一种数字物理混合实时仿真接口系统的直流分量消除控制策略

Jie Zeng, Junlin Li, F. Leng, Boya Peng, Xun Chen, C. Mao, Dan Wang
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引用次数: 2

摘要

数字-物理混合实时仿真被认为是未来电力系统仿真的一种先进方法。然而,物理接口不可避免地会存在直流分量,这会对实际应用造成负面影响,如仿真性能下降、物理设备损坏等。为了提高接口系统的性能和仿真结果的精度,提出了一种新型的数字物理混合实时仿真直流分量消除控制策略。基于通用电源接口方案,分析了物理接口的电压控制策略和输出直流分量的特性。针对混合仿真稳态消除直流分量、暂态保留直流分量的特殊性,提出了一种集成直流分量消除的物理接口反相链路改进电压控制策略。通过数字-物理混合实时仿真实验,验证了所提控制策略的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A DC component elimination control strategy for the interface system of digital-physical hybrid real-time simulation
Digital-physical hybrid real-time simulation is considered to be an advanced method for future power system simulation. However, the physical interface will inevitably exist DC component, which causes negative effects on practical applications, such as degradation of simulation performance, damage to physical equipment, etc. A novel DC component elimination control strategy for the digital-physical hybrid real-time simulation is proposed in this paper, to improve the performance of the interface system and the precision of simulation results. Based on a universal power interface scheme, the voltage control strategy of the physical interface and the characteristics of the output DC component are analyzed. Aiming at the particularity of hybrid simulation, i.e., the DC component is supposed to be eliminated during steady state but reserved during transient state, an improved voltage control strategy integrating DC component elimination is proposed for the invert link of the physical interface. The proposed control strategy was proved to be effective by experiments of digital-physical hybrid real-time simulation.
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