实现能源互联网的三相多频能量传输系统

Hamed Athari, D. Raisz
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引用次数: 1

摘要

将分布式发电系统(DPGS)集成到电力系统的努力带来了新的研究领域,其中之一就是能源互联网概念。与信息互联网类似,能源互联网将以能量为单位传输数据包。为了避免分组调度过程中的拥塞,文献中提出了路由器和路由方法。我们的建议是同时使用多个通道。本文研究了三相多频能量传递的可能性。这项任务是通过使用网格形成和网格馈送转换器来完成的。为了使三相多频电力系统平衡,在电力系统中加入基频的三次谐波分量作为零序信号。控制系统由两部分组成。电网形成控制器负责电压和相应的频率。并网控制器控制并网变流器的功率和电流。为了做到这一点,两个控制系统应该能够相互解耦频率。因此,有功和无功功率可以在不同的频率下分别传输。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Three-phase multi-frequency energy transfer system for realizing the energy internet
The endeavor to increase the integration of distributed power generation systems (DPGS) into the electric power system brings about new research areas, one of them is the energy internet concept. Similarly to the information internet, the energy internet would transfer packets as the units of energy. To avoid congestions in the packet dispatching process, routers and routing methods have been suggested in literature. Our proposal is to use multiple channels simultaneously. In this paper, the possibility of three-phase multi-frequency energy transfer is investigated. This task is performed by using grid-forming and grid-feeding converters. To have a balanced three-phase multi-frequency power system, the third harmonic component of the fundamental frequency is added to the power system as a zero-sequence signal. The control system consists of two parts. The grid-forming controller is responsible for the voltage and the respective frequency. The grid-feeding controller controls the powers and current of the grid-feeding converter. For doing so, both control systems should be able to decouple the frequencies from each other. As a result, the active and reactive powers can be transferred separately at different frequencies.
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