CN104410488A - 0.1-order Lorenz type chaotic system circuit containing x power based on T-shaped fractional order integral circuit module - Google Patents

0.1-order Lorenz type chaotic system circuit containing x power based on T-shaped fractional order integral circuit module Download PDF

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CN104410488A
CN104410488A CN201410772378.3A CN201410772378A CN104410488A CN 104410488 A CN104410488 A CN 104410488A CN 201410772378 A CN201410772378 A CN 201410772378A CN 104410488 A CN104410488 A CN 104410488A
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resistance
electric capacity
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circuit module
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CN104410488B (en
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郑文
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State Grid Corp of China SGCC
Jining Power Supply Co of State Grid Shandong Electric Power Co Ltd
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Abstract

The invention provides a 0.1-order Lorenz type chaotic system circuit containing x power based on a T-shaped fractional order integral circuit module. The T-shaped fractional order integral circuit module consists of six parts, wherein the first part is formed by connecting four resistors with a potentiometer in series, and connecting the four resistors and the potentiometer which are connected in series with four capacitors; the later five parts are respectively formed by connecting four resistors with a potentiometer in series, and connecting the four resistors and the potentiometer which are connected in series with four capacitors connected in parallel. According to the invention, a T-shaped structure is adopted, a PCB (printed circuit board) circuit is designed and produced, the 0.1-order fractional order integral circuit consists of the three former parts, the three later parts are not used, and are hung in the air, the reliability of the 0.1-order fractional order chaotic system circuit realized by the method is high, and mistakes are less.

Description

0.1 rank based on T-shaped fractional order integration circuit module contain x side Lorenz type chaos system circuit
Technical field
The present invention relates to a kind of general score rank integrating circuit module and 0.1 rank chaos system circuit realiration thereof, particularly a kind of 0.1 rank based on T-shaped fractional order integration circuit module are containing x side Lorenz type chaos system circuit.
Background technology
Because the resistance and the electric capacity that realize the circuit of chaotic systems with fractional order are all non-conventional resistive and electric capacity, the method of general employing resistant series and Capacitance parallel connection realizes, at present, the main method realized is the method utilizing existing resistance and electric capacity to combine on bread board, this method reliability and stability are lower, and exist and easily make mistakes, the not problem such as easy-to-search after makeing mistakes, the present invention is for overcoming this problem, adopt T-type structure, design and produce PCB circuit, whole circuit is made up of six parts, after Part I is connected by four resistance and a potentiometer, form with four Capacitance parallel connections, five parts next are by after four resistance and a potentiometer series connection, be in series with four Capacitance parallel connection parts and form, T-shaped 0.1 rank General integral circuit is made up of first three part, rear three parts need not, unsettled, adopt in this way realize 0.1 rank fractional order chaotic system circuit, reliability is high, not easily make mistakes.
Summary of the invention
The technical problem to be solved in the present invention is to provide a kind of 0.1 rank based on T-shaped general score rank integrating circuit module containing x side Lorenz type chaos system circuit, and the present invention adopts following technological means to realize goal of the invention:
1, a T-shaped general score rank integrating circuit module, is characterized in that being: resistance Rx is in parallel with electric capacity Cx, forms Part I, resistance Ry connects with electric capacity Cy, and form Part II, resistance Rz connects with electric capacity Cz, form Part III, resistance Rw connects with electric capacity Cw, and form Part IV, resistance Ru connects with electric capacity Cu, form Part V, resistance Rv connects with electric capacity Cv, forms Part VI, and Part I and below five parts are for being connected in parallel.
