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Improved Superconducting Magnetic Energy Storage (SMES) Controller for High-Power Utility Applications

机译:用于大功率公用事业应用的改进型超导磁储能(SMES)控制器

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Superconducting magnetic energy storage (SMES) systems are getting increasing interest in applications of power flow stabilization and control in the transmission network level. This trend is mainly supported by the rising integration of large-scale renewable energy power plants into the high-power utility system and by major features of SMES units. In a SMES system, the power conditioning system (PCS) is the crucial component for controlling the power exchange between the superconducting coil and the ac system. The dynamics of the PCS directly influences the validity of the SMES in the dynamic control of the power system. This paper describes a novel PCS scheme of SMES to simultaneously perform both active and reactive power flow controls. Moreover, a detailed model of the SMES unit is derived and a three-level control scheme is designed, comprising a full decoupled current control strategy in the d–q reference frame with a novel controller to prevent PCS dc bus capacitors’ voltage drift/imbalance. The dynamic performances of the proposed systems are fully validated by computer simulation.
机译:超导磁能存储(SMES)系统在传输网络级别的潮流稳定和控制应用中越来越受到关注。大型可再生能源发电厂日益集成到大功率公用事业系统中以及SMES装置的主要特点支持了这一趋势。在SMES系统中,功率调节系统(PCS)是控制超导线圈和ac系统之间功率交换的关键组件。 PCS的动态性直接影响SMES在电力系统动态控制中的有效性。本文介绍了一种新颖的SMES PCS方案,可同时执行有功和无功潮流控制。此外,推导了SMES单元的详细模型,并设计了一种三级控制方案,包括在d-q参考系中采用完全去耦电流控制策略,并采用新颖的控制器来防止PCS直流总线电容器的电压漂移/不平衡。 。所提出系统的动态性能已通过计算机仿真得到了充分验证。

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