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Superconducting magnetic energy storage (SMES) devices integrated with resistive type superconducting fault current limiter (SFCL) for fast recovery time

机译:集成了电阻型超导故障限流器(SFCL)的超导磁储能(SMES)装置可快速恢复

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摘要

Energy storage devices experience load fluctuations due to fault currents, lightening and non-uniform load distribution. Hence, Superconducting Magnetic Energy Storage (SMES) devices are incorporated to balance these fluctuations as well as to store the energy with larger current density. Further, Superconducting Fault Current Limiter (SFCL) are integrated with SMES for avoiding fault currents. In addition, SFCL are preferred in electrical utility networks due to their better technical performance during faults as compared to the conventional Circuit Breakers. Self-triggering from superconducting state to normal state during fault and very fast recovery to its original superconducting state after fault removal is the fundamental operation of Resistive type Superconducting Fault Current Limiter (R-SFCL). Moreover, commercial applications of SFCL in electrical power systems are enormously increasing due to the availability of long length High Temperature Superconducting (HTS) tapes. In the present work, an algorithm is developed to estimate the recovery time of R-SFCL with three phases to be used in SMES. Further, the electrical and thermal strategies to develop R-SFCL are also presented. In addition, the short circuit behaviour under fault currents is investigated considering 440 kV/1.2 kA capacity line. Finally, the percentage of fault compensation in all the three phases of SMES integrated with R-SFCL is calculated.
机译:由于故障电流,闪电和不均匀的负载分配,储能设备会遇到负载波动。因此,并入了超导磁能存储(SMES)设备,以平衡这些波动并以更大的电流密度存储能量。此外,超导故障电流限制器(SFCL)与SMES集成在一起,可避免出现故障电流。此外,由于与常规断路器相比,SFCL在故障期间具有更好的技术性能,因此在电力公用事业网络中是首选。故障期间从超导状态到正常状态的自触发以及在故障消除后非常快速地恢复到其原始超导状态是电阻型超导故障限流器(R-SFCL)的基本操作。此外,由于长长度的高温超导(HTS)胶带的可用性,SFCL在电力系统中的商业应用正在大大增加。在当前的工作中,开发了一种算法,用于估计SMES中使用的三相R-SFCL的恢复时间。此外,还介绍了开发R-SFCL的电气和热策略。此外,研究了考虑440 kV / 1.2 kA容量线的故障电流下的短路行为。最后,计算了与R-SFCL集成的SMES的所有三个阶段中的故障补偿百分比。

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