2, a kind of T-shaped general score rank integrating circuit module according to claim 1, it is characterized in that: described resistance Rx is composed in series by potentiometer Rx1 and resistance Rx2, Rx3, Rx4, Rx5, described electric capacity Cx is composed in parallel by electric capacity Cx1, Cx2, Cx3, Cx4; Described resistance Ry is composed in series by potentiometer Ry1 and resistance Ry2, Ry3, Ry4, Ry5, and described electric capacity Cy, by electric capacity Cy1, Cy2, Cy3, Cy4, composes in parallel; Described resistance Rz is composed in series by potentiometer Rz1 and resistance Rz2, Rz3, Rz4, Rz5, and described electric capacity Cz is composed in parallel by electric capacity Cz1, Cz2, Cz3, Cz4; Described resistance Rw is composed in series by potentiometer Rw1 and resistance Rw2, Rw3, Rw4, Rw5, and described electric capacity Cw is composed in parallel by electric capacity Cw1, Cw2, Cw3, Cw4; Described resistance Ru is composed in series by potentiometer Ru1 and resistance Ru2, Ru3, Ru4, Ru5, and described electric capacity Cu is composed in parallel by electric capacity Cu1, Cu2, Cu3, Cu4; Described resistance Rv is composed in series by potentiometer Rv1 and resistance Rv2, Rv3, Rv4, Rv5, and described electric capacity Cv is composed in parallel by electric capacity Cv1, Cv2, Cv3, Cv4.
3, a kind of T-shaped general score rank integrating circuit module according to claim 1, described 0.1 rank integrating circuit module, it is characterized in that: described resistance Rx=0.5849M, described potentiometer Rx1=4.9K, described resistance Rx2=500K, Rx3=51K, Rx4=33K, Rx5=10K, described electric capacity Cx=0.000631uF, described electric capacity Cx1=330pF, Cx2=100pF, Cx3=100pF, Cx4=100pF; Described resistance Ry=2.382M, described potentiometer Ry1=1K, described resistance Ry2=2M, Ry3=300K, Ry4=51K, Ry5=30K, described electric capacity Cy=2.517uF, described electric capacity Cy1=2.2uF, Cy2=220nF, Cy3=68nF, Cy4=33nF; Described resistance Rz=1.432M, described potentiometer Rz1=0K and described resistance Rz2=1M, Rz3=430K, Rz4=2K, Rz5=0K, described electric capacity Cz=0.02509uF, described electric capacity Cz1=22nF, Cz2=3.3nF, Cz3 are unsettled, Cz4 is unsettled; Described resistance Rw, Ru, Rv are all unsettled, and described electric capacity Cw, Cu, Cv are all unsettled.
4, based on 0.1 rank of T-shaped general score rank integrating circuit module containing the Lorenz type chaos system circuit of x side, it is characterized in that:
(1) containing the Mathematical Modeling i of the Lorenz type chaos system of x side:
dx dt = a ( y - x ) dy dt = bx + cy - xz dz dt = x 2 - dz i a = 20 , b = 14 , c = 10.6 , d = 2.8
(2) Mathematical Modeling ii containing 0.1 rank Lorenz type chaos system of x side are:
d α x dt α = a ( y - x ) d α y dt α = bx + cy - xz d α z dt α = x 2 - dz ii a = 20 , b = 14 , c = 10.6 , d = 2.8 , α = 0.1
(3) according to the Mathematical Modeling ii constructing analog circuit of 0.1 rank containing the Lorenz type chaos system of x side, operational amplifier U1, operational amplifier U2 and resistance and T-shaped 0.1 rank integrating circuit module U5, T-shaped 0.1 rank integrating circuit module U6, T-shaped 0.1 rank integrating circuit module U7 is utilized to form anti-phase adder and anti-phase 0.1 rank integrator, multiplier U3 and multiplier U4 is utilized to realize multiplying, described operational amplifier U1 and operational amplifier U2 adopts LF347N, described multiplier U3 and multiplier U4 to adopt AD633JN;
Described operational amplifier U1 concatenation operation amplifier U2, multiplier U3, multiplier U4 and T-shaped 0.1 rank integrating circuit module, T-shaped 0.1 rank integrating circuit module U6, described operational amplifier U2 connects multiplier U3, multiplier U4 and T-shaped 0.1 rank integrating circuit module U7, described multiplier U3 concatenation operation amplifier U1, described multiplier U4 concatenation operation amplifier U2;
