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首页> 外文期刊>IEEE Transactions on Energy Conversion >Large-Signal Stability Improvement of DC-DC Converters in DC Microgrid
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Large-Signal Stability Improvement of DC-DC Converters in DC Microgrid

机译:DC微电网中DC-DC转换器的大信号稳定性改进

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摘要

In DC microgrids, constant power loads (CPLs) reduce the effective damping of the DC-DC converter and may induce destabilizing effects into the DC-DC converter. To overcome such problems regarding CPL and ensure large-signal stability of DC-DC converters in DC microgrids, some feedforward terms are added to V-I droop-based dual-loop controller for a DC-DC converter based on the large-signal model. It is proven that the feedforward terms can not only improve the transient response but also guarantee the exponential stability of the closed-loop system in the whole operating range in regards to a large-signal manner, which is verified by using a singular perturbation model. Moreover, a disturbance observer is designed to estimate the output current, thereby enabling the removal of the current measurement sensor. The proposed technique can be easily plugged into a pre-defined V-I droop-based dual-loop controller without an additional sensor being required. Ultimately, both simulation and experimental tests verify the effectiveness of the proposed method.
机译:在DC微电网中,恒大功率负载(CPLS)减少了DC-DC转换器的有效阻尼,并且可能对DC-DC转换器引起稳定的效果。为了克服关于CPL的这些问题并确保DC微电网中DC-DC转换器的大信号稳定性,基于大信号模型,将一些前馈术语添加到DC-DC转换器的基于V-I下垂的双环控制器。据证正,前馈术语不仅可以提高瞬态响应,而且还可以保证闭环系统在整个工作范围内的闭环系统的指数稳定性,通过使用奇异的扰动模型来验证。此外,扰动观察者设计用于估计输出电流,从而能够去除电流测量传感器。该技术可以轻松插入预定义的V-I下垂的双环控制器,而无需附加传感器。最终,仿真和实验测试都验证了所提出的方法的有效性。

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