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Placement optimization of Multi-Type fault current limiters based on genetic algorithm
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作者 Guofeng Jin Jie Tan +2 位作者 Lingling Liu Chuan Wang Tiejiang Yuan 《Global Energy Interconnection》 EI CAS CSCD 2021年第5期501-512,共12页
The fault current limiter(FCL)is an effective measure for improving system stability and suppressing short-circuit fault current.Because of space and economic costs,the optimum placement of FCLs is vital in industrial... The fault current limiter(FCL)is an effective measure for improving system stability and suppressing short-circuit fault current.Because of space and economic costs,the optimum placement of FCLs is vital in industrial applications.In this study,two objectives with the same dimensional measurement unit,namely,the total capital investment cost of FCLs and circuit breaker loss related to short-circuit currents,are considered.The circuit breaker loss model is developed based on the attenuation rule of the circuit breaker service life.The circuit breaker loss is used to quantify the current-limiting effect to avoid the problem of weight selection in a multi-objective problem.The IEEE 10-generator 39-bus system in New England is used to evaluate the performance of the proposed genetic algorithm(GA)method.Comparative and sensitivity analyses are performed.The results of the optimized plan are validated through simulations,indicating the significant potential of the GA for such optimization. 展开更多
关键词 fault current limiter Genetic algorithm MULTI-OBJECTIVE Circuit breaker loss short-circuit current PLACEMENT
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Single-phase earth fault current distribution between optical fiber composite overhead ground wire and ordinary ground wire in transmission system
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作者 许高雄 《Journal of Chongqing University》 CAS 2011年第2期78-83,共6页
It is important for the safety of transmission system to accurately calculate single-phase earth fault current distribution.Features of double sided elimination method were illustrated.Quantitative calculation of sing... It is important for the safety of transmission system to accurately calculate single-phase earth fault current distribution.Features of double sided elimination method were illustrated.Quantitative calculation of single-phase earth fault current distribution and case verification were accomplished by using the loop method.Influences of some factors,such as single-phase earth fault location and ground resistance of poles,on short-circuit current distribution were discussed.Results show that:1) results of the loop method conform to those of double sided elimination method;2) the fault location hardly influences macro-distribution of short-circuit current.However,current near fault location is evidently influenced;and 3) the short-circuit current distribution is not so sensitive to the ground resistance of poles. 展开更多
关键词 loop method single-phase earth fault short-circuit current distribution optical fiber composite overhead ground wire ordinary ground wire
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Application of thyristor controlled phase shifting transformer excitation impedance switching control to suppress short-circuit fault current level 被引量:14
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作者 Jun LIU Xudong HAO +3 位作者 Xu WANG Yefu CHEN Wanliang FANG Shuanbao NIU 《Journal of Modern Power Systems and Clean Energy》 SCIE EI 2018年第4期821-832,共12页
Short-circuit fault current suppression is a very important issue in modern large-interconnected power networks. Conventional short-circuit current limiters, such as superconducting fault current limiters, have to inc... Short-circuit fault current suppression is a very important issue in modern large-interconnected power networks. Conventional short-circuit current limiters, such as superconducting fault current limiters, have to increase additional equipment investments. Fast power electronics controlled flexible AC transmission system(FACTS)devices have opened a new way for suppressing the fault current levels, while maintaining their normal functionalities for steady-state and transient power system operation and control. Thyristor controlled phase shifting transformer(TCPST) is a beneficial FACTS device in modern power systems, which is capable of regulating regional powerflow. The mathematical model for TCPST under different operation modes is firstly investigated in this study. Intuitively, the phase shifting angle control can adjust the equivalent impedance of TCPST, but the effect has been demonstrated to be weak. Therefore, a novel transformer excitation impedance switching(EIS) control method, is proposed for fault current suppressing, according to the impedance characteristics of TCPST. Simulation results on IEEE 14-bus system have shown considerable current limiting characteristic of the EIS control under various fault types. Also, analysis of the timing requirement during fault interruption, overvoltage phenomenon, and ancillary mechanical support issues during EIS control is discussed,so as to implement the proposed EIS control properly for fast fault current suppression. 展开更多
关键词 Excitation impedance switching(EIS) CONTROL INTERRUPTION time sequence PHASE SHIFTING angle(PSA) CONTROL short-circuit fault current suppression Thyristorcontrolled PHASE SHIFTING transformer(TCPST)
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一种电流突变量选相元件的探讨 被引量:5
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作者 赵洪峰 吐尔逊.依布拉音 晁勤 《继电器》 CSCD 北大核心 2005年第13期6-9,共4页
文中所探讨的相电流突变量选相元件,是利用单相接地故障时,两健全相相间电流突变量为零这一特征来得到的。实际系统故障时,系统正、负序阻抗可能会不相等,使得健全相相间电流突变量不为零,这将对该选相元件产生一定的负面影响。文中给... 文中所探讨的相电流突变量选相元件,是利用单相接地故障时,两健全相相间电流突变量为零这一特征来得到的。实际系统故障时,系统正、负序阻抗可能会不相等,使得健全相相间电流突变量不为零,这将对该选相元件产生一定的负面影响。文中给出了相应的解决办法,并用现场的某次故障录波数据为例来进行验证说明。该选相元件物理意义明确,有较高的灵敏性和可靠性,RTDS试验数据验证了该选相元件的准确性。 展开更多
关键词 线路微机保护 选相元件 相电流突变量
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基于EEMD样本熵的直流牵引网故障电流识别 被引量:1
