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Flow Rate Control System Proportional Only Controller April 2, 2006 U.T.C. Engineering 329.

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Presentation on theme: "Flow Rate Control System Proportional Only Controller April 2, 2006 U.T.C. Engineering 329."— Presentation transcript:

1 Flow Rate Control System Proportional Only Controller April 2, 2006 U.T.C. Engineering 329

2 Yellow Team Jimy George Jeff Lawrence Taylor Murphy Jennifer Potter

3 Outline Flow System Background Previous Work Proportional Control Modeling Results Conclusions

4 Flow System Setup

5 Block Diagram

6 Steady State Operation

7 SSOC

8 Step Response Results K (lb/min/%) =0.26 τ (sec) =0.46 t 0 (sec) =0.42

9 Frequency Response Experiment

10 Bode Plots Kcu (%/(lb/min) =10.00 K ((lb/min)/%) =0.24 τ (sec) =0.27 t 0 (sec) =0.35 m (order) =1.14 fu (Hz) =0.95

11 Model Bode Plot K (lb/min/%) =0.22 t0 (sec) =0.35 Tau (sec)=0.25 f u =0.95

12 Model Bode Plot K (lb/min/%) =0.22 t0 (sec) =0.35 Tau (sec)=0.25 K cu =10

13 FOPDT Parameters K = 0.24 (lb/min)/% τ = 0.28 sec t 0 = 0.4 sec

14 Closed Loop Transfer Function

15 Root Locus Parameters K CD =0.08 K QD =6.6 K CU =10 f u =1.24 *all units for K are % / (lb/min)

16 ζ Locations Response to Step Change in Set PointSymbolAverage Critical DampingK CD 0.08 1/500th DecayK C500 1.8 1/10 DecayK C10 4.8 Quarter DecayK QD 6.6 UltimateK CU 10

17 Results From Root Locus Ultimate Quarter Decay Critically Damped Underdamped Overdamped Kc = 10 Kc = 6.6 Kc = 0.08 0.08 < Kc < 10 0 < Kc < 0.08 *all units are % / (lb/min)

18 Predicted Ultimate Frequency and Ultimate Gain Bode PlotLuyben Method Routh Method Direct Substitution K CU = 10% / (lb/min) K CU = 9.6% / (lb/min) K CU = 10% / (lb/min) F u =0.87 HzF u =0.67 Hzn/aF u = 1.24 Hz

19 Model Results for K CD Offset Offset = 4.9 lb/min Decay Ratio = 0 Settling Time = 0.8 s K CD = 0.10% / (lb/min) Set Point Output Settling Time

20 Model Results for K QD Offset Offset = 1.9 lb/min Decay Ratio = 0.25 Settling Time = 3.9 s K QD = 6.6%/ (lb/min) Settling Time Set Point Output

21 Model Results for K CU Offset = 1 lb/min Decay Ratio = 1 Settling Time = never K CU = 10%/ (lb/min) Output Set Point Offset

22 Proportional Only Model Results K C (%*min/lb)Offset (lb/min) Critical Damping0.104.9 1/500th Decay1.83.5 1/10 Decay4.82.3 Quarter Decay6.61.9 Ultimate101.5

23 Experimental Results for K CD Offset = 4.9 lb/min Decay Ratio = 0 Settling Time = 0.8 s K CD = 0.10% / (lb/min) Settling Time Offset

24 Experimental Results for K QD Offset = 2.4 lb/min Decay Ratio = 0.25 Settling Time = 4.5 s K QD = 0.10% / (lb/min) Offset Settling Time

25 Experimental Results for K CU Offset = 1.2 lb/min Decay Ratio = 1 Settling Time = never K CD = 10% / (lb/min) Offset

26 Proportional Only Experimental Results K C (%*min/lb)Offset (lb/min) Critical Damping0.104.9 1/500th Decay1.83.7 1/10 Decay3.52.9 Quarter Decay 5 2.4 Ultimate101.2

27 Comparison of Results Critical Damping 1/500th Decay 1/10th Decay 1/4th Decay Ultimate Root Locus 0.081.84.86.610 P-Only Model 0.101.84.86.610 P-Only Experimental 0.101.83.5510

28 Conclusion For Kc needed Overdamped0 < Kc < 0.10 Critically DampedKc = 0.10 Underdamped0.10< Kc < 10 Quarter Decay Kc = 5.0


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