Wave Transformation Based Interface Algorithm for Distributed Simulation of HVDC Systems

M. Stevic, A. Monti
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引用次数: 1

Abstract

Transition to the next-generation power systems is resulting in the increasing deployment of High-Voltage direct current (HVdc) connections and multi-terminal HVdc grids. To support this transition, a holistic real-time simulation and testing infrastructure is beneficial. We propose realization of such infrastructure based on virtual interconnection of geographically dispersed laboratories. One of the main challenges associated with realization of this concept is compensating the effect of communication network and ensuring stability of Geographically Distributed Real-Time Simulation (GD-RTS). In this work we propose a co-simulation Interface Algorithm (IA) based on wave transformation (WT), a method widely utilized in the field of bilateral teleoperation. WT-based co-simulation IA is applied for GD-RTS of HVdc link with a partitioning point at a dc cable. While co-simulation IA based on Ideal Transformer Model (ITM) is not stable, WT-based co-simulation IA ensures simulation stability for large values of time delay.
基于波变换的高压直流系统分布式仿真接口算法
向下一代电力系统的过渡导致高压直流(HVdc)连接和多终端高压直流电网的部署不断增加。为了支持这种转变,一个全面的实时模拟和测试基础设施是有益的。我们建议基于地理上分散的实验室的虚拟互联来实现这种基础设施。实现这一概念所面临的主要挑战之一是补偿通信网络的影响和确保地理分布式实时仿真(GD-RTS)的稳定性。本文提出了一种基于波变换(WT)的联合仿真接口算法(IA),该算法在双边远程操作领域得到了广泛应用。将基于wt的协同仿真IA应用于直流电缆分划点的高压直流链路的gtd - rts。基于理想变压器模型(ITM)的联合仿真IA不稳定,而基于wt的联合仿真IA可以保证大时延下的仿真稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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