超导磁储能隔离混合电力系统的频率调节

P. Indu, M. Jayan
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引用次数: 13

摘要

超导磁储能由于其快速的充放电能量响应时间,可以提高系统的频率稳定性。本文提出了太阳能光伏、风能、柴油发电机(DEG)和超导磁能混合储能系统与孤立电力系统连接的建模和控制方法。由于风速的随机变化,风力发电机的输出功率是随机波动的。太阳辐照度和温度的变化也会引起太阳能光伏输出功率的变化。这会引起电力系统频率的波动,从而影响系统的稳定性。由于可再生能源的间歇性输出,它们与不同的储能系统集成在一起。在这个项目中,提出了中小企业法来最小化混合系统的频率波动。SMES的控制方案是基于正弦脉冲宽度调制电压源变换器和使用绝缘栅双极晶体管的二象限dc-dc斩波器。本项目分析了超导磁能存储(SMES)在不同大气条件下提高隔离混合系统稳定性的作用。仿真结果表明,当供需不平衡时,中小企业系统对频率稳定有一定的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Frequency regulation of an isolated hybrid power system with Superconducting Magnetic Energy Storage
Super conducting magnetic energy storage (SMES) may improve the Frequency stability of a system, because of its fast response time in charging and discharging energy. This paper proposed the modelling and control of a hybrid solar photo voltaic, wind energy, Diesel-Engine Generator (DEG) and Superconducting Magnetic Energy Storage systems connected to an isolated power system. Due to random variations of wind speed, output power of wind generator fluctuates randomly. Also solar irradiance and temperature variation causes the variation of solar PV output power. This causes fluctuations of power system frequency and thus affects the stability of the system. Due to the intermittent nature of power output from renewable sources, they are integrated along with different energy storage systems. In this project SMES is proposed for minimization of frequency fluctuations of hybrid system. The control scheme of SMES is based on a sinusoidal pulse width-modulation voltage-source converter and a two-quadrant dc-dc chopper using an insulated-gate bipolar transistor. This project analyses the effect of superconducting magnetic energy storage (SMES) to improve the stability of an isolated hybrid system under varying atmospheric conditions. Simulation results indicate that SMES system can contribute to frequency stability when supply demand imbalance occurs.
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