Dependability Analysis of the Negative-Sequence Turn-to-Turn Fault Protection Schemes for MMC-HVDC Converter Transformers

IF 5 2区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC International Journal of Electrical Power & Energy Systems Pub Date : 2024-07-16 DOI:10.1016/j.ijepes.2024.110129
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Abstract

This paper addresses two complex areas of research: the detection of turn-to-turn faults (TTF) in power transformers and the impact of inverter-based resources on the TTF protection scheme operation. Detecting turn-to-turn faults in power transformers by protection algorithms poses a challenge due to the minimal fault currents observed at transformer terminals. Yet, the demand for dependable TTF protection is very high because of the high fault currents inside the shorted turns and the resulting damage consequences. On the other hand, for such sensitive protection, adverse conditions such as transformer inrush currents or CT errors may lead to protection maloperation. Moreover, the fault current characteristic of the inverter-based source infeed is very different compared to the synchronous machine infeed, particularly concerning the negative-sequence current used in the TTF protection schemes, which calls for thorough research analysis. A simulation model of the converter transformer capable of simulating TTFs, and the Modular Multilevel Converter (MMC) for a High Voltage Direct Current (HVDC) transmission link, has been developed. The test results of turn-to-turn fault protection schemes in inverter-based generation-dominated power systems compared to the synchronous generator infeed are presented. The negative-sequence current protection quantities are analysed in more detail for TTFs with small and large number of shorted turns, i.e. without and with reactive negative-sequence current injection by the MMC control. Finally, the paper assesses the dependability of the transformer differential protection and sensitive TTF protection schemes in detecting faults with different numbers of shorted turns and fault resistance for TTFs occurring in the star and delta winding of the converter transformer.

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MMC-HVDC 变流器变压器负序匝间故障保护方案的可靠性分析
本文涉及两个复杂的研究领域:电力变压器匝间故障 (TTF) 的检测和基于逆变器的资源对 TTF 保护方案运行的影响。由于在变压器终端观察到的故障电流极小,因此保护算法检测电力变压器中的匝间故障是一项挑战。然而,由于短路匝内的故障电流很大,会造成损坏,因此对可靠的 TTF 保护的要求非常高。另一方面,对于如此敏感的保护,变压器冲击电流或 CT 误差等不利条件都可能导致保护误动作。此外,与同步机进线相比,基于逆变器的源进线的故障电流特性有很大不同,特别是 TTF 保护方案中使用的负序电流,这就需要进行深入的研究分析。我们开发了一个能够模拟 TTF 的变流器变压器仿真模型,以及用于高压直流 (HVDC) 输电链路的模块化多电平变流器 (MMC)。介绍了逆变器发电主导型电力系统与同步发电机馈电相比的匝间故障保护方案的测试结果。本文更详细地分析了具有少量和大量短路匝数的 TTF 的负序电流保护量,即不采用 MMC 控制的无功负序电流注入和采用 MMC 控制的无功负序电流注入。最后,本文评估了变压器差动保护和敏感 TTF 保护方案在检测变流器变压器星形和三角形绕组中发生的不同短路匝数和故障电阻的 TTF 故障时的可靠性。
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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来源期刊
International Journal of Electrical Power & Energy Systems
International Journal of Electrical Power & Energy Systems 工程技术-工程:电子与电气
CiteScore
12.10
自引率
17.30%
发文量
1022
审稿时长
51 days
期刊介绍: The journal covers theoretical developments in electrical power and energy systems and their applications. The coverage embraces: generation and network planning; reliability; long and short term operation; expert systems; neural networks; object oriented systems; system control centres; database and information systems; stock and parameter estimation; system security and adequacy; network theory, modelling and computation; small and large system dynamics; dynamic model identification; on-line control including load and switching control; protection; distribution systems; energy economics; impact of non-conventional systems; and man-machine interfaces. As well as original research papers, the journal publishes short contributions, book reviews and conference reports. All papers are peer-reviewed by at least two referees.
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