time decomposition tests

pull/31/head
Jun He 2 years ago
parent 46259f7c1c
commit adcaf6fc55

@ -28,6 +28,13 @@ FIXTURES = "$(@__DIR__)/fixtures"
include("solution/methods/XavQiuWanThi19/find_test.jl")
include("solution/methods/XavQiuWanThi19/sensitivity_test.jl")
end
@testset "TimeDecomposition" begin
include("solution/methods/TimeDecomposition/initial_status_test.jl")
include(
"solution/methods/TimeDecomposition/update_solution_test.jl",
)
include("solution/methods/TimeDecomposition/optimize_test.jl")
end
end
@testset "transform" begin
include("transform/initcond_test.jl")

@ -0,0 +1,219 @@
# UnitCommitment.jl: Optimization Package for Security-Constrained Unit Commitment
# Copyright (C) 2020, UChicago Argonne, LLC. All rights reserved.
# Released under the modified BSD license. See COPYING.md for more details.
using UnitCommitment, DataStructures
@testset "determine_initial_status" begin
t_increment = 24
t_model = 36
hot_start = 100
cold_start = -100
# all on throughout
stat_seq = ones(t_model)
# hot start
new_stat = UnitCommitment._determine_initial_status(
hot_start,
stat_seq,
t_increment,
)
@test new_stat == 124
# cold start
new_stat = UnitCommitment._determine_initial_status(
cold_start,
stat_seq,
t_increment,
)
@test new_stat == 24
# off in the last 12 periods
stat_seq = ones(t_model)
stat_seq[25:end] .= 0
# hot start
new_stat = UnitCommitment._determine_initial_status(
hot_start,
stat_seq,
t_increment,
)
@test new_stat == 124
# cold start
new_stat = UnitCommitment._determine_initial_status(
cold_start,
stat_seq,
t_increment,
)
@test new_stat == 24
# off in one of the first 24 periods
stat_seq = ones(t_model)
stat_seq[10] = 0
# hot start
new_stat = UnitCommitment._determine_initial_status(
hot_start,
stat_seq,
t_increment,
)
@test new_stat == 14
# cold start
new_stat = UnitCommitment._determine_initial_status(
cold_start,
stat_seq,
t_increment,
)
@test new_stat == 14
# off in several of the first 24 periods
stat_seq = ones(t_model)
stat_seq[[10, 11, 20]] .= 0
# hot start
new_stat = UnitCommitment._determine_initial_status(
hot_start,
stat_seq,
t_increment,
)
@test new_stat == 4
# cold start
new_stat = UnitCommitment._determine_initial_status(
cold_start,
stat_seq,
t_increment,
)
@test new_stat == 4
# off in several of the first 24 periods
stat_seq = ones(t_model)
stat_seq[20:24] .= 0
# hot start
new_stat = UnitCommitment._determine_initial_status(
hot_start,
stat_seq,
t_increment,
)
@test new_stat == -5
# cold start
new_stat = UnitCommitment._determine_initial_status(
cold_start,
stat_seq,
t_increment,
)
@test new_stat == -5
# all off throughout
stat_seq = zeros(t_model)
# hot start
new_stat = UnitCommitment._determine_initial_status(
hot_start,
stat_seq,
t_increment,
)
@test new_stat == -24
# cold start
new_stat = UnitCommitment._determine_initial_status(
cold_start,
stat_seq,
t_increment,
)
@test new_stat == -124
