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Implementing dynamic evolution control approach for DC-link voltage regulation of superconducting magnetic energy storage system

机译:实现动态演化控制方法的超导储能系统直流环节调压

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A Dynamic Evolution Control (DEC) scheme for the Superconducting Magnetic Energy Storage (SMES) system is presented in this article. The DC-link voltage of Power Converter Unit (PCU) is strictly regulated by the proposed control scheme irrespective of load transients. In SMES system, the PCU interfaces the SMES magnet and the AC system in order to give an efficient power exchange, and high quality power flow in the grid. Especially, this paper focuses on power quality improvement, and homogeneous voltage distribution & AC loss reduction across the magnet by achieving excellent DC-link voltage regulation. The harmonic components of magnet current are analyzed which are responsible for AC losses. It has been observed that the 3rd, 4th, 5th, 6th and 7th order harmonic components of the magnet current are significantly reduced. Particularly, a homogeneous voltage profile and less distorted magnet current are attained using the control scheme. The system supply current is found almost balanced, and its Total Harmonic Distortion (THD) is found well below 5%. Moreover, the control performance of DEC scheme is compared with that of the Proportional-Integral (PI) control technique. The proposed system is validated both in MATLAB/SIMULINK and real-time environment using a digital signal processor (dSPACE1104). (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种用于超导磁储能(SMES)系统的动态演化控制(DEC)方案。所提出的控制方案严格控制功率转换器单元(PCU)的直流母线电压,而与负载瞬变无关。在SMES系统中,PCU连接SMES磁体和AC系统,以便在电网中进行有效的功率交换和高质量的功率流。尤其是,本文致力于通过实现出色的直流母线电压调节来改善电能质量,并实现磁体上均匀的电压分布和交流损耗的降低。分析了造成交流损耗的电磁电流的谐波分量。已经观察到,磁体电流的三阶,四阶,五阶,六阶和七阶谐波分量显着降低。特别地,使用该控制方案可获得均匀的电压分布和较少的失真的磁体电流。发现系统电源电流几乎平衡,发现其总谐波失真(THD)远低于5%。此外,将DEC方案的控制性能与比例积分(PI)控制技术进行了比较。使用数字信号处理器(dSPACE1104)在MATLAB / SIMULINK和实时环境中对提出的系统进行了验证。 (C)2017 Elsevier Ltd.保留所有权利。

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