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An Adaptive Droop Control Scheme Based on Sliding Mode Control for Parallel Buck Converters in Low-Voltage DC Microgrids

机译:基于低压DC微电网的平行降压转换器滑动模式控制的自适应下垂控制方案

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Droop control is a widely used method in DC microgrid to solve the problem of the current sharing errors. However, it is difficult to trade off the current sharing errors and bus voltage deviation in parallel converters microgrids. This paper designs an improved droop control scheme based on adaptive droop control and sliding mode control (SMC). The droop coefficient is adjusted adaptively by proportional integral (PI) control loop to minimize the current sharing errors and the bus voltage deviation is compensated adaptively by another PI control loop, through the acquisition of the bus voltage and current. Moreover, the SMC is used to control the output voltage of each converter instantaneously. Finally, a simulation model of three parallel buck converters is built based on MATLAB/Simulink, which verifies the feasibility and effectiveness of the designed scheme in this paper. This scheme only needs power lines to transmit data, which reduces the communication burden. It is suitable and reliable for small and medium-sized DC microgrid.
机译:下垂控制是DC MicroGrid中的广泛使用方法,以解决当前共享错误的问题。但是,难以在并行转换器微普林中缩短电流共享误差和总线电压偏差。本文设计了一种基于自适应下垂控制和滑模控制(SMC)的改进的下垂控制方案。通过比例积分(PI)控制回路自适应地调整下垂系数以最小化电流共享误差,并且通过另一PI控制回路通过获取总线电压和电流自适应地补偿汇流电压偏差。此外,SMC用于瞬间控制每个转换器的输出电压。最后,基于Matlab / Simulink建立了三个并联降压转换器的仿真模型,这验证了本文所设计方案的可行性和有效性。该方案仅需要电源线来传输数据,这减少了通信负担。对于中小型DC微电网是合适可靠的。

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