Created
August 28, 2018 14:37
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from openmdao.core.explicitcomponent import ExplicitComponent | |
from openmdao.api import Problem, Group, ExecComp, IndepVarComp | |
from openmdao.devtools.generate_derivative import GenerateDerivative | |
class Paraboloid(ExplicitComponent): | |
""" | |
Evaluates the equation f(x,y) = (x-3)^2 + xy + (y+4)^2 - 3. | |
""" | |
def setup(self): | |
self.add_input('x', val=0.0) | |
self.add_input('y', val=0.0) | |
self.add_output('f_xy', val=0.0) | |
self.declare_partials('*', '*') | |
@GenerateDerivative | |
def compute(self, inputs, outputs): | |
""" | |
f(x,y) = (x-3)^2 + xy + (y+4)^2 - 3 | |
Optimal solution (minimum): x = 6.6667; y = -7.3333 | |
""" | |
x = inputs['x'] | |
y = inputs['y'] | |
outputs['f_xy'] = (x-3.0)**2 + x*y + (y+4.0)**2 - 3.0 | |
def compute_partials(self, inputs, partials): | |
""" | |
Jacobian for our paraboloid. | |
""" | |
return | |
model = Group() | |
ivc = IndepVarComp() | |
ivc.add_output('x', 3.0) | |
ivc.add_output('y', -4.0) | |
model.add_subsystem('des_vars', ivc) | |
model.add_subsystem('parab_comp', Paraboloid()) | |
model.connect('des_vars.x', 'parab_comp.x') | |
model.connect('des_vars.y', 'parab_comp.y') | |
prob = Problem(model) | |
prob.setup() | |
prob.run_model() | |
print(prob['parab_comp.f_xy']) | |
prob['des_vars.x'] = 5.0 | |
prob['des_vars.y'] = -2.0 | |
prob.run_model() | |
prob.check_partials(compact_print=True) |
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