CN207147430U - A kind of increment type Circular gratings chi grating Angular Displacement Detecting System - Google Patents

A kind of increment type Circular gratings chi grating Angular Displacement Detecting System Download PDF

Info

Publication number
CN207147430U
CN207147430U CN201721106825.7U CN201721106825U CN207147430U CN 207147430 U CN207147430 U CN 207147430U CN 201721106825 U CN201721106825 U CN 201721106825U CN 207147430 U CN207147430 U CN 207147430U
Authority
CN
China
Prior art keywords
angular displacement
circular gratings
increment type
type circular
gratings chi
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.)
Active
Application number
CN201721106825.7U
Other languages
Chinese (zh)
Inventor
杨志军
李彦锋
蔡铁根
李乾
陈新
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Guangdong University of Technology
Original Assignee
Guangdong University of Technology
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Guangdong University of Technology filed Critical Guangdong University of Technology
Priority to CN201721106825.7U priority Critical patent/CN207147430U/en
Application granted granted Critical
Publication of CN207147430U publication Critical patent/CN207147430U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Optical Transform (AREA)
  • Length Measuring Devices By Optical Means (AREA)

Abstract

It the utility model is related to a kind of increment type Circular gratings chi grating Angular Displacement Detecting System, including source of parallel light, increment type Circular gratings chi, photosensor arrays, signal processing unit, angular displacement display unit and high speed voltage comparator;Wherein, the direction of illumination of the vertical parallel light source of increment type Circular gratings chi;Photosensor arrays are positioned in the increment type Circular gratings chi grating pitch, and are uniformly distributed in step type;High speed voltage comparator is connected between photosensor arrays and signal processing unit, and shaping is carried out to photosensor arrays output signal and the square-wave signal drawn to shaping carries out level conversion;The signal processing unit is connected with angular displacement display unit, and the value of angular displacement being calculated is included on angular displacement display unit.The utility model has the advantages that composition is simple, testing cost is low, measurement accuracy is high, detection speed is fast, practical.

