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System adaptive AC filter for a line commutated converter high voltage DC transmission system

机译:用于线路换向转换器高压直流传输系统的系统自适应交流滤波器

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摘要

This paper proposes a novel AC filter system for a line commutated converter high voltage DC (LCC-HVDC) transmission system. Through the coordination of the hybrid active power filters (APF) and the existing reactive compensation devices, the proposed filter system can not only enhance the suppression performance for LCC-HVDC harmonics, but also optimize the AC yard layout with reduced reactive power sub-banks, reducing the cost of HVDC projects. The novel filter system adopts a serial passive resonance topology obtained by careful comparison of different APFs. A proper control scheme is then designed integrating the control strategy of the APF and impedance characteristics of the HVDC system, which is able to realize harmonic suppression and dynamic reactive power support simultaneously. In addition, a novel self-adaption digital low-pass filter algorithm is presented, which is used in the APF harmonic detecting step, enhancing both high precision and fast dynamic response. On the basis of a real HVDC project, the advantages of proposed filter system in harmonic suppression, reactive power regulation, and sub-banks reduction are simulated and demonstrated.
机译:本文提出了一种用于线路换向转换器高压DC(LCC-HVDC)传输系统的新型AC过滤系统。通过配合混合有源电力滤波器(APF)和现有的反应性补偿装置,所提出的滤波器系统不仅可以提高LCC-HVDC谐波的抑制性能,而且还可以通过减少的无功功率子组体优化AC码布局,降低HVDC项目的成本。新颖的过滤系统采用通过仔细比较不同APF而获得的串行被动谐振拓扑。然后设计适当的控制方案,其集成了HVDC系统的APF和阻抗特性的控制策略,其能够同时实现谐波抑制和动态无功功率支持。此外,提出了一种新型的自适应数字低通滤波器算法,其用于APF谐波检测步骤,增强了高精度和快速动态响应。在真实的HVDC项目的基础上,模拟和证明了提出了谐波抑制,无功功率调节和副库减少的过滤系统的优点。

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