· pdf filethe signal flow graph of a system is shown in the figure. the transfer function...

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Signal Flow Graph 1. In the signal flow graph shown in figure 2 = 1 where T, is equal to 5 X 1 X 2 0.5 (a) 2.5 (b) 5 (c) 5.5 (d) 10 [GATE 1987: 2 Marks] Soln. 2 = 1 2 1 = 5 โˆ† = 5 1 โˆ’ 0.5 = 10 Option (d) 2. For the system shown in figure the transfer function () () R(s) C(s) S 10 S(S+1) + - + - (a) 10 2 ++10 (b) 10 2 +11+10 (c) 10 2 +9+10 (d) 10 2 +2+10 [GATE 1987: 2 Marks]

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Page 1: · PDF fileThe signal flow graph of a system is shown in the figure. The transfer function ๐ถ(๐‘ ) (๐‘ ) of the system is R(s) C(s) 1 6 1-4-3 1 S 1-2 (a) (c)6

Signal Flow Graph

1. In the signal flow graph shown in figure ๐‘‹2 = ๐‘‡๐‘‹1 where T, is equal to

5X1 X2

0.5

(a) 2.5

(b) 5

(c) 5.5

(d) 10

[GATE 1987: 2 Marks]

Soln. ๐‘‹2 = ๐‘‡๐‘‹1

๐‘‹2

๐‘‹1=

5

โˆ†=

5

1 โˆ’ 0.5= 10

Option (d)

2. For the system shown in figure the transfer function

๐ถ(๐‘ )

๐‘…(๐‘ ) ๐‘–๐‘  ๐‘’๐‘ž๐‘ข๐‘Ž๐‘™ ๐‘ก๐‘œ

R(s) C(s)

S

10

S(S+1)+- +-

(a) 10

๐‘†2+๐‘†+10

(b) 10

๐‘†2+11๐‘†+10

(c) 10

๐‘†2+9๐‘†+10

(d) 10

๐‘†2+2๐‘†+10

[GATE 1987: 2 Marks]

Page 2: · PDF fileThe signal flow graph of a system is shown in the figure. The transfer function ๐ถ(๐‘ ) (๐‘ ) of the system is R(s) C(s) 1 6 1-4-3 1 S 1-2 (a) (c)6

Soln. The forward path transmittance =10

๐‘†(๐‘†+1)

The two closed loop are ๐ฟ1 =โˆ’10

๐‘†(๐‘†+1)

๐ฟ2 =โˆ’10๐‘†

๐‘†(๐‘† + 1)

๐ถ(๐‘†)

๐‘…(๐‘†)=

10/๐‘†(๐‘† + 1)

1 โˆ’ {โˆ’10

๐‘†(๐‘†+1)

โˆ’10

๐‘†+1}

=10

๐‘†(๐‘† + 1) [1 +10

๐‘†(๐‘†+1)+

10

(๐‘†+1)]

=10 ๐‘†(๐‘† + 1)

๐‘†(๐‘† + 1)[๐‘†(๐‘† + 1) + 10 + 10๐‘†]

=10

๐‘†๐Ÿ + ๐‘† + 10๐‘† + 10=

10

๐‘†2 + 11๐‘† + 10

Option (b)

3. The C/R for the signal flow graph in figure is

R CG1 G2 G3 G41 1 1

-1 -1 -1 -1

(a) ๐บ1๐บ2๐บ34

(1+๐บ1๐บ2)(1+๐บ3๐บ4)

(b) ๐บ1๐บ2๐บ3๐บ4

(1+๐บ1+๐บ2+๐บ1๐บ2)(1+๐บ3+๐บ4+๐บ3๐บ4)

(c) ๐บ1๐บ2๐บ3๐บ4

(1+๐บ1+๐บ2)(1+๐บ3+๐บ4)

(d) ๐บ1๐บ2๐บ3๐บ4

(1+๐บ1+๐บ2+๐บ3+๐บ4)

[GATE 1989: 2 Marks]

Page 3: · PDF fileThe signal flow graph of a system is shown in the figure. The transfer function ๐ถ(๐‘ ) (๐‘ ) of the system is R(s) C(s) 1 6 1-4-3 1 S 1-2 (a) (c)6

Soln. The forward path transmittance = G1 G2 G3 G4

Individual loops are, -G1, -G2, -G3, -G4.

Product of non touching loops, G1G3, G1G4, G2G3, G2G4

โˆ†= 1 โˆ’ [โˆ’๐บ1 โˆ’ ๐บ2 โˆ’ ๐บ3 โˆ’ ๐บ4] + [๐บ1๐บ3 + ๐บ1๐บ4 + ๐บ2๐บ3 + ๐บ2๐บ4]

๐‘†

๐‘…=

๐บ1๐บ2๐บ3๐บ4

(1 + ๐บ1 + ๐บ2 + ๐บ3 + ๐บ4) + (๐บ1๐บ3 + ๐บ1๐บ4 + ๐บ2๐บ3 + ๐บ2๐บ4)

=๐บ1๐บ2๐บ3๐บ4

(1 + ๐บ1 + ๐บ2)(1 + ๐บ3 + ๐บ4)

Option (c)

4. In the signal flow graph of figure the gain c/r will be

r 1 2 3 4 1 c

5

-1 -1 -1

(a) 11/9

(b) 22/15

(c) 24/23

(d) 44/23

[GATE 1991: 2 Marks]

Soln. The forward path ๐‘ƒ1 = 1 ร— 2 ร— 3 ร— 4 = 24

The forward path ๐‘ƒ2 = 5

Page 4: · PDF fileThe signal flow graph of a system is shown in the figure. The transfer function ๐ถ(๐‘ ) (๐‘ ) of the system is R(s) C(s) 1 6 1-4-3 1 S 1-2 (a) (c)6

โˆ†1= 1

๐ฟ1 = โˆ’2, ๐ฟ2 = โˆ’3, ๐ฟ3 = โˆ’4

Non touching loops โ†’ ๐ฟ1๐ฟ3

The loop ๐ฟ2 = โˆ’3 does not touch the path P2

So, โˆ†2= (1 โˆ’ ๐ฟ2)

= 1 + 3

= 4

๐‘†

๐‘…=

๐‘ƒ1โˆ†1 + ๐‘ƒ2โˆ†2

โˆ†

=24 ร— 1 + 5 ร— 4

1โ€” (โˆ’2 โˆ’ 3 โˆ’ 4 โˆ’ 5) + (โˆ’2) ร— (โˆ’4)

=24 + 20

(1 + 14) + 8

=44

23

Option (d)

Page 5: · PDF fileThe signal flow graph of a system is shown in the figure. The transfer function ๐ถ(๐‘ ) (๐‘ ) of the system is R(s) C(s) 1 6 1-4-3 1 S 1-2 (a) (c)6

5. In the signal flow graph of figure y/x equals

125x y

-2

(a) 3

(b) 5/2

(c) 2

(d) None of the above

[GATE 1997: 2 Marks]

Soln. Transfer function

๐‘Œ

๐‘‹=

๐‘ƒ๐พโˆ†๐พ

โˆ†

๐‘ƒ๐พ = 5 ร— 2 ร— 1 = 10

โˆ†๐พ= 1

โˆ†๐พ= 1

โˆ†= 1 โˆ’ (โˆ’4) = 5

๐‘Œ

๐‘‹=

10

5

= 2

Option (c)

Page 6: · PDF fileThe signal flow graph of a system is shown in the figure. The transfer function ๐ถ(๐‘ ) (๐‘ ) of the system is R(s) C(s) 1 6 1-4-3 1 S 1-2 (a) (c)6

6. The equivalent of the block diagram in the figure is given as

G1 G2

H

E C

F

G1 C

H/G2

E

F

(a)

G1G2

HG2

E C

F

(b)

G1

HG2

E C

F

(c)

G1G2

H/G2

E C

F

(d)

Page 7: · PDF fileThe signal flow graph of a system is shown in the figure. The transfer function ๐ถ(๐‘ ) (๐‘ ) of the system is R(s) C(s) 1 6 1-4-3 1 S 1-2 (a) (c)6

Soln.

G1 G2

H

G1 C

H/G2

G1G2

HG2

G1

HG2

G1G2

H/G2

E C

F

E

F

E C

F

E C

F

E C

F

(a)

(b)

(c)

(d)

Option (d)

Page 8: · PDF fileThe signal flow graph of a system is shown in the figure. The transfer function ๐ถ(๐‘ ) (๐‘ ) of the system is R(s) C(s) 1 6 1-4-3 1 S 1-2 (a) (c)6

7. The signal flow graph of a system is shown in the figure. The transfer

function ๐ถ(๐‘ )

๐‘…(๐‘ ) of the system is

R(s)

C(s)

1 6

1

-4-3

1S S

1

-2

(a) 6

๐‘†2+29๐‘†+6

(b) 6๐‘†

๐‘†2+29๐‘†+6

(c) ๐‘†(๐‘†+2)

๐‘†2+29๐‘†+6

(d) ๐‘†(๐‘†+27)

๐‘†2+29๐‘†+6

[GATE 2003: 2 Marks]

Soln. The transfer function ๐ถ(๐‘†)

๐‘…(๐‘†) of the systems?

๐ฟ1 =โˆ’3

๐‘†, ๐ฟ2 = โˆ’4 ร—

6

๐‘†, ๐ฟ3 =

โˆ’2

๐‘†

P1 = 1

Loops L1 and L3 are not touching the forward path

โˆ†1= 1 โˆ’ ๐ฟ1 โˆ’ ๐ฟ3

= 1 +3

๐‘†+

24

๐‘†

=๐‘† + 27

๐‘†

๐ถ(๐‘†)

๐‘…(๐‘†)= ๐บ(๐‘ ) =

๐‘ƒ1โˆ†1

1 โˆ’ (๐‘™๐‘œ๐‘œ๐‘ ๐‘”๐‘Ž๐‘–๐‘›) + ๐‘๐‘Ž๐‘–๐‘Ÿ ๐‘œ๐‘“ ๐‘›๐‘œ๐‘› ๐‘ก๐‘ข๐‘โ„Ž๐‘–๐‘›๐‘” ๐‘™๐‘œ๐‘œ๐‘๐‘ 

Page 9: · PDF fileThe signal flow graph of a system is shown in the figure. The transfer function ๐ถ(๐‘ ) (๐‘ ) of the system is R(s) C(s) 1 6 1-4-3 1 S 1-2 (a) (c)6

๐‘†+27

๐‘†

1 โˆ’ (โˆ’3

๐‘†

โˆ’24

๐‘†

โˆ’2

๐‘†) +

โˆ’2

๐‘†ร—

โˆ’3

๐‘†

๐‘†+27

๐‘†

1 +29

๐‘†+

6

๐‘†2

=๐‘†(๐‘† + 27)

๐‘†2 + 29๐‘† + 6

Option (d)

8. Consider the signal flow graph shown in the figure. The gain X5 / X1 is

x1 x2 x3 x4 x5a b c d

e f g

(a) 1โˆ’(๐‘๐‘’+๐‘๐‘“+๐‘‘๐‘”)

๐‘Ž๐‘๐‘

(b) ๐‘๐‘’๐‘‘๐‘”

1โˆ’(๐‘๐‘’+๐‘๐‘“+๐‘‘๐‘”)

(c) ๐‘Ž๐‘๐‘๐‘‘

1โˆ’(๐‘๐‘’+๐‘๐‘“+๐‘‘๐‘”)+๐‘๐‘’๐‘‘๐‘”

(d) 1โˆ’(๐‘๐‘’+๐‘๐‘“+๐‘‘๐‘”)+๐‘๐‘’๐‘‘๐‘”

๐‘Ž๐‘๐‘๐‘‘

[GATE 2004: 2 Marks]

Soln. The forward path transmittance P1 = abcd

All the loops touch the forward path โˆ†1= 1

๐ฟ1 = ๐‘๐‘’, ๐ฟ2 = ๐ถ๐‘“, ๐ฟ3 = ๐‘‘๐‘”

Non touching loops are ๐ฟ1, ๐ฟ3

๐ฟ1๐ฟ3 = ๐‘๐‘’ ๐‘‘๐‘”

Page 10: · PDF fileThe signal flow graph of a system is shown in the figure. The transfer function ๐ถ(๐‘ ) (๐‘ ) of the system is R(s) C(s) 1 6 1-4-3 1 S 1-2 (a) (c)6

๐‘‹5

๐‘‹1=

๐‘Ž๐‘๐‘๐‘‘

1 โˆ’ (๐‘๐‘’ + ๐‘๐‘“ + ๐‘‘๐‘”) + ๐‘๐‘’ ๐‘‘๐‘”

Option (c)

9. The transfer function Y(s) / R(s) of the system shown is

Y(s)1

S+1

1

S+1

ฮฃ

ฮฃ

+-

+

-

R(s)P(s)

Q(s)

Q(s)

(a) 0

(b) 1

๐‘†+1

(c) 2

๐‘†+1

(d) 2

๐‘†+3

[GATE 2010: 1 Mark]

Soln. ๐‘„(๐‘ ) = ๐‘ƒ(๐‘ ) [1

๐‘†+1โˆ’

1

๐‘†+1]

= 0

๐‘ƒ(๐‘ ) = ๐‘…(๐‘ ) โˆ’ 0

= ๐‘…(๐‘ )

๐‘Œ(๐‘ ) =๐‘ƒ(๐‘ )

๐‘† + 1

Page 11: · PDF fileThe signal flow graph of a system is shown in the figure. The transfer function ๐ถ(๐‘ ) (๐‘ ) of the system is R(s) C(s) 1 6 1-4-3 1 S 1-2 (a) (c)6

=๐‘…(๐‘ )

๐‘† + 1

๐‘Œ(๐‘†)

๐‘…(๐‘†)=

1

๐‘† + 1

Option (b)

Common Data for Question 10 and Question 11

The input-output transfer function of a plant ๐ป(๐‘ ) =100

๐‘†(๐‘†+10)2.The plant is

placed in unity negative feedback configuration as shown in the figure

below.

ฮฃ + -r u

y

plant

10. The signal flow graph that DOES NOT model the plant transfer function

H(s) is

u 1 1/s 1/s 1/s 100 y(a)

-10 -10

Page 12: · PDF fileThe signal flow graph of a system is shown in the figure. The transfer function ๐ถ(๐‘ ) (๐‘ ) of the system is R(s) C(s) 1 6 1-4-3 1 S 1-2 (a) (c)6

u1/s 1/s1/s 100 y(b)

-100

-20

u1/s 1/s1/s 100

(c)

-100

-20

y

u1/s 1/s1/s 100

(d)

-100

y

Soln. The transfer function of a plant ๐ป(๐‘ ) =100

๐‘†(๐‘†+10)2

For the figure (a) ๐‘ƒ1 =100

๐‘†3, โˆ†1= 1

(๐‘Ž๐‘™๐‘™ ๐‘กโ„Ž๐‘’ ๐‘™๐‘œ๐‘œ๐‘๐‘  ๐‘ก๐‘œ๐‘ข๐‘โ„Ž ๐‘กโ„Ž๐‘’ ๐‘“๐‘œ๐‘Ÿ๐‘ค๐‘Ž๐‘Ÿ๐‘‘ ๐‘๐‘Ž๐‘กโ„Ž)

๐‘Œ

๐‘ˆ=

100/๐‘†3

1 โˆ’ (โˆ’10

๐‘†

โˆ’10

๐‘†) +

10

๐‘†ร—

10

๐‘†

=

100

๐‘†2

1 +20

๐‘†+

100

๐‘†2

=100

๐‘†(๐‘† + 10)2

Page 13: · PDF fileThe signal flow graph of a system is shown in the figure. The transfer function ๐ถ(๐‘ ) (๐‘ ) of the system is R(s) C(s) 1 6 1-4-3 1 S 1-2 (a) (c)6

For figure (b) ๐‘ƒ1 =100

๐‘†3, โˆ†1= 1

๐‘Œ

๐‘ˆ=

100

๐‘†3

1 โˆ’ (โˆ’100

๐‘†2

โˆ’20

๐‘†)

=

100

๐‘†3

1 +100

๐‘†2+

20

๐‘†

=100

๐‘†(๐‘† + 10)2

For Figure (c)

๐‘ƒ1 =100

๐‘†3, โˆ†1= 1

๐‘Œ

๐‘ˆ=

100

๐‘†3

1 โˆ’ (โˆ’100

๐‘†2

โˆ’20

๐‘†)

=100

๐‘†(๐‘† + 10)2

For Figure (d),

๐‘Œ

๐‘ˆ=

100

๐‘†3

1 โˆ’ (โˆ’100

๐‘†2 )=

100

๐‘†3

1 +100

๐‘†2

= 100 ๐‘†2

๐‘†3(๐‘†2 + 100)=

100

๐‘†(๐‘†2 + 100)

Which is not a transfer function of H(S)

Option (d)

11. The gain margin of the system under closed loop unity negative feedback is

๐บ(๐‘ )๐ป(๐‘ ) =100

๐‘†(๐‘†+10)2

(a) 0 dB

(b) 20 dB

(c) 26 dB

(d) 46 dB

[GATE 2011: 2 Marks]

Soln. The gain margin of the system under closed loop unity negative feedback is

๐บ(๐‘ )๐ป(๐‘ ) =100

๐‘†(๐‘†+10)2

โˆ… = โˆ’900 โˆ’ 2๐‘ก๐‘Ž๐‘›โˆ’1 (๐œ”

10)

Flow phase cross aver frequency โˆ… = โˆ’1800

Page 14: · PDF fileThe signal flow graph of a system is shown in the figure. The transfer function ๐ถ(๐‘ ) (๐‘ ) of the system is R(s) C(s) 1 6 1-4-3 1 S 1-2 (a) (c)6

โˆ’180 = โˆ’900 โˆ’ 2๐‘ก๐‘Ž๐‘›โˆ’1 (๐œ”

10)

๐œ” = 10 ๐‘Ÿ๐‘Ž๐‘‘/๐‘ ๐‘’๐‘

๐บ(๐‘—๐œ”)๐ป(๐‘—๐œ”) =100

๐‘—๐œ” (๐‘—๐œ” + 10)2

|๐บ(๐‘—๐œ”)๐ป(๐‘—๐œ”)| =100

๐œ”(๐œ”2 + 100)

=100

10(100 + 100)=

1

20

๐บ๐‘Ž๐‘–๐‘› ๐‘š๐‘Ž๐‘Ÿ๐‘”๐‘–๐‘› (๐บ. ๐‘€) =1

|๐บ(๐‘—๐œ”)๐ป(๐‘—๐œ”)|= 20

๐บ. ๐‘€ ๐‘–๐‘› ๐‘‘๐ต = 20๐‘™๐‘œ๐‘”1020 = 26 ๐‘‘๐ต

Option (c)

12. The signal flow graph for a system is given below. The transfer function

๐‘Œ(๐‘ )

๐‘ˆ(๐‘ ) ๐‘“๐‘œ๐‘Ÿ ๐‘กโ„Ž๐‘–๐‘  ๐‘ ๐‘ฆ๐‘ ๐‘ก๐‘’๐‘š ๐‘–๐‘ 

U(s) Y(s)1 1

1

-4

-2

S-1

S-1

Page 15: · PDF fileThe signal flow graph of a system is shown in the figure. The transfer function ๐ถ(๐‘ ) (๐‘ ) of the system is R(s) C(s) 1 6 1-4-3 1 S 1-2 (a) (c)6

(a) ๐‘ +1

5๐‘ 2+6๐‘ +2

(b) ๐‘ +1

๐‘ 2+6๐‘ +2

(c) ๐‘ +1

๐‘ 2+4๐‘ +2

(d) 1

5๐‘ 2+6๐‘ +2

[GATE 2013: 2 Marks]

Soln. The forward path transmittance ๐‘ƒ1 = ๐‘†โˆ’1 ร— ๐‘†1 =1

๐‘†2

The forward path transmittance ๐‘ƒ2 = ๐‘†โˆ’1 =1

๐‘†

โˆ†1= 1, โˆ†2= 1

โˆ†= 1 โˆ’ (โˆ’2๐‘†โˆ’2 โˆ’ 2๐‘†โˆ’1 โˆ’ 4๐‘†โˆ’1 โˆ’ 4)

= 1 +2

๐‘†2+

2

๐‘†+

4

๐‘†+ 4

= 1 +2

๐‘†2+

2

๐‘†+

4

๐‘†+ 4

= (5๐‘†2 + 6๐‘† + 2)/๐‘†2

๐‘Œ(๐‘†)

๐‘ˆ(๐‘†)=

๐‘ƒ1โˆ†1 + ๐‘ƒ2โˆ†2

โˆ†=

1

๐‘†2+

1

๐‘†

(5๐‘†2 + 6๐‘† + 2)/๐‘†2=

(๐‘† + 1)

5๐‘†2 + 6๐‘† + 2

Option (a)

Page 16: · PDF fileThe signal flow graph of a system is shown in the figure. The transfer function ๐ถ(๐‘ ) (๐‘ ) of the system is R(s) C(s) 1 6 1-4-3 1 S 1-2 (a) (c)6

13. For the following system,

+-S

S+1 +-+ 1

S

When ๐‘‹1(๐‘†) = 0, the transfer function ๐‘Œ(๐‘†)

๐‘‹2(๐‘†) is

(a) ๐‘†+1

๐‘†2

(b) 1

๐‘†+1

(c) ๐‘†+2

๐‘†(๐‘†+1)

(d) ๐‘†+1

๐‘†(๐‘†+2)

[GATE: 2014: 1 Mark]

Soln. With ๐‘‹1(๐‘ ) = 0, the block diagram is redrawn as

+-

S

S+1

1

S

๐‘‡(๐‘ ) =๐‘Œ(๐‘†)

๐‘‹2(๐‘†)=

๐บ(๐‘†)

1 + ๐บ(๐‘†)๐ป(๐‘†)

Page 17: · PDF fileThe signal flow graph of a system is shown in the figure. The transfer function ๐ถ(๐‘ ) (๐‘ ) of the system is R(s) C(s) 1 6 1-4-3 1 S 1-2 (a) (c)6

๐บ(๐‘ ) =1

๐‘†, ๐ป(๐‘ ) =

๐‘†

๐‘† + 1=

1/๐‘†

1 +1

๐‘†ร—

๐‘†

๐‘†+1

=1(๐‘† + 1)

๐‘†(๐‘† + 1 + 1)=

(๐‘† + 1)

๐‘†(๐‘† + 2)

Option (d)

14. Consider the following block diagram in the figure

++ ++

the transfer function ๐ถ(๐‘†)

๐‘…(๐‘†) is

(a) ๐บ1๐บ2

1+๐บ1๐บ2

(b) ๐บ1๐บ2 + ๐บ1 + 1

(c) ๐บ1๐บ2 + ๐บ2 + 1

(d) ๐บ1

1+๐บ1๐บ2

[GATE 2014: 1 Mark]

Soln. Converting the block diagram into signal flow graph as:

1

1

Page 18: · PDF fileThe signal flow graph of a system is shown in the figure. The transfer function ๐ถ(๐‘ ) (๐‘ ) of the system is R(s) C(s) 1 6 1-4-3 1 S 1-2 (a) (c)6

The forward paths

๐‘ƒ1 = ๐บ1๐บ2

๐‘ƒ2 = ๐บ2

๐‘ƒ3 = 1.1 = 1

๐ถ(๐‘ )

๐‘…(๐‘ )= ๐บ1๐บ2 + ๐บ2 + 1

Option (c)