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首页> 外文期刊>IEEE Transactions on Power Electronics >A Loop Gain-Based Technique for Online Bus Impedance Estimation and Damping in DC Microgrids
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A Loop Gain-Based Technique for Online Bus Impedance Estimation and Damping in DC Microgrids

机译:一种基于循环增益的在线总线阻抗估计和DC微电普林中的阻尼技术

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摘要

In modern dc microgrids, several feedback-controlled power electronic converters are connected to the common dc bus. Although the control loops of each individual converter are designed with good stability margins, the interconnection of multiple source and load converters can cause stability and performance concerns, due to potential interactions. Therefore, in order to ensure the desired dynamic performance of the interconnected power converter system, an interesting approach is to perform online stability monitoring of the dc bus, and to properly damp the dc bus impedance, which has been demonstrated to ensure system-level stability and performance. In order to accomplish that, this article first derives a representation of the dc bus impedance in terms of voltage (or droop) loop gain of the source-side converter. Second, under certain simplifying assumptions it provides an estimate for the peak value of bus impedance-an indicator of system dynamic behavior- based on the phase margin. Third, it proposes to continuously monitor the peak value of bus impedance by only injecting a single sinusoid in the voltage (or droop) loop. The monitored value can then be used to autotune the voltage regulator, in order to keep the bus impedance in a well-known allowable impedance region. The proposed monitoring and stabilization technique eliminates the need for the time consuming and memory intensive impedance measurement tasks. This technique is verified by simulation and experimental results on a laboratory prototype system of interconnected power converters.
机译:在现代DC微电网中,几个反馈控制电力电子转换器连接到公共直流总线。尽管每个单独的转换器的控制回路具有良好的稳定性边缘,但是由于潜在的相互作用,多个源和负载转换器的互连可能导致稳定性和性能问题。因此,为了确保互联功率转换器系统的期望动态性能,有趣的方法是执行直流总线的在线稳定性监控,并适当地抑制直流总线阻抗,这已经证明以确保系统级稳定性和表现。为了实现这一点,本文首先在源侧转换器的电压(或下垂)环增益方面获得DC总线阻抗的表示。其次,在某些简化假设下,它提供了基于相位余量的系统动态行为的指标的估计。第三,它提出通过仅在电压(或下垂)环中注入单个正弦曲线来连续监测总线阻抗的峰值。然后,监控值可以用于自动调谐电压调节器,以便在众所周知的允许阻抗区域中保持总线阻抗。所提出的监测和稳定技术消除了对耗时和内存密集的阻抗测量任务的需求。通过仿真和实验结果验证该技术在互联电源转换器的实验室原型系统上进行验证。

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