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首页> 外文期刊>Emerging and Selected Topics in Power Electronics, IEEE Journal of >Robust Stability Investigation of the Interactions Among Grid-Forming and Grid-Following Converters
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Robust Stability Investigation of the Interactions Among Grid-Forming and Grid-Following Converters

机译:鲁棒稳定性调查网格形成和电网跟随转换器之间的相互作用

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摘要

State-of-the-art grid-connected converters can be classified as grid-following; meaning that they require a dedicated synchronization unit in order to inject active and reactive currents into the grid. Recently, other converter control concepts have been proposed in the literature, such as the synchronverter, which can instead achieve synchronization without a dedicated unit and, within its physical limitations, make the converter behave as an ideal voltage source. Since it should be expected that the grid-connected converters having different control philosophies will coexist for many years, in this article, the interaction among the converters operating nearby are addressed. First, the component connection method (CCM) technique is introduced, as a means for obtaining the state-space representation of a complex system with several units operating nearby. Due to the complexity of the grid and the difficulty in obtaining its exact representation, -analysis is adopted in this article for assessing the robust stability of the converter under different operating conditions, according to a defined set of plant uncertainties. Simulation results and experimental tests in a laboratory environment by means of a power hardware-in-the-loop (PHIL) test bench are performed to demonstrate the validity of the presented analysis.
机译:最先进的网格连接的转换器可以归类为网格跟随;意思是它们需要专用的同步单元,以便将主动和无功电流注入到网格中。最近,在文献中提出了其他转换器控制概念,例如同步转换器,其可以改为在没有专用单元的情况下实现同步,并且在其物理限制内,使转换器表现为理想的电压源。由于应该预期具有不同控制理念的网格连接的转换器将在本文中共存多年,在本文中,处理了附近的转换器之间的互动。首先,引入组件连接方法(CCM)技术,作为获得具有附近操作的多个单元的复杂系统的状态空间表示的装置。由于栅格的复杂性和难以获得其精确表示,在本文中采用了分析,用于根据一组规定的植物不确定性评估不同操作条件下的转换器的稳定稳定性。通过电源硬件(PHIL)测试工作台进行实验室环境中的仿真结果和实验测试,以证明所提出的分析的有效性。

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