共查询到19条相似文献,搜索用时 843 毫秒
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运用超导电力技术研发的超导限流器与电力系统传统的限流装置相比,具有显著的优势,其中饱和铁芯型超导限流器SCFCL(saturated core superconducting fault current limiter)结构简单且具有良好的短路电流限制作用,在其保障电网中电气设备安全运行的同时对系统的暂态稳定性产生了相应影响.通过分析饱和铁芯型超导限流器工作原理在PSCAD/EMTDC中建立其电磁暂态模型,接入到IEEE 3机9节点典型网络中进行时域仿真,观察不同类型故障情况下的功角摆动曲线,分析饱和铁芯型超导限流器的投入对电力系统暂态稳定的有利和不利影响,为饱和铁芯型超导限流器在电网里的应用提供理论参考. 相似文献
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饱和铁心型超导限流器具有限流功能可靠、输电稳态损耗小、限流恢复时间短等优异特性。根据其工作原理,一方面,用于直流励磁的超导绕组自身不承受短路电流冲击,这避免了其它类型超导限流器中由于超导绕组失超所带来的诸多技术难题;另一方面,其主体电抗器可以借鉴成熟的铁心电抗器技术。因此,饱和铁心型超导限流器的以其优异的性能特性和成熟的工程实现技术,成为迄今为止人们研究的各类超导限流器中的最具实用价值的一种。在电网容量不断扩大,智能化水平不断提高的今天,饱和铁心型超导限流器有非常广阔的应用前景。文中将叙述饱和铁心型超导限流器的基本原理、结构形式、功能特性,并对已在云南普吉变电站挂网运行的35kV/90MVA超导限流器进行简要介绍。 相似文献
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饱和铁芯型超导限流器SCFCL(Saturated Core Superconducting Fault Current Limiter)是一种较为理想的高电压限流器,利用其技术特点可以实现无时限的明显限流作用,有着广泛的运用前景。距离保护能够很好的满足高电压复杂网络快速、精确切除故障的要求,其主要元件阻抗继电器是现阶段普遍应用的高性能继保装置。SCFCL在高压输电网络的接入会对距离保护产生很大影响,运用PSCAD搭建500kV输电线路模型,详细分析限流器接入前后不同短路故障类型及故障距离对线路距离保护的影响。 相似文献
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超导故障限流器的研究现状及其应用 总被引:1,自引:0,他引:1
超导故障限流器(Superconducting Fault Current Limiter,SFCL)是利用超导体的基本特性,有效限制电力系统故障短路电流,提高电网安全性和稳定性的一种新型电力设备。文中在综合大量文献的基础上,对超导故障限流器进行了一种较为系统的分类。基于该种分类,结合目前国内外的研究现状,就电阻型、磁屏蔽型、饱和铁芯电抗器型、桥路型SFCL的工作原理作了详细的分析介绍,还给出了它们在电力系统中的安装位置。最后,对超导故障限流器的研究中存在的问题及其发展趋势做了说明。 相似文献
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随着电网规模的增大和拓扑结构的日益复杂,短路故障电流持续攀升,超导限流器是最理想的短路故障电流限制装置,电力系统正常运行时,超导限流器的阻抗为零,对电力系统运行无影响,当电力系统发生短路,故障电流超过超导体临界电流,超导体失超呈现大阻抗限制短路故障电流.超导故障限流器无论是哪种限流原理,在限流的故障过程中总会有阻抗元件串入到系统中,从而使得电网参数发生变化,对继电保护产生影响.本文通过研究混合型超导限流器对距离保护的影响,借助于微机保护的快速实时特性,对线路距离保护的整定算法作相应的修改,解决混合型超导限流器与电网距离保护的配合问题. 相似文献
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文中总结了几种超导故障限流器的模型。在数学模型的基础上 ,阐述了超导材料的温升、失超传播速度和临界电流密度对超导故障限流器性能的影响 相似文献
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本文的磁偏置高温超导故障限流器(SFCL)是一种新型超导限流器,在系统出现短路故障时,发生失超现象,产生高阻抗限制短路电流,达到一定时间后断开超导单元,再由双分裂电抗器二次限流.当短路电流消失后,自动快速恢复到无阻特性,然后重新合闸投入系统运行.在SFCL并网运行前,要对并网运行中出现相间短路等故障的暂态运行特性进行分析,了解并网运行时的状况.本文利用Matlab/Simulink构建了SFCL的仿真分析模型,包含超导限流单元的等效电路模型和热模型.该模型被接入一个由Matlab/Simulink构建的10kV电力系统模型中,用来仿真SFCL的并网运行特性.仿真结果表明了SFCL在并网运行中的效果,以及相间短路故障下失超电阻、通过电流和超导限流单元温度的变化.同时,在中国国网辽宁电力虎石台对SFCL进行了并网运行试验,得到了相间短路故障下的暂态运行特性和失超恢复时间.本文的仿真分析和试验结果,证明了该SFCL样机具备10kV 并网能力,以及快速响应、逐级限流和快速恢复能力 相似文献
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Lei Chen Yuejin Tang Jing Shi Zhi Li Li Ren Shijie Cheng 《Physica C: Superconductivity and its Applications》2010,470(3):231-235
The integrated voltage compensation type active superconducting fault current limiter (SFCL) is composed of three air-core superconducting transformers and a three-phase four-wire PWM converter. In order to realize the current-limiting characteristics of the integrated active SFCL, it is needed to control the three-phase four-wire PWM converter flexibly and reasonably. Thereby, the control strategy for the converter is analyzed in this paper. In dq0 reference frame, the mathematical model of the converter is founded. The double-loop control strategy, consisting of voltage outer loop and current inner loop, is presented. Moreover, the voltage balance control for the split DC link capacitors is also considered. Using MATLAB, the simulation model of the integrated active SFCL is built. According to the simulation results, it is known that, the presented control strategy is feasible and valid, and the converter can work well under unsymmetrical and symmetrical fault conditions, and then the fault current can be limited quickly and effectively. 相似文献
