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1. In a metal production process, a step change from 0.7 MPa to 0.95 MPa in actual pressure results in the measured reco

Posted: Mon May 16, 2022 1:43 pm
by answerhappygod
1 In A Metal Production Process A Step Change From 0 7 Mpa To 0 95 Mpa In Actual Pressure Results In The Measured Reco 1
1 In A Metal Production Process A Step Change From 0 7 Mpa To 0 95 Mpa In Actual Pressure Results In The Measured Reco 1 (148.28 KiB) Viewed 56 times
1. In a metal production process, a step change from 0.7 MPa to 0.95 MPa in actual pressure results in the measured recorder response shown in the sketch below with the vertical axis simply in units of millimetres of deflection; the sketch has not been drawn to scale. 17.3 16.2 Recorder deflection R (mm) -1.24(s) 10.2 0.0 Time (s) (a) (50%) Assuming second-order dynamics, calculate all important parameters and write an approximate system transfer function in the form R K G(S) = P is? +257 +1 where R is the Laplace transform of the deflection response signal in mm units and P is the Laplace transform on the input (step) pressure deviation signal in MPa units. (b) (25%) If the deflection signal is represented more accurately with a dead time' in its measurement of 3 s vis-à-vis the second-order model signal described above, i.e. as r(t)=rso(t) U(1-3) and a proportional controller with gain Kc is used, determine the amplitude ratio and phase angle of the open-loop transfer function if there is unity feedback (c) (25%) Determine the maximum allowable gain Kc for borderline stability, in conjunction with this dead time'.