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Parametric dynamic phasor modeling of synchronous machine-rectifier systems for integrated ac-dc microgrids

机译:集成AC-DC微电网的同步电机整流器系统的参数动态相量建模

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This paper focuses on the modeling of synchronous machine-rectifier systems, which are widely used as backup generation for supporting medium-to long-term interruptions in integrated ac-dc microgrids. The dynamic phasors (DPs) have been shown to effectively model such ac-dc systems and their components including harmonics. However, most of the existing DP models of line-commutated rectifiers are analytically derived, which have limited accuracy due to: 1) predetermined waveform of voltage/current switch functions that are relying on a single mode of operation; and 2) reduced-order representation of harmonic dynamics. To overcome these challenges, this paper extends the recently developed parametric DP (PDP) modeling approach by including the dynamics of harmonics through a set of numerically-constructed explicit algebraic functions. The proposed PDP model is validated with detailed simulations, and is shown to be very accurate in predicting the system harmonics for various operating modes and large-signal transients.
机译:本文着重于同步电机整流器系统的建模,该系统被广泛用作备用发电,以支持集成的ac-dc微电网中的中长期中断。动态相量(DP)已被证明可以有效地建模此类ac-dc系统及其组成部分,包括谐波。然而,大多数现有的线路换向整流器的DP模型都是通过分析得出的,由于以下原因其准确性有限:1)依赖于单一操作模式的电压/电流开关功能的预定波形; 2)谐波动力学的降阶表示。为了克服这些挑战,本文通过通过一组数字构造的显式代数函数包括谐波的动态,扩展了最近开发的参数DP(PDP)建模方法。所提出的PDP模型已通过详细的仿真验证,并且在预测各种操作模式和大信号瞬态的系统谐波方面非常准确。

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