fmcTitle("tp073"): # Source version 1 # Simple APM canonicalizer version 1.3 # FMCMAP backend version 1.2 myownabs := proc(x::algebraic) return(fmc_m_abs(x)): end proc: fmcInitialValue(x_1, 1): fmcStrongLowerBound(x_1, 0): fmcInitialValue(x_2, 1): fmcStrongLowerBound(x_2, 0): fmcInitialValue(x_3, 1): fmcStrongLowerBound(x_3, 0): fmcInitialValue(x_4, 1): fmcStrongLowerBound(x_4, 0): myminfun := 24.55*x_1 + 26.75*x_2 + 39*x_3 + 40.50*x_4: myabsdevnod0_0 := myownabs(myminfun - 29.89437815914335): myreldevnod0_0 := myownabs(myminfun/29.89437815914335 - 1): myabsdevnod0_1 := myownabs(x_1 - 0.6355215686350697): myreldevnod0_1 := myownabs(x_1/0.6355215686350697 - 1): myabsdevnod0_2 := myownabs(x_2): myreldevnod0_2 := myownabs(x_2): myabsdevnod0_3 := myownabs(x_3 - 0.3127018807515235): myreldevnod0_3 := myownabs(x_3/0.3127018807515235 - 1): myabsdevnod0_4 := myownabs(x_4 - 0.05177655061340678): myreldevnod0_4 := myownabs(x_4/0.05177655061340678 - 1): myabsdevnod1_0 := (1/2)*(myownabs(myabsdevnod0_0 - myabsdevnod0_1) + (myabsdevnod0_0 + myabsdevnod0_1)): myreldevnod1_0 := (1/2)*(myownabs(myreldevnod0_0 - myreldevnod0_1) + (myreldevnod0_0 + myreldevnod0_1)): myabsdevnod1_2 := (1/2)*(myownabs(myabsdevnod0_2 - myabsdevnod0_3) + (myabsdevnod0_2 + myabsdevnod0_3)): myreldevnod1_2 := (1/2)*(myownabs(myreldevnod0_2 - myreldevnod0_3) + (myreldevnod0_2 + myreldevnod0_3)): myabsdevnod1_4 := myabsdevnod0_4: myreldevnod1_4 := myreldevnod0_4: myabsdevnod2_0 := (1/2)*(myownabs(myabsdevnod1_0 - myabsdevnod1_2) + (myabsdevnod1_0 + myabsdevnod1_2)): myreldevnod2_0 := (1/2)*(myownabs(myreldevnod1_0 - myreldevnod1_2) + (myreldevnod1_0 + myreldevnod1_2)): myabsdevnod2_4 := myabsdevnod1_4: myreldevnod2_4 := myreldevnod1_4: myabsdevnod3_0 := (1/2)*(myownabs(myabsdevnod2_0 - myabsdevnod2_4) + (myabsdevnod2_0 + myabsdevnod2_4)): myreldevnod3_0 := (1/2)*(myownabs(myreldevnod2_0 - myreldevnod2_4) + (myreldevnod2_0 + myreldevnod2_4)): zmyabsdevmax := myabsdevnod3_0: zmyreldevmax := myreldevnod3_0: obj := myminfun: fmcMinimum(obj): fmcEquality(ce_1, x_1 + x_2 + x_3 + x_4 - 1): fmcInequality(ci_1, 2.3*x_1 + 5.6*x_2 + 11.1*x_3 + 1.3*x_4 - 5): mytmpvar := 12*x_1 + 11.9*x_2 + 41.8*x_3 + 52.1*x_4 - 21 - 1.645 * sqrt(0.28*x_1^2 + 0.19*x_2^2 + 20.5*x_3^2 + 0.62*x_4^2): fmcInequality(ci_2, mytmpvar): fmcEscortFloat(x_1, x_1): fmcEscortFloat(x_2, x_2): fmcEscortFloat(x_3, x_3): fmcEscortFloat(x_4, x_4): fmcEscortFloat('myminfun', myminfun): fmcEscortFloat('zmyabsdevmax', zmyabsdevmax): fmcEscortFloat('zmyreldevmax', zmyreldevmax): fmcControlMinimum(1, 0): # End Model