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Fluid-chemical modeling of the near-cathode sheath formation process in a high current broken in DC air circuit breaker
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作者 彭世东 李静 +3 位作者 段薇 曹云东 刘树鑫 黄浩 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第1期523-538,共16页
When the contacts of a medium-voltage DC air circuit breaker(DCCB) are separated, the energy distribution of the arc is determined by the formation process of the near-electrode sheath. Therefore, the voltage drop thr... When the contacts of a medium-voltage DC air circuit breaker(DCCB) are separated, the energy distribution of the arc is determined by the formation process of the near-electrode sheath. Therefore, the voltage drop through the near-electrode sheath is an important means to build up the arc voltage, which directly determines the current-limiting performance of the DCCB. A numerical model to describe the near-electrode sheath formation process can provide insight into the physical mechanism of the arc formation, and thus provide a method for arc energy regulation. In this work, we establish a two-dimensional axisymmetric time-varying model of a medium-voltage DCCB arc when interrupted by high current based on a fluid-chemical model involving 16 kinds of species and 46 collision reactions. The transient distributions of electron number density, positive and negative ion number density, net space charge density, axial electric field, axial potential between electrodes, and near-cathode sheath are obtained from the numerical model. The computational results show that the electron density in the arc column increases, then decreases, and then stabilizes during the near-cathode sheath formation process, and the arc column's diameter gradually becomes wider. The 11.14 V–12.33 V drops along the17 μm space charge layer away from the cathode(65.5 k V/m–72.5 k V/m) when the current varies from 20 k A–80 k A.The homogeneous external magnetic field has little effect on the distribution of particles in the near-cathode sheath core,but the electron number density at the near-cathode sheath periphery can increase as the magnetic field increases and the homogeneous external magnetic field will lead to arc diffusion. The validity of the numerical model can be proven by comparison with the experiment. 展开更多
关键词 near-cathode sheath atmospheric pressure air arc fluid-chemical model high current dc air circuit breaker(dccb)
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A Fault Current Limiting Hybrid DC Circuit Breaker 被引量:1
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作者 Lei Huang Qian Zhang +1 位作者 Wenlei Liu Ruixue Liu 《Energy Engineering》 EI 2022年第2期621-636,共16页
Due to the low impedance characteristic of the high voltage direct current(HVDC)grid,the fault current rises extremely fast after a DC-side fault occurs,and this phenomenon seriously endangers the safety of the HVDC g... Due to the low impedance characteristic of the high voltage direct current(HVDC)grid,the fault current rises extremely fast after a DC-side fault occurs,and this phenomenon seriously endangers the safety of the HVDC grid.In order to suppress the rising speed of the fault current and reduce the current interruption requirements of the main