1st pin of described operational amplifier U1 is connected by the 6th pin of resistance R7 and U1, 2nd pin is connected with the 1st pin by resistance R6, 3rd, 5, 10, 12 pin ground connection, 4th pin meets VCC, 11st pin meets VEE, 6th pin connects the A pin of T-shaped 0.1 rank integrating circuit module U6, 7th pin connects and exports y, connected with the 13rd pin by resistance R1, connected with the 2nd pin by resistance R8, connect the B pin of T-shaped 0.1 rank integrating circuit module U6, 8th pin connects and exports x, connected with the 9th pin by resistance R4, connected with the 2nd pin by resistance R5, connect the 1st pin of multiplier U3, connect the 1st of multiplier U4 the, 3 pins, connect the B pin of T-shaped 0.1 rank integrating circuit module U5, 9th pin connects the A pin of T-shaped 0.1 rank integrating circuit module U5, 13rd pin is connected with the 14th pin by resistance R2, 14th pin is connected with the 9th pin by resistance R3,
Described operational amplifier U2 the 1st, 2,6,7 pins are unsettled, 3rd, 5,10,12 pin ground connection, 4th pin meets VCC, and the 11st pin meets VEE, and the 8th pin exports z, connected with the 9th pin by resistance R12, connect the 3rd pin of multiplier U3, connect the B pin of T-shaped 0.1 rank integrating circuit module, the 9th pin connects the A pin of T-shaped 0.1 rank integrating circuit module U7,13rd pin connects the 14th pin by resistance R10, and the 14th pin connects the 9th pin by resistance R13;
1st pin of described multiplier U3 connects the 8th pin of U1, and the 3rd pin connects the 8th pin of U2, the equal ground connection of the 2nd, 4,6 pin, and the 5th pin meets VEE, and the 7th pin connects U1 the 6th pin by resistance R9, and the 8th pin meets VCC;
The 1st of described multiplier U4,3 pins connect the 8th pin of U1, the equal ground connection of the 2nd, 4,6 pin, and the 5th pin meets VEE, and the 7th pin connects U2 the 13rd pin by resistance R11, and the 8th pin meets VCC;
The A pin of described T-shaped 0.1 rank integrating circuit module U5 connects the 9th pin of operational amplifier U1, and B pin connects the 8th pin of operational amplifier U1;
The A pin of described T-shaped 0.1 rank integrating circuit module U6 connects the 6th pin of operational amplifier U1, and B pin connects the 7th pin of operational amplifier U1;
The A pin of described T-shaped 0.1 rank integrating circuit module U7 connects the 9th pin of operational amplifier U2, and B pin connects the 8th pin of operational amplifier U2.
The invention has the beneficial effects as follows: adopt T-type structure, design and produce PCB circuit, circuit is made up of six parts, after Part I is connected by four resistance and a potentiometer, form with four Capacitance parallel connections, five parts next are by after four resistance and a potentiometer series connection, be in series with four Capacitance parallel connection parts and form, T-shaped 0.1 rank General integral circuit is made up of first three part, aft section need not, unsettled, adopt in this way realize 0.1 rank fractional order chaotic system circuit, reliability is high, not easily makes mistakes.
Accompanying drawing explanation
Fig. 1 is chain type fractional order integration circuit module internal structure schematic diagram (a) of the present invention, inner actual connection layout (b) and 0.1 rank integrating circuit module map (c).
Fig. 2 is the circuit connection structure schematic diagram of the preferred embodiment of the present invention.
Fig. 3 and Fig. 4 is the actual connection layout of circuit of the present invention.
Embodiment
Below in conjunction with accompanying drawing and preferred embodiment, the present invention is further described in detail, see Fig. 1-Fig. 4.
1, a T-shaped general score rank integrating circuit module, is characterized in that being: resistance Rx is in parallel with electric capacity Cx, forms Part I, resistance Ry connects with electric capacity Cy, and form Part II, resistance Rz connects with electric capacity Cz, form Part III, resistance Rw connects with electric capacity Cw, and form Part IV, resistance Ru connects with electric capacity Cu, form Part V, resistance Rv connects with electric capacity Cv, forms Part VI, and Part I and below five parts are for being connected in parallel.
