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Fault Line Selection Method Considering Grounding Fault Angle for Distribution Network 被引量:1
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作者 Li Si-bo Zhao Yu-lin +1 位作者 Li Ji-chang Sui Tao 《Journal of Northeast Agricultural University(English Edition)》 CAS 2015年第1期58-65,共8页
In the distribution network system with its neutral point grounding via arc suppression coil, when single-phase grounding fault occurred near zero-crossing point of the phase voltage, the inaccuracy of the line select... In the distribution network system with its neutral point grounding via arc suppression coil, when single-phase grounding fault occurred near zero-crossing point of the phase voltage, the inaccuracy of the line selection always existed in existing methods. According to the characteristics that transient current was different between the fault feeder and other faultless feeders, wavelet transformation was performed on data of the transient current within a power frequency cycle after the fault occurred. Based on different fault angles, wavelet energy in corresponding frequency band was chosen to compare. The result was that wavelet energy in fault feeder was the largest of all, and it was larger than sum of those in other faultless feeders, when the bus broke down, the disparity between each wavelet energy was not significant. Fault line could be selected out by the criterion above. The results of MATLAB/simulink simulation experiment indicated that this method had anti-interference capacity and was feasible. 展开更多
关键词 distribution network single-phase grounding fault fault line selection fault angle wavelet transformation
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Protection of Zero-Sequence Power Variation in Mountain Wind Farm Collector Lines Based on Multi-Mode Grounding
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作者 Hongchun Shu Yaqi Deng +3 位作者 Pulin Cao Jun Dong Hongjiang Rao Zhiqian Bo 《Energy Engineering》 EI 2022年第2期523-538,共16页
The arc-suppression coil(ASC)in parallel low resistance(LR)multi-mode grounding is adopted in the mountain wind farm to cope with the phenomenon that is misoperation or refusal of zero-sequence protection in LR ground... The arc-suppression coil(ASC)in parallel low resistance(LR)multi-mode grounding is adopted in the mountain wind farm to cope with the phenomenon that is misoperation or refusal of zero-sequence protection in LR grounding wind farm.If the fault disappears before LR is put into the system,it is judged as an instantaneous fault;while the fault does not disappear after LR is put into the system,it is judged as a permanent fault;the single-phase grounding fault(SLG)protection criterion based on zerosequence power variation is proposed to identify the instantaneous-permanent fault.Firstly,the distribution characteristic of zero-sequence voltage(ZSV)and zero-sequence current(ZSC)are analyzed after SLGfault occurs in multi-mode grounding.Then,according to the characteristics that zero-sequence power variation of non-fault collector line is small,while the zero-sequence power variation of fault collector line can reflect the active power component of fault resistance,the protection criterion based on zero-sequence power variation is constructed.The theoretical analysis and simulation results show that the protection criterion can distinguish the property of fault only by using the single terminal information,which has high reliability. 展开更多
关键词 Mountain wind farm multi-mode grounding collector line single-phase grounding fault zero-sequence power variation
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Fault protection method of single-phase break for distribution network considering the influence of neutral grounding modes 被引量:30