breaker(MB),a fault current limiting hybrid DC circuit breaker(FCL-HCB)has been proposed in this paper,and it has the capability of bidirectional fault current limiting and fault current interruption.After the occurrence of the overcurrent in the HVDC grid,the current limiting circuit(CLC)of FCL-HCB is put into operation immediately,and whether the protected line is cut off or resumed to normal operation is decided according to the fault detection result.Compared with the traditional hybrid DC circuit breaker(HCB),the required number of semiconductor switches and the peak value of fault current after fault occurs are greatly reduced by adopting the proposed device.Extensive simulations also verify the effectiveness of the proposed FCL-HCB. 展开更多
关键词 Fault current limiting hybrid dc circuit breaker(FCL-Hcb) high voltage direct current(HVdc)grid fault current limiting fault current interruption dc circuit breaker
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Direct Current Circuit Breaker in EAST
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作者 宋执权 傅鹏 《Plasma Science and Technology》 SCIE EI CAS CSCD 2006年第4期481-484,共4页
This paper introduces the configuration and the operation principles of a high power direct current circuit breaker (DCCB). The commutating current principle of the breaker is described in details with its theory an... This paper introduces the configuration and the operation principles of a high power direct current circuit breaker (DCCB). The commutating current principle of the breaker is described in details with its theory and simulation analysis. The test results presented show that the DCCB meets the requirements for quenching protection. It will be used as the main breaker for quench protection in EAST. 展开更多
关键词 direct current circuit breaker insulator recovery time commutating current contact
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Research on Parameter Collaborative Configuration of DC Circuit Breaker and DC Fault Current Limiter
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作者 Lu Qu Zhanqing Yu Zhichang Yuan 《Journal of Power and Energy Engineering》 2019年第9期80-93,共14页
Fault current suppression is the key technology to ensure the safe operation of the DC power distribution system. In order to realize the parameter collabora-tive configuration of the DC circuit breaker and the DC cur... Fault current suppression is the key technology to ensure the safe operation of the DC power distribution system. In order to realize the parameter collabora-tive configuration of the DC circuit breaker and the DC current limiter and improve the fault current suppression capability, the fault current suppression mechanism of the DC power distribution system is revealed based on the circuit model. Then, based on the mathematical model of the DC breaker, the characteristic parameters of DC breaking are extracted, and then the influence of different characteristic parameters on the breaking characteristics of fault current is studied. Finally, the mathematical model of the collaborative process between DC circuit breaker and DC current limiter is established. The charac-teristic parameters of fault current collaborative suppression are extracted. The coupling effects of different characteristic parameters on the fault current col-laborative suppression are studied. The principle of collaborative configuration of DC circuit breaker and DC current limiter is proposed, and the collaborative suppression ability of DC circuit breaker and DC current limiter to fault current is fully exploited to ensure the safe and reliable operation of the DC power distribution system. 展开更多