2, a kind of T-shaped general score rank integrating circuit module according to claim 1, it is characterized in that: described resistance Rx is composed in series by potentiometer Rx1 and resistance Rx2, Rx3, Rx4, Rx5, described electric capacity Cx is composed in parallel by electric capacity Cx1, Cx2, Cx3, Cx4; Described resistance Ry is composed in series by potentiometer Ry1 and resistance Ry2, Ry3, Ry4, Ry5, and described electric capacity Cy, by electric capacity Cy1, Cy2, Cy3, Cy4, composes in parallel; Described resistance Rz is composed in series by potentiometer Rz1 and resistance Rz2, Rz3, Rz4, Rz5, and described electric capacity Cz is composed in parallel by electric capacity Cz1, Cz2, Cz3, Cz4; Described resistance Rw is composed in series by potentiometer Rw1 and resistance Rw2, Rw3, Rw4, Rw5, and described electric capacity Cw is composed in parallel by electric capacity Cw1, Cw2, Cw3, Cw4; Described resistance Ru is composed in series by potentiometer Ru1 and resistance Ru2, Ru3, Ru4, Ru5, and described electric capacity Cu is composed in parallel by electric capacity Cu1, Cu2, Cu3, Cu4; Described resistance Rv is composed in series by potentiometer Rv1 and resistance Rv2, Rv3, Rv4, Rv5, and described electric capacity Cv is composed in parallel by electric capacity Cv1, Cv2, Cv3, Cv4.
3, a kind of T-shaped general score rank integrating circuit module according to claim 1, described 0.1 rank integrating circuit module, it is characterized in that: described resistance Rx=0.5849M, described potentiometer Rx1=4.9K, described resistance Rx2=500K, Rx3=51K, Rx4=33K, Rx5=10K, described electric capacity Cx=0.000631uF, described electric capacity Cx1=330pF, Cx2=100pF, Cx3=100pF, Cx4=100pF; Described resistance Ry=2.382M, described potentiometer Ry1=1K, described resistance Ry2=2M, Ry3=300K, Ry4=51K, Ry5=30K, described electric capacity Cy=2.517uF, described electric capacity Cy1=2.2uF, Cy2=220nF, Cy3=68nF, Cy4=33nF; Described resistance Rz=1.432M, described potentiometer Rz1=0K and described resistance Rz2=1M, Rz3=430K, Rz4=2K, Rz5=0K, described electric capacity Cz=0.02509uF, described electric capacity Cz 1=22nF, Cz2=3.3nF, Cz3 are unsettled, Cz4 is unsettled; Described resistance Rw, Ru, Rv are all unsettled, and described electric capacity Cw, Cu, Cv are all unsettled.
4, based on 0.1 rank of T-shaped general score rank integrating circuit module containing the Lorenz type chaos system circuit of x side, it is characterized in that:
(1) containing the Mathematical Modeling i of the Lorenz type chaos system of x side:
dx dt = a ( y - x ) dy dt = bx + cy - xz dz dt = x 2 - dz i a = 20 , b = 14 , c = 10.6 , d = 2.8
(2) Mathematical Modeling ii containing 0.1 rank Lorenz type chaos system of x side are:
d α x dt α = a ( y - x ) d α y dt α = bx + cy - xz d α z dt α = x 2 - dz ii a = 20 , b = 14 , c = 10.6 , d = 2.8 , α = 0.1
(3) according to the Mathematical Modeling ii constructing analog circuit of 0.1 rank containing the Lorenz type chaos system of x side, operational amplifier U1, operational amplifier U2 and resistance and T-shaped 0.1 rank integrating circuit module U5, T-shaped 0.1 rank integrating circuit module U6, T-shaped 0.1 rank integrating circuit module U7 is utilized to form anti-phase adder and anti-phase 0.1 rank integrator, multiplier U3 and multiplier U4 is utilized to realize multiplying, described operational amplifier U1 and operational amplifier U2 adopts LF347N, described multiplier U3 and multiplier U4 to adopt AD633JN;
Described operational amplifier U1 concatenation operation amplifier U2, multiplier U3, multiplier U4 and T-shaped 0.1 rank integrating circuit module, T-shaped 0.1 rank integrating circuit module U6, described operational amplifier U2 connects multiplier U3, multiplier U4 and T-shaped 0.1 rank integrating circuit module U7, described multiplier U3 concatenation operation amplifier U1, described multiplier U4 concatenation operation amplifier U2;
