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Commit fcb3008c authored by Nie's avatar Nie
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update branch for merging

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with 385 additions and 72 deletions
Subproject commit dc5c2facdbb74e782cb7b88408551306342ed8f9
Subproject commit ba6678d2f4b50bc525d62221dd99440d03993efe
Subproject commit a83e46cf62a9327d5a8e51547feffd788adbea31
Subproject commit f82ba6f7d9f1316a3cd36b8af27c99953803d17d
"""
MIT License
Copyright (c) 2023 RWTH Aachen University
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in
all copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
THE SOFTWARE.
"""
"""
This script inspects the input files and modifies them such that they adhere to the new input file specification used by the framework after merge of merge request !24 New input format.
"""
import os.path
import pandas as pd
import numpy as np
import json
def parse_component_config(component_name, component_type, config, component_json):
possible_keys = dict()
if component_type == 'CoolGrid':
possible_keys['price'] = component_name + '_price'
possible_keys['injection_price'] = component_name + '_injection_price'
elif component_type == "ElectricalGrid":
possible_keys['price'] = component_name + '_price'
possible_keys['injection_price'] = component_name + '_injection_price'
possible_keys['emission'] = component_name + '_emission'
possible_keys['peak_power_cost'] = component_name + '_peak_power_costs'
elif component_type == "GasGrid":
possible_keys['price'] = component_name + '_price'
possible_keys['injection_price'] = component_name + '_injection_price'
possible_keys['peak_power_cost'] = component_name + '_emission'
elif component_type == 'HeatGrid':
possible_keys['price'] = component_name + '_price'
possible_keys['injection_price'] = component_name + '_injection_price'
for key, prefixed_key in possible_keys.items():
if prefixed_key in config:
component_json[key] = config[prefixed_key]
del config[prefixed_key]
def np_encoder(object):
if isinstance(object, np.generic):
return object.item()
changed_topologies = []
invalid_topologies = []
for dirpath, dirnames, filenames in os.walk(".\\input_files"):
components_here = False
config_here = False
connections_here = False
for filename in filenames:
if filename == "components.csv":
components_file = filename
components_here = True
elif filename == "config.csv":
config_file = filename
config_here = True
elif filename == "connections.csv":
connections_file = filename
connections_here = True
if components_here and config_here and connections_here:
try:
print(f"Inspecting topology {dirpath}")
components_df = pd.read_csv(os.path.join(dirpath, components_file))
components = {}
for i in components_df.index:
components[components_df["name"][i]] = components_df.loc[i]
config_df = pd.read_csv(os.path.join(dirpath, config_file))
config_dict = config_df.to_dict(orient='list')
for i in config_dict:
config_dict[i] = config_dict[i][0]
connections = pd.read_csv(os.path.join(dirpath, connections_file))
prosumer_json = dict()
components_json = dict()
for component in components.values():
component_json = dict()
for i in component.index:
if i == 'name' or i == 'current_size' or isinstance(component[i], np.float) and np.isnan(component[i]):
continue
component_json[i] = component[i]
parse_component_config(component['name'], component['type'], config_dict, component_json)
components_json[component['name']] = component_json
prosumer_json['components'] = components_json
connections_json = []
for i in connections.index:
connection_json = dict()
connection_json['from'] = connections['from'][i]
connection_json['output'] = connections['output'][i]
connection_json['to'] = connections['to'][i]
connection_json['input'] = connections['input'][i]
connections_json.append(connection_json)
prosumer_json['connections'] = connections_json
for key, value in config_dict.items():
prosumer_json[key] = value
changed_topologies.append(dirpath)
os.remove(os.path.join(dirpath, "components.csv"))
os.remove(os.path.join(dirpath, "config.csv"))
os.remove(os.path.join(dirpath, "connections.csv"))
with open(os.path.join(dirpath, "prosumer.json"), "w", encoding ="utf-8") as f:
json.dump(prosumer_json, f, indent = 4, default = np_encoder)
except:
invalid_topologies.append(dirpath)
for directory in changed_topologies:
print(f"Modified topology {directory}!")
for file in invalid_topologies:
print(f"Topology {file} breaks some part of the input file specification!")
