Governor Model: G2WSCC
Following checks and corrections are applied during Validation and AutoCorrection.
- If 0.0 < Tturb *Bturb < Mult*TimeStep then Tturb = 0
- If 0.0 < Td < 0.5*Mult*TimeStep then Td = 0, ElseIf 0.5*Mult*TimeStep < Td < Mult*TimeStep then Td = Mult*TimeStep
- If 0.0 < Tt < 0.25*Mult*TimeStep then Tt = 0.0
ElseIf 0.25*Mult*TimeStep < Tt < 0.5*Mult*TimeStep then Tt = 0.5*Mult*TimeStep - If 0.0 < Tf < 0.25*Mult*TimeStep then Tf = 0.0
ElseIf 0.25*Mult*TimeStep < Tf < 0.5*Mult*TimeStep then Tf = 0.5*Mult*TimeStep - If 0.0 < Tp < 0.25*Mult*TimeStep then Tp = 0.0
ElseIf 0.25*Mult*TimeStep < Tp < 0.5*Mult*TimeStep then Tp = 0.5*Mult*TimeStep - If Velopen < Velclose then swap the values. If Velopen < 0 then Velopen change sign to positive. If Velclose > 0 then change sign to negative.
- If Pmax < Pmin then swap the values.
Mult represents the user-specified value Minimum time constant size as multiple of time step option on the Validation page of the Transient Stability Dialog
TimeStep represents the integration time step being used as described on TimeStep
Following treatment is handled during the transient numerical simulation
- If GV > Pmax , then Pmax = GV or if GV < Pmin , then Pmin = GV
Model Equations and/or Block Diagrams
Parameters:
| MWCap | Turbine Rating, MW |
| Pmax | Maximum gate opening, pu of mwcap |
| Pmin | Minimum gate opening, pu of mwcap |
| R | Governor control flag |
| Td | Input filter time constant, sec |
| Tf | Washout time constant, sec |
| Tp | Gate servo time constant, sec |
| Velopen | Maximum gate opening velocity, pu/sec |
| Velclose | Maximum gate closing velocity, pu/sec |
| K1 | Fraction of hp shaft power after first boiler pass |
| K2 | Fraction of lp shaft power after first boiler pass |
| Ki | Integral gain, pu |
| Kg | Gate servo gain, pu |
| Tturb | Turbine time constant, sec |
| Aturb | Turbine numerator multiplier |
| Bturb | Turbine denominator multiplier |
| Tt | Power feedback time constant, sec |
| db1 | Intentional deadband width, Hz |
| Eps | Unintentional db hysteresis, Hz |
| db2 | Unintentional deadband, MW |
| Gv1 | Nonlinear gain point 1, pu gv |
| Pgv1 | Nonlinear gain point 1, pu power |
| Gv2 | Nonlinear gain point 2, pu gv |
| Pgv2 | Nonlinear gain point 2, pu power |
| Gv3 | Nonlinear gain point 3, pu gv |
| Pgv3 | Nonlinear gain point 3, pu power |
| Gv4 | Nonlinear gain point 4, pu gv |
| Pgv4 | Nonlinear gain point 4, pu power |
| Gv5 | Nonlinear gain point 5, pu gv |
| Pgv5 | Nonlinear gain point 5, pu power |
| Gv6 | Nonlinear gain point 6, pu gv |
| Pgv6 | Nonlinear gain point 6, pu power |