1st pin of described operational amplifier U1 is connected by the 6th pin of resistance R7 and U1, 2nd pin is connected with the 1st pin by resistance R6, 3rd, 5, 10, 12 pin ground connection, 4th pin meets VCC, 11st pin meets VEE, 6th pin connects the A pin of T-shaped 0.1 rank integrating circuit module U6, 7th pin connects and exports y, connected with the 13rd pin by resistance R1, connected with the 2nd pin by resistance R8, connect the B pin of T-shaped 0.1 rank integrating circuit module U6, 8th pin connects and exports x, connected with the 9th pin by resistance R4, connected with the 2nd pin by resistance R5, connect the 1st pin of multiplier U3, connect the 1st of multiplier U4 the, 3 pins, connect the B pin of T-shaped 0.1 rank integrating circuit module U5, 9th pin connects the A pin of T-shaped 0.1 rank integrating circuit module U5, 13rd pin is connected with the 14th pin by resistance R2, 14th pin is connected with the 9th pin by resistance R3,
Described operational amplifier U2 the 1st, 2,6,7 pins are unsettled, 3rd, 5,10,12 pin ground connection, 4th pin meets VCC, and the 11st pin meets VEE, and the 8th pin exports z, connected with the 9th pin by resistance R12, connect the 3rd pin of multiplier U3, connect the B pin of T-shaped 0.1 rank integrating circuit module, the 9th pin connects the A pin of T-shaped 0.1 rank integrating circuit module U7,13rd pin connects the 14th pin by resistance R10, and the 14th pin connects the 9th pin by resistance R13;
1st pin of described multiplier U3 connects the 8th pin of U1, and the 3rd pin connects the 8th pin of U2, the equal ground connection of the 2nd, 4,6 pin, and the 5th pin meets VEE, and the 7th pin connects U1 the 6th pin by resistance R9, and the 8th pin meets VCC;
The 1st of described multiplier U4,3 pins connect the 8th pin of U1, the equal ground connection of the 2nd, 4,6 pin, and the 5th pin meets VEE, and the 7th pin connects U2 the 13rd pin by resistance R11, and the 8th pin meets VCC;
The A pin of described T-shaped 0.1 rank integrating circuit module U5 connects the 9th pin of operational amplifier U1, and B pin connects the 8th pin of operational amplifier U1;
The A pin of described T-shaped 0.1 rank integrating circuit module U6 connects the 6th pin of operational amplifier U1, and B pin connects the 7th pin of operational amplifier U1;
The A pin of described T-shaped 0.1 rank integrating circuit module U7 connects the 9th pin of operational amplifier U2, and B pin connects the 8th pin of operational amplifier U2.
Resistance in circuit r1=R4=5k Ω, R8=9.4k Ω, R5=7.14k Ω, R9=R11=1k Ω, R12=35.7k Ω.
Certainly, above-mentioned explanation is not limitation of the present invention, and the present invention is also not limited only to above-mentioned citing, and the change that those skilled in the art make in essential scope of the present invention, remodeling, interpolation or replacement, also belong to protection scope of the present invention.

Claims (4)

1. a T-shaped general score rank integrating circuit module, is characterized in that being: resistance Rx is in parallel with electric capacity Cx, forms Part I, resistance Ry connects with electric capacity Cy, and form Part II, resistance Rz connects with electric capacity Cz, form Part III, resistance Rw connects with electric capacity Cw, and form Part IV, resistance Ru connects with electric capacity Cu, form Part V, resistance Rv connects with electric capacity Cv, forms Part VI, and Part I and below five parts are for being connected in parallel.
2. a kind of T-shaped general score rank integrating circuit module according to claim 1, it is characterized in that: described resistance Rx is composed in series by potentiometer Rx1 and resistance Rx2, Rx3, Rx4, Rx5, described electric capacity Cx is composed in parallel by electric capacity Cx1, Cx2, Cx3, Cx4; Described resistance Ry is composed in series by potentiometer Ry1 and resistance Ry2, Ry3, Ry4, Ry5, and described electric capacity Cy, by electric capacity Cy1, Cy2, Cy3, Cy4, composes in parallel; Described resistance Rz is composed in series by potentiometer Rz1 and resistance Rz2, Rz3, Rz4, Rz5, and described electric capacity Cz is composed in parallel by electric capacity Cz1, Cz2, Cz3, Cz4; Described resistance Rw is composed in series by potentiometer Rw1 and resistance Rw2, Rw3, Rw4, Rw5, and described electric capacity Cw is composed in parallel by electric capacity Cw1, Cw2, Cw3, Cw4; Described resistance Ru is composed in series by potentiometer Ru1 and resistance Ru2, Ru3, Ru4, Ru5, and described electric capacity Cu is composed in parallel by electric capacity Cu1, Cu2, Cu3, Cu4; Described resistance Rv is composed in series by potentiometer Rv1 and resistance Rv2, Rv3, Rv4, Rv5, and described electric capacity Cv is composed in parallel by electric capacity Cv1, Cv2, Cv3, Cv4.