关键词 dc Power Distribution System FAULT current dc circuit breaker dc current LIMITER
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Vacuum Dielectric Recovery Characteristics of a Novel Current Limiting Circuit Breaker Base on Artificial Current Zero 被引量:20
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作者 JIANG Zhuangxian ZHUANG Jinwu WANG Chen WU Jin LIU Luhui 《中国电机工程学报》 EI CSCD 北大核心 2012年第13期I0021-I0021,204,共1页
为了保证新型强迫换流型真空直流限流断路器关断短路电流的可靠性,对该型断路器分断过程的真空介质恢复特性进行研究。设计了与断路器关断过程等效的介质恢复试验方案,通过等效试验结果和理论推演公式的拟合,得到了新型强迫换流型限... 为了保证新型强迫换流型真空直流限流断路器关断短路电流的可靠性,对该型断路器分断过程的真空介质恢复特性进行研究。设计了与断路器关断过程等效的介质恢复试验方案,通过等效试验结果和理论推演公式的拟合,得到了新型强迫换流型限流断路器真空灭弧室触头打开过程的动态介质强度恢复规律。研究结果表明:减小燃弧能量、提高触头运动速度可提高真空灭弧室介质的临界击穿电压;综合考虑燃弧时间与燃弧能量及触头开距的关系,随着燃弧时间的增加,真空灭弧室临界击穿电压先减小后增大。所得介质恢复规律可以作为新型断路器优化设计的参考依据。 展开更多
关键词 零电流开关 电路断路器 限流断路器 真空灭弧室 恢复特性 介质 人工 直流电气系统
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Research on arc root stagnation when small current is interrupted in self-excited circuit breaker 被引量:4
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作者 Shidong PENG Jing LI +2 位作者 Yundong CAO Chongyang HUANG Shuxin LIU 《Plasma Science and Technology》 SCIE EI CAS CSCD 2022年第11期14-25,共12页
The self-excited DC air circuit breaker(SE-DCCB)has been widely used in urban rail transit due to its excellent stability.It can realize forward and reverse interruption,but has difficulty interrupting small currents ... The self-excited DC air circuit breaker(SE-DCCB)has been widely used in urban rail transit due to its excellent stability.It can realize forward and reverse interruption,but has difficulty interrupting small currents due to the phenomenon of arc root sticking at the entrance of the arc chamber in the splitting process,which is known as arc root stagnation.A coupling model of the self-excited magnetic field and magnetohydrodynamics is established for the SE-DCCB with the traditional structure.The magnetic field,temperature and airflow distribution in the arc chamber are investigated with an interrupting current of 150 A.The simulation results show that the direction and magnitude of the magnetic blowout force are the dominant factors in the arc root stagnation.The local high temperature of the arc chamber due to arc root stagnation increases the obstruction effect of the airflow vortex on the arc root movement,which significantly increases the arc duration time of small current interruption.Based on the research,the structure of the magnetic conductance plate of the actual product is improved,which can improve the direction and magnitude of the magnetic blowout force at the arc root so as to restrain the development of the airflow vortex effectively and solve the problem of arc root stagnation when the small current is interrupted.The simulation results show that the circuit breaker with improved structure has a better performance for a small current interruption range from 100 A to 350 A. 展开更多
