CN104984530A - Boxing auxiliary training device - Google Patents

Boxing auxiliary training device Download PDF

Info

Publication number
CN104984530A
CN104984530A CN201510460358.7A CN201510460358A CN104984530A CN 104984530 A CN104984530 A CN 104984530A CN 201510460358 A CN201510460358 A CN 201510460358A CN 104984530 A CN104984530 A CN 104984530A
Authority
CN
China
Prior art keywords
capacitor cell
strip capacitor
strip
boxing
training device
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.)
Pending
Application number
CN201510460358.7A
Other languages
Chinese (zh)
Inventor
吴月红
陈明珠
李静
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.)
Anhui Polytechnic University
Original Assignee
Anhui Polytechnic University
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 Anhui Polytechnic University filed Critical Anhui Polytechnic University
Priority to CN201510460358.7A priority Critical patent/CN104984530A/en
Publication of CN104984530A publication Critical patent/CN104984530A/en
Pending legal-status Critical Current

Links

Abstract

The invention relates to a boxing auxiliary training device, comprising a target three-dimensional pressure measuring device body and a sensing system signal processor. The target three-dimensional pressure measuring device body is distributed with a plurality of groove capacitive pressure transducers which receive boxing pressure information. The capacitive pressure transducers comprise X-direction capacitor unit groups and Y-direction capacitor unit groups. The capacitor unit group is a comb-shaped structure formed by at least two strip capacitor units. Each strip capacitor comprises a driving electrode of an upper pole plate and an induction electrode of a lower pole plate. The capacitor unit group comprises first strip capacitor unit modules which are formed by strip capacitor units in width of a0 and length of b0, and second strip capacitor unit modules which are formed by strip capacitor units in width of ka0 and length of b0. By using the three-dimensional pressure transducers, forces applied on three directions of x, y, and z of a boxing target can be detected, and three-dimensional pressure data applied on the target body is used to train and guide, so as to improve performance. The measuring method is convenient and simple.

