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Smart Transformers - Enabling Power-Frequency Regulation Services for Hybrid AC/DC Networks

机译:智能变压器-为交流/直流混合网络启用电源频率调节服务

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摘要

The progressive decommissioning of large synchronous generators that should take place in face of increasing penetration ratios of Distributed Generation (DG) will demand additional control mechanisms for inertia provision and frequency and voltage regulation in the power system. The need to cope with increasing penetration ratios of DG in distribution grids, added to the necessity to integrate an expected massification of EV and distributed ESS, and to the necessity to enhance Power System resilience and controllability, makes the Smart-Transformer (ST) a suitable solution. In this paper it is demonstrated the feasibility of the ST to contribute to frequency control through the control of the resources available in the distribution AC/DC hybrid networks created from the ST. The feasibility of local droop controllers, acting on frequency and voltage magnitude of the AC/DC hybrid networks created from the ST, to achieve the aforementioned goal, is demonstrated through computational simulation.
机译:大型同步发电机的逐步退役应该面对分布式发电(DG)的不断增加的渗透率而发生,这将需要用于电力系统中惯性提供以及频率和电压调节的附加控制机制。应对分布式电网中DG不断增加的渗透率的需求,再加上将预期的电动汽车和分布式ESS进行大规模整合的必要性,以及增强电力系统的弹性和可控性的必要性,使智能变压器(ST)成为了可能。合适的解决方案。在本文中,证明了ST可以通过控制由ST创建的分布式AC / DC混合网络中的可用资源来为频率控制做出贡献。通过计算仿真证明了本地下垂控制器对通过ST创建的AC / DC混合网络的频率和电压幅值的可行性,以实现上述目标。

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