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首页> 外文期刊>Transactions of the Institute of Measurement and Control >Perturbation observer based adaptive passive control for damping improvement of multi-terminal voltage source converter-based high voltage direct current systems
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Perturbation observer based adaptive passive control for damping improvement of multi-terminal voltage source converter-based high voltage direct current systems

机译:基于多端电源转换器高压直流系统阻尼的基于扰动观测器的自适应无源控制

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摘要

This paper proposes a Perturbation Observer-based adaptive passive control (POAPC) for damping improvement of multi-terminal voltage source converter-based high voltage direct current (VSC-MTDC) systems. The POAPC is designed for an N-terminal VSC-MTDC system, and the perturbation is defined as a lumped term including interactions between terminals, unmodelled dynamics and unknown external disturbances, which are estimated online via a perturbation observer. Then an extra system damping is injected for each terminal to improve the transient dynamics via passivation. The POAPC does not require an accurate system model and measurements of full states; only the DC voltage and active and reactive power need to be measured. Case studies are carried out on a four-terminal VSC-MTDC system under four scenarios such as active and reactive power reversal, faults at AC bus, offshore wind farm connection, and fast time-varying parameter uncertainties. Simulation results verify its effectiveness under various operating conditions, compared with that of conventional proportional-integral (PI) control and classical passive control (PC).
机译:本文提出了一种扰动观察者的自适应无源控制(POAPC),用于改善多端电源转换基的高压直流(VSC-MTDC)系统。 POAPC专为N末端VSC-MTDC系统而设计,并且扰动被定义为集总术语,包括通过扰动观测器估计在线估计的端子,未刻度动态和未知外部干扰之间的相互作用。然后,为每个终端注入额外的系统阻尼,以通过钝化改善瞬态动力学。 POAPC不需要精确的系统模型和全州的测量;只需测量DC电压和主动和无功功率。案例研究在四个终端VSC-MTDC系统下进行了四个场景,如主动和无功逆转,交流总线,海上风电场连接以及快速时变参数不确定因素。仿真结果在各种操作条件下验证其有效性,与传统的比例积分(PI)控制和经典无源控制(PC)相比。

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