Description

A kind of boxing supplemental training device
Technical field
The invention belongs to motion supplemental training field, relate to boxing, be specifically related to a kind of boxing supplemental training device.
Background technology
In the sports events of tae kwon do, boxing, sportsman's stroke can be divided into by compulsory exercise impact target body and arbitrarily impact target body two kinds of situations.Whether time interval when sportsman impacts target between the size and Orientation of power, stroke, impact position be accurate, can both depict the situation of player motion difficulty action accomplishment quantitatively.Allow coach sportsman can be instructed to carry out sentific training according to data.Improve training quality and strengthen warfighting capabilities, therefore having important realistic meaning.
In order to improve the science of tae kwon do, boxer's daily workout, according to the Some features of this kind of athletics sports with it is to some particular/special requirements of sensor characteristics, design a kind of novel three-dimensional force sensor.It can reflect the accuracy at time interval between the size and Orientation of power when mobilizing impact target, stroke, impact position accurately, in real time.
Summary of the invention
In order to overcome the deficiencies in the prior art, the invention provides a kind of boxing supplemental training device, capacitance pressure transducer, is adopted to gather plantar pressure, by to the drive electrode of capacitance pressure transducer, and the reasonable Arrangement of induction electrode position, and introduce differential capacitor method, the three-dimensional force realized sportsman acts on target body is measured.
Technical scheme of the present invention is: a kind of boxing supplemental training device, comprise target body three-dimensional pressure measurement mechanism body and sensor-based system signal processor, the multiple groove type capacitive pressure transducers accepting boxing pressure information are arranged in target body three-dimensional pressure measurement mechanism body, described pressure sensor comprises X-direction capacitor cell group and Y-direction capacitor cell group, described X-direction capacitor cell group and Y-direction capacitor cell group include capacitor cell module, the comb teeth-shaped structure that described capacitor cell module is made up of plural strip capacitor cell, each strip capacitor cell comprises the drive electrode of top crown and the induction electrode of bottom crown, described capacitor cell module comprises by two or more width a 0length b 0strip capacitor cell composition the first strip capacitor cell group and two or more width ka 0length b 0strip capacitor cell composition the second strip capacitor cell group.
The drive electrode of each strip capacitor cell of boxing supplemental training device is identical with induction electrode width, and the length of drive electrode is greater than induction electrode length, and drive electrode length two ends are reserved left poor position δ respectively leftwith right poor position δ right, b 0 drives=b 0 sense+ δ right+ δ left, wherein, b 0 drivesfor the drive electrode length of strip capacitor cell, b 0 sensefor the induction electrode length of strip capacitor cell.Described poor position δ leftright, and wherein d 0for strip capacitor cell dielectric thickness, G is the modulus of rigidity of elastic fluid, τ maxfor maximum stress value.The lead-in wire that described comb teeth-shaped structure comprises more than 20 strip capacitor cells, connects one to one with strip capacitor cell, is provided with electrode spacing a between adjacent two strip capacitor cells δ.Described parallel-plate area S=M (a 0+ 2a δ+ ka 0) b 0/ 2, wherein, M is strip capacitor cell quantity, b 0for the length of strip capacitor cell, a 0the width of strip capacitor cell.The strip capacitor cell lead-in wire of described first strip capacitor cell group and the second strip capacitor cell group is by parallel connection or be independently connected to sensor-based system signal processor.The width of described strip capacitor cell wherein, d 0for dielectric thickness, E is the Young's modulus of elastic fluid, and G is the modulus of rigidity of elastic fluid.Described first strip capacitor cell group and be respectively equipped with intermediate translator between the second strip capacitor cell group and sensor-based system signal processor, intermediate translator is for arranging voltage to electric capacity or frequency to the transmission coefficient of electric capacity.Described sensor system signals processor comprises multiple signals high speed commutation circuit, A/D translation circuit and control circuit, described high speed commutation circuit comprises three grades of commutation circuits, the output of previous stage commutation circuit is the input signal of next stage commutation circuit, and afterbody commutation circuit sends into control circuit through A/D translation circuit.
