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Design and small signal analysis of DC microgrid with hybrid energy storage system

机译:混合储能直流微电网的设计与小信号分析

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This paper presents the small signal analysis and two loop control design of a DC microgrid with control strategy based on the output of DC link voltage controller. The employed control strategy generates current references to PV, grid, battery and supercapacitor converters based on the average of DC link voltage controller output. In this control strategy, a single DC link voltage controller maintains the DC link voltage in all operating modes. Thus, designing a DC link voltage controller which is stable in all operating modes is a crucial aspect of DC microgrid. The design and stability analysis of DC microgrid employing this control strategy is not discussed in literature. In this work, a detailed two loop control design of a DC microgrid employing this control strategy is presented. The DC link voltage controller is designed such that it is stable in all operating modes and the effect of low pass filter introduced to obtain the average value of DC link voltage controller output is considered. Simulation study with the designed control parameters is performed to verify the stability of the system in various operating modes. Results show the satisfactory transient and steady state performance of the DC microgrid in all operating modes with the designed control parameters.
机译:本文基于直流母线电压控制器的输出,提出了具有控制策略的直流微电网的小信号分析和两回路控制设计。所采用的控制策略根据直流母线电压控制器输出的平均值生成到PV,电网,电池和超级电容器转换器的电流参考。在这种控制策略中,单个直流母线电压控制器可在所有工作模式下保持直流母线电压。因此,设计一种在所有工作模式下都稳定的直流母线电压控制器是直流微电网的关键方面。文献中没有讨论采用这种控制策略的直流微电网的设计和稳定性分析。在这项工作中,提出了采用该控制策略的直流微电网的详细两回路控制设计。直流母线电压控制器的设计使其在所有工作模式下均保持稳定,并考虑了引入低通滤波器以获取直流母线电压控制器输出平均值的效果。使用设计的控制参数进行仿真研究,以验证系统在各种操作模式下的稳定性。结果表明,在设计的控制参数下,直流微电网在所有工作模式下均具有令人满意的瞬态和稳态性能。

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