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首页> 外文期刊>IEEE Transactions on Power Delivery >Stability Analysis of Two Parallel Converters With Voltage–Current Droop Control
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Stability Analysis of Two Parallel Converters With Voltage–Current Droop Control

机译:具有电压-电流下降控制的两个并联转换器的稳定性分析

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摘要

Voltage–current (V–I) droop control has been proposed for real and reactive power sharing. Compared with the conventional droop control using real power/frequency and reactive power/voltage, it enhances stability since adding a V–I droop is equivalent to providing a resistor. However, for a system with parallel converters with V–I droops, oscillations are observed when small droop coefficients are adopted. In this paper, a multi-input multioutput (MIMO) model of the system is derived in the frequency domain. This model is based on the -reference frame and consists of converter control and the power network model, which is represented by an admittance matrix. Linear system analysis is carried out to identify the root causes of oscillations in both grid-connected mode and autonomous mode. Analysis results are validated by simulation results of detailed model-based systems built in Matlab/Simpowersystems.
机译:电压-电流(V-I)下垂控制已被建议用于有功和无功功率共享。与使用有功功率/频率和无功功率/电压的常规下降控制相比,由于增加了V–I下降等效于提供一个电阻,因此它提高了稳定性。但是,对于具有V–I下降的并行转换器的系统,当采用较小的下降系数时,会观察到振荡。本文在频域上推导了系统的多输入多输出(MIMO)模型。该模型基于-参考系,由转换器控制和电网模型组成,该模型由导纳矩阵表示。进行了线性系统分析,以确定在并网模式和自主模式下的振荡的根本原因。通过在Matlab / Simpowersystems中构建的基于模型的详细系统的仿真结果,可以验证分析结果。

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