Description

A kind of increment type Circular gratings chi grating Angular Displacement Detecting System
Technical field
It the utility model is related to the technical field of accurate measurement, more particularly to a kind of increment type Circular gratings chi grating angle position Move detecting system.
Background technology
In accurate measurement, Circular gratings chi, using the optical principle of grating, is substantially carried out displacement of the lines as important instrument With the measurement of angular displacement.
Mainly in the manufacture of grating, the quality of grating directly influences whether to examine the key technology and difficult point of Circular gratings chi Survey the precision and reliability of result.Existing Circular gratings chi mainly has glass Circular gratings chi and round metal grating scale, and its form has Two kinds of increment type Circular gratings chi and absolute type Circular gratings chi.
Wherein, increment type Circular gratings chi needs to refer to signal (relative zero), and the operation of reference point back to zero must be performed when upper electric. After power down, grating scale must back to zero again so that equipment is unable to recovery operation.In addition, in excessive velocities, pulse can be produced Dropout and influence accuracy.And absolute type Circular gratings chi is to delineate one on scale grating to carry absolute position encoder Code channel, one fixed code channel of each position correspondence, measurement indicating value is only relevant with the starting of measurement and the position of termination, with Between measurement process it is unrelated, current location can also be recovered after power down, anti-interference is good.But absolute grating scale coding is complicated, Manufacturing cost is high, and reading speed is slow, it is necessary to carry out groove on scale grating, and its measurement accuracy and the precision of scale grating have very Important Relations, therefore in high-acruracy survey, very high is required to scale grating line, so as to add processing cost.
How in the case where testing cost is relatively low high accuracy and at a high speed measure grating angular displacement, turn into urgently to be resolved hurrily The problem of.
The content of the invention
The purpose of this utility model is overcome the deficiencies in the prior art, there is provided one kind composition is simple, testing cost is low, surveys Accuracy of measurement is high, the increment type Circular gratings chi grating Angular Displacement Detecting System that detection speed is fast, practical.
To achieve the above object, technical scheme provided by the utility model is:
A kind of increment type Circular gratings chi grating Angular Displacement Detecting System, it includes source of parallel light, increment type Circular gratings chi, light Electric transducer array, signal processing unit, angular displacement display unit and high speed voltage comparator;Wherein, increment type Circular gratings The direction of illumination of the vertical parallel light source of chi;Photosensor arrays are positioned in the increment type Circular gratings chi grating pitch, and are in Step type is uniformly distributed;High speed voltage comparator is connected between photosensor arrays and signal processing unit, to photoelectric transfer Sensor array output signal carries out shaping and the square-wave signal drawn to shaping carries out level conversion;The signal processing unit It is connected with angular displacement display unit, the value of angular displacement being calculated is included on angular displacement display unit.
Further, photoelectric sensor number n=(H-D)/(D+L)+1;Misplace angle x=(w-q)/(n-1);Wherein, q For the angle corresponding to n-th of photoelectric sensor, w is the angle between two grid lines;H is grid line length;D is photoelectric sensor In the width of grid line length direction;X is that adjacent two photoelectric sensor misplaces angle on Circular gratings chi direction of rotation;L is adjacent Gap.
Compared with prior art, this programme principle is as follows:
Source of parallel light is irradiated on increment type Circular gratings chi, because photoelectric sensor is high to intensity of illumination susceptibility, not by The photoelectric sensor that grating scale grid line blocks receives whole illumination, exports high level signal, and the photoelectric sensor being blocked receives Part illumination does not receive illumination, and intensity of illumination is low, exports low level signal.Because photoelectric sensor is in detection intensity of illumination change During change, the waveform of output is not ideal square wave signal, it is necessary to carry out shaping to the signal of output.This programme uses high speed voltage ratio Shaping is carried out to photoelectric sensor output signals compared with device, exports square-wave signal, and signal is subjected to low and high level conversion output extremely Signal processing unit, enter line-pulse signal Edge check and judge the grating direction of motion and count, finally obtain grating angular displacement Value.
Compared with prior art, there is advantages below:
1. displacement detection signal is directly exported by photoelectric sensor, detection speed is fast;
2. system simplifies, testing cost is cheap;
It is 3. practical:Relatively low is required to photoelectric sensor, the porch after shaping need to only be detected and counted It can obtain shift value.
Brief description of the drawings
Fig. 1 is a kind of structural representation of increment type Circular gratings chi grating Angular Displacement Detecting System in the utility model;
Fig. 2 is the partial enlarged drawing of 101 parts in Fig. 1;
Fig. 3 is distribution map of the photoelectric sensor in grating pitch in the utility model embodiment;
Fig. 4 is the initial position schematic diagram that grating scale moves clockwise in the utility model embodiment;
