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- W4282023115 abstract "The microgrid energy management usually is based on hierarchical architecture, adapted from the ISA-95 standard, which consists of three control levels: i) the primary control level is responsible for the local and autonomous control of the power converters and ensures power sharing, DC voltage regulation and stability; ii) the secondary control level provides restoration of deviations caused by the primary control level, and iii) the tertiary control level manages the power flow between the microgrid and the mains. The droop control is often used in the primary control level to provide decentralized and autonomous operation for the dispersed parallel power converters without using communication channels and allowing plug-and-play capability. However, the droop technique shows a tradeoff between power sharing and voltage regulation, causing power sharing errors and/or voltage deviations, thus, this chapter details the influence of line equivalent resistances in power sharing and in average DC bus voltage errors caused by droop techniques, reviewing the secondary control methods proposed in literature employed to correct such errors. Moreover, two secondary control techniques based on distributed control, proposed by the authors, are highlighted, as well as the design of the communication system." @default.
- W4282023115 created "2022-06-13" @default.
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- W4282023115 date "2022-05-25" @default.
- W4282023115 modified "2023-10-16" @default.
- W4282023115 title "Secondary Control Based on the Droop Technique for Power Sharing" @default.
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- W4282023115 doi "https://doi.org/10.1002/9781119777618.ch7" @default.
- W4282023115 hasPublicationYear "2022" @default.
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