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Impact of Grid Voltage Feed-Forward Filters on Coupling Between DC-Link Voltage and AC Voltage Controllers in Smart PV Solar Systems

机译:电网电压前馈滤波器对智能光伏太阳能系统中直流链路电压和交流电压控制器之间耦合的影响

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摘要

This paper presents a novel study of impact of filters of grid voltage feed-forward signals on the coupling between dc-link voltage and ac voltage controllers in smart photovoltaic (PV) solar systems which are used for voltage control in distribution systems. A comprehensive linearized state space model of a PV system including the dynamics of grid voltage feed-forward filters, dc-link voltage and ac voltage controllers is developed for the first time. This model is validated by electromagnetic transients software PSCADEMTDC. This model is used to identify the coupling between dc-link voltage and ac voltage controllers by eigenvalue and participation factor analyses. The impact of time constant of feed-forward filters on this coupling is studied by eigenvalue sensitivity analysis for PV systems with proportional and proportional integral type ac voltage controllers. The range of time constants over which the filters interact with controllers and create instability for systems with different strengths and XR ratios is identified. Insights are provided on the choice of time constants of grid voltage feed-forward filters for the stable system design. The developed state-space model can also be used for impact studies of various other parameters, e.g., system strength, XR ratios, types and gains of controllers, on system stability.
机译:本文提出了对电网电压前馈信号滤波器对智能光伏(PV)太阳能系统中直流链路电压和交流电压控制器之间耦合的影响的新研究,该系统用于配电系统中的电压控制。首次开发了光伏系统的全面线性状态空间模型,其中包括电网电压前馈滤波器,直流链路电压和交流电压控制器的动态特性。该模型已通过电磁瞬变软件PSCADEMTDC验证。该模型用于通过特征值和参与因子分析来识别直流母线电压和交流电压控制器之间的耦合。对于具有比例和比例积分型交流电压控制器的光伏系统,通过特征值灵敏度分析,研究了前馈滤波器的时间常数对该耦合的影响。确定了滤波器与控制器交互并为具有不同强度和XR比的系统造成不稳定的时间常数范围。提供有关电网电压前馈滤波器的时间常数选择的见解,以实现稳定的系统设计。开发的状态空间模型还可以用于各种其他参数的影响研究,例如系统强度,XR比率,控制器的类型和增益对系统稳定性的影响。

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