The present invention has following good effect: utilize three-dimensional force pressure sensor, and can detect the power acting on x, y, z three directions on boxing target body, the three-dimensional pressure data acted on target body are used for training guidance, and assay method is convenient and simple.Capacitance sensor of the present invention is on the basis measuring three-dimensional force, the dull and stereotyped effective area of effective use, and be coupled by driving the methods such as pole plate two ends length in reserve effectively to solve between three-dimensional force, thus make normal direction and tangential conversion all reach higher linear, precision and sensitivity.
Accompanying drawing explanation
Fig. 1 is strip capacitor cell and the coordinate system thereof of the specific embodiment of the invention.
Fig. 2 is the strip capacitor cell schematic diagram of the specific embodiment of the invention.
Fig. 3 is the strip capacitor cell dextrad skew schematic diagram of the specific embodiment of the present invention.
Fig. 4 is the strip capacitor cell left-hand skew schematic diagram of the specific embodiment of the present invention.
Fig. 5 is the width of the specific embodiment of the present invention is a 0and ka 0electric capacity to stressed deflection graph.
Fig. 6 is the parallel-plate three-dimensional force pressure sensor pole plate distribution map of the specific embodiment of the present invention.
Fig. 7 is the signal flow graph that the specific embodiment of the invention tangentially encourages.
Fig. 8 is the plane-parallel capacitor cross-section structure of the specific embodiment of the present invention.
Wherein, 1, upper PCB substrate, 2, lower PCB substrate, 3, drive electrode, 4, induction electrode, 5, elastic fluid.
Detailed description of the invention
Contrast accompanying drawing below, by the description to embodiment, the specific embodiment of the present invention is as the effect of the mutual alignment between the shape of involved each component, structure, each several part and annexation, each several part and operation principle, manufacturing process and operation using method etc., be described in further detail, have more complete, accurate and deep understanding to help those skilled in the art to inventive concept of the present invention, technical scheme.
Main thought of the present invention is: Boxing dummy distribution in vivo is provided with multiple pressure sensor, pressure sensor is used for detecting three-dimensional force when boxing, the capacitance interval read by computer judges the frequency of boxing, each sensor is numbered, by the position one_to_one corresponding of sensor number with boxing target body, carry out impact position analysis of the accuracy.
As the electrode plate structure figure that Fig. 4-6 is pressure sensor of the present invention, a kind of contact parallel-plate three-dimensional force pressure sensor, the X-direction capacitor cell group that described sensor comprises sensor-based system signal processor, be connected respectively with sensor-based system signal processor and Y-direction capacitor cell group, described X-direction capacitor cell group and Y-direction capacitor cell group include capacitor cell module, described capacitor cell module adopts the comb teeth-shaped structure be made up of plural strip capacitor cell, and each strip capacitor cell comprises the drive electrode of top crown and the induction electrode of bottom crown.Described capacitor cell module comprises by two or more width a 0length b 0first strip capacitor cell group of strip capacitor cell composition and two or more width ka 0length b 0second strip capacitor cell group of strip capacitor cell composition.The drive electrode of described each strip capacitor cell is identical with induction electrode width, and the length of drive electrode is greater than induction electrode length, and drive electrode length two ends are reserved left poor position δ respectively leftwith right poor position δ right, b 0 drives=b 0 sense+ δ right+ δ left, wherein, b 0 drivesfor the drive electrode length of strip capacitor cell, b 0 sensefor the induction electrode length of strip capacitor cell.Described poor position δ leftright, and wherein d 0for dielectric thickness, G is the modulus of rigidity of elastic fluid, τ maxfor maximum stress value.The lead-in wire that described comb teeth-shaped structure comprises more than 20 strip capacitor cells, connects one to one with strip capacitor cell, is provided with electrode spacing a between adjacent two strip capacitor cells δ.Described parallel-plate area S=M (a 0+ 2a δ+ ka 0) b 0/ 2, wherein, M is strip capacitor cell quantity, b 0for the length of strip capacitor cell, a 0the width of strip capacitor cell.The strip capacitor cell lead-in wire of described first strip capacitor cell group and the second strip capacitor cell group is by parallel connection or be independently connected to sensor-based system signal processor.The width of described strip capacitor cell wherein, d 0for dielectric thickness, E is the Young's modulus of elastic fluid, and G is the modulus of rigidity of elastic fluid.First strip capacitor cell group and be provided with intermediate translator between the second strip capacitor cell group and sensor-based system signal processor, intermediate translator is for arranging voltage to electric capacity or frequency to the transmission coefficient of electric capacity.
1, the transfer characteristic of strip capacitor cell
(1) pumping signal and coordinate system
