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Power injection model of IDC-PFC for NR-based and technical constrained MT-HVDC grids power flow studies

机译:IDC-PFC功率注射模型,基于NR和技术约束MT-HVDC网格电流研究

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摘要

Insufficient control flexibility in multi-terminal HVDC (MT-HVDC) grids is an important motivation to install suitable power electronic-based DC power flow controller (PFC)s to ensure grid controllability, security, and reliability. This article proposes a new static power injection model (PIM) for those (interline) DC-PFCs to enable DC power flow (PF) studies and ease integration of the PFCs in the power system analysis softwares within the well-accepted Newton-Raphson (NR) solver-based framework. HVDC lines shunt conductances are also taken in to account in this newly developed paradigm. For this purpose, the IDC-PFC, as well as other MT-HVDC grid physical/control state variables are modified in cooperation to attain predefined control objective(s). Furthermore, a novel general routine (solution procedure) is proposed to handle several system physical/control limitations during the NR-based DC PF problem solution. Static/dynamic simulations are executed on an eight-bus test MT-HVDC grid to show/confirm the accuracy, effective performance, and excellent convergence property of the proposed IDC-PFC model, NR-based DC PF solver, and technical constraints handling routine. In this situation, it is proved that the original structure and symmetry of the admittance matrix can still be kept, and a few modifications are needed to be done in the Jacobin matrix.
机译:多终端HVDC(MT-HVDC)网格中的控制灵活性不足是安装合适的基于电力电子直流电流控制器(PFC)S的重要动机,以确保电网可控性,安全性和可靠性。本文提出了一种新的静态功率注入模型(PIM),适用于那些(Interline)DC-PFC,以使直流电流(PF)研究能够在良好的牛顿 - 拉文中的电力系统分析软件中提供PFC的研究,并可轻松集成PFC(基于NR)求解器的框架。 HVDC线路分流路流导电也被采用进入该新开发的范式。为此目的,在合作中修改IDC-PFC,以及其他MT-HVDC网格物理/控制状态变量,以获得预定义的控制目标。此外,提出了一种新的一般例程(解决方案程序)来处理在基于NR的DC PF问题解决方案期间的若干系统物理/控制限制。静态/动态仿真在八母线测试MT-HVDC网格上执行,以显示/确认所提出的IDC-PFC型号,基于NR的DC PF求解器和技术限制处理程序的精度,有效性能和优异的收敛性。在这种情况下,证明仍然可以保持导纳矩阵的原始结构和对称性,并且需要在Jacobin矩阵中进行一些修改。

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