# on in the last 12 periods
stat_seq = zeros(t_model)
stat_seq[25:end] .= 1
# hot start
new_stat = UnitCommitment._determine_initial_status(
hot_start,
stat_seq,
t_increment,
)
@test new_stat == -24
# cold start
new_stat = UnitCommitment._determine_initial_status(
cold_start,
stat_seq,
t_increment,
)
@test new_stat == -124
end
@testset "set_initial_status" begin
# read one scenario
instance = UnitCommitment.read("$FIXTURES/case14.json.gz")
psuedo_solution = OrderedDict(
"Thermal production (MW)" => OrderedDict(
"g1" => [110.0, 112.0, 114.0, 116.0],
"g2" => [100.0, 102.0, 0.0, 0.0],
"g3" => [0.0, 0.0, 0.0, 0.0],
"g4" => [33.0, 34.0, 66.0, 99.0],
"g5" => [33.0, 34.0, 66.0, 99.0],
"g6" => [100.0, 100.0, 100.0, 100.0],
),
"Is on" => OrderedDict(
"g1" => [1.0, 1.0, 1.0, 1.0],
"g2" => [1.0, 1.0, 0.0, 0.0],
"g3" => [0.0, 0.0, 0.0, 0.0],
"g4" => [1.0, 1.0, 1.0, 1.0],
"g5" => [1.0, 1.0, 1.0, 1.0],
"g6" => [1.0, 1.0, 1.0, 1.0],
),
)
UnitCommitment._set_initial_status!(instance, psuedo_solution, 3)
thermal_units = instance.scenarios[1].thermal_units
@test thermal_units[1].initial_power == 114.0
@test thermal_units[1].initial_status == 3.0
@test thermal_units[2].initial_power == 0.0
@test thermal_units[2].initial_status == -1.0
@test thermal_units[3].initial_power == 0.0
@test thermal_units[3].initial_status == -9.0
# read multiple scenarios
instance = UnitCommitment.read([
"$FIXTURES/case14.json.gz",
"$FIXTURES/case14-profiled.json.gz",
])
psuedo_solution = OrderedDict(
"case14" => OrderedDict(
"Thermal production (MW)" => OrderedDict(
"g1" => [110.0, 112.0, 114.0, 116.0],
"g2" => [100.0, 102.0, 0.0, 0.0],
"g3" => [0.0, 0.0, 0.0, 0.0],
"g4" => [33.0, 34.0, 66.0, 99.0],
"g5" => [33.0, 34.0, 66.0, 99.0],
"g6" => [100.0, 100.0, 100.0, 100.0],
),
"Is on" => OrderedDict(
"g1" => [1.0, 1.0, 1.0, 1.0],
"g2" => [1.0, 1.0, 0.0, 0.0],
"g3" => [0.0, 0.0, 0.0, 0.0],
"g4" => [1.0, 1.0, 1.0, 1.0],
"g5" => [1.0, 1.0, 1.0, 1.0],
"g6" => [1.0, 1.0, 1.0, 1.0],
),
),
"case14-profiled" => OrderedDict(
"Thermal production (MW)" => OrderedDict(
"g1" => [112.0, 113.0, 116.0, 115.0],
"g2" => [0.0, 0.0, 0.0, 0.0],
"g3" => [0.0, 0.0, 0.0, 20.0],
"g4" => [33.0, 34.0, 66.0, 99.0],
"g5" => [33.0, 34.0, 66.0, 99.0],
"g6" => [100.0, 100.0, 100.0, 100.0],
),
"Is on" => OrderedDict(
"g1" => [1.0, 1.0, 1.0, 1.0],
"g2" => [0.0, 0.0, 0.0, 0.0],
"g3" => [0.0, 0.0, 0.0, 0.0],
"g4" => [1.0, 1.0, 1.0, 1.0],
"g5" => [1.0, 1.0, 1.0, 1.0],
"g6" => [1.0, 1.0, 1.0, 1.0],
),
),
)
UnitCommitment._set_initial_status!(instance, psuedo_solution, 3)
thermal_units_sc2 = instance.scenarios[2].thermal_units
@test thermal_units_sc2[1].initial_power == 116.0
@test thermal_units_sc2[1].initial_status == 3.0
@test thermal_units_sc2[2].initial_power == 0.0
@test thermal_units_sc2[2].initial_status == -11.0
@test thermal_units_sc2[3].initial_power == 0.0
@test thermal_units_sc2[3].initial_status == -9.0
end