Strip capacitor cell is placed in the rectangular coordinate system shown in Fig. 1, pole plate plane length b 0, width a 0, dielectric thickness d 0.Three-dimensional simulation puts on the outer surface of capacitor plate, and the contact active force of generation has Fx, Fy and Fz tri-durection components, and the action direction of Fx and Fy is along X-axis and Y-axis, and the action direction of Fz along OZ axle namely direction, normal direction and tangential stress are a kind of stress tensor, can output capacitance respond between the lead-in wire of electrode; Normal stress σ n=Fn/A, wherein A=a 0b 0for pole plate normal direction stress surface, Fn=Fz is normal component; Both side surface produces paired tangential stress τ x=Fx/A, τ y=Fy/A.
According to the Hooke's law in Elasticity, σ nand τ x, τ yelastomer all will be made to produce corresponding distortion.Wherein,
σ n = E · ϵ n = E · δ n / d 0 = F n A - - - ( 1 )
± τ x = ± γ x · G = ± G · δ x / d 0 = ± F x A - - - ( 2 )
± τ y = ± γ y · G = ± G · δ y / d 0 = ± F y A - - - ( 3 )
In formula, E is the Young's modulus (unit: GN/m of elastic fluid 2), G is the modulus of rigidity (unit: GN/m of elastic fluid 2), δ n is the Normal Displacement (unit: μm) of elastic fluid, and δ x and δ y is the relative dislocation (unit: μm) of the upper and lower two-plate of capacitor, and its sign is pointed to by reference axis and determined.
(2) capacitance equation and input-output characteristic thereof
The initial capacitance of rectangular parallel plate capacitor is:
C 0 = ϵ 0 . ϵ r · a 0 · b 0 d 0 - - - ( 4 )
In formula, ε 0vacuum medium electric constant is 8.85PF/m, ε r=2.5 is dielectric relative dielectric constant.D 0by σ nexcitation produce relative deformation ε nn/ d 0n/ E, substitutes into (4) and obtains input-output characteristic
C n = ϵ 0 . ϵ r a 0 · b 0 d 0 ( 1 - ϵ n ) = ϵ 0 · ϵ r a 0 · b 0 d 0 ( 1 F n A E ) - - - ( 5 )
(3) linearity under normal stress effect and sensitivity
A, the normal direction linearity
F in (5) formula nin the denominator, therefore C n=f (F n) relation be nonlinear, because of conversion range in maximum σ nmaxcompared with dielectric resilient constant E, ε na very little amount, i.e. ε in denominator n<<1, (5) are omitted the higher-order shear deformation of more than quadratic power by series expansion, and (5) formula can be reduced to:
C n = C 0 ( 1 + &epsiv; ) = C 0 ( 1 + F n A &CenterDot; E ) - - - ( 6 )
Visible at C nwith F ntransfer characteristic in the maximum relative error of the normal direction linearity close to zero.
B, sensitivity
By the definition of normal direction sensitivity
Can linear sensitivity be obtained by (6) formula,
S n1=C 0/AE=ε 0ε r/d 0E (7)
By (5) formula then
S n 2 = dC n dF n = C 0 &CenterDot; 1 1 - 2 &epsiv; = C 0 &CenterDot; 1 1 - 2 F n A &CenterDot; E - - - ( 8 )
S n2with F nand become, F nlarger, S n2larger, in mild nonlinear in whole transfer characteristic.
(4) tangential stress τ xand τ ycapacitance variations under excitation
Tangential stress τ xand τ ydo not change the physical dimension parameter b of pole plate 0and a 0, to dielectric thickness d 0also do not have an impact.But τ xand τ ychange the space structure of strip capacitor cell, between the upper bottom crown faced by forward, there occurs dislocation skew.Now for OX direction, pole plate is at τ xdislocation skew δ under effect x.
Work as τ in fig. 2 xwhen being zero, a on 0=a 0 timejust right, effective cross-section A between substrate τ=a 0b 0; In figure 3, at τ xunder the effect of dextrad, top crown creates dislocation skew δ to the right relative to bottom crown x, thus make the effective area A between bottom crown when calculating electric capacity τ=(a 0x) b 0; In Fig. 4, work as τ xduring for left-hand, dislocation skew δ xthen left, A τ=(a 0x) b 0, τ xwhen left-hand and dextrad, the reduction of effective area is identical, and consequent electric capacity is:
C &tau; x = &epsiv; 0 . &epsiv; r &CenterDot; ( a 0 - &delta; x ) &CenterDot; b 0 d 0 - - - ( 9 )
According to shearing Hooke's law
τ x=γ x·G=G·δ x/d 0(10)
(10) are substituted into (9) can obtain
C &tau; x = C 0 - &epsiv; 0 &CenterDot; &epsiv; r &CenterDot; &delta; x &CenterDot; b 0 d 0 = C 0 - &epsiv; 0 &CenterDot; &epsiv; r &CenterDot; b 0 &tau; x G = C 0 - &epsiv; 0 &CenterDot; &epsiv; r F x Ga 0 - - - ( 11 )
(11) formula is the input-output characteristics under shearing stress, C τwith τ xlinear.
And its sensitivity
S &tau; x = dC &tau; x dF x = &epsiv; 0 &CenterDot; &epsiv; r Ga 0 - - - ( 12 )
The similar analysis in formula (9)-(12) is suitable for and τ equally ywith C τ ycharacteristic and technical indicator, the only long limit b of strip capacitor cell in formula 0oX direction of principal axis should be arranged at, and its minor face a 0then in OY direction.
2, contact parallel plate capacitor design
(1) planar design of parallel plate capacitor
The original index normal direction Max.contact stress σ of setting nmaxfor 200Kpa, if the stressed A of normal direction is square 10 × 10mm 2, then maximum normal force F zmaxfor σ nmaxa=20N.Tangential Max.contact stress τ maxfor 70Kp, the distribution of force face of tangential stress is 10 × 10mm 2, then maximum tangential force component F xmax=F ymaxmaxa=7N.
Strip capacitor cell constructive variations shown in Fig. 3 and Fig. 4, only illustrates that electric capacity exports and tangential stress ± τ xthe relation of input, capacitance increase is all negative, and therefore this initial capacitance structure is not suitable for as right ± τ xobtain the response increasing and decreasing electric capacity.The present invention adjusts the initial configuration of bottom crown on strip capacitor cell for this reason, and width is a 0and ka 0strip capacitor cell form a pair capacitor cell to (C lwith C r), specifically as shown in Figure 5.