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L. M. Fisher D. F. Alferov M. R. Akhmetgareev A. I. Budovskii D. V. Evsin I. F. Voloshin A. V. Kalinov 《Physics of Atomic Nuclei》2015,78(14):1654-1657
A resistive switching superconducting fault current limiter (SFCL) for DC networks with voltage of 3.5 kV and nominal current of 2 kA is developed. The SFCL consists of two series-connected units: block of superconducting modules and high-speed vacuum breaker with total disconnection time not more than 8 ms. The results of laboratory tests of superconducting SFCL modules in current limiting mode are presented. The recovery time of superconductivity is experimentally determined. The possibility of application of SFCL on traction substations of Russian Railways is considered. 相似文献
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L. M. Fisher D. F. Alferov M. R. Akhmetgareev A. I. Budovskii D. V. Evsin I. F. Voloshin A. V. Kalinov 《Physics of Atomic Nuclei》2016,79(14):1577-1584
A resistive switching superconducting fault current limiter (SFCL) for DC networks with a nominal voltage of 3.5 kV and a nominal current of 2 kA was developed, produced, and tested. The SFCL has two main units—an assembly of superconducting modules and a high-speed vacuum circuit breaker. The assembly of superconducting modules consists of nine (3 × 3) parallel–series connected modules. Each module contains four parallel-connected 2G high-temperature superconducting (HTS) tapes. The results of SFCL tests in the short-circuit emulation mode with a maximum current rise rate of 1300 A/ms are presented. The SFCL is capable of limiting the current at a level of 7 kA and break it 8 ms after the current-limiting mode begins. The average temperature of HTS tapes during the current-limiting mode increases to 210 K. After the current is interrupted, the superconductivity recovery time does not exceed 1 s. 相似文献
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Superconducting nanowire single photon detector(SNSPD), as a new type of superconducting single photon detector(SPD), has a broad application prospect in quantum communication and other fields. In order to prepare SNSPD with high performance, it is necessary to fabricate a large area of uniform meander nanowires, which is the core of the SNSPD. In this paper, we demonstrate a process of patterning ultra-thin Nb N films into meander-type nanowires by using the nanoimprint technology. In this process, a combination of hot embossing nano-imprint lithography(HE-NIL) and ultraviolet nano-imprint lithography(UV-NIL) is used to transfer the meander nanowire structure from the NIL Si hard mold to the Nb N film. We have successfully obtained a Nb N nanowire device with uniform line width. The critical temperature(Tc) of the superconducting Nb N meander nanowires is about 5 K and the critical current(Ic) is about 3.5 μA at 2.5 K. 相似文献