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Use of a High-Temperature Superconducting Coil for Magnetic Energy Storage

机译:高温超导线圈在磁能存储中的应用

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A high temperature superconducting magnetic energy storage device (SMES) has been realised using a 350 m-long BSCCO tape wound as a "pancake" coil. The coil is mounted on a cryocooler allowing temperatures down to 17.2 K to be achieved. The temperature dependence of coil electrical resistance R(T) shows a superconducting transition at T = 102.5 K. Measurements of the V(I) characteristics were performed at several temperatures between 17.2 K and 101.5 K to obtain the temperature dependence of the critical current (using a 1 μ V/cm criterion). Critical currents were found to exceed 100 A for T < 30 K. An electronic DC-DC converter was built in order to control the energy flow in and out of the superconducting coil. The converter consists of a MOS transistor bridge switching at a 80 kHz frequency and controlled with standard Pulse Width Modulation (PWM) techniques. The system was tested using a 30 V squared wave power supply as bridge input voltage. The coil current, the bridge input and output voltages were recorded simultaneously. Using a 10 A setpoint current in the superconducting coil, the whole system (coil + DC-DC converter) can provide a stable output voltage showing uninterruptible power supply (UPS) capabilities over 1s.
机译:高温超导磁能存储设备(SMES)已通过使用350 m长的BSCCO胶带作为“薄饼”线圈来实现。线圈安装在低温冷却器上,可实现低至17.2 K的温度。线圈电阻R(T)的温度依赖性在T = 102.5 K时显示出超导转变。在17.2 K和101.5 K之间的几个温度下对V(I)特性进行测量以获得临界电流的温度依赖性(使用1μV / cm的标准)。对于T <30 K,发现临界电流超过100A。构建了一个电子DC-DC转换器,以控制能量流入和流出超导线圈。该转换器包括一个以80 kHz频率开关并通过标准脉冲宽度调制(PWM)技术控制的MOS晶体管电桥。该系统使用30 V方波电源作为电桥输入电压进行了测试。同时记录线圈电流,电桥输入和输出电压。在超导线圈中使用10 A的设定点电流,整个系统(线圈+ DC-DC转换器)可以提供稳定的输出电压,显示不间断电源(UPS)的能力超过1s。

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