Coordinated management of electricity storages and distributed generation plant with predictive controllers in a power supply system with reduced electricity quality

Yura Bulatov, A. N. Kryukov, K. V. Suslov, V. V. Kizhin
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Abstract

THE PURPOSE. A study of the influence of coordinated control of electricity storage devices and distributed generation installations on the operating modes of a network cluster, which is an electrical distribution network connected to the AC railway power supply system through a direct current insert (DCI).METHODS. The studies were carried out using a simulation model implemented in the MATLAB system.RESULTS. The following disturbing influences were considered: turning off the main power supply of the network cluster from the DCI side for 0.5 seconds; three-phase short circuit with a duration of 0.5 s at the end of a 6 kV cable line with a length of two kilometers. The simulation results showed the effectiveness of coordinated control of electricity storage devices and a turbogenerator with self-adjusting predictive controllers. On this basis, the values of overshoot of the rotor speed are reduced and the transient process time is reduced for all parameters in various modes. For example, the transient time for the generator rotor speed in the mode of connecting an additional load is reduced by three times, and for voltage - by two times.CONCLUSION. Based on computer modeling, it is shown that coordinated control of electricity storage devices and a turbogenerator with predictive regulators reduces the amount of rotor speed overshoot to almost zero and reduces the transient process time by almost 90%. It is advisable to conduct further research on the application of the method of coordinated control of active elements used in the power supply system to regulate the mode parameters.
在电能质量下降的供电系统中,利用预测性控制器协调管理蓄电池和分布式发电厂
目的研究蓄电装置和分布式发电装置的协调控制对网络集群运行模式的影响,网络集群是通过直流插入式(DCI)与交流铁路供电系统相连的配电网络。 研究使用 MATLAB 系统中的仿真模型进行。考虑了以下干扰影响因素:从 DCI 侧关闭网络集群的主电源 0.5 秒;在长度为两千米的 6 千伏电缆线路末端发生持续时间为 0.5 秒的三相短路。模拟结果表明,使用自调整预测控制器对蓄电设备和涡轮发电机进行协调控制是有效的。在此基础上,各种模式下所有参数的转子速度过冲值都有所降低,瞬态过程时间也有所缩短。例如,在连接额外负载的模式下,发电机转子转速的瞬态时间缩短了三倍,电压的瞬态时间缩短了两倍。基于计算机建模的结果表明,利用预测调节器对蓄电设备和涡轮发电机进行协调控制,可将转子速度过冲量几乎降至零,并将瞬态过程时间缩短近 90%。建议进一步研究供电系统中有源元件协调控制方法的应用,以调节模式参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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