mirror of
https://github.com/ANL-CEEESA/UnitCommitment.jl.git
synced 2025-12-06 08:18:51 -06:00
Split Gar62 into separate formulation; add PiecewiseLinearCostsFormulation
This commit is contained in:
@@ -6,11 +6,13 @@ module UnitCommitment
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include("instance/structs.jl")
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include("instance/structs.jl")
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include("model/formulations/base/structs.jl")
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include("model/formulations/base/structs.jl")
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include("solution/structs.jl")
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include("model/formulations/ArrCon00/structs.jl")
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include("model/formulations/ArrCon00/structs.jl")
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include("model/formulations/DamKucRajAta16/structs.jl")
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include("model/formulations/DamKucRajAta16/structs.jl")
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include("model/formulations/Gar62/structs.jl")
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include("model/formulations/MorLatRam13/structs.jl")
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include("model/formulations/MorLatRam13/structs.jl")
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include("model/formulations/PanGua16/structs.jl")
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include("model/formulations/PanGua16/structs.jl")
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include("solution/structs.jl")
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include("solution/methods/XavQiuWanThi19/structs.jl")
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include("solution/methods/XavQiuWanThi19/structs.jl")
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include("import/egret.jl")
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include("import/egret.jl")
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@@ -24,6 +26,7 @@ include("model/formulations/base/sensitivity.jl")
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include("model/formulations/base/system.jl")
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include("model/formulations/base/system.jl")
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include("model/formulations/base/unit.jl")
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include("model/formulations/base/unit.jl")
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include("model/formulations/DamKucRajAta16/ramp.jl")
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include("model/formulations/DamKucRajAta16/ramp.jl")
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include("model/formulations/Gar62/pwlcosts.jl")
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include("model/formulations/MorLatRam13/ramp.jl")
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include("model/formulations/MorLatRam13/ramp.jl")
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include("model/formulations/PanGua16/ramp.jl")
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include("model/formulations/PanGua16/ramp.jl")
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include("model/jumpext.jl")
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include("model/jumpext.jl")
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52
src/model/formulations/Gar62/pwlcosts.jl
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52
src/model/formulations/Gar62/pwlcosts.jl
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@@ -0,0 +1,52 @@
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# UnitCommitment.jl: Optimization Package for Security-Constrained Unit Commitment
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# Copyright (C) 2020, UChicago Argonne, LLC. All rights reserved.
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# Released under the modified BSD license. See COPYING.md for more details.
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function _add_production_piecewise_linear_eqs!(
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model::JuMP.Model,
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g::Unit,
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formulation::Gar62,
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)::Nothing
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eq_prod_above_def = _init(model, :eq_prod_above_def)
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eq_segprod_limit = _init(model, :eq_segprod_limit)
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is_on = model[:is_on]
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prod_above = model[:prod_above]
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segprod = model[:segprod]
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gn = g.name
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K = length(g.cost_segments)
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for t in 1:model[:instance].time
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# Definition of production
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# Equation (43) in Kneuven et al. (2020)
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eq_prod_above_def[gn, t] = @constraint(
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model,
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prod_above[gn, t] == sum(segprod[gn, t, k] for k in 1:K)
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)
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for k in 1:K
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# Equation (42) in Kneuven et al. (2020)
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# Without this, solvers will add a lot of implied bound cuts to
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# have this same effect.
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# NB: when reading instance, UnitCommitment.jl already calculates
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# difference between max power for segments k and k-1 so the
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# value of cost_segments[k].mw[t] is the max production *for
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# that segment*
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eq_segprod_limit[gn, t, k] = @constraint(
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model,
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segprod[gn, t, k] <= g.cost_segments[k].mw[t] * is_on[gn, t]
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)
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# Also add this as an explicit upper bound on segprod to make the
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# solver's work a bit easier
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set_upper_bound(segprod[gn, t, k], g.cost_segments[k].mw[t])
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# Objective function
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# Equation (44) in Kneuven et al. (2020)
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add_to_expression!(
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model[:obj],
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segprod[gn, t, k],
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g.cost_segments[k].cost[t],
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)
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end
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end
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return
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end
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13
src/model/formulations/Gar62/structs.jl
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13
src/model/formulations/Gar62/structs.jl
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@@ -0,0 +1,13 @@
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# UnitCommitment.jl: Optimization Package for Security-Constrained Unit Commitment
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# Copyright (C) 2020, UChicago Argonne, LLC. All rights reserved.
