Decoupled frequency and voltage control for stand-alone microgrid with high renewable penetration

Kwang Woo Joung, Taewan Kim, Jung-Wook Park
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引用次数: 18

Abstract

In South Korea, the stand-alone microgrid on an island has synchronous diesel generators and multiple distributed generations (DGs) based on renewable energy and energy storage devices. According to the active policy of government to develop eco-friendly microgrids with zero carbon emission, many diesel generators in stand-alone microgrids are being replaced by the DGs. It brings challenges on the operation and control of multiple DGs because this causes the lack of inertia, which is originally provided from the diesel generators. This paper proposes a new decoupled frequency and voltage controller for DGs, which is able to keep the grid frequency and voltage magnitude constant. For frequency control, a frequency recovery control loop is newly added to conventional droop and inertia control loops for both the effective power sharing and stabilization of frequency response after a disturbance. For voltage control, the proposed controller regulates the grid voltage in an inertia-free mode, in which all diesel generators are disconnected, while providing the conventional reactive power-voltage droop control under a normal condition. As the result, the proposed controller can enhance the resilience and increase the penetration of renewable energies to the stand-alone microgrid. To verify the effectiveness of proposed controller, several case studies are carried out by using the practical data of a real stand-alone microgrid in South Korea.
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具有高可再生能源渗透率的独立微电网频率电压解耦控制
在韩国,一个岛屿上的独立微电网拥有同步柴油发电机和基于可再生能源和储能设备的多个分布式发电(dg)。根据政府发展零碳排放的生态友好型微电网的积极政策,许多单机微电网中的柴油发电机正在被dg取代。这给多个dg的运行和控制带来了挑战,因为它造成了原有柴油发电机提供的惯性的缺乏。本文提出了一种新的DGs频率电压解耦控制器,该控制器能够保持电网频率和电压幅值不变。在频率控制方面,在传统的下垂和惯性控制回路的基础上增加了频率恢复控制回路,既能有效地分担功率,又能稳定扰动后的频率响应。在电压控制方面,该控制器以无惯性模式对电网电压进行调节,在无惯性模式下,所有柴油发电机均断开,同时在正常情况下提供常规的无功电压下垂控制。结果表明,所提出的控制器可以提高可再生能源对独立微电网的弹性和渗透率。为了验证所提出的控制器的有效性,利用韩国真实独立微电网的实际数据进行了几个案例研究。
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