In Fig. 5, capacitor cell C land C relectrode size b 0, d 0all identical, width one is a 0, one is ka 0, wherein k is constant, is preferably greater than the integer of 1.Work as τ xwhen=0, C l=C 0, C r=kC 0, on this basis as at F xδ is produced under excitation xmistake skew, offset effect as shown in figure 3 or 4 will be formed.
C L = &epsiv; 0 &CenterDot; &epsiv; r &CenterDot; b 0 &CenterDot; ( a 0 - &delta; x ) d 0 = C 0 - &epsiv; 0 &CenterDot; &epsiv; r &CenterDot; b 0 &tau; x G = C 0 - &epsiv; 0 &CenterDot; &epsiv; r F x Ga 0 - - - ( 13 )
C R = &epsiv; 0 &CenterDot; &epsiv; r &CenterDot; b 0 &CenterDot; ( Ka 0 - &delta; x ) d 0 = kC 0 - &epsiv; 0 &CenterDot; &epsiv; r &CenterDot; b 0 &tau; x G = kC 0 - &epsiv; 0 &CenterDot; &epsiv; r F x Ga 0 - - - ( 14 )
C land C rcapacitor cell is at same τ xδ will be produced xwith Δ C τresponse.
Thus, formula (11) can be revised as
C &tau; x = C &tau; 0 - &epsiv; 0 &CenterDot; &epsiv; r Ga 0 F x
In formula, for initial capacitance when shearing stress is zero, above formula is shearing stress input-output characteristic, C τ xwith F xlinear relationship, and its sensitivity
Electrode plane see Fig. 6 is arranged, at a 10 × 10mm 2substrate center do cross separate, form four quadrants, upper right first quartile I, upper left second quadrant II, lower-left third quadrant III, bottom right fourth quadrant IV, wherein I, III quadrant is to τ xmake the capacitor cell combination of response, and II, IV quadrant is to τ ymake the capacitor cell combination of response.Object-line is 10 × 10mm 2pcb board four edge lines, hachure part represents the outer mode cross section of wax-loss casting process.Using the position of induction electrode in lower floor's PCB substrate as reference, then the layout of drive electrode in the PCB substrate of upper strata should with PCB substrate edge line for benchmark.In figure, four dashed rectangle are the benchmark of induction electrode on bottom crown, put they and geometry datum line differential apart from being δ 0(0.1mm).
Capacitor cell module adopts comb structure, and capacitor cell module adopts the comb teeth-shaped structure be made up of plural strip capacitor cell, and each strip capacitor cell comprises the drive electrode of top crown and the induction electrode of bottom crown.By formula (12) a 0less, the sensitivity of tangential stress response is larger, therefore single capacitor cell is strip.If every root strip capacitor cell is wide is a 0, the groove width between two strip electric capacity is a δ, then the pitch of every root strip capacitor cell is ka 0+ a 0+ 2a δ.In order to make full use of the plane space of square substrate, M (ka 0+ a 0+ 2a δ) b 0/ 2 ≈ 1 square substrate surface areas, M is strip electric capacity quantity, then have M (ka 0+ a 0+ 2a δ)=20mm, in formula, groove width a δunsuitable excessive, otherwise be unfavorable for using the effective plane space on substrate, also unsuitable too small, the constraint of wax-loss casting process is subject to.For making normal direction sensitivity S nwith tangential sensitivity S τequal, by formula (7) and (12), make a 0g=d 0e, works as d 0when=0.1mm, k=1.5, thus M can be obtained.
In order to realize τ xand τ ybetween tangential response mutually do not have an impact, the drive electrode length two ends reserved difference position δ of strip capacitor cell 0, therefore b 0 drives=b 0 end+ 2 δ 0, wherein at b 0 drivestwo ends length reserved difference potential theory should ensure its calculated value is 10 - 5 &times; 70 &times; 10 3 2.4 &times; 10 6 = 2.9 &times; 10 - 8 m = 10 - 2 u m < < 1 u m , Therefore should b be ensured in technique 0 drives-b 0 end>=0.01mm.Like this when computing method exports response to electric capacity, ensure τ xand τ yany impact is not produced on the response of normal direction electric capacity.
In order to realize τ xand τ ydo not produce any impact to the response of normal direction electric capacity, width is a 0and ka 0strip capacitor cell form a pair capacitor cell to (C lwith C r) carry out publicity reckoning elimination impact each other.Ensure τ xproduce τ at I, III quadrant capacitor cell xelectric capacity response, then produce τ at II, IV quadrant capacitor cell yelectric capacity response, to ensure that capacitor cell in four quadrants is at τ xand τ ytwo groups of differential capacitors pair can be produced under tangential excitation.
(2) calculating of normal stress and tangential force
If width is a in Fig. 5 0strip capacitor cell be subject to tangential force τ x, produce a tangential displacement d xafter output capacitance value be C 1, width is ka 0strip capacitor cell be subject to tangential force τ x, produce a tangential displacement d xafter output capacitance value be C 2, then have:
C 1 = &epsiv; ( a 0 - d x ) b 0 d n = &epsiv;a 0 b 0 d n - &epsiv;b 0 d x d n - - - ( 15 )
C 2 = &epsiv; ( ka 0 - d x ) b 0 d n = &epsiv;ka 0 b 0 d n - &epsiv;b 0 d x d n - - - ( 16 )
Obtained by (15)-(16):
C 1 - C 2 = &epsiv;a 0 b 0 d n - &epsiv;ka 0 b 0 d n Calculate:
d n = &epsiv;a 0 b 0 ( 1 - k ) C 1 - C 2 - - - ( 17 )
Obtained by (15) * k-(16):
kC 1 - C 2 = &epsiv;d x b 0 d n - &epsiv;kd x b 0 d n = &epsiv;d x b 0 ( 1 - k ) d n , (17) are substituted into above formula, can obtain:
