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A new power-conditioning system for superconducting magnetic energy storage

机译:一种用于超导磁能存储的新型功率调节系统

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摘要

A power conditioning system concept for superconducting magnetic energy storage (SMES), which can independently regulate the active and reactive power of the utility network, is presented. The system is composed of ten 100 MW modules connected in parallel. Each 100 MW module consists of a tap changing transformer and a 12 pulse, force commutated power converter. This system offers a significant reduction of the system rating by reducing the reactive power demand in the converter with control of the tap changing ratio and the converter firing angle. The operational concept of this system is verified through mathematical analysis and computer simulation. The dynamic system interaction between the SMES coil and the AC network is analyzed using a simulation model with EMTP. The analysis results prove that the concept is feasible. This system can be built with commercially available components and proven technologies.
机译:提出了一种用于超导磁能存储(SMES)的功率调节系统概念,该概念可以独立调节公用网络的有功功率和无功功率。该系统由十个并联的100 MW模块组成。每个100 MW模块均包含一个抽头变换变压器和一个12脉冲强制换向功率转换器。该系统通过控制抽头变换比和转换器点火角来减少转换器中的无功功率需求,从而大大降低了系统额定值。通过数学分析和计算机仿真验证了该系统的操作概念。使用带有EMTP的仿真模型分析了SMES线圈和交流网络之间的动态系统相互作用。分析结果证明了该方案的可行性。该系统可以使用市售组件和成熟技术构建。

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