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Published byMartina Chapman Modified over 8 years ago
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ChE 433 D( V )PCL Highlights What I want you to take away on a 3 x 5 card
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Define the control problem … - Macro vs. Micro - Deterministic vs. Heuristic - Self-regulating and non self-regulating - Dead time, how much compared to lags - Linearity, is the process linear with load?
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Accuracy vs. Repeatable
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Errors accumulate √ 2
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Hysteresis and Dead band – Did your valve move, how much?
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Filters, only when necessary! - Do not use digital filter for electrical noise! - 3 second filter time constant for hydraulic noise - Filters add control lag
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Make that signal linear!
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Linear signals allow the same controller settings for all loads! Determine L, compensating equation is 1/L
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Controller modes, tuning … - Why not use proportional only? - PI will work most of the time - Consider Lambda, reset setting cancels the combined process lag - Ultimate period method more accurate than graphical method
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Tuning … - Bode plot shows minimum gain at critical frequency
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The operator might not like your idea of good control!
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Lambda Tuning Set the reset value to cancel the total process time constant.
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Lambda Tuning; The Reset cancels the total process time constant
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Feedfoward … If you can measure the disturbance, consider using the measurement as a “feed forward” signal to anticipate the disturbance
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Flow Control … Low gain, due to noise, fast reset, no rate Equal percentage valve trim
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Level Control … Will proportional only do? Regulating or non-self regulating?
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Pressure Control … Regulating or non-self regulating? Gas or liquid? That is compressible? Liquid pressure can be tuned like flow loops
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Temperature Control … Heat transfer depends on velocity Set point profiles for batch
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Temperature Control … Sensor placement
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Temperature Control … For steam service, condensate removal
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Multivariable Control … Can Tuning remove the interaction?
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Multivariable Control … Relative Gain Array shows interaction Model control
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