Fig. 5, Fig. 6, Fig. 7, Fig. 8, Fig. 9, Figure 10, Figure 11 are that increment type Circular gratings chi is clockwise in the utility model embodiment Seven positions and its schematic diagram of corresponding output signal that motion process is undergone;
Figure 12 is the showing the characteristics of output signal of clockwise movement walking direction institute foundation in the utility model embodiment It is intended to;
Figure 13, Figure 14, Figure 15, Figure 16, Figure 17, Figure 18, Figure 19 are increment type Circular gratings chi in the utility model embodiment Seven positions undergone after commutation motion suddenly during clockwise movement and its schematic diagram of corresponding output signal;
Figure 20 commutated suddenly in clockwise movement for grating scale in the utility model embodiment the direction of motion judge institute according to According to output signal the characteristics of schematic diagram;
Figure 21 is the combinational logic circuit figure for being used to judge direction in the utility model embodiment.
Embodiment
With reference to specific embodiment, the utility model is described in further detail:
Referring to shown in accompanying drawing 1-3, a kind of increment type Circular gratings chi grating Angular Displacement Detecting System described in the present embodiment, wrap Include source of parallel light 1, increment type Circular gratings chi 2, photosensor arrays 3, signal processing unit 4, angular displacement display unit 5 and High speed voltage comparator 6;Wherein, the direction of illumination of the vertical parallel light source 1 of increment type Circular gratings chi 2;Photosensor arrays 3 are put It is placed in the grating pitch of increment type Circular gratings chi 2, and is uniformly distributed in step type;Photoelectric sensor number n=(grid line length Width D of the H- photoelectric sensors in grid line length direction)/(width D+photoelectric sensing of the photoelectric sensor in grid line length direction Adjacent segment L between device);Misplace angle x=(the angle q) corresponding to n-th of photoelectric sensor of angle w- between two grid lines/ (photoelectric sensor number n-1);High speed voltage comparator 6 is connected between photosensor arrays 3 and signal processing unit 4, Shaping is carried out to the output signal of photosensor arrays 3 and the square-wave signal drawn to shaping carries out level conversion;The letter Number processing unit 4 is connected with angular displacement display unit 5.
System work process is as follows:
S1, the illumination sent from source of parallel light 1 are mapped on increment type Circular gratings chi 2;
S2, photosensor arrays 3 receive illumination, and high level signal and low electricity are exported according to whether being blocked by grating grid Ordinary mail number;
S3, high speed voltage comparator 6 carry out shaping and level conversion to the level signal of output;
S4, signal processing unit 4 receive the signal of shaping and level conversion, and signal edge detection is carried out to it, is sentenced The disconnected grating direction of motion simultaneously counts, and draws value of angular displacement;Concretely comprise the following steps:
S41, assume increment type Circular gratings chi 2 relative to photoelectric sensor clockwise movement, initial time 0, photoelectric sensing Distribution and its corresponding output signal of the device in grating pitch, as shown in Figure 4;
S42,1 at the time of motion, photoelectric sensor is blocked by grating grid, and the output of the photoelectric sensor that is not blocked is high Signal is inverted, that is, hidden by level, the photoelectric sensor output low level being blocked, the present embodiment in order to easy to detect The sensor output high level of gear, on the contrary then output low level (following description is taken this as the standard), as shown in Figure 5;
S43, continue positive movement to the moment 2,3,4,5,6,7, corresponding signal respectively as Fig. 6, Fig. 7, Fig. 8, Fig. 9, Shown in Figure 10, Figure 11;
S44, judged according to the characteristics of adjacent three photoelectric sensor output signals using combinational logic travel direction, combination Logic circuit is as shown in figure 21;Assuming that the output signal difference corresponding A of photoelectric sensor 1,2,3, B, C;In clockwise movement In the case of, the direction of motion isAs shown in figure 12;Conversely, if grating scale is relative to sensor counterclockwise movement, Then signal output is exported since photoelectric sensor numbering n, and the direction of motion is
S45, assume unexpected deflecting in motion process, judge that counterclockwise movement is extremely also with combinational logic travel direction At the moment 8,9,10,11,12,13,14, corresponding signal is respectively as shown in Figure 13,14,15,16,17,18,19;
S46, signal processing unit 4 carry out porch detection using Edge extraction and counted, and required detection edge is The rising edge edge of pulse;Grating value of angular displacement calculating process is as follows:
During grating clockwise movement, angular displacementCalculation formula is:Wherein,For previous angle position Shifting value, ω are the angular displacement corresponding to a pitch, and for N by the number of sensors placed in a pitch, M is the pulse counted Number;During grating counterclockwise movement,
S5, angular displacement display unit 5 show that signal processing unit 4 handles the shift value drawn.
The present embodiment has the advantages that composition is simple, testing cost is low, measurement accuracy is high, detection speed is fast, practical.
Examples of implementation described above are only the preferred embodiment of the utility model, are not limited with this of the present utility model Practical range, therefore the change that all shape, principles according to the utility model are made, all should cover in the scope of protection of the utility model It is interior.