d x = a 0 ( kC 1 - C 2 ) C 1 - C 2 - - - ( 18 )
According to d n = d 0 - &Delta; d = d 0 ( 1 - F n E &CenterDot; S 0 )
Known: F n = ( d n - d 0 ) E &CenterDot; S 0 d 0
By d x d 0 = &gamma; = &tau; G = F &tau; G &CenterDot; S 0 , So F &tau; x = GS 0 d x d 0 .
In above formula, no matter be normal direction excitation F nor tangentially encourage F yall not to O τhave an impact.Namely automatically σ is eliminated nand τ yto τ xthe coupling of total output or interference comprise at signal because every in the computing of subtracting each other, equivalent and the capacitance variations with symbol are eliminated all automatically.And F yand F xto σ ninterference by upper electrode at b 0direction increases geometrical length 2 δ 0eliminate.In like manner F can be obtained τ y.
(4) main material selection and characterisitic parameter thereof
The section of structure of comb teeth-shaped plane-parallel capacitor is similar to the sandwich structure shown in Fig. 8.In Fig. 8,1 is upper PCB substrate, and 2 is lower PCB substrate, and 3 is drive electrode, and 4 is induction electrode, and 5 is elastic fluid.Pole plate is apart from d 0=0.1mm, upper and lower base plate inner space, except copper foil electrode, is PDMS (dimethyl silicone polymer) the superlastic dielectric with lost wax process filling.Its machinery and physical characteristic parameter are Young's modulus E=6.2MPa, and its shear modulus is G=4.1MPa, relative permittivity ε during dielectric polorization γ=2.5.Because E and G of medium is much smaller than the elastic modulus E of copper copper=103GPa.Therefore the distortion of capacitor internal medium under stress state is much larger than the distortion of pole plate.
(5) contact conductor design
Be that drive electrode or induction electrode all need to have lead-out wire, consider that each drive electrode is all ground connection in signal level, therefore four groups of drive electrodes only need share same lead-out wire.The induction electrode of four the first strip capacitor cell groups and the second strip capacitor cell group then needs with respective independently lead-out wire, and draw from the side of planar package so whole capacitance component has at least 5 pins, four induction electrodes refer to that X-direction width is a 0induction electrode and width be ka 0induction electrode, and Y-direction width is a 0induction electrode and width be ka 0induction electrode so that whole assembly top and bottom outer surface can contact with measuring object easily.The present invention, under the support of new material and new technology, completes the design of a kind of novel three-dimensional power sensitization capacitance combination, at 10 × 10mm 2stress surface on, be no matter normal direction or tangential, all can transmit stress more uniformly to medium.In literary composition, four cell capacitance are two to combination distribution.In the contact of non-coplanar force and sensor surface, external force only has 1, and electric capacity response but has 4, and whole battery lead plate, all to asking Fn to contribute, simultaneously by two pairs of capacitor combinations composition systems, can obtain F again xand F yinformation, thus complete description three-dimensional force.
Due in shadowbox process, the frequency of boxing may have several times a second, therefore, requires that sample rate is higher.The signal of pressure sensor is gathered with multiple signals high speed commutation circuit, A/D translation circuit and control circuit, in order to save A/D translation circuit, the measurement of multichannel pressure sensor is completed with a road A/D translation circuit, multiple signals high speed commutation circuit and control circuit are the design key of system, and switch speed has influence on the data volume of testing in of short duration boxing process.The Acquisition Circuit of the present invention's design carries out signal switching to No. 256 sensors simultaneously.From the control system of control circuit after local shaping, divide three grades to switch, the first order uses 32 8 road switch concurrent workings, export 32 road signals, 32 road signals enter second level switch, adopt 48 road switch concurrent workings, obtain 4 road signals, this 4 road signal enters third level switch, obtains 1 road signal, enters A/D translation circuit.Data are read in computer temporary by A/D translation circuit in conversion process, and after all digital independent complete, preservation in a computer.
In the use procedure of reality, sensor is numbered, the position one_to_one corresponding of the three-dimensional force utilizing computer to be recorded by each sensor and corresponding boxing target body, and by the time interval of twice electric capacity catastrophe point, the frequency of boxing can be extrapolated.
Above by reference to the accompanying drawings to invention has been exemplary description; obvious specific implementation of the present invention is not subject to the restrictions described above; as long as have employed the improvement of the various unsubstantialities that method of the present invention is conceived and technical scheme is carried out; or design of the present invention and technical scheme directly applied to other occasion, all within protection scope of the present invention without to improve.

