Droop control in decentralized inverter-based AC microgrid.

Simulation of decentralized inverter-based AC microgrid with P-f and Q-V droop control.
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更新时间 2022/2/10
In this simulation, microgrid consists of three VSCs which are connected to different loads. Each VSC consists of a droop controller along with outer voltage controller and inner current controller.
Droop originates from the principle of power balance in synchronous generators. An imbalance between the input mechanical power and the output electric power causes a change in the rotor speed and electrical frequency. Similarly, variation in output reactive power results in voltage magnitude deviation.
Such a characteristic can be artificially created for electronically interfaced inverter-based AC microgrid. In droop control, the relationships between real power and frequency and reactive power and voltage are as follows:
𝜔𝑟𝑒𝑓= 𝜔𝑛𝑜𝑚𝑖𝑛𝑎𝑙−𝑚𝑝∗𝑃
𝑣𝑟𝑒𝑓= 𝑣𝑛𝑜𝑚𝑖𝑛𝑎𝑙−𝑛𝑞∗𝑄

引用格式

Mohammad Tayyeb Sheikh (2024). Droop control in decentralized inverter-based AC microgrid. (https://github.com/sheikhtayyeb/decentralized-inverter-based-AC-microgrid/releases/tag/v1.0.6), GitHub. 检索来源 .

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版本 已发布 发行说明
1.0.6

See release notes for this release on GitHub: https://github.com/sheikhtayyeb/decentralized-inverter-based-AC-microgrid/releases/tag/v1.0.6

1.0.5.0

See release notes for this release on GitHub: https://github.com/sheikhtayyeb/decentralized-inverter-based-AC-microgrid/releases/tag/v1.0.5

1.0.2

See release notes for this release on GitHub: https://github.com/sheikhtayyeb/decentralized-inverter-based-AC-microgrid/releases/tag/v1.0.2

1.0.1

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1.0.0

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要查看或报告此来自 GitHub 的附加功能中的问题,请访问其 GitHub 仓库