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DC Bus Voltage Sliding-mode Control for a DC Microgrid Based on Linearized Feedback

机译:基于线性反馈的直流微电网直流母线电压滑模控制

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When constant power load with negative impedance characteristics and distributed power sources are integrated into a DC microgrid via converters, oscillation may easily occur, causing the system stability problem. Based on the linearization feedback theory, a sliding mode controller used for the DC bus voltage control system of the bidirectional DC-DC converter was investigated to quickly track power disturbances in the DC microgrid, which has good robustness to system parameter change and external disturbance. The simulation model of DC microgrid with 1kw and 5kw external constant power load is built with MATLAB/Simulink and the simulative results show that, the stability of DC microgrid can be guaranteed by the proposed control strategy under both island and grid-connection operations.
机译:当具有负阻抗特性的恒定功率负载和分布式电源通过转换器集成到DC微电网中时,很容易发生振荡,从而导致系统稳定性问题。基于线性化反馈理论,研究了一种用于双向DC-DC转换器的DC总线电压控制系统的滑模控制器,以快速跟踪DC微电网中的功率扰动,它对系统参数变化和外部扰动具有良好的鲁棒性。利用MATLAB / Simulink建立了1kw和5kw外部恒定功率负载直流微电网的仿真模型,仿真结果表明,所提出的控制策略在孤岛运行和并网运行下都可以保证DC微电网的稳定性。

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