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作者 冷月 杨洪耕 王智琦 《中国测试》 CAS 北大核心 2016年第12期95-99,共5页
针对地铁直流牵引网的振荡电流容易引起继电保护系统频繁误动的问题,提出一种结合总体平均经验模态分解(ensemble empirical mode decomposition,EEMD)和样本熵的直流牵引网振荡电流与短路故障电流识别方法。利用EEMD方法对直流牵引网... 针对地铁直流牵引网的振荡电流容易引起继电保护系统频繁误动的问题,提出一种结合总体平均经验模态分解(ensemble empirical mode decomposition,EEMD)和样本熵的直流牵引网振荡电流与短路故障电流识别方法。利用EEMD方法对直流牵引网的馈线电流信号进行分解,求取各固有模态函数(intrinsic mode function,IMF)分量的样本熵值,并将计算结果求和,进而获得反映直流牵引网运行状态信息的特征量。通过对典型馈线电流信号进行分析计算,可知EEMD和样本熵相结合的特征提取方法可以有效地区分直流牵引网振荡电流与短路故障电流。算例分析验证该方法的有效性。 展开更多
关键词 短路故障电流 振荡电流 样本熵 总体平均经验模态分解 直流牵引网
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Single-ended Fault Detection Scheme Using Support Vector Machine for Multi-terminal Direct Current Systems Based on Modular Multilevel Converter
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作者 Guangyang Zhou Xiahui Zhang +2 位作者 Minxiao Han Shaahin Filizadeh Zhi Geng 《Journal of Modern Power Systems and Clean Energy》 SCIE EI CSCD 2023年第3期990-1000,共11页
This paper proposes a single-ended fault detection scheme for long transmission lines using support vector machine(SVM)for multi-terminal direct current systems based on modular multilevel converter(MMC-MTDC).The sche... This paper proposes a single-ended fault detection scheme for long transmission lines using support vector machine(SVM)for multi-terminal direct current systems based on modular multilevel converter(MMC-MTDC).The scheme overcomes existing detection difficulties in the protection of long transmission lines resulting from high grounding resistance and attenuation,and also avoids the sophisticated process of threshold value selection.The high-frequency components in the measured voltage extracted by a wavelet transform and the amplitude of the zero-mode set of the positive-sequence voltage are the inputs to a trained SVM.The output of the SVM determines the fault type.A model of a four-terminal DC power grid with overhead transmission lines is built in PSCAD/EMTDC.Simulation results of EMTDC confirm that the proposed scheme achieves 100%accuracy in detecting short-circuit faults with high resistance on long transmission lines.The proposed scheme eliminates mal-operation of DC circuit breakers when faced with power order changes or AC-side faults.Its robustness and time delay are also assessed and shown to have no perceptible effect on the speed and accuracy of the detection scheme,thus ensuring its reliability and stability. 展开更多
关键词 fault detection short-circuit fault multi-terminal direct current systems based on modular multilevel converter support vector machine(SVM) wavelet transform
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Short-circuit fault-tolerant control for five-phase fault-tolerant permanent magnet motors with trapezoidal back-EMF
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作者 Qian Chen Yuhang Xia +2 位作者 Jiabin Wang Wenxiang Zhao Guohai Liu 《Fundamental Research》 CAS 2022年第6期964-973,共10页
When a short-circuit fault occurs in a phase,the faulty phase needs to be removed artificially from the system because of the loss of the capability to generate torque.In this case,both the short-circuit current and p... When a short-circuit fault occurs in a phase,the faulty phase needs to be removed artificially from the system because of the loss of the capability to generate torque.In this case,both the short-circuit current and phase-loss fault would generate additional torque ripples.In this study,a novel fault-tolerant control strategy is introduced to achieve low torque ripple operation of five-phase fault-tolerant permanent magnet synchronous motors with trapezoidal back electromotive force(FTPMSM-TEMF)in the event of a short-circuit fault.The key concept of this method is to compensate for the torque ripples caused by the short-circuit current and the adverse effect of the phase-loss.Based on the torque expression under fault conditions,the torque ripple caused by the short-circuit current can be offset by injecting a certain pulsating component into the torque expression in the phase-loss condition.This would result in smooth operation under fault conditions.Moreover,to track the fault-tolerant alternating currents,the model of the deadbeat current predictive control is extended and restructured for the fault condition.The effectiveness and feasibility of the proposed fault-tolerant strategy are verified by experimental results. 展开更多
关键词 short-circuit fault Five-phase fault-tolerant permanent magnet synchronous motor Trapezoidal back electromotive force fault-TOLERANT Deadbeat current predictive control
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DC Pole-to-Pole Short-Circuit Behavior Analysis of Modular Multilevel Converter 被引量:1
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作者 Zhang Guoju Chen Yao Yue Chengyan 《Electricity》 2014年第4期34-38,共5页
This paper presents the behavior analysis of modular multilevel converter under DC pole-to-pole short-circuit fault, which is an important issue in fault management, electrical system design and MMC based power system... This paper presents the behavior analysis of modular multilevel converter under DC pole-to-pole short-circuit fault, which is an important issue in fault management, electrical system design and MMC based power system protection and control. Firstly, the transient behavior is analyzed and the conduction overlap- ping angle γ, is defined. Secondly, seven possible short-circuit current paths induced by different γ values are identified, and the corresponding engineering short-circuit current calculation methods for both AC and DC sides are proposed. And then, the influences of impedance distribution factor κ and equivalent short-circuit resistance Rsc on short-circuit currents are elaborated the proposed analysis methods. Finally, case study is used to verify the effectiveness of 展开更多
关键词 short-circuit fault management short-circuit current practice calculation modular multilevelconverter (MMC) DC pole-to-pole short-circuit fault
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