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The study of the isolated power supply system operation with controlled distributed generation plants, energy storage units and drive load

机译:采用受控分布生成植物,储能单元和驱动载荷的隔离电源系统运行研究

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Energy storage units (ESU) and distributed generation (DG) plants including those using renewable energy sources can be used to develop isolated power supply systems (IPSS) and enhance their reliability. Operation of DG plants in the IPSS requires to consider restrictions for consumers maximum load, as well as effects of abrupt load increase or load shedding on the generating plants. These problems can be resolved using ESU and intelligent technologies for DG plants control. The paper considers IPSS of an industrial facility with turbogenerator plants (TGP), wind power plant (WPP) and high-capacity ESU for which fuzzy control systems and prognostic controllers were used. The simulation was performed in the MATLAB system using the Simulink and SimPowerSystems software packages. Normal and emergency modes were studied in IPSS with TGP, WPP, and high-capacity ESU. The simulation results indicated that combined use of high-capacity ESU and prognostic controller of TGP generator rotor speed allows to ensure stability and survivability of IPSS enhancing its damping properties. The auto-prognostic controller of the TGP generator, which does not require special adjustment, provides high quality indicators of the IPSS control in all considered modes.
机译:能量存储单元(ESU)和分布式发电(DG)植物包括使用可再生能源的产品,可用于开发隔离电源系统(IPS)并增强其可靠性。 IPS中DG工厂的操作需要考虑对消费者的最大负荷的限制,以及突然负荷增加或发电厂的载荷脱落的影响。可以使用ESU和DG工厂控制的智能技术解决这些问题。本文考虑了工业设施的IPS,其中涡轮机植物(TGP),风电厂(WPP)和高容量esu,用于使用模糊控制系统和预后控制器。使用Simulink和SimPowersystems软件包在Matlab系统中执行模拟。 IPS在具有TGP,WPP和高容量ESU的IPS中研究了正常和急诊模式。仿真结果表明,TGP发电机转子速度的高容量ESU和预后控制器的组合使用允许确保IPSS增强其阻尼性能的稳定性和生存能力。 TGP发生器的自动预测控制器,不需要特殊调整,可在所有考虑模式中提供IPSS控制的高质量指标。

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