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An improved control method of power electronic converters in low voltage micro-grid

机译:低压微电网中电力电子变换器的改进控制方法

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With the increasing acceptance, micro-grid, combined with distributed generation (DG), may be operated in two modes: grid-connected mode and island mode. In grid connected mode, energy management is the control objective. While in island mode, the control of Voltage and frequency will take the place. The conventional droop control can perform the energy management in grid-connected mode, but may not so effective when micro-grid transferring between grid-connected mode and island mode. The paper analysis the micro-grid in different modes (Conventional droop control, Voltage reference compensation, Constant power output mode, Phase adjustment mode), and then proposes an overall control strategy for the micro-grid. The voltage reference compensation would minimize the steady-state error on the nominated operation point; the coordinate control of voltage and frequency with a feed forward control of the voltage and frequency deviation added to power references could achieve secondary regulation of the voltage and frequency. In this paper, the authors take the steady and transient transition of grid connecting and disconnecting of the micro-grid as an example, and demonstrate that compensation on voltage reference is effective, and voltage and frequency coordination control can well perform not only energy management in grid-connected mode, but also the secondary regulation of voltage and frequency when micro-grid separates from the main grid, and furthermore the strategy can perform well in the transition states between the operation modes. The new droop control method has been validated through simulations by PSCAD software and experiments.
机译:随着越来越多的接受,微电网与分布式发电(DG)结合可以在两种模式下运行:并网模式和孤岛模式。在并网模式下,能源管理是控制目标。在孤岛模式下,将进行电压和频率的控制。传统的下垂控制可以在并网模式下执行能量管理,但是当微网在并网模式和孤岛模式之间转换时,效果可能不那么有效。本文分析了微电网的不同模式(常规下垂控制,电压基准补偿,恒功率输出模式,相位调整模式),然后提出了微电网的总体控制策略。参考电压补偿将使指定工作点上的稳态误差最小;通过将电压和频率偏差的前馈控制添加到功率参考中,可以对电压和频率进行坐标控制,从而可以实现电压和频率的二次调节。在本文中,作者以微电网的电网连接和断开的稳态和瞬态过渡为例,并证明了对电压基准的补偿是有效的,并且电压和频率协调控制不仅可以很好地执行能量管理,而且可以有效地控制能量。并网模式,以及微电网与主电网分离时的电压和频率的二次调节,并且该策略可以在运行模式之间的过渡状态下很好地执行。新的下垂控制方法已通过PSCAD软件的仿真和实验得到验证。

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