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- W3213150884 abstract "This paper investigates the design trade-offs of a Modular Multilevel Converter (MMC) operation as an Arbitrary Wave shapes Generator (AWG) to perform High Voltage testing of different grid assets. HV AWG applications pose unique operating conditions to the MMC, which influences the selection of the various system parameters. This influence is studied analytically, with MATLAB-Simulink simulations and a down-scaled MMC prototype. It is found that the Phase-Shift Carrier (PSC) modulation technique proves to be a superior modulation technique over Nearest Level Control (NLC). The correct choice of arm inductance and series damping resistance improves the harmonic performance of the output voltage waveform. The adapted control system can accurately generate different waveforms with THD less than 5 %. The circulating current in the MMC is negligible for the HV AWG application, which explains why the submodule capacitor voltages are balanced even when asymmetric complex wave shapes are generated. Additionally, the submodule capacitor ripple expression is derived for this unique application, and it matches well with the simulation and experimental results. For this application, submodule capacitance in the F range is sufficient to keep the ripple within 1 % of its average value." @default.
- W3213150884 created "2021-11-22" @default.
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- W3213150884 date "2021-01-01" @default.
- W3213150884 modified "2023-10-14" @default.
- W3213150884 title "Design Trade-Offs of Modular Multilevel Converter-Based Arbitrary Wave Shape Generator for Conventional and Unconventional High Voltage Testing" @default.
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- W3213150884 doi "https://doi.org/10.1109/ojies.2021.3125747" @default.
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