固态变压器用PV、Boost和双向整流器组合的u -cells逆变器模型预测控制

Ibrahim. A. M. Ahmed, L. Mihet-Popa
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引用次数: 0

摘要

平衡三相系统的潮流是配电网面临的挑战之一,随着可再生能源(RES)的广泛采用和智能电网的发展,这一挑战更加加剧。变压器是配电的基本设备之一,除了电隔离外,它还提供了连接高压、中压和低压电网的手段。经典变压器利用线圈之间的匝比磁耦合来实现这一基本功能,但它们体积庞大,价格昂贵,并且不提供额外的智能功能。使用电力电子变压器(PET),也称为固态变压器(SST),已经在文献中介绍了使用三相到单相变换器来解决这个问题。然而,重点主要集中在逆变器和一个基本的二极管整流器使用没有RES集成。本文通过将其替换为双向变换器,并利用太阳能连接到三相到单相固态变压器的直流链路来研究其性能,从而弥补了这一空白。通过仿真验证了双向SST的有效性,结果表明该方法能够保持三相系统与集成可再生能源之间的平衡,同时提供高效率、低总谐波失真的双向潮流。
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Model Predictive Control of a Packed-U-cells Inverter with PV, Boost and Bidirectional Rectifier for Solid-State Transformers
Balancing the power flow in a three-phase system is one of the challenges in distribution networks, which is even more exacerbated with the widespread adoption of renewable energy sources (RES) and the development of smart grids. The transformer is one of the fundamental devices in power distribution that provides a means to link high-voltage, medium-voltage, and low-voltage networks in addition to galvanic isolation. Classical transformers utilize magnetic coupling with a turn ratio between coils to achieve this basic functionality, but they are bulky, expensive, and do not provide additional smart features. The use of a power electronics transformer (PET), also called a solid-state transformer (SST), has been introduced in the literature using a three-phase to single-phase converter to solve this problem. However, the focus was mainly on the inverter and a basic diode rectifier was used without RES integration. This paper bridged this gap by replacing it with a bidirectional converter and investigating its performance using solar power connected to the DC-link of the three-phase to single-phase solid-state transformer. The bidirectional SST was verified using simulations and the results show that the SST is able to maintain the balance between the three-phase system and the integrated renewable sources while providing bidirectional power flow with high efficiency and low Total Harmonic Distortion.
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