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Distributed control system for frequency control in a isolated wind system

机译:隔离风系统中用于频率控制的分布式控制系统

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High wind penetration wind diesel hybrid systems (WDHS) have three modes of operation: diesel only (DO), wind diesel (WD) and wind only (WO). The control requirements for frequency control in WO mode are analysed and a distributed control system (DCS) is proposed for this frequency control, describing the actuation of its sensor and actuator nodes. A power system for WO mode consisting of a wind turbine generator (WTG), a synchronous machine (SM), the consumer load, a battery based energy storage system (ESS) and a discrete dump load (DL) along with the associated DCS have been simulated. By means of a 400 Hz reference power message that establishes the active power necessary for frequency regulation and a prescribed active power sharing between the ESS and DL actuators, graphs for frequency, voltage and active powers for consumer load and wind speed changes are presented. The results of the simulation show maximum settling times and frequency per unit variation of 1.5 s and 0.16% respectively, for the previous input changes. The DCS solution presented could constitute a proposal for the standardization of the control for WO mode in high wind penetration WDHS which rely on a SM to generate the voltage waveform in that mode.
机译:高风速风力柴油混合动力系统(WDHS)具有三种运行模式:仅柴油(DO),风力柴油(WD)和仅风(WO)。分析了WO模式下频率控制的控制要求,并提出了用于该频率控制的分布式控制系统(DCS),描述了其传感器和执行器节点的致动。 WO模式的电力系统包括风力发电机(WTG),同步电机(SM),用电器负载,基于电池的储能系统(ESS)和离散式甩负荷(DL)以及相关的DCS,被模拟。通过建立频率调节所需的有功功率以及ESS和DL执行器之间规定的有功功率共享的400 Hz参考功率消息,可以显示用户负载和风速变化的频率,电压和有功功率曲线。仿真结果表明,对于先前的输入变化,最大稳定时间和每单位变化的频率分别为1.5 s和0.16%。提出的DCS解决方案可能构成对高风速WDHS中WO模式的控制进行标准化的建议,WDHS依赖于SM在该模式下生成电压波形。

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