关键词 self-excited dc air circuit breaker small current interruption magnetic blowout force arc root stagnation airflow vortex
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Influence of dc Component during Inadvertent Operation of the High Voltage Generator Circuit Breaker during Mis-Synchronization 被引量:2
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作者 Kadri Kadriu Ali Gashi +2 位作者 Ibrahim Gashi Ali Hamiti Gazmend Kabashi 《Energy and Power Engineering》 2013年第3期225-235,共11页
This paper analyses the synchronization problem of a generator onto power system without satisfying synchronization condition. The main focus of the paper is on the impact of the dc component of the current in the hig... This paper analyses the synchronization problem of a generator onto power system without satisfying synchronization condition. The main focus of the paper is on the impact of the dc component of the current in the high voltage circuit breaker during its close-open operating cycle. Using real time measurements of currents/voltages and angles during the close-opening cycle of high voltage generator circuit breaker and the impact of the dc component of current in context of interrupting large magnitude of current from the circuit breaker. In addition, the paper describes a study case model and the results of simulations performed using the software EMTP-ATP of an actual incident that occurred during the inadvertent synchronization of a large 339 MW, 24 kV generator to the grid. 展开更多
关键词 High Voltage GENERATOR circuit breaker dc Component of current ASYNCHRONOUS Connection Delay current ZERO
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Solid-state Circuit Breaker Based on Cascaded Normally-on SiC JFETs for Medium-voltage DC Distribution Networks
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作者 Dong He Haohui Zhou +4 位作者 Zheng Lan Wei Wang Jinhui Zeng Xueping Yu Z.John Shen 《Protection and Control of Modern Power Systems》 SCIE EI 2024年第2期32-46,共15页
Solid-state circuit breakers(SSCBs)are critical components in the protection of medium-voltage DC distribution networks to facilitate arc-free,fast and reliable isolation of DC faults.However,limited by the capacity o... Solid-state circuit breakers(SSCBs)are critical components in the protection of medium-voltage DC distribution networks to facilitate arc-free,fast and reliable isolation of DC faults.However,limited by the capacity of a single semiconductor device,using semi-conductor-based SSCBs at high voltage is challenging.This study presents the details of a 1.5 kV,63 A medi-um-voltage SSCB,composed primarily of a solid-state switch based on three cascaded normally-on silicon car-bide(SiC)junction field-effect transistors(JFETs)and a low-cost programmable gate drive circuit.Dynamic and static voltage sharing among the cascaded SiC JFETs of the SSCB during fault isolation is realized using the pro-posed gate drive circuit.The selection conditions for the key parameters of the SSCB gate driver are also analyzed.Additionally,an improved pulse-width modulation cur-rent-limiting protection solution is proposed to identify the permanent overcurrent and transient inrush current associated with capacitive load startup in a DC distribu-tion network.Using the developed SSCB prototype and the fault test system,experimental results are obtained to validate the fault response performance of the SSCB.Index Terms—Solid-state circuit breaker,DC distribu-tion network,SiC JFET,voltage balancing,inrush current. 展开更多
