首页> 外文会议>2019 20th workshop on control and modeling for power electronics >Sharing Inertia Between VSC-HVDC Interconnected Weak AC Systems with a Self-Governing Control Scheme
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Sharing Inertia Between VSC-HVDC Interconnected Weak AC Systems with a Self-Governing Control Scheme

机译:具有自控控制方案的VSC-HVDC互连弱交流系统之间的惯性共享

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摘要

VSC-HVDC is extensively used to connect asynchronous AC systems. While the synchronization of a VSC brings about requirement for short circuit capacity (SCC) of the embedded system, and the implementation of VSC impairs inertial of the system by taking the place of conventional generators. In this paper, a self-governing control scheme (SGC) is proposed for VSC-HVDC that interconnects weak AC systems. The SGC can operate VSCs in low SCC, and enables mutual inertial sharing between the interconnected AC systems during transient. These advantages of the SGC is achieved by operating a VSC in a way that mimics an electric motor for the AC grid, and in the meantime mimics a prime mover for the other VSC of HVDC. Moreover, like a synchronous machine, the VSC autonomously synchronizes with AC grid without any dedicated synchronization unit. No AC measurement nor VSCs' mutual communication is utilized in the SGC. The SGC's effectiveness in inertial sharing between weak AC grids is verified through RTDS simulations.
机译:VSC-HVDC广泛用于连接异步AC系统。尽管VSC的同步带来了嵌入式系统的短路容量(SCC)的要求,但VSC的实现通过代替常规发电机而削弱了系统的惯性。在本文中,提出了一种将弱AC系统互连的VSC-HVDC自控控制方案(SGC)。 SGC可以在低SCC下运行VSC,并在瞬态过程中实现互连AC系统之间的相互惯性共享。 SGC的这些优点是通过以模拟交流电网电动机的方式运行VSC并同时模拟HVDC的其他VSC的原动机来实现的。此外,像同步电机一样,VSC无需任何专用同步单元即可自动与AC电网同步。 SGC中未使用交流测量或VSC之间的相互通信。通过RTDS仿真验证了SGC在弱交流电网之间惯性共享中的有效性。

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