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Reduced-Order Parametric Dynamic Phasor Modeling of AC Distribution Systems with Rectifier Loads

机译:带有整流器负载的交流配电系统的降阶参数动态相量建模

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The wide use of line-commutated rectifiers (LCRs) in large-scale industrial applications has increased the need for accurate and computationally efficient models in power system simulations. Recently, a reduced-order parametric dynamic phasor (PDP) modeling methodology has been proposed in the literature for efficient transient simulation of the LCRs. This methodology permits large simulation time-steps while retaining the information of harmonics present in AC currents and voltages. In this paper, the performance of reduced-order PDP is investigated for an AC distribution system with LCR loads. The results demonstrate a good reconstruction of both steady-state and transient operation behavior, along with improvements in terms of numerical efficiency and simulation speed.
机译:线路换向整流器(LCR)在大规模工业应用中的广泛使用增加了在电力系统仿真中对精确且计算效率高的模型的需求。最近,文献中提出了降阶参数动态相量(PDP)建模方法,用于LCR的有效瞬态仿真。这种方法允许进行较大的仿真时间步长,同时保留交流电流和电压中存在的谐波信息。在本文中,针对带有LCR负载的交流配电系统,研究了降阶PDP的性能。结果表明,稳态和瞬态操作行为都得到了很好的重构,并且在数值效率和仿真速度方面得到了改善。

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