changed_models = []
invalid_models = []
for dirpath, dirnames, filenames in os.walk(".\\Model_Library\\Component\\data"):
for filename in filenames:
if filename.endswith(".csv"):
try:
print(f"Inspecting model {os.path.join(dirpath, filename)}")
model = pd.read_csv(os.path.join(dirpath, filename))
model_json = dict()
for i in model.columns:
no_space_name = "_".join(i.split(" "))
model_json[no_space_name] = model[i][0]
changed_models.append(os.path.join(dirpath, filename))
os.remove(os.path.join(dirpath, filename))
with open(os.path.join(dirpath, "".join(filename.split(".")[:-1]) + ".json"), "w", encoding ="utf-8") as f:
json.dump(model_json, f, indent = 4, default = np_encoder)
except:
invalid_models.append(os.path.join(dirpath, filename))
for directory in changed_models:
print(f"Modified model {directory}!")
for file in invalid_models:
print(f"Model {file} breaks some part of the input file specification!")
name,type,model,min_size,max_size,current_size
inv_pv_bat,DynamicInverter,STP-7000TL-20,0,20,0
battery,LiionBattery,BAT1,0,6,6
grd,ElectricalGrid,GRD1,1000,1000,1000
elec_cns,ElectricalConsumption,,,,
grd_injection_price,grd_price,grd_emission,yearly_interest,planning_horizon
0.0793,0.3046,0.401,0.03,20
from,output,to,input
inv_pv_bat,1,battery,1
inv_pv_bat,1,grd,1
inv_pv_bat,1,elec_cns,1
battery,1,inv_pv_bat,1
grd,1,inv_pv_bat,1
grd,1,elec_cns,1
{
"components": {
"inv_pv_bat": {
"type": "DynamicInverter",
"model": "STP-7000TL-20",
"min_size": 0.0,
"max_size": 20.0
},
"battery": {
"type": "LiionBattery",
"model": "BAT1",
"min_size": 0.0,
"max_size": 6.0
},
"grd": {
"type": "ElectricalGrid",
"model": "GRD1",
"min_size": 1000.0,
"max_size": 1000.0,
"price": 0.3046,
"injection_price": 0.0793,
"emission": 0.401
},
"elec_cns": {
"type": "ElectricalConsumption"
}
},
"connections": [
{
"from": "inv_pv_bat",
"output": 1,
"to": "battery",
"input": 1
},
{
"from": "inv_pv_bat",
"output": 1,
"to": "grd",
"input": 1
},
{
"from": "inv_pv_bat",
"output": 1,
"to": "elec_cns",
"input": 1
},
{
"from": "battery",
"output": 1,
"to": "inv_pv_bat",
"input": 1
},
{
"from": "grd",
"output": 1,
"to": "inv_pv_bat",
"input": 1
},
{
"from": "grd",
"output": 1,
"to": "elec_cns",
"input": 1
}
],
"yearly_interest": 0.03,
"planning_horizon": 20
}
\ No newline at end of file
name,type,model,min_size,max_size,current_size
pv_roof,PVGenerator,PV2,6,6,6
inv_pv_bat,DynamicInverter,STP-7000TL-20,0,20,0
battery,LiionBattery,BAT1,6,6,6
grd,ElectricalGrid,GRD1,1000,1000,1000
elec_cns,ElectricalConsumption,,,,
grd_injection_price,grd_price,network_usage_capacity_fee,network_usage_energy_fee,levies_int,levies_ext,concession,electricity_tax_int,electricity_tax_ext,VAT,grd_emission,yearly_interest,planning_horizon
0.0793,0.3046,14.79,0.0506,0.0276,0.0496,0.0199,0,0.0205,0.19,0.401,0.03,20
from,output,to,input
pv_roof,1,inv_pv_bat,1
inv_pv_bat,1,battery,1
inv_pv_bat,1,grd,1
inv_pv_bat,1,elec_cns,1
battery,1,inv_pv_bat,1
grd,1,inv_pv_bat,1
grd,1,elec_cns,1
{
"network_usage_capacity_fee": 14.79,
"network_usage_energy_fee": 0.0506,
"levies_int": 0.0276,
"levies_ext": 0.0496,
"concession": 0.0199,
"electricity_tax_int": 0,
"electricity_tax_ext": 0.0205,
"VAT": 0.19
}
\ No newline at end of file
name,type,model,min_size,max_size,current_size
pv_roof,PVGenerator,PV2,6,6,6
inv_pv_bat,DynamicInverter,STP-7000TL-20,0,20,0
battery,LiionBattery,BAT1,6,6,6
