首页> 外文会议>2017 IEEE Second International Conference on DC Microgrids >Closed-loop impedance calculation of grid-tied three-phase inverters/rectifiers in bus signaling strategy-controlled DC microgrids
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Closed-loop impedance calculation of grid-tied three-phase inverters/rectifiers in bus signaling strategy-controlled DC microgrids

机译:总线信号策略控制的直流微电网中并网型三相逆变器/整流器的闭环阻抗计算

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摘要

The closed-loop (CL) impedances of each connected microgrid device (generator, sto rage or load) are key elements in stability studies of DC microgrids from the point of view of the DC common bus. The calculation of the CL impedance of standard DC/DC converters is widely described in the literature. The application of this method to a three-phase AC/DC converter connecting DC microgrids to the utility grid, when harmonic filters are required, is studied in this work. Four possible CL impedance types are established, depending on the operation mode of the converter (power flow direction through the interface and on the control applied to the interface at the DC-side), taking the filter into account. To calculate the four possible CL impedances of the three-phase AC/DC interface, a method used in sensitivity analysis is applied. Firstly, three voltage loops are described in the time domain. Secondly, the system is linearized around its operating point and thus the resulting dynamic system can be expressed. Finally, an existing method to close the loop gain is used to take the interface control into account and to determine the resulting CL impedance.
机译:从直流公共母线的角度来看,每个连接的微电网设备(发电机,存储或负载)的闭环(CL)阻抗是直流微电网稳定性研究中的关键要素。标准DC / DC转换器的CL阻抗的计算已在文献中广泛描述。在这项工作中,研究了该方法在将直流微电网连接到公用电网的三相AC / DC转换器中的应用。根据转换器的工作模式(通过接口的功率流方向以及应用于直流侧接口的控制),建立了四种可能的CL阻抗类型。为了计算三相AC / DC接口的四个可能的CL阻抗,应用了一种在灵敏度分析中使用的方法。首先,在时域中描述了三个电压环路。其次,系统围绕其工作点线性化,因此可以表示动态系统。最后,使用现有的闭合环路增益的方法来考虑接口控制并确定最终的CL阻抗。

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