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dc.contributor.authorDufour, Christian-
dc.date.accessioned2018-12-27T19:22:26Z-
dc.date.available2018-12-27T19:22:26Z-
dc.date.issued2016-10-
dc.identifier.urihttp://item.bettergrids.org/handle/1001/509-
dc.description.abstractSSN simulation of VSC-HVDC with Inlined Voltage Inverter Compensation (IVIC)​ The circuit shows the capability of ARTEMiS-SSN to accurately simulate 2-level Voltage Source Converter (VSC)-HVDC circuits ARTEMiS-SSN incorporates a novel interpolation algorithm for 2-level inverters very similar to averaging inverter model with interpolation (also called Time-Stamped Bridge -TSB). The main difference between this model and TSB is that there is NO DECOUPLING DELAY between the inverter and the rest of the circuit. In some circuit like VSC-HVDC, a delay-free solution is mandatory to obtain an accurate simulation at relatively large time step. Also, not only the 'Inlined TSB' compensates for the output voltage, it also does compensate the bridge input current, a critical aspect in this demo. In this demo, the sample is 20us, PWM frequency is 1950 Hz and a dead-time of 2 us is applied to the PWM firing. Simulation shows that current and voltage amplitudes have a negligible jitter. [Inverter DC/AC; Voltage source converter (VSC); High Voltage Direct Current (HVDC); Dead-time; Protection:Delay; Pulse width modulation (PWM) ]en_US
dc.publisherOPAL-RT Technologiesen_US
dc.subjectDynamicen_US
dc.titleARTEMiS-SSN Inlined Time-stamped Bridge in Two-level VSC-based HVDC Applicationsen_US
dc.typeGrid Model Dataseten_US
grid.versionV1.0en_US
grid.publisher.urlhttps://www.opal-rt.com/resource-center/demo/?resource=L00143_0104en_US
grid.formatOpalRTen_US
grid.buses0en_US
grid.generators0en_US
grid.loads0en_US
grid.feeders0en_US
grid.switches0en_US
grid.nodes0en_US
grid.formatversionRT-LAB:v11.0.8.13; Solver:Artemis-SSN; Matlab 2015aSP1en_US
grid.voltages0en_US
grid.climateZones0en_US
grid.branches0en_US
grid.identifier.urlhttps://www.opal-rt.com/resource-center/demo/?resource=L00143_0104-
Appears in Collections:Distribution Dynamic

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Model Schematic68.63 kBJPEG


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