Research and implementation of expanding the size of electromechanical transient in the hybrid real-time simulation

Na An, Chengyong Zhao
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Abstract

In this paper, concerning the limitations of this method which can not meet the current needs of the development of large-scale power system, a new electromechanical transient simulation model based on dynamic equivalent is proposed. It develop a new vision for the electromechanical transient and electromagnetic transient hybrid simulation, which presents the application of dynamic hybrid simulation equivalent in hybrid simulation. Two cases are studied, electromechanical Simulation of IEEE14 nodes system, and hybrid simulation of electromagnetic transient and electromechanical transient on RTDS was developed, in the condition that the electromagnetic transient part is an actual DC system. The simulation results show that dynamic equivalence presented in the paper is valid and effective. On this basis, hybrid simulation based on dynamic equivalence is realized, thereby expanding the simulation size of AC system.
扩展机电暂态尺寸在混合实时仿真中的研究与实现
针对该方法存在的局限性,不能满足当前大型电力系统发展的需要,提出了一种基于动态等效的机电暂态仿真模型。提出了机电瞬变与电磁瞬变混合仿真的新思路,并给出了动态混合仿真当量在混合仿真中的应用。研究了IEEE14节点系统的机电仿真和RTDS上电磁暂态与机电暂态的混合仿真两种情况,其中电磁暂态部分为实际直流系统。仿真结果表明,本文提出的动态等效方法是有效的。在此基础上,实现了基于动态等效的混合仿真,从而扩大了交流系统的仿真规模。
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