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Simulink Model of a New Energy EVG-005 5kW Hydropower Turbine
Simulink model for a New Energy 5kW hydropower turbine.
ADCP data ("ds_streamwise_7_13.nc") and DC voltage, DC current, and rotor rotation observed from the New Energy EVG-005 Current Energy Converter (CEC) ("electrical_7_13_10ohms.nc") were collected at the Tanana River Test Site (TRTS) near Nenana Alaska.
- Data was collected on July 13th, 2023 with a constant 10 ohms resistance applied with a DC load bank.
- Simulink model is meant to resemble the electrical setup at the TRTS.
- Model is initialized by running the "NewEnergy_2023_10hz.m" Matlab script. Then the Simulink model ("New_Energy_Model_PMSM.slx") can be run.
- Results are processed with the "NewEnergy_2023_processing.m" Matlab code. The Matlab results are also saved in the "New_Energy_7_13_model_validation_results.mat" Matlab file. This can be directly loaded into the Matlab Workspace using the "Load()" command.
- The timetable variables "electrical_model_downsampled" is the model results and the "electrical_limited" is the experimental data from the TRTS.
Complete Metadata
| @type | dcat:Dataset |
|---|---|
| accessLevel | public |
| bureauCode |
[
"019:20"
]
|
| contactPoint |
{
"fn": "Emily Browning",
"@type": "vcard:Contact",
"hasEmail": "mailto:eabrowning@alaska.edu"
}
|
| dataQuality |
true
|
| description | Simulink model for a New Energy 5kW hydropower turbine. ADCP data ("ds_streamwise_7_13.nc") and DC voltage, DC current, and rotor rotation observed from the New Energy EVG-005 Current Energy Converter (CEC) ("electrical_7_13_10ohms.nc") were collected at the Tanana River Test Site (TRTS) near Nenana Alaska. - Data was collected on July 13th, 2023 with a constant 10 ohms resistance applied with a DC load bank. - Simulink model is meant to resemble the electrical setup at the TRTS. - Model is initialized by running the "NewEnergy_2023_10hz.m" Matlab script. Then the Simulink model ("New_Energy_Model_PMSM.slx") can be run. - Results are processed with the "NewEnergy_2023_processing.m" Matlab code. The Matlab results are also saved in the "New_Energy_7_13_model_validation_results.mat" Matlab file. This can be directly loaded into the Matlab Workspace using the "Load()" command. - The timetable variables "electrical_model_downsampled" is the model results and the "electrical_limited" is the experimental data from the TRTS. |
| distribution |
[
{
"@type": "dcat:Distribution",
"title": "Model.zip",
"format": "zip",
"accessURL": "https://mhkdr.openei.org/files/511/New_Energy_EVG-005_TRTS_model%20%281%29.zip",
"mediaType": "application/zip",
"description": "The folder contains a Simulink model, the Matlab processing scripts, experimental river resource data, and DC current and voltage for the New Energy EVG-005."
},
{
"@type": "dcat:Distribution",
"title": "New Energy EVG-005",
"format": "HTML",
"accessURL": "https://www.newenergycorp.ca/5kwturbine",
"mediaType": "text/html",
"description": "Manufacturer's page with basic specs and info."
}
]
|
| DOI | 10.15473/2008045 |
| identifier | https://data.openei.org/submissions/8073 |
| issued | 2023-07-13T06:00:00Z |
| keyword |
[
"Alaska",
"CEC",
"Hydrokinetic",
"MATLAB",
"MHK",
"Marine",
"Nenana",
"Tanana River",
"Tanana River Test Site",
"code",
"cross flow turbine",
"energy",
"power",
"processed data",
"system model",
"technology"
]
|
| landingPage | https://mhkdr.openei.org/submissions/511 |
| license | https://creativecommons.org/licenses/by/4.0/ |
| modified | 2023-10-10T16:18:22Z |
| programCode |
[
"019:009"
]
|
| projectLead | Bill McShane |
| projectNumber | EE0009445 |
| projectTitle | Modeling the Integration of Marine Energy into Microgrids |
| publisher |
{
"name": "University of Alaska Fairbanks",
"@type": "org:Organization"
}
|
| spatial |
"{"type":"Polygon","coordinates":[[[-149.06473317327027,64.56050685907435],[-149.06473317327027,64.56050685907435],[-149.06473317327027,64.56050685907435],[-149.06473317327027,64.56050685907435],[-149.06473317327027,64.56050685907435]]]}"
|
| title | Simulink Model of a New Energy EVG-005 5kW Hydropower Turbine |