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Comprehensive Small-Signal Modeling and Stability Analysis of Medium-Voltage AC/DC Distribution Networks Based on the Master-Slave Control Strategy

机译:基于主从控制策略的中压交流/直流配电网综合小信号建模与稳定性分析

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As an effective solution for managing the access of distributed generations, medium-voltage AC/DC distribution networks are emerging as prospective forms of future distribution systems under the circumstances of increasing energy crisis and environmental pollution. Compared with the transmission systems, the medium-voltage distribution network has a lower voltage level, and the two-level voltage source converter (VSC) has become the preferred topologies for the interconnected converter. This paper proposes a comprehensive small-signal model for two-level-VSC-based medium-voltage AC/DC distribution systems, considering AC and DC distribution networks, AC filters, and all the controllers in the VSCs. The complex transformation between two dq coordinate systems in current studies is avoided based on the characteristics of dq transformation and discipline of the linearization. The impact of various control parameters on the small signal stability of the AC/DC distribution system is analyzed, and the feasible region of each parameter is obtained based on the small signal model proposed. Numerical calculations by MATLAB programming and electromagnetic transient simulations on PSCAD are compared. The results indicate that the small-signal mathematical model proposed in this paper can accurately represent the dynamic process of corresponding AC/DC distribution system, and the analysis of impact of parameters on small-signal stability can also be proved.
机译:作为管理分布式代代的访问的有效解决方案,中电压AC / DC分配网络在越来越多的能源危机和环境污染的情况下,在未来的分配系统中出现了未来形式。与传输系统相比,中压配电网具有较低的电压电平,双电平电压源转换器(VSC)已成为互连转换器的优选拓扑。本文提出了一种用于两级VSC的中电压AC / DC分配系统的全面小型信号模型,考虑AC和DC分配网络,交流滤波器和VSC中的所有控制器。基于DQ转换和线性化学科的特征,避免了当前研究中的两个DQ坐标系之间的复杂转换。分析了各种控制参数对AC / DC分布系统的小信号稳定性的影响,并且基于所提出的小信号模型获得每个参数的可行区域。比较PSCAD对PSCAD的MATLAB编程和电磁瞬态模拟的数值计算。结果表明,本文提出的小信号数学模型可以准确地代表相应的AC / DC分配系统的动态过程,也可以证明参数对小信号稳定性的影响。

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