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A linear damping scheme for higher order dc-dc converters supplying constant-power loads in a dc microgrid

机译:用于在直流微电网中提供恒定功率负载的高阶DC-DC转换器的线性阻尼方案

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A linear controller is proposed for dc microgrids with SEPIC, Cuk and Zeta power electronic converters supplying constant power loads. The controller is implemented in two stages. During the first stage, also known as active damping stage, limit cycle oscillations are damped by inserting a virtual resistance in series with the input inductor of each of the converters. In the second stage, an integral controller is added to the first stage to compensate for the voltage deviations due to the virtual resistance. The second stage, also known as voltage regulation stage maintains the microgrid voltage within acceptable limits in the event of source and load variation. Linearization and small signal analysis are used to derive stability conditions for the equilibrium points. Simulation and experiments performed on a prototype microgrid are used to verify the proposed control laws.
机译:针对使用SEPIC,Cuk和Zeta功率电子转换器提供恒定功率负载的直流微电网,提出了一种线性控制器。控制器分两个阶段实现。在第一阶段(也称为主动阻尼阶段)中,通过插入与每个转换器的输入电感器串联的虚拟电阻来衰减极限循环振荡。在第二阶段,将积分控制器添加到第一阶段,以补偿由于虚拟电阻引起的电压偏差。第二阶段,也称为电压调节阶段,在电源和负载发生变化的情况下,将微电网电压保持在可接受的范围内。线性化和小信号分析用于得出平衡点的稳定性条件。在原型微电网上进行的仿真和实验被用来验证所提出的控制规律。

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