An Improved Voltage-Shifting Strategy To Attain Concomitant Accurate Power Sharing And Voltage Restoration In Droop-Controlled Dc Microgrids

IEEE TRANSACTIONS ON POWER ELECTRONICS(2021)

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摘要
This article proposes a distributed secondary level control strategy for dc microgrids, which achieves accurate and proportional power sharing and dc-bus voltage deviation restoration based on voltage shifting. In contrast to similar approaches, only one variable per converter is transmitted in the low-bandwidth communication link and with a simple integrator as the secondary level controller both objectives are achieved simultaneously. The information state shared between converters is a lambda factor that incorporates the converter output voltage and power information. The secondary control computes the average lambda locally and the controller generates an unique voltage-shifting term that modifies the converter output voltage reference. When all converters' lambda converge to the average value, both proportional power sharing and dc-bus voltage restoration are attained. The proposed technique suppresses the need for a complex control structure and large amount of converter variables. The proposed control is evaluated through PLECS simulation and it is validated in a 6.4 kW dc microgrid setup.
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关键词
Voltage control, Microgrids, Voltage measurement, Electronic mail, Communication networks, Reliability, Steady-state, Accurate power sharing, dc microgrid, distributed control, voltage restoration, voltage shifiting
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