同步变换器在网格成形系统中的作用

P. Marinakis, N. Schofield
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引用次数: 1

摘要

随着电力网络运营商应对不断变化和增加的负荷需求的竞争挑战,以及减少净碳足迹的持续压力,越来越多的人接受将越来越多的可再生能源连接到电网或本地利用电压水平。与传统的发电资源相比,可再生能源具有高度的动态性和间歇性。因此,它们对电网运营商提出了挑战,即如何有效地管理其资源,以最大限度地实现能量传输,同时保持稳定的互联网络。此外,在电力网络的利用端连接的电能产生的比例越来越大,这对能量流、电压稳定性和保护系统构成了挑战。本文将初步讨论形成未来嵌入式电力系统参考点的网格形成系统的概念。传统的同步补偿器是成网系统的一部分,在能量瞬态时提供有限的能量输入,提供一定的无功无功能力,但重要的是提供高暂态故障电流,这将增强系统并帮助系统保持稳定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synchronous Converter Role in a Grid Forming System
There is a greater acceptance of the connection of an increasing share of renewable energy sources to electrical power networks at either grid or local utilization voltage levels as the electrical power network operators contend with the competing challenges of changing and increasing load demands, and continuing pressures to reduce net carbon footprint. Renewable energy resources are highly dynamic and somewhat intermittent compared to more traditional generation sources. Hence, they pose a challenge to the electrical network operator in terms of effectively managing their resources to maximize energy transfer while maintaining a stable interconnected network. Further, there is an increasing percentage of electrical energy generation that is connected at the utilization end of the electrical power network which poses challenges for energy flow, voltage stability and protection systems. This paper will initially discuss the concept of a grid forming system that forms the reference point of future embedded electrical power systems. The role that grid forming converters could have in future very weak system is discussed A traditional synchronous compensator forms part of the grid forming system and provides some limited energy input during energy transients, some reactive VAr capability, but importantly, high transient fault currents, which will strengthen the system and help it maintain stability.
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