3. a kind of T-shaped general score rank integrating circuit module according to claim 1, described 0.1 rank integrating circuit module, it is characterized in that: described resistance Rx=0.5849M, described potentiometer Rx1=4.9K, described resistance Rx2=500K, Rx3=51K, Rx4=33K, Rx5=10K, described electric capacity Cx=0.000631uF, described electric capacity Cx1=330pF, Cx2=100pF, Cx3=100pF, Cx4=100pF; Described resistance Ry=2.382M, described potentiometer Ry1=1K, described resistance Ry2=2M, Ry3=300K, Ry4=51K, Ry5=30K, described electric capacity Cy=2.517uF, described electric capacity Cy1=2.2uF, Cy2=220nF, Cy3=68nF, Cy4=33nF; Described resistance Rz=1.432M, described potentiometer Rz1=0K and described resistance Rz2=1M, Rz3=430K, Rz4=2K, Rz5=0K, described electric capacity Cz=0.02509uF, described electric capacity Cz1=22nF, Cz2=3.3nF, Cz3 are unsettled, Cz4 is unsettled; Described resistance Rw, Ru, Rv are all unsettled, and described electric capacity Cw, Cu, Cv are all unsettled.
4. based on 0.1 rank of T-shaped general score rank integrating circuit module containing the Lorenz type chaos system circuit of x side, it is characterized in that:
(1) containing the Mathematical Modeling i of the Lorenz type chaos system of x side:
dx dt = a ( y - x ) dy dt = bx + cy - xz dz dt = x 2 - dz - - - i , a = 20 , b = 14 , c = 10.6 , d = 2.8
(2) Mathematical Modeling ii containing 0.1 rank Lorenz type chaos system of x side are:
d a x dt a = a ( y - x ) d a y dt a = bx + cy - xz d a z dt a = x 2 - dz - - - ii , a = 20 , b = 14 , c = 10.6 , d = 2.8 , α = 0.1
(3) according to the Mathematical Modeling ii constructing analog circuit of 0.1 rank containing the Lorenz type chaos system of x side, operational amplifier U1, operational amplifier U2 and resistance and T-shaped 0.1 rank integrating circuit module U5, T-shaped 0.1 rank integrating circuit module U6, T-shaped 0.1 rank integrating circuit module U7 is utilized to form anti-phase adder and anti-phase 0.1 rank integrator, multiplier U3 and multiplier U4 is utilized to realize multiplying, described operational amplifier U1 and operational amplifier U2 adopts LF347N, described multiplier U3 and multiplier U4 to adopt AD633JN;
Described operational amplifier U1 concatenation operation amplifier U2, multiplier U3, multiplier U4 and T-shaped 0.1 rank integrating circuit module, T-shaped 0.1 rank integrating circuit module U6, described operational amplifier U2 connects multiplier U3, multiplier U4 and T-shaped 0.1 rank integrating circuit module U7, described multiplier U3 concatenation operation amplifier U1, described multiplier U4 concatenation operation amplifier U2;
1st pin of described operational amplifier U1 is connected by the 6th pin of resistance R7 and U1, 2nd pin is connected with the 1st pin by resistance R6, 3rd, 5, 10, 12 pin ground connection, 4th pin meets VCC, 11st pin meets VEE, 6th pin connects the A pin of T-shaped 0.1 rank integrating circuit module U6, 7th pin connects and exports y, connected with the 13rd pin by resistance R1, connected with the 2nd pin by resistance R8, connect the B pin of T-shaped 0.1 rank integrating circuit module U6, 8th pin connects and exports x, connected with the 9th pin by resistance R4, connected with the 2nd pin by resistance R5, connect the 1st pin of multiplier U3, connect the 1st of multiplier U4 the, 3 pins, connect the B pin of T-shaped 0.1 rank integrating circuit module U5, 9th pin connects the A pin of T-shaped 0.1 rank integrating circuit module U5, 13rd pin is connected with the 14th pin by resistance R2, 14th pin is connected with the 9th pin by resistance R3,
