基于快速电压控制的电流限制完全并网直接电压控制

M. Maherani, J. Denecke, H. Vennegeerts
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引用次数: 1

摘要

由于电压源对终端电压变化的调节滞后,无法对电网侧电流进行刚性控制,给电网形成控制的应用带来了挑战。因此,需要相应的限流机构。直接电压控制是一种以d/q协调方式运行的部分并网逆变器控制,通过计算对应于高快速电压控制器参数的Kirchhoff方程得出的差分电压,为电流限制问题提供了一个简单的解决方案。本文讨论了将电压直接控制方案扩展为基于摆动方程的功率平衡同步的完全成网操作,而不是基于锁相环的电压同步,并解释了电流限制的实现。在PST-16机器测试系统上测试了该控制方法在不同电网故障情况下的性能和电流限制,并采用平均模型进行了仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Current Limitation based on fast voltage control for fully grid-forming Direct Voltage Control
The application of grid forming control has challenges because of voltage source behavior with retarded adjustment to changing terminal voltage which cannot stiffly control the grid side current. Thus, a corresponding current limiting mechanism is required. The Direct Voltage Control is a partial grid-forming inverter control that operates in d/q-coordination and offers an easy solution for the current limitation’s issue by calculating difference voltages derived from Kirchhoff equations corresponding to high fast voltage controller parameter. This paper discusses the extension of the direct voltage control scheme to a fully grid-forming operation based on power balance synchronization by a swing equation instead of voltage-based synchronization with a phase-locked loop, and explains the implementation of the current limitation. The performance of the proposed control and its current limitation with different grid faults has been tested on the PST-16 Machine test system, which is simulated in EMT model with average model for simplification.
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