虚拟同步机技术综述与应用

Yingjun Liu, Mukai Hao, Yunpeng He, C. Zang, P. Zeng
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引用次数: 7

摘要

太阳能或风能等可再生能源为满足世界能源需求提供了新的可能性。然而,将可再生能源大规模接入电网将在连接接口上带来巨大的稳定性挑战。虚拟同步机(VSM)技术模拟了传统同步机的瞬态机电特性,为智能电网集成提供了统一接口。利用这些技术,所有的可再生能源发电机组以及柔性负载都可以参与调节电网的频率和电压,从而提高电网的稳定性。本文介绍了VSM技术的起源和发展,并对该技术的数学模型、控制策略和稳定性问题进行了评价。然后总结了VSM在可再生能源并网、基于电压源变换器的HVDC (vdc -HVDC)、电机调速和快速充电接口等方面的应用。最后,对未来的研究方向进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Review and Applications of Virtual Synchronous Machines Technologies
Renewable energy such as solar or wind energy provides new possibilities to meet the world’s energy needs. However, connecting renewable energy sources to the power grid at a large scale will cause huge stability challenges at the connection interface. Virtual synchronous machine (VSM) technologies, which emulate the transient electromechanical characteristics of traditional synchronous machines, offer a unified interface for smart grid integration. With these technologies, all the renewable energy generators as well as the flexible loads could take part in regulating the grid frequency and voltage, thus improving the power grid’s stability. This paper presents the origin and development of VSM technology, and evaluates the mathematical model, control strategies and stability issues of the technology. It then summarizes VSM applications related to the grid interconnection of renewable energy, voltage sourced converter based HVDC (VSC-HVDC), motor speed regulation, and fast-charging interfaces. Finally, future research directions are assessed.
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