关键词 Solid-state circuit breaker dc distribu-tion network SiC JFET voltage balancing inrush current
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直流故障下MMC-HVDC的两段式限流保护策略 被引量:2
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作者 肖磊石 卢启付 +4 位作者 冉旺 邓威 郭润田 王培虎 石泉 《广东电力》 2023年第5期58-66,共9页
如何对直流故障电流进行有效抑制是实现柔性直流电网大规模发展的关键。为此,研究模块化多电平变换器(modular multilevel converter,MMC)的控制方法,提出一种针对半桥型MMC的两段式限流保护策略,通过减少子模块的投入数目来降低换流站... 如何对直流故障电流进行有效抑制是实现柔性直流电网大规模发展的关键。为此,研究模块化多电平变换器(modular multilevel converter,MMC)的控制方法,提出一种针对半桥型MMC的两段式限流保护策略,通过减少子模块的投入数目来降低换流站直流出口电压,达到限制短路电流的目的。首先,介绍MMC的拓扑结构及基于MMC的高压直流输电(MMC based high voltage direct current,MMC-HVDC)系统控制策略;其次,分析两段式限流保护策略的原理与直流故障电流特性,介绍MMC-HVDC系统的直流故障保护策略;最后,通过双端MMC-HVDC系统仿真实验,对所提限流保护策略的有效性进行验证。仿真结果表明,两段式限流保护策略可以有效降低断路器开断电流和吸收能量,节约成本。 展开更多
关键词 直流电网 模块化多电平变换器 直流故障 限流控制 直流断路器
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基于钳位型断路器的柔直系统控保协同技术
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作者 薛士敏 陈文杰 +3 位作者 张君婷 李翔宇 李博通 陈晓龙 《天津大学学报(自然科学与工程技术版)》 EI CAS CSCD 北大核心 2024年第7期729-740,共12页
柔性直流系统以其在输电领域的巨大优势而获得广泛应用.但在直流系统中,短路故障的强冲击性与电力电子器件的脆弱性之间的矛盾异常尖锐,现有保护策略难以同时满足高速动性与高可靠性的要求.本文从控保协同思想出发,基于一种电压钳位原... 柔性直流系统以其在输电领域的巨大优势而获得广泛应用.但在直流系统中,短路故障的强冲击性与电力电子器件的脆弱性之间的矛盾异常尖锐,现有保护策略难以同时满足高速动性与高可靠性的要求.本文从控保协同思想出发,基于一种电压钳位原理的直流断路器,提出一种新的故障处理模式,初步探究在柔直系统中控制与保护深度融合的可能性.当发生短路故障时,投入断路器和换流器相配合的限流功能,一方面限制电力电子器件的过流,解决其脆弱性问题;另一方面为保护提供边界,辅助实现故障的快速定位.在甄别出故障线路后,利用断路器的故障切除功能将故障隔离.此方案同时实现了故障限流、保护边界和故障切除3项功能,可有效缓减由于模块化多电平换流器(modular multilevel converter,MMC)器件脆弱性所带来的一系列保护问题.在PSCAD/EMTDC中搭建四端双极柔性直流电网模型,仿真结果表明,本控保协同方案能在5 ms内准确识别并隔离故障线路,而且具有较强的耐受过渡电阻能力. 展开更多
关键词 柔性直流系统 控保协同 直流断路器 故障限流 故障定位
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基于反激变换器的电池充电系统设计
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作者 孙帅 付婷婷 宋小娜 《电池》 CAS 北大核心 2024年第4期537-541,共5页
以具有结构简单、电气隔离等优点的反激变换器为电池充电电源,分析反激变换器电路的连续和断续模式工作原理,通过设计电压电流双闭环控制方法,实现电池的恒流充电模式和恒电压充电模式,也可实现两种充电模式的切换。实验结果证明了反激... 以具有结构简单、电气隔离等优点的反激变换器为电池充电电源,分析反激变换器电路的连续和断续模式工作原理,通过设计电压电流双闭环控制方法,实现电池的恒流充电模式和恒电压充电模式,也可实现两种充电模式的切换。实验结果证明了反激变换器的连续工作模式和断续工作模式的正确性,验证了应用于电池充电电源的可行性和有效性,切换时间小于1 ms,电压波动小于1 V。 展开更多
关键词 直流(dc)-dc电路 反激变换器 连续模式 断续模式 电压电流双闭环 恒流充电 恒电压充电 电池充电系统
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真空与气体一体化串联机械开关及其直流快速转移应用
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作者 程显 白青林 +2 位作者 葛国伟 陈鸿源 杜帅 《电工技术学报》 EI CSCD 北大核心 2024年第5期1464-1473,共10页
为提升中压混合式直流断路器的自然换流性能,该文提出一种真空与气体一体化串联机械开关,分析真空与气体一体化串联用于电流转移性能的工作原理。并基于此设计了双超程联动的真空与气体一体化串联开关实验样机,研究了气体类型、气压、... 为提升中压混合式直流断路器的自然换流性能,该文提出一种真空与气体一体化串联机械开关,分析真空与气体一体化串联用于电流转移性能的工作原理。并基于此设计了双超程联动的真空与气体一体化串联开关实验样机,研究了气体类型、气压、触头结构、触头材料等参数对电弧电压特性的影响规律,确定了W70Cu桥式两触点结构,采用H2和N2体积比为2:3、气压为0.3 MPa的氢氮混合气体,弧压可由20 V提升到120 V,电流转移时间由1 900μs缩短至300μs。同时测试了静态瞬态开断电压(TIV)分布特性,真空间隙承担主要电压(55%),串联整机耐压水平为20 kV。验证了真空与气体一体化串联开关应用于中压混合式直流断路器的可行性和有效性。 展开更多
关键词 真空与气体串联 中压混合式直流断路器 弧压特性 电流转移特性 电压分布特性
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一种可选择中断的混合式直流断路器拓扑
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作者 吴铁洲 方畅 陈子奇 《电子器件》 CAS 2024年第4期981-986,共6页
