首页|基于暂态电流行波突变的LCC-MMC混合双极直流输电纵联方向保护

基于暂态电流行波突变的LCC-MMC混合双极直流输电纵联方向保护

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在直流线路中行波保护作为主保护应用广泛,但行波保护作为单端量的保护具有误动性较高且耐过渡电阻能力较差的缺点.在分析了行波在直流输电系统中传播特性的基础上,根据区内和区外故障时暂态电流行波变化方向的不同提出了一种基于暂态电流行波突变的LCC-MMC混合双极直流输电系统纵联方向保护.若故障时两侧暂态电流行波突变方向相同,则为区内故障,否则为区外故障.通过PSCAD和MATLAB的仿真结果表明,该保护能快速准确地识别故障,并且不受故障类型、过渡电阻以及故障发生位置距离的影响,因此具有一定的实用性.
Longitudinal Directional Protection for LCC-MMC Hybrid Bipolar DC Transmission Based on Transient Current Traveling Wave Mutation
Traveling wave protection is widely used as the main protection in DC lines.However,as a single-ended protection,travel-ing wave protection has the disadvantages of high maloperation and poor resistance to transition resistance.Based on the analysis of the propagation characteristics of traveling wave in DC transmission system,according to the different change directions of transient current traveling wave in internal and external faults,a longitudinal directional protection based on the transient current traveling wave mutation for LCC-MMC hybrid bipolar DC transmission system is proposed in this paper.If the mutation directions of transient current traveling waves on both sides are the same during the fault,it is an internal fault,otherwise it is an external fault.The simula-tion results of PSCAD and MATLAB show that the protection can quickly and accurately identify the faults under different fault types,different fault resistances and different fault location distance,so it has certain practicability.

traveling wave protectionhybrid DC transmissionlongitudinal directional protectiontransient current traveling wave

高淑萍、李元泽、宋国兵、吕宇星、左俊杰、沈渠旺

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西安科技大学电气与控制工程学院,西安 710600

西安交通大学电气工程学院,西安 710049

行波保护 混合直流输电 纵联方向保护 暂态电流行波

国家自然科学基金国家自然科学基金国际(地区)合作与交流项目国家电网总部科技项目

517771665206163510552094020006U

2024

南方电网技术
南方电网科学研究所有限责任公司

南方电网技术

CSTPCD北大核心
影响因子:1.42
ISSN:1674-0629
年,卷(期):2024.18(2)
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