Claims (9)

1. a boxing supplemental training device, it is characterized in that, comprise target body three-dimensional pressure measurement mechanism body and sensor-based system signal processor, the multiple groove type capacitive pressure transducers accepting boxing pressure information are arranged in target body three-dimensional pressure measurement mechanism body, described pressure sensor comprises X-direction capacitor cell group and Y-direction capacitor cell group, described X-direction capacitor cell group and Y-direction capacitor cell group include capacitor cell module, the comb teeth-shaped structure that described capacitor cell module is made up of plural strip capacitor cell, each strip capacitor cell comprises the drive electrode of top crown and the induction electrode of bottom crown, described capacitor cell module comprises by two or more width a 0length b 0strip capacitor cell composition the first strip capacitor cell group and two or more width ka 0length b 0strip capacitor cell composition the second strip capacitor cell group.
2. boxing supplemental training device according to claim 1, it is characterized in that, the drive electrode of described each strip capacitor cell is identical with induction electrode width, and the length of drive electrode is greater than induction electrode length, and drive electrode length two ends are reserved left poor position δ respectively leftwith right poor position δ right, b 0 drives=b 0 sense+ δ right+ δ left, wherein, b 0 drivesfor the drive electrode length of strip capacitor cell, b 0 sensefor the induction electrode length of strip capacitor cell.
3. boxing supplemental training device according to claim 2, is characterized in that, described poor position δ leftright, and wherein d 0for strip capacitor cell dielectric thickness, G is the modulus of rigidity of elastic fluid, τ maxfor maximum stress value.
4. boxing supplemental training device according to claim 1, it is characterized in that, the lead-in wire that described comb teeth-shaped structure comprises more than 20 strip capacitor cells, connects one to one with strip capacitor cell, is provided with electrode spacing a between adjacent two strip capacitor cells δ.
5. boxing supplemental training device according to claim 4, is characterized in that, described parallel-plate area S=M (a 0+ 2a δ+ ka 0) b 0/ 2, wherein, M is strip capacitor cell quantity, b 0for the length of strip capacitor cell, a 0the width of strip capacitor cell, k is constant.
6. boxing supplemental training device according to claim 1, is characterized in that, the strip capacitor cell lead-in wire of described first strip capacitor cell group and the second strip capacitor cell group is connected to sensor-based system signal processor by parallel or independent mode.
7. boxing supplemental training device according to claim 1, is characterized in that, the width of described strip capacitor cell wherein, d 0for dielectric thickness, E is the Young's modulus of elastic fluid, and G is the modulus of rigidity of elastic fluid.
8. boxing supplemental training device according to claim 1, it is characterized in that, described first strip capacitor cell group and be respectively equipped with intermediate translator between the second strip capacitor cell group and sensor-based system signal processor, intermediate translator is for arranging voltage to electric capacity or frequency to the transmission coefficient of electric capacity.
9. boxing supplemental training device according to claim 1, it is characterized in that, described sensor system signals processor comprises multiple signals high speed commutation circuit, A/D translation circuit and control circuit, described high speed commutation circuit comprises three grades of commutation circuits, the output of previous stage commutation circuit is the input signal of next stage commutation circuit, and afterbody commutation circuit sends into control circuit through A/D translation circuit.
CN201510460358.7A 2015-07-28 2015-07-28 Boxing auxiliary training device Pending CN104984530A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510460358.7A CN104984530A (en) 2015-07-28 2015-07-28 Boxing auxiliary training device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201510460358.7A CN104984530A (en) 2015-07-28 2015-07-28 Boxing auxiliary training device