传统的混合式直流断路器应对瞬时性故障时必须先切断故障电流,再进行重合闸,会造成短暂性的电能供应中断。对此,提出一种适用于中压直流的可选择中断混合式直流断路器拓扑。该断路器可根据不同的故障类型选择运行方式,在与主导通支路串... 传统的混合式直流断路器应对瞬时性故障时必须先切断故障电流,再进行重合闸,会造成短暂性的电能供应中断。对此,提出一种适用于中压直流的可选择中断混合式直流断路器拓扑。该断路器可根据不同的故障类型选择运行方式,在与主导通支路串联的桥式结构中增加电容和限流电感抑制故障的电流上升,并储存能量,通过释能电阻对能量进行释放。对所提出的拓扑进行工作过程和理论分析。在单端直流等效系统中进行仿真验证,该结构在应对永久性短路故障时,可在9 ms内切除故障;应对瞬时性故障时,可使系统在不中断电流的情况下恢复正常运行,并释放故障时产生的能量。仿真结果验证了该拓扑的优越性。 展开更多
关键词 混合式直流断路器 永久性故障 瞬时性故障 可选择中断
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Modular Reciprocating HVDC Circuit Breaker with Current-limiting and Bi-directional Series-parallel Branch Switching Capability 被引量:5
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作者 Jianzhong Xu Moke Feng Chengyong Zhao 《Journal of Modern Power Systems and Clean Energy》 SCIE EI CSCD 2020年第4期778-786,共9页
The high-voltage direct current(HVDC)circuit breaker is becoming popular with the rapid development of the flexible HVDC grid for efficient DC fault ride-through purposes.This paper proposes a novel module for recipro... The high-voltage direct current(HVDC)circuit breaker is becoming popular with the rapid development of the flexible HVDC grid for efficient DC fault ride-through purposes.This paper proposes a novel module for reciprocating HVDC circuit breaker topology,whose branch connections are able to switch between series and parallel modes to limit the rising rate and interrupt the DC fault currents.Diode-bridge submodules(DBSMs)are used to compose the main branch for current interruption.Besides fault clearance,the proposed topology has the advantageous function of DC fault current limiting by employing DBSMs with bi-directional conduction capability.The topology can easily switch among branch connection modes through the assembled trans-valves,and their resistance and reactance are very small in the normal state when branches are in parallel and the values become promptly large in the transient state when the branches are series connected.With the modular design,it is easy to change the number of branches or sub-modules and the types of sub-modules to adapt to more specific needs.A 6-terminal modular multi-level converter(MMC)based HVDC grid is established in PSCAD/EMTDC,and various simulation scenarios are carried out to validate the proposed topology. 展开更多
关键词 Reciprocating current limiting direct current circuit breaker(dccb) diode-bridge sub-module(DBSM) series and parallel branches dc fault clearance
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基于低压直流断路器的机械故障机理分析与特征提取技术研究 被引量:1
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作者 叶奕君 郭嘉俊 +7 位作者 张子健 吕文杰 艾泽光 崔鹏 谭佳明 杨爱军 王小华 荣命哲 《高压电器》 CAS CSCD 北大核心 2024年第2期26-37,共12页
直流断路器是轨道交通直流牵引供电系统的核心保护设备,是直流供电系统安全运行的保证,确保其稳定运行至关重要。文中针对直流牵引断路器机械结构特点,进行了断路器机械故障模拟实验,选取分合闸线圈电流及振动信号作为监测物理量,研究... 直流断路器是轨道交通直流牵引供电系统的核心保护设备,是直流供电系统安全运行的保证,确保其稳定运行至关重要。文中针对直流牵引断路器机械结构特点,进行了断路器机械故障模拟实验,选取分合闸线圈电流及振动信号作为监测物理量,研究其机械故障机理与特征提取方法。研制信号采集硬件装置,搭建直流断路器机械故障模拟实验平台,模拟6种常见的机械故障。采集不同故障下的线圈电流及振动信号进行特征提取后进行故障机理分析,为低压直流断路器机械故障诊断提供理论支撑。 展开更多
关键词 直流断路器 机械故障 电流信号 振动信号 特征提取
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计及柔性限流装置与直流断路器协同动作的电弧抑制暂态特性研究 被引量:1
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作者 郑峰 王威东 +2 位作者 刘宝谨 刘莞玲 梁宁 《电力系统保护与控制》 EI CSCD 北大核心 2024年第2期59-69,共11页