Described operational amplifier U2 the 1st, 2,6,7 pins are unsettled, 3rd, 5,10,12 pin ground connection, 4th pin meets VCC, and the 11st pin meets VEE, and the 8th pin exports z, connected with the 9th pin by resistance R12, connect the 3rd pin of multiplier U3, connect the B pin of T-shaped 0.1 rank integrating circuit module, the 9th pin connects the A pin of T-shaped 0.1 rank integrating circuit module U7,13rd pin connects the 14th pin by resistance R10, and the 14th pin connects the 9th pin by resistance R13;
1st pin of described multiplier U3 connects the 8th pin of U1, and the 3rd pin connects the 8th pin of U2, the equal ground connection of the 2nd, 4,6 pin, and the 5th pin meets VEE, and the 7th pin connects U1 the 6th pin by resistance R9, and the 8th pin meets VCC;
The 1st of described multiplier U4,3 pins connect the 8th pin of U1, the equal ground connection of the 2nd, 4,6 pin, and the 5th pin meets VEE, and the 7th pin connects U2 the 13rd pin by resistance R11, and the 8th pin meets VCC;
The A pin of described T-shaped 0.1 rank integrating circuit module U5 connects the 9th pin of operational amplifier U1, and B pin connects the 8th pin of operational amplifier U1;
The A pin of described T-shaped 0.1 rank integrating circuit module U6 connects the 6th pin of operational amplifier U1, and B pin connects the 7th pin of operational amplifier U1;
The A pin of described T-shaped 0.1 rank integrating circuit module U7 connects the 9th pin of operational amplifier U2, and B pin connects the 8th pin of operational amplifier U2.
CN201410772378.3A 2014-12-14 2014-12-14 A kind of 0.1 T-shaped general score rank, rank integrating circuit module Expired - Fee Related CN104410488B (en)

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CN104468086A (en) * 2014-12-14 2015-03-25 吴新华 0.3-order y<th> power Lorenz type chaotic system circuit based on T-type fractional order integral circuit module
CN104486062A (en) * 2014-12-14 2015-04-01 王忠林 Implementation of 0.4-order Liu chaotic system circuit based on T-shaped fractional order integration circuit module
CN105007153A (en) * 2015-08-19 2015-10-28 李敏 0.1-order hybrid type and T type fractional integral switching method and circuit
CN105049182A (en) * 2015-08-19 2015-11-11 高建红 0.1-order chained and T-shaped fractional integral switching method and circuit
CN105187195A (en) * 2015-09-09 2015-12-23 胡春华 Self-adaptive synchronizing method of memristor-based x-power-contained Lorenz hyper-chaos system, and circuit

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CN104468084A (en) * 2014-12-14 2015-03-25 李敏 Implementation of 0.8-order x-square-contained Lu chaotic system circuit based on T-type fractional order integral circuit module
CN104468086A (en) * 2014-12-14 2015-03-25 吴新华 0.3-order y<th> power Lorenz type chaotic system circuit based on T-type fractional order integral circuit module
CN104486062A (en) * 2014-12-14 2015-04-01 王忠林 Implementation of 0.4-order Liu chaotic system circuit based on T-shaped fractional order integration circuit module
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CN105007153A (en) * 2015-08-19 2015-10-28 李敏 0.1-order hybrid type and T type fractional integral switching method and circuit
CN105049182A (en) * 2015-08-19 2015-11-11 高建红 0.1-order chained and T-shaped fractional integral switching method and circuit
WO2017027989A1 (en) * 2015-08-19 2017-02-23 李敏 0.1-order hybrid and t-type fractional integral switching method and circuit
CN105187195A (en) * 2015-09-09 2015-12-23 胡春华 Self-adaptive synchronizing method of memristor-based x-power-contained Lorenz hyper-chaos system, and circuit

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