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Generic inertia emulation controller for multi-terminal voltage-source-converter high voltage direct current systems

机译:用于多端子电压源-转换器高压直流系统的通用惯性仿真控制器

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摘要

A generic inertia emulation controller (INEC) scheme for multi-terminal voltage-source-converter (VSC)-based high voltage direct current (HVDC) systems is proposed in this study. The INEC can be incorporated in any grid-side VSC station, allowing the multi-terminal HVDC (MTDC) terminal to contribute an inertial response to connected AC systems during system disturbances, in a fashion similar to synchronous generators. The DC-link capacitors within the MTDC are utilised by the INEC scheme to exchange stored energy with the AC system by varying the overall DC voltage level of the MTDC network within a safe and pre-defined range. A theoretical treatment of the INEC algorithm and its implementation and integration within a conventional VSC control system are presented, and the impact on the total DC capacitance required within the MTDC network to ensure that DC voltages vary within an acceptable range is discussed. The proposed INEC scheme is validated using a MATLAB/SIMULINK model under various changes in demand and AC network faults. The model incorporates a multi-machine AC power system connected to a MTDC transmission system with multiple converterinterfaced nodes. The effectiveness of the INEC in damping post-fault oscillations and in enhancing AC grid frequency stability is also investigated.
机译:本文针对基于多端子电压源转换器(VSC)的高压直流(HVDC)系统提出了一种通用惯性仿真控制器(INEC)方案。 INEC可以并入任何电网侧VSC站,从而允许多端子HVDC(MTDC)端子在系统受到干扰时以与同步发电机类似的方式对连接的AC系统做出惯性响应。通过在安全且预定义的范围内更改MTDC网络的总体DC电压电平,INEC方案可利用MTDC中的DC链路电容器与AC系统交换存储的能量。介绍了INEC算法的理论处理及其在常规VSC控制系统中的实现和集成,并讨论了对确保DC电压在可接受范围内变化的MTDC网络所需的总DC电容的影响。在各种需求变化和交流网络故障的情况下,使用MATLAB / SIMULINK模型对提出的INEC方案进行了验证。该模型包含一个多机交流电源系统,该系统连接到具有多个转换器接口节点的MTDC传输系统。还研究了INEC在抑制故障后振荡和增强交流电网频率稳定性方面的有效性。

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