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SOLUTIONS ERT 321 Process Control & Dynamics Anis Atikah binti Ahmad EXERCISE 3.

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Presentation on theme: "SOLUTIONS ERT 321 Process Control & Dynamics Anis Atikah binti Ahmad EXERCISE 3."— Presentation transcript:

1 SOLUTIONS ERT 321 Process Control & Dynamics Anis Atikah binti Ahmad EXERCISE 3

2 In this question, a model is not given. Thus, we have to develop a process model from the experimental data. Time (min)T 2m (mA) 013 1 213.5 416 616.6 816.9 1017 1217 1417 At time = 1 min, there is no change in temperature data. Thus, we know that time delay term should be included in our model.

3 From the reaction curve, we know that our process model is in the form of first order plus time delay (FOPTD); where You have to find K, τ and θ given in the questionYou have to find

4 Process output (Temperature, ° C) Process input (Pressure, psi) Transmitter output (Temperature, mA) Transmitter input (Temperature, °C) Process output (Temperature, ° C) Process input (Pressure, psi) Transmitter output (Temperature, mA) Transmitter input (Temperature, °C) Transmitter output (Temperature, mA) Process input (Pressure, psi)

5 Thus,

6 12 (a)ITAE (setpoint change) From ITAE Performance Index Table, PI controller

7 (b) Direct Synthesis method with τ c = τ/3 From Table 12.1, PI controller

8 (c) Ziegler Nichols 1.Use characteristic equation. 2.Use proportional only controller, G c = K c Using 1/1 Padé Approximation, substitute e -1.6s = into (1) (1)

9 Substituting and Equating imaginary and real coefficients; Direct substitution method

10


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