Publications (1)

Publication Number Publication Date
CN104984530A true CN104984530A (en) 2015-10-21

Family

ID=54296498

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201510460358.7A Pending CN104984530A (en) 2015-07-28 2015-07-28 Boxing auxiliary training device

Country Status (1)

Country Link
CN (1) CN104984530A (en)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20110275956A1 (en) * 2008-01-11 2011-11-10 Es2 Llc Intelligent Orthotic Insoles
CN102308270A (en) * 2009-02-06 2012-01-04 压力分布系统公司 Capacitive proximity tactile sensor
CN103365518A (en) * 2013-06-25 2013-10-23 京东方科技集团股份有限公司 Capacitive touch screen and manufacturing method
CN104406722A (en) * 2014-12-03 2015-03-11 合肥京东方光电科技有限公司 Array pressure surface sensing imaging device
CN205145547U (en) * 2015-07-28 2016-04-13 安徽工程大学 Trainer is assisted in boxing

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20110275956A1 (en) * 2008-01-11 2011-11-10 Es2 Llc Intelligent Orthotic Insoles
CN102308270A (en) * 2009-02-06 2012-01-04 压力分布系统公司 Capacitive proximity tactile sensor
CN103365518A (en) * 2013-06-25 2013-10-23 京东方科技集团股份有限公司 Capacitive touch screen and manufacturing method
CN104406722A (en) * 2014-12-03 2015-03-11 合肥京东方光电科技有限公司 Array pressure surface sensing imaging device
CN205145547U (en) * 2015-07-28 2016-04-13 安徽工程大学 Trainer is assisted in boxing

Similar Documents

Publication Publication Date Title
CN105054952A (en) Device for measuring acting force on boxing target
CN204758191U (en) Three -dimensional power pressure sensor of contact parallel -plate
CN204972974U (en) Sportsman process gesture detection device that hurdles
CN104951144A (en) Shock absorption-based three-dimensional multi-point touch screen and control method thereof
CN105030248A (en) Diabetic complication foot ulcer monitoring system
CN104997569B (en) Comprehensive tooth measuring instrument based on detachable tooth socket
CN204788762U (en) Differential three -dimensional power pressure sensor of contact parallel -plate
CN104978095A (en) Three-dimensional multiple-point type touch screen and control method thereof
CN204798051U (en) Tooth general measuring instrument based on can dismantle facing
CN205145547U (en) Trainer is assisted in boxing
CN104978073A (en) Induction type touch screen and control method thereof
CN105012039A (en) Comprehensive tooth measuring instrument
CN104990663B (en) Contact type parallel plate differential three-dimensional force pressure sensor
CN204798786U (en) Trainer is assisted in boxing based on pressure analysis
CN204815611U (en) Bicycle is ridden to move and is assisted trainer
CN104964778A (en) Contact-type parallel plate three-dimensional force pressure sensor
CN105046084A (en) Tooth comprehensive measurement instrument capable of realizing data fusion
CN104984530A (en) Boxing auxiliary training device
CN204855332U (en) System is assessd to skin care products quality based on test of skin friction properties
CN104971483A (en) Boxing auxiliary training apparatus based on pressure analysis
CN204831004U (en) Motion of firearms back -lash receives force measuring device
CN104971482A (en) Sprint auxiliary training apparatus
CN204788742U (en) Three -dimensional pressure sensor of circular ring type contact parallel -plate
CN104965962A (en) Device for monitoring static friction force of cable meter counter
CN204814260U (en) Tooth general measuring instrument

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
RJ01 Rejection of invention patent application after publication
RJ01 Rejection of invention patent application after publication

Application publication date: 20151021