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# Released under the modified BSD license. See COPYING.md for more details.
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"""
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Formulation described in:
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Garver, L. L. (1962). Power generation scheduling by integer
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programming-development of theory. Transactions of the American Institute
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of Electrical Engineers. Part III: Power Apparatus and Systems, 81(3), 730-734.
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"""
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struct Gar62 <: PiecewiseLinearCostsFormulation end
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@@ -4,16 +4,19 @@
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abstract type TransmissionFormulation end
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abstract type TransmissionFormulation end
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abstract type RampingFormulation end
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abstract type RampingFormulation end
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abstract type PiecewiseLinearCostsFormulation end
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struct Formulation
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struct Formulation
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pwl_costs::PiecewiseLinearCostsFormulation
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ramping::RampingFormulation
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ramping::RampingFormulation
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transmission::TransmissionFormulation
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transmission::TransmissionFormulation
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function Formulation(;
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function Formulation(;
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pwl_costs::PiecewiseLinearCostsFormulation = Gar62(),
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ramping::RampingFormulation = MorLatRam13(),
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ramping::RampingFormulation = MorLatRam13(),
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transmission::TransmissionFormulation = ShiftFactorsFormulation(),
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transmission::TransmissionFormulation = ShiftFactorsFormulation(),
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)
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)
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return new(ramping, transmission)
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return new(pwl_costs, ramping, transmission)
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end
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end
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end
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end
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@@ -20,7 +20,7 @@ function _add_unit!(model::JuMP.Model, g::Unit, f::Formulation)
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_add_min_uptime_downtime_eqs!(model, g)
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_add_min_uptime_downtime_eqs!(model, g)
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_add_net_injection_eqs!(model, g)
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_add_net_injection_eqs!(model, g)
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_add_production_limit_eqs!(model, g)
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_add_production_limit_eqs!(model, g)
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_add_production_piecewise_linear_eqs!(model, g)
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_add_production_piecewise_linear_eqs!(model, g, f.pwl_costs)
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_add_ramp_eqs!(model, g, f.ramping)
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_add_ramp_eqs!(model, g, f.ramping)
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_add_startup_shutdown_costs_eqs!(model, g)
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_add_startup_shutdown_costs_eqs!(model, g)
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_add_startup_shutdown_limit_eqs!(model, g)
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_add_startup_shutdown_limit_eqs!(model, g)
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@@ -69,54 +69,6 @@ function _add_production_limit_eqs!(model::JuMP.Model, g::Unit)::Nothing
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end
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end
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end
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end
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function _add_production_piecewise_linear_eqs!(
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model::JuMP.Model,
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g::Unit,
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)::Nothing
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eq_prod_above_def = _init(model, :eq_prod_above_def)
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eq_segprod_limit = _init(model, :eq_segprod_limit)
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is_on = model[:is_on]
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prod_above = model[:prod_above]
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segprod = model[:segprod]
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gn = g.name
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K = length(g.cost_segments)
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for t in 1:model[:instance].time
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# Definition of production
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# Equation (43) in Kneuven et al. (2020)
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eq_prod_above_def[gn, t] = @constraint(
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model,
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prod_above[gn, t] == sum(segprod[gn, t, k] for k in 1:K)
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)
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for k in 1:K
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# Equation (42) in Kneuven et al. (2020)
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# Without this, solvers will add a lot of implied bound cuts to
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# have this same effect.
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# NB: when reading instance, UnitCommitment.jl already calculates
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# difference between max power for segments k and k-1 so the
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# value of cost_segments[k].mw[t] is the max production *for
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# that segment*
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eq_segprod_limit[gn, t, k] = @constraint(
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model,
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segprod[gn, t, k] <= g.cost_segments[k].mw[t] * is_on[gn, t]
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)
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# Also add this as an explicit upper bound on segprod to make the
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# solver's work a bit easier
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set_upper_bound(segprod[gn, t, k], g.cost_segments[k].mw[t])
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# Objective function
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# Equation (44) in Kneuven et al. (2020)
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add_to_expression!(
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model[:obj],
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segprod[gn, t, k],
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g.cost_segments[k].cost[t],
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)
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end
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end
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return
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end
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function _add_reserve_vars!(model::JuMP.Model, g::Unit)::Nothing
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function _add_reserve_vars!(model::JuMP.Model, g::Unit)::Nothing
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reserve = _init(model, :reserve)
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reserve = _init(model, :reserve)
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for t in 1:model[:instance].time
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for t in 1:model[:instance].time
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