grd,ElectricalGrid,GRD1,1000,1000,1000
elec_cns,ElectricalConsumption,,,,
grd_injection_price,grd_price,grd_emission,yearly_interest,planning_horizon
0.0793,0.3046,0.401,0.03,20
from,output,to,input
pv_roof,1,inv_pv_bat,1
inv_pv_bat,1,battery,1
inv_pv_bat,1,grd,1
inv_pv_bat,1,elec_cns,1
battery,1,inv_pv_bat,1
grd,1,inv_pv_bat,1
grd,1,elec_cns,1
{
"components": {
"pv_roof": {
"type": "PVGenerator",
"model": "PV2",
"min_size": 6.0,
"max_size": 6.0
},
"inv_pv_bat": {
"type": "DynamicInverter",
"model": "STP-7000TL-20",
"min_size": 0.0,
"max_size": 20.0
},
"battery": {
"type": "LiionBattery",
"model": "BAT1",
"min_size": 6.0,
"max_size": 6.0
},
"grd": {
"type": "ElectricalGrid",
"model": "GRD1",
"min_size": 1000.0,
"max_size": 1000.0,
"price": 0.3046,
"injection_price": 0.0793,
"emission": 0.401
},
"elec_cns": {
"type": "ElectricalConsumption"
}
},
"connections": [
{
"from": "pv_roof",
"output": 1,
"to": "inv_pv_bat",
"input": 1
},
{
"from": "inv_pv_bat",
"output": 1,
"to": "battery",
"input": 1
},
{
"from": "inv_pv_bat",
"output": 1,
"to": "grd",
"input": 1
},
{
"from": "inv_pv_bat",
"output": 1,
"to": "elec_cns",
"input": 1
},
{
"from": "battery",
"output": 1,
"to": "inv_pv_bat",
"input": 1
},
{
"from": "grd",
"output": 1,
"to": "inv_pv_bat",
"input": 1
},
{
"from": "grd",
"output": 1,
"to": "elec_cns",
"input": 1
}
],
"yearly_interest": 0.03,
"planning_horizon": 20
}
\ No newline at end of file
name,type,model,min_size,max_size,current_size
pv_roof,PVGenerator,PV2,6,6,6
inv_pv_bat,DynamicInverter,STP-7000TL-20,0,20,0
battery,LiionBattery,BAT1,6,6,6
grd,ElectricalGrid,GRD1,1000,1000,1000
elec_cns,ElectricalConsumption,,,,
grd_injection_price,grd_price,grd_emission,yearly_interest,planning_horizon
0.0793,0.3046,0.401,0.03,20
from,output,to,input
pv_roof,1,inv_pv_bat,1
inv_pv_bat,1,battery,1
inv_pv_bat,1,grd,1
inv_pv_bat,1,elec_cns,1
battery,1,inv_pv_bat,1
grd,1,inv_pv_bat,1
grd,1,elec_cns,1
{
"components": {
"pv_roof": {
"type": "PVGenerator",
"model": "PV2",
"min_size": 6.0,
"max_size": 6.0
},
"inv_pv_bat": {
"type": "DynamicInverter",
"model": "STP-7000TL-20",
"min_size": 0.0,
"max_size": 20.0
},
"battery": {
"type": "LiionBattery",
"model": "BAT1",
"min_size": 6.0,
"max_size": 6.0
},
"grd": {
"type": "ElectricalGrid",
"model": "GRD1",
"min_size": 1000.0,
"max_size": 1000.0,
"price": 0.3046,
"injection_price": 0.0793,
"emission": 0.401
},
"elec_cns": {
"type": "ElectricalConsumption"
}
},
"connections": [
{
"from": "pv_roof",
"output": 1,
"to": "inv_pv_bat",
"input": 1
},
{
"from": "inv_pv_bat",
"output": 1,
"to": "battery",
"input": 1
},
{
"from": "inv_pv_bat",
"output": 1,
"to": "grd",
"input": 1
},
{
"from": "inv_pv_bat",
"output": 1,
"to": "elec_cns",
"input": 1
},
{
"from": "battery",
"output": 1,
"to": "inv_pv_bat",
"input": 1
},
{
"from": "grd",
"output": 1,
"to": "inv_pv_bat",
"input": 1
},
{
"from": "grd",
"output": 1,
"to": "elec_cns",
"input": 1
}
],
"yearly_interest": 0.03,
"planning_horizon": 20
}
\ No newline at end of file
name,type,model,min_size,max_size,current_size
grd,ElectricalGrid,GRD1,100000,100000,0
elec_cns,ElectricalConsumption,,,,
gas_boi,GasBoiler,BOI1,10,10,0
gas_grd,GasGrid,GAS1,100000,100000,0
therm_cns,HeatConsumption,,,,
dhw_dmd,HotWaterConsumption,,,,
water_tes,HotWaterStorage,TES1,40,40,0
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