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Superconductive energy storage for power systems

机译:电力系统超导储能

摘要

Energy derived from an alternating current power system is stored in a superconducting magnet or inductor. The transfer of the energy is reversible so that the energy stored in the superconducting magnet can be returned to the alternating current power system. Generally, the energy is stored when surplus energy is available, due to low demand. The energy stored in the superconducting magnet may be returned to the power system when demand is high. High efficiency in the storage and return of the energy is achieved. A reversible converter is provided between the alternating current system and the superconducting magnet so that the magnet is supplied with direct current when energy is being stored. The converter may be adjusted so as to convert directcurrent into alternating current when it is desired to return the stored energy to the power system. The converter may comprise a rectifier-inverter system utilizing controlled rectifiers and a variable firing angle controller which is adjustable to control the operating mode of the rectifier- inverter system. The controller may be adjusted so that the system functions as a rectifier unit to convert the alternating current to direct current for the storage of energy in the superconducting magnet. The controller may be adjusted to a different firing angle so that the system functions as an inverter to convert direct current from the magnet into alternating current which is returned to the power system. The energy storage system can have lower losses than systems of prior types, such as pumped hydro- storage systems. The superconductive magnet system also has the ability to damp electro-mechanical oscillations in the power system.
机译:来自交流电源系统的能量存储在超导磁体或电感器中。能量的传递是可逆的,因此可以将存储在超导磁体中的能量返回到交流电源系统。通常,由于需求量低,在剩余能量可用时存储能量。当需求高时,存储在超导磁体中的能量可以返回到电力系统。实现了能量的存储和返回的高效率。在交流系统和超导磁体之间设置有可逆转换器,以便在存储能量时为磁体提供直流电。当期望将存储的能量返回给电力系统时,可以调节转换器以将直流电转换成交流电。转换器可以包括利用受控整流器的整流器-逆变器系统和可变点火角控制器,其可调节以控制整流器-逆变器系统的操作模式。可以调节控制器,使得系统用作整流器单元,以将交流电转换成直流电,以将能量存储在超导磁体中。可以将控制器调整到不同的触发角度,以使系统用作逆变器,将磁铁的直流电转换成交流电,然后返回到电力系统。与现有类型的系统(例如抽水蓄能系统)相比,储能系统的损耗更低。超导磁体系统还具有阻尼电力系统中机电振荡的能力。

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