直流系统的故障隔离是保证直流系统稳定运行的重要技术。针对传统故障隔离策略对直流断路器(direct current circuit breaker, DCCB)的性能要求较高的问题,提出了一种利用柔性限流装置(flexible current limiting device,FCLD)与DCCB协... 直流系统的故障隔离是保证直流系统稳定运行的重要技术。针对传统故障隔离策略对直流断路器(direct current circuit breaker, DCCB)的性能要求较高的问题,提出了一种利用柔性限流装置(flexible current limiting device,FCLD)与DCCB协同动作的故障隔离策略。首先,研究了直流系统永久性故障和瞬时性故障情况下FCLD与DCCB的协同作用机理。其次,分析考虑FCLD电流抑制作用下DCCB开断过程的电弧暂态特性。最后,在Matlab/Simulink平台中进行仿真,验证所提协同策略的可行性。结果表明:FCLD可有效抑制DCCB的开断电弧;基于所提故障隔离策略,直流系统可在瞬时故障情况下实现平稳穿越,永久故障情况下实现DCCB的无弧开断。该策略降低了直流系统故障隔离过程中对DCCB的开断要求,提升了直流系统的故障穿越能力。 展开更多
关键词 直流系统 柔性限流装置 直流断路器 故障隔离策略 协同配合
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具备故障限流和快速故障清除能力的多端口直流断路器拓扑与控制策略
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作者 黄云峰 肖晃庆 +2 位作者 黄莹 杨苹 张勇军 《高电压技术》 EI CAS CSCD 北大核心 2024年第5期2128-2145,I0033-I0037,共23页
为解决直流电网中直流故障快速清除的技术难题,提出了一种同时具备限流和快速故障清除能力的多端口直流断路器,并设计了启动、限流后开断线路和限流后复位3种控制策略。所提拓扑结构通过限流电路实现断路时刻电流值的大幅下降,通过电感... 为解决直流电网中直流故障快速清除的技术难题,提出了一种同时具备限流和快速故障清除能力的多端口直流断路器,并设计了启动、限流后开断线路和限流后复位3种控制策略。所提拓扑结构通过限流电路实现断路时刻电流值的大幅下降,通过电感旁路电路实现故障清除所需时间的缩短;所提控制策略通过复用拓扑部分回路实现直流电网对断路器电容的预充电,通过初步故障判断与二次确认方式来优化断路器的动作时序,实现断路时刻电流值的进一步下降。在PSCAD/EMTDC中搭建了三端直流电网仿真模型,对断路器的各种工况进行了仿真验证。结果表明该多端口直流断路器在各工况下均可实现多条直流线路的保护、减小断路时刻电流值和减小故障切除所需时间。 展开更多
关键词 直流电网 多端口 直流断路器 H桥 限流 直流故障
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多端VSC-HVDC直流线路故障限流及限流特性分析 被引量:40
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作者 刘剑 邰能灵 +2 位作者 范春菊 郑晓冬 唐跃中 《中国电机工程学报》 EI CSCD 北大核心 2016年第19期5122-5133,5393,共13页
基于电压源型换流器(voltage source converters,VSC)的多端柔性直流系统中直流线路的故障电流上升速度快、电流峰值大。然而具有大容量、快切断能力的高压直流断路器正在研制中。结合目前直流断路器开断容量水平,该文提出通过在直流线... 基于电压源型换流器(voltage source converters,VSC)的多端柔性直流系统中直流线路的故障电流上升速度快、电流峰值大。然而具有大容量、快切断能力的高压直流断路器正在研制中。结合目前直流断路器开断容量水平,该文提出通过在直流线路两端串入限流电路的方法来限制故障电流的峰值和电流的上升速度率,并给出相关参数的理论计算方法。对该电路的限流特性进行分析与对比,结果表明,该限流电路能有效抑制故障电流,降低了对直流断路器开断容量和开断速度的要求。在该限流电路的基础上,提出一种多端VSC-HVDC直流线路故障处理方案。仿真分析表明,该故障处理方案能够有效抑制直流线路故障电流以及IGBT并联二极管电流,故障切除后非故障系统能保持正常运行,可以有效地增强多端VSC-HVDC系统对直流线路故障的处理能力。 展开更多
关键词 多端高压直流系统 故障限流 故障处理 故障恢复 电容放电
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自触型低压混合式直流断路器系统设计与开断特性研究
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作者 张照资 高偲智 +3 位作者 汪倩 陈思磊 葛世伟 李兴文 《中国电机工程学报》 EI CSCD 北大核心 2024年第11期4544-4555,I0032,共13页
低压混合式直流断路器具有低功耗、高开断性能、选择性保护等优点,能更好地满足光伏和储能系统以及零碳建筑等应用需求。该文提出一种自触型低压混合式直流开关拓扑,首先通过对混合式断路器工作原理分析,建立基于电弧供能、驱动的机电... 低压混合式直流断路器具有低功耗、高开断性能、选择性保护等优点,能更好地满足光伏和储能系统以及零碳建筑等应用需求。该文提出一种自触型低压混合式直流开关拓扑,首先通过对混合式断路器工作原理分析,建立基于电弧供能、驱动的机电系统耦合设计方法,该方法利用电弧能量为电子电路供能,并将电弧电压作为换流支路导通的控制信号,从而实现短路故障下系统的自动触发,并提出核心功能模块设计的理论依据。在此基础上,研制低压混合式断路器样机并验证设计方案的有效性,并对比分析不同因素对开断特性的影响规律。试验表明,相较于传统机械开关,小电流开断时间缩短85.4%、电弧能量减少94.1%,提升了断路器电气寿命,同时实现1.1 kA短路电流开断,发现系统总体响应时间与燃弧初期电压上升速率成正相关,电弧电导、支路寄生电感增大均会延长换流时间,电弧重燃概率则主要受外部系统参数影响。结果可为低压直流混合式断路器的优化设计和性能提升提供一定参考。 展开更多
关键词 低压直流系统 混合式断路器 断路器寿命 小电流开断 短路开断
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混合式直流断路器内部关键参数对电弧电流转移特性的影响研究
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作者 王德全 王汝凡 +3 位作者 邱军 冯泽铭 段雄英 廖敏夫 《高压电器》 CAS CSCD 北大核心 2024年第3期193-200,共8页
真空电弧电流转移是自然换流型混合式直流断路器开断过程中的一个重要组成部分。文中通过建立真空电弧电流转移的理论分析模型,得出影响真空电弧电流转移的主要因素为真空电弧电压、内部杂散电阻电感参数和电力电子器件的串并联结构。... 真空电弧电流转移是自然换流型混合式直流断路器开断过程中的一个重要组成部分。文中通过建立真空电弧电流转移的理论分析模型,得出影响真空电弧电流转移的主要因素为真空电弧电压、内部杂散电阻电感参数和电力电子器件的串并联结构。实验方面,通过改变电力电子开关中电力电子器件的串联或并联个数研究了电力电子器件的串并联结构对真空电弧电流转移特性的影响,通过改变电力电子开关中杂散电感或电阻的数值和所处位置研究了内部杂散电阻电感参数对真空电弧电流转移特性的影响。最后,探究了促进电弧电流转移的方法。本研究将为混合式直流断路器的结构设计和参数优化提供理论依据。 展开更多
关键词 混合式直流断路器 电弧电流转移 真空电弧电压 杂散参数
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