@ -0,0 +1,52 @@
# UnitCommitment.jl: Optimization Package for Security-Constrained Unit Commitment
# Copyright (C) 2020, UChicago Argonne, LLC. All rights reserved.
# Released under the modified BSD license. See COPYING.md for more details.
using UnitCommitment, DataStructures, Cbc
import UnitCommitment: TimeDecomposition, XavQiuWanThi2019, Formulation
@testset "optimize_time_decomposition" begin
# read one scenario
instance = UnitCommitment.read("$FIXTURES/case14.json.gz")
solution = UnitCommitment.optimize!(
instance,
TimeDecomposition(
time_window = 3,
time_increment = 2,
inner_method = XavQiuWanThi2019.Method(),
formulation = Formulation(),
),
optimizer = optimizer_with_attributes(Cbc.Optimizer, "logLevel" => 0),
)
@test length(solution["Thermal production (MW)"]["g1"]) == 4
@test length(solution["Is on"]["g2"]) == 4
@test length(solution["Spinning reserve (MW)"]["r1"]["g2"]) == 4
# read multiple scenarios
instance = UnitCommitment.read([
"$FIXTURES/case14.json.gz",
"$FIXTURES/case14-profiled.json.gz",
])
solution = UnitCommitment.optimize!(
instance,
TimeDecomposition(
time_window = 3,
time_increment = 2,
inner_method = XavQiuWanThi2019.Method(),
formulation = Formulation(),
),
optimizer = optimizer_with_attributes(Cbc.Optimizer, "logLevel" => 0),
)
@test length(solution["case14"]["Thermal production (MW)"]["g3"]) == 4
@test length(solution["case14"]["Is on"]["g4"]) == 4
@test length(
solution["case14-profiled"]["Thermal production (MW)"]["g5"],
) == 4
@test length(solution["case14-profiled"]["Is on"]["g6"]) == 4
@test length(
solution["case14-profiled"]["Profiled production (MW)"]["g7"],
) == 4
@test length(
solution["case14-profiled"]["Spinning reserve (MW)"]["r1"]["g3"],
) == 4
end

@ -0,0 +1,49 @@
# UnitCommitment.jl: Optimization Package for Security-Constrained Unit Commitment
# Copyright (C) 2020, UChicago Argonne, LLC. All rights reserved.
# Released under the modified BSD license. See COPYING.md for more details.
using UnitCommitment, DataStructures
@testset "update_solution" begin
psuedo_solution = OrderedDict()
time_increment = 4
psuedo_sub_solution = OrderedDict(
"Thermal production (MW)" =>
OrderedDict("g1" => [100.0, 200.0, 300.0, 400.0, 500.0, 600.0]),
"Is on" => OrderedDict("g1" => [1.0, 0.0, 1.0, 1.0, 0.0, 1.0]),
"Profiled production (MW)" =>
OrderedDict("g1" => [199.0, 299.0, 399.0, 499.0, 599.0, 699.0]),
"Spinning reserve (MW)" => OrderedDict(
"r1" => OrderedDict("g1" => [31.0, 32.0, 33.0, 34.0, 35.0, 36.0]),
),
)
# first update should directly copy the first 4 entries of sub solution
UnitCommitment._update_solution!(
psuedo_solution,
psuedo_sub_solution,
time_increment,
)
@test psuedo_solution["Thermal production (MW)"]["g1"] ==
[100.0, 200.0, 300.0, 400.0]
@test psuedo_solution["Is on"]["g1"] == [1.0, 0.0, 1.0, 1.0]
@test psuedo_solution["Profiled production (MW)"]["g1"] ==
[199.0, 299.0, 399.0, 499.0]
@test psuedo_solution["Spinning reserve (MW)"]["r1"]["g1"] ==
[31.0, 32.0, 33.0, 34.0]
# second update should append the first 4 entries of sub solution
UnitCommitment._update_solution!(
psuedo_solution,
psuedo_sub_solution,
time_increment,
)
@test psuedo_solution["Thermal production (MW)"]["g1"] ==
[100.0, 200.0, 300.0, 400.0, 100.0, 200.0, 300.0, 400.0]
@test psuedo_solution["Is on"]["g1"] ==
[1.0, 0.0, 1.0, 1.0, 1.0, 0.0, 1.0, 1.0]
@test psuedo_solution["Profiled production (MW)"]["g1"] ==
[199.0, 299.0, 399.0, 499.0, 199.0, 299.0, 399.0, 499.0]
@test psuedo_solution["Spinning reserve (MW)"]["r1"]["g1"] ==
[31.0, 32.0, 33.0, 34.0, 31.0, 32.0, 33.0, 34.0]
end
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