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Case Studies on Cascade Voltage Control of Islanded Microgrids Based on the Internal Model Control

机译:基于内模控制的孤岛微电网串级电压控制案例研究

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Erratic variations of the load and step changes of the voltage reference value usually impose voltage transients to the microgrid. These transients prevent effective utilization of the electric power delivery infrastructure and cause violation of the limits. Furthermore, some industrial loads are very susceptible to these unpredictable variations of the voltage. This paper proposes an innovative approach to improve the transient behavior of the three-phase voltage of a distributed generation (DG) unit in an islanded microgrid. The proposed approach has a cascade control structure, which consists of an inner current control feedback loop and an outer voltage control feedback loop. Both control loops are developed based on the internal model control (IMC) approach. Several simulation case studies confirm that the proposed IMC-based approach has superior transient performance compared with the conventional PI-based voltage control approach.
机译:负载的不稳定变化和电压参考值的阶跃变化通常会向微电网施加电压瞬变。这些瞬变会阻止电力传输基础架构的有效利用,并导致违反限制。此外,一些工业负载非常容易受到这些不可预知的电压变化的影响。本文提出了一种创新的方法来改善孤岛微电网中分布式发电(DG)单元的三相电压的瞬态行为。所提出的方法具有级联控制结构,其由内部电流控制反馈回路和外部电压控制反馈回路组成。这两个控制回路都是基于内部模型控制(IMC)方法开发的。若干仿真案例研究证实,与传统的基于PI的电压控制方法相比,基于IMC的方法具有更高的瞬态性能。

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