Claims (2)

  1. A kind of 1. increment type Circular gratings chi grating Angular Displacement Detecting System, it is characterised in that:Including source of parallel light (1), increment type Circular gratings chi (2), photosensor arrays (3), signal processing unit (4), angular displacement display unit (5) and high speed voltage ratio Compared with device (6);Wherein, the direction of illumination of increment type Circular gratings chi (2) vertical parallel light source (1);Photosensor arrays (3) are placed In in increment type Circular gratings chi (2) grating pitch, and it is uniformly distributed in step type;High speed voltage comparator (6) is connected to light Between electric transducer array (3) and signal processing unit (4), to photosensor arrays (3) output signal carry out shaping and The square-wave signal drawn to shaping carries out level conversion;The signal processing unit (4) is connected with angular displacement display unit (5), The value of angular displacement being calculated is included on angular displacement display unit (5).
  2. A kind of 2. increment type Circular gratings chi grating Angular Displacement Detecting System according to claim 1, it is characterised in that:It is described Photoelectric sensor number n=(H-D)/(D+L)+1;Misplace angle x=(w-q)/(n-1);Wherein, q is n-th of photoelectric sensor Corresponding angle, w are the angle between two grid lines;H is grid line length;D is photoelectric sensor in grid line length direction Width;X is that adjacent two photoelectric sensor misplaces angle on Circular gratings chi direction of rotation;L is adjacent segment.
CN201721106825.7U 2017-08-31 2017-08-31 A kind of increment type Circular gratings chi grating Angular Displacement Detecting System Active CN207147430U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721106825.7U CN207147430U (en) 2017-08-31 2017-08-31 A kind of increment type Circular gratings chi grating Angular Displacement Detecting System

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721106825.7U CN207147430U (en) 2017-08-31 2017-08-31 A kind of increment type Circular gratings chi grating Angular Displacement Detecting System

Publications (1)

Publication Number Publication Date
CN207147430U true CN207147430U (en) 2018-03-27

Family

ID=61670763

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201721106825.7U Active CN207147430U (en) 2017-08-31 2017-08-31 A kind of increment type Circular gratings chi grating Angular Displacement Detecting System

Country Status (1)

Country Link
CN (1) CN207147430U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107449375A (en) * 2017-08-31 2017-12-08 广东工业大学 A kind of increment type Circular gratings chi grating Angular Displacement Detecting System and method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107449375A (en) * 2017-08-31 2017-12-08 广东工业大学 A kind of increment type Circular gratings chi grating Angular Displacement Detecting System and method

Similar Documents

Publication Publication Date Title
CN107462168A (en) A kind of new array photoelectric Raster Displacement Detection System and method
CN103759749B (en) Single-code-channel absolute position encoder
CN203163780U (en) Bi-directional detection sensor assembly for intelligent water meter
CN110736486B (en) Compact dual-redundancy absolute encoder
CN104482948B (en) A kind of high-precision rotary encoder and measuring method thereof
CN103162624B (en) A kind of digital absolute position, displacement detection system and its implementation
CN203881354U (en) Combined type encoder
CN105526871A (en) Raster displacement measurement system based on CMOS and measurement method
CN102661711B (en) Based on the Non-contact cable length measuring system of LabVIEW platform
CN102003976B (en) Single-code channel absolute position coding method, decoding method and measuring device
CN107449375A (en) A kind of increment type Circular gratings chi grating Angular Displacement Detecting System and method
CN112857405A (en) Moving magnet type absolute position detection device and method
CN207147430U (en) A kind of increment type Circular gratings chi grating Angular Displacement Detecting System
CN106949837B (en) Stepped photoelectric sensor array high-sensitivity grating ruler
EP0039921B1 (en) Encoder device and method of use of it
CN202562500U (en) Single-track absolute grating ruler
CN1826509A (en) Reader for a scale marking
CN102095378B (en) Grating linear displacement transducer
CN1609558A (en) Sensor signal processor
US4678910A (en) Reference position-detecting device for photoelectric encoder
CN2771823Y (en) Absolute angle coder
CN207147414U (en) A kind of new array photoelectric Raster Displacement Detection System
EP3748284B1 (en) Digital displacement sensor, and displacement measurement method for same
CN206683583U (en) A kind of highly sensitive grating scale of stairstepping photosensor arrays
CN210603203U (en) Detection apparatus for power switch motion parameter

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant