EBK SYSTEM DYNAMICS
EBK SYSTEM DYNAMICS
3rd Edition
ISBN: 9780100254961
Author: Palm
Publisher: YUZU
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Chapter 9, Problem 9.33P
To determine

The expression for the steady state displacement x(t)for a cam.

The steady stat response for the given Fourier series is given by

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  1

Given:

The displacement produced by the cam is given by the following figure

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  2

Figure 1                     Figure 2

Where m = 1 Kg, EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  3 and k = 4900N/m.

Fourier series approximation = EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  4

Concept Used:

We first derive an expression for transfer function of the given system and then calculate EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  5 magnitude of the given transfer function, phase angle, bandwidth, and magnitude of phase angles of respective frequencies, and finally calculate the expression for steady state response.

Calculation:

Fourier series approximation = EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  6

From Figure 1 equation of motion is given by,

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  7 (1)

Substituting for m = 1 Kg, EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  8 and k = 4900N/m in equation (1)

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  9

Applying Laplace transform for the above equation

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  10

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  11

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  12

The transfer function for the given system

T(s) EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  13 (2)

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  14

Therefore magnitude of above transfer function is given by

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  15 (3)

The phase angle is given by

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  16 (4)

From the equation (3) we can observe that EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  17 attains a peak of 1 when EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  18 0. Hence EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  19 = 0 and EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  20 is calculated as follows

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  21

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  22

Squaring on both sides we get,

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  23

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  24

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  25

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  26

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  27

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  28

On further simplification we get

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  29

The roots of the equation are EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  30

Taking only the positive value EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  31

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  32 143.42 rad/s

Therefore, the bandwidth lies between 0 and 143.42 rad/s that is EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  33

As EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  34 is greater than 143.42 rad/s which is outside the required bandwidth, we consider only 0, 10 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  35 20 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  36 30 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  37 and 40 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  38 for frequency values.

From equation (3) EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  39

Substituting for EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  40 0, 10 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  41 20 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  42 30 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  43 and 40 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  44 respectively we get

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  45

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  46 .... (5)

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  47

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  48 = EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  49

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  50 =1.015

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  51

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  52EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  53

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  54 1.263

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  55

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  56EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  57

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  58 1.038

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  59

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  60EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  61

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  62 0.806

From equation (4) we have EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  63

Now calculating the phase angles for corresponding frequencies EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  64 0, 10 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  65 20 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  66 30 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  67 and 40 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  68 respectively we get,

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  69

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  70 rad

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  71

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  72EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  73

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  74

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  75EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  76

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  77

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  78 2.247 rad

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  79

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  80 2.038 rad

The steady state response for the given Fourier series

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  81

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  82

Substituting the values of EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  83 and EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  84 for corresponding frequencies EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  85 0, 10 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  86 20 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  87 30 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  88 and 40 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  89 respectively we get,

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  90

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  91

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  92

Conclusion:

Therefore, the steady stat response for the given function is given by

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  93

Expert Solution & Answer
Check Mark

Answer to Problem 9.33P

The steady stat response for the given Fourier series is given by

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  94

Explanation of Solution

Given:

The displacement produced by the cam is given by the following figure

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  95

Figure 1                     Figure 2

Where m = 1 Kg, EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  96 and k = 4900N/m.

Fourier series approximation = EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  97

Concept Used:

We first derive an expression for transfer function of the given system and then calculate EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  98 magnitude of the given transfer function, phase angle, bandwidth, and magnitude of phase angles of respective frequencies, and finally calculate the expression for steady state response.

Calculation:

Fourier series approximation = EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  99

From Figure 1 equation of motion is given by,

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  100 (1)

Substituting for m = 1 Kg, EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  101 and k = 4900N/m in equation (1)

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  102

Applying Laplace transform for the above equation

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  103

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  104

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  105

The transfer function for the given system

T(s) EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  106 (2)

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  107

Therefore magnitude of above transfer function is given by

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  108 (3)

The phase angle is given by

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  109 (4)

From the equation (3) we can observe that EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  110 attains a peak of 1 when EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  111 0. Hence EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  112 = 0 and EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  113 is calculated as follows

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  114

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  115

Squaring on both sides we get,

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  116

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  117

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  118

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  119

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  120

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  121

On further simplification we get

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  122

The roots of the equation are EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  123

Taking only the positive value EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  124

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  125 143.42 rad/s

Therefore, the bandwidth lies between 0 and 143.42 rad/s that is EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  126

As EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  127 is greater than 143.42 rad/s which is outside the required bandwidth, we consider only 0, 10 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  128 20 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  129 30 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  130 and 40 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  131 for frequency values.

From equation (3) EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  132

Substituting for EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  133 0, 10 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  134 20 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  135 30 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  136 and 40 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  137 respectively we get

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  138

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  139 .... (5)

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  140

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  141 = EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  142

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  143 =1.015

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  144

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  145EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  146

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  147 1.263

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  148

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  149EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  150

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  151 1.038

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  152

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  153EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  154

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  155 0.806

From equation (4) we have EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  156

Now calculating the phase angles for corresponding frequencies EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  157 0, 10 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  158 20 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  159 30 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  160 and 40 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  161 respectively we get,

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  162

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  163 rad

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  164

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  165EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  166

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  167

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  168EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  169

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  170

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  171 2.247 rad

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  172

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  173 2.038 rad

The steady state response for the given Fourier series

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  174

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  175

Substituting the values of EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  176 and EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  177 for corresponding frequencies EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  178 0, 10 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  179 20 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  180 30 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  181 and 40 EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  182 respectively we get,

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  183

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  184

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  185

Conclusion:

Therefore, the steady stat response for the given function is given by

EBK SYSTEM DYNAMICS, Chapter 9, Problem 9.33P , additional homework tip  186

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