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作者 Yang Xiao Jinxin Ouyang +2 位作者 Xiaofu Xiong Yutong Wang Yongjie Luo 《Protection and Control of Modern Power Systems》 2020年第1期111-123,共13页
With the rapid development of modern distribution network and the access of distributed generation,the network structure is becoming increasingly complex.Frequent single-phase break faults have seriously affected equi... With the rapid development of modern distribution network and the access of distributed generation,the network structure is becoming increasingly complex.Frequent single-phase break faults have seriously affected equipment and personal safety and stable operation of the power system.However,with the development and application of the composite neutral grounding modes,the protection of single-phase break fault is facing new challenges.This paper proposes a protection method of single-phase break fault for distribution network considering the influence of neutral grounding modes.The characteristics of neutral voltage and sequence current are analyzed under normal operation and single-phase break fault with different grounding modes.Following this,the protection criterion based on neutral voltage and sequence current variation is constructed.The protection method of singlephase break fault for distribution network is proposed,which is applicable for various neutral grounding modes.Theoretical analysis and simulation results show that the protection method is less affected by system asymmetry,fault location and load distribution.The method has higher sensitivity,reliability and adaptability. 展开更多
关键词 Distribution network single-phase break fault Protection Neutral grounding
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Multiple Random Forests Based Intelligent Location of Single-phase Grounding Fault in Power Lines of DFIG-based Wind Farm 被引量:2
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作者 Yongli Zhu Hua Peng 《Journal of Modern Power Systems and Clean Energy》 SCIE EI CSCD 2022年第5期1152-1163,共12页
To address the problems of wind power abandonment and the stoppage of electricity transmission caused by a short circuit in a power line of a doubly-fed induction generator(DFIG) based wind farm, this paper proposes a... To address the problems of wind power abandonment and the stoppage of electricity transmission caused by a short circuit in a power line of a doubly-fed induction generator(DFIG) based wind farm, this paper proposes an intelligent location method for a single-phase grounding fault based on a multiple random forests(multi-RF) algorithm. First, the simulation model is built, and the fundamental amplitudes of the zerosequence currents are extracted by a fast Fourier transform(FFT) to construct the feature set. Then, the random forest classification algorithm is applied to establish the fault section locator. The model is resampled on the basis of the bootstrap method to generate multiple sample subsets, which are used to establish multiple classification and regression tree(CART) classifiers. The CART classifiers use the mean decrease in the node impurity as the feature importance,which is used to mine the relationship between features and fault sections. Subsequently, a fault section is identified by voting on the test results for each classifier. Finally, a multi-RF regression fault locator is built to output the predicted fault distance. Experimental results with PSCAD/EMTDC software show that the proposed method can overcome the shortcomings of a single RF and has the advantage of locating a short hybrid overhead/cable line with multiple branches. Compared with support vector machines(SVMs)and previously reported methods, the proposed method can meet the location accuracy and efficiency requirements of a DFIG-based wind farm better. 展开更多
