ||
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20170104 Termination date: 20170331 |
|
CF01 | Termination of patent right due to non-payment of annual fee |