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Nonlinear behavior and instability in a three-phase boost rectifier connected to a nonideal power grid with an interacting load

机译:与负载相互作用的非理想电网的三相升压整流器的非线性行为和不稳定性

摘要

Three-phase voltage source converters (VSCs) are commonly used to convert ac power from a three-phase grid to a regulated dc voltage with unity input power factor. The control of the VSC is normally achieved by an outer voltage feedback loop and a sinusoidal pulsewidth-modulated inner current loop. However, the nonideal power grid and the presence of other interacting loads give rise to nonlinear operation and drive the VSC to enter an irreversible instability region. In this paper, an irreversible bifurcation phenomenon in a three-phase VSC connected to a power grid with an interacting load is reported. The converter can also be regarded as exhibiting a catastrophic bifurcation in which the input current expands to impose undesirable component stress. A large-signal analysis is adopted to identify the physical origin of the phenomenon and to locate the boundary of the instability. Experimental results on a 4-kVA ac/dc converter prototype provide verification of the instability phenomenon.
机译:三相电压源转换器(VSC)通常用于将来自三相电网的交流电转换为具有统一输入功率因数的稳定直流电压。 VSC的控制通常通过外部电压反馈环路和正弦脉宽调制内部电流环路来实现。但是,非理想电网和其他相互作用负载的存在会导致非线性运行,并驱动VSC进入不可逆的不稳定区域。在本文中,报告了在负载相互作用的情况下连接到电网的三相VSC中的不可逆分叉现象。转换器也可被视为具有灾难性的分叉,其中输入电流膨胀以施加不希望的分量应力。采用大信号分析来识别现象的物理原因并找到不稳定的边界。 4-kVA AC / DC转换器原型的实验结果证明了这种不稳定性现象。

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