关键词 Doubly-fed induction generator(DFIG)based wind farm power line multiple random forests(multi-RF) single-phase grounding fault fault location
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基于配电自动化的断线及接地故障处理方法
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作者 田娟 薛鹏飞 +1 位作者 史冀 王钢飞 《电工技术》 2024年第19期91-93,共3页
针对断线故障检测处理方法滞后的问题,提出主干线、支线及配电变压器断线的通用快速检测处理方法。针对小电流接地系统故障接地选线及区段定位困难的问题,提出以接地参数处理接地故障的新方法。经现场试验分析,所提方法简单易行,处理故... 针对断线故障检测处理方法滞后的问题,提出主干线、支线及配电变压器断线的通用快速检测处理方法。针对小电流接地系统故障接地选线及区段定位困难的问题,提出以接地参数处理接地故障的新方法。经现场试验分析,所提方法简单易行,处理故障成功率达100%,具有极大的应用前景和推广价值。 展开更多
关键词 断线故障 接地故障 配电自动化
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小电流接地系统单相断线加接地故障的分析 被引量:25
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作者 张慧芬 潘贞存 桑在中 《继电器》 CSCD 北大核心 2004年第18期6-9,共4页
在6~35kV的中低压配电系统中,单相断线加接地的复杂故障情况时有发生。以负载侧接降压变压器为例,分接地点在断口的电源侧和负载侧两种情况,对这种复杂故障进行了分析,导出了系统各点处电压电流的计算公式,绘出了电压的相量图,得出了... 在6~35kV的中低压配电系统中,单相断线加接地的复杂故障情况时有发生。以负载侧接降压变压器为例,分接地点在断口的电源侧和负载侧两种情况,对这种复杂故障进行了分析,导出了系统各点处电压电流的计算公式,绘出了电压的相量图,得出了一些重要的结论。利用静态模拟线路进行了模拟实验,验证了分析结果的正确性。 展开更多
关键词 小电流接地系统 单相 接地故障 断线 接地点 相量图 电压 降压变压器 电源 负载
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一种中压配电网单相断线接地复故障诊断方法 被引量:7
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作者 李梓畅 刘亚东 +2 位作者 严英杰 王鹏 江秀臣 《电机与控制学报》 EI CSCD 北大核心 2022年第2期43-53,共11页
针对小电流接地配电系统中单相断线接地复合故障(SLGF-LB)隐蔽性高、难以准确识别的问题,为了有效识别单相断线接地复合故障,使用对称分量法分析中压侧单相断线接地复合故障和单相接地故障(SLGF)在配电变压器二次侧出口端的电气特征,提... 针对小电流接地配电系统中单相断线接地复合故障(SLGF-LB)隐蔽性高、难以准确识别的问题,为了有效识别单相断线接地复合故障,使用对称分量法分析中压侧单相断线接地复合故障和单相接地故障(SLGF)在配电变压器二次侧出口端的电气特征,提出一种基于低压侧三相电压幅值的中压配电网单相断线接地复合故障诊断方法。该方法以幅值的平均值区分单相断线接地复合故障和单相接地故障,通过三相电压幅值检测断线故障相,且诊断结果不受过渡电阻、中性点接地方式以及线路长度等网络参数的影响。然后分析了测量误差、电压谐波畸变和分布式电源接入等影响因素所造成的误差,对以上提出的故障诊断算法进行了修正。仿真实验结果表明,无论小电流接地配电网处于任何运行工况下,该算法均能够准确检测单相断线接地复合故障并识别故障相。 展开更多
关键词 配电网 单相断线接地复合故障 单相接地故障 对称分量法 配电变压器 故障诊断
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单相断线坠地故障暂态特征及暂态选线方法适用性 被引量:10
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作者 谢松伟 薛永端 +1 位作者 吴卫堃 徐丙垠 《电力系统自动化》 EI CSCD 北大核心 2022年第2期126-136,共11页
配电线路断线坠地故障发生概率较大,且易引发人身触电、火灾等事故,其与普通单相接地故障的暂态电气量差异及已有暂态选线方法的适用性尚不明确。根据故障边界条件构建了小电流接地系统单相断线坠地故障等值电路,初步分析了理想场景下... 配电线路断线坠地故障发生概率较大,且易引发人身触电、火灾等事故,其与普通单相接地故障的暂态电气量差异及已有暂态选线方法的适用性尚不明确。根据故障边界条件构建了小电流接地系统单相断线坠地故障等值电路,初步分析了理想场景下断线瞬间、接地瞬间暂态零序电压/电流特征,单相断线坠地故障暂态电气量与普通单相接地故障的差异以及已有暂态电流幅值/极性比较、暂态功率方向等选线方法的适用性。仿真结果表明,断线、接地瞬间均存在明显的暂态过程,其暂态特征与普通单相接地故障存在一定差异,但在特征频段内,断线及接地瞬间的暂态电气量约束关系与普通单相接地故障一致,已有暂态选线方法仍然适用,不过利用断线瞬间产生的暂态电气量进行选线灵敏度较低。最后,利用仿真对选线方法的适用性进行了验证。 展开更多
关键词 配电网 小电流接地系统 单相断线坠地故障 暂态特征 暂态选线
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南方电网直流输电系统接地极不平衡保护动作策略分析 被引量:6
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作者 邵震 曹小拐 汲广 《广东电力》 2011年第9期53-57,共5页
接地极线路故障在南方电网所辖云广、天广、高肇及兴安直流输电系统中均有发生,接地极不平衡保护动作策略也经过多次研究和改进。在介绍4条直流输电系统接地极不平衡保护动作策略基础上,对比分析了各条直流输电系统接地极不平衡保护策... 接地极线路故障在南方电网所辖云广、天广、高肇及兴安直流输电系统中均有发生,接地极不平衡保护动作策略也经过多次研究和改进。在介绍4条直流输电系统接地极不平衡保护动作策略基础上,对比分析了各条直流输电系统接地极不平衡保护策略的异同,建议高肇、兴安直流接地极不平衡保护动作重启动策略按照云广、天广直流策略实施。根据单根接地极线路断线故障时的故障特征,建议在单极大地回线方式下发生单根接地极线路断线故障时,接地极不平衡保护动作策略改为直接启动极停运,而不再重启动系统。 展开更多
关键词 接地极不平衡保护 直流输电 单极大地 接地极线路 断线故障
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关于异相接地开断试验的瞬态恢复电压
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作者 刘伯涛 《电网技术》 EI CSCD 北大核心 1997年第2期35-35,40,共2页
通过计算,本文给出了异相接地故障,即其中一相接地发生在断路器侧,而另一相发生在另一侧的瞬态恢复电压参数。
关键词 开断试验 断路器 异相接地 故障
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小电流接地系统中复杂故障的分析
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作者 周斌 《贵州电力技术》 2014年第10期69-70,共2页
在小电流接地系统、单电源输电线路情况下发生接地加断线的复杂故障时,分析了电源侧及负荷侧的各相故障电压的变化情况,并给出两侧各相电压的相量图、具体计算公式,得出一些具有普遍意义的结论。
关键词 小电流接地系统 复杂故障 单相接地 断线
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