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Dual sequence current controller without current sequence decomposition implemented on DSRF for unbalanced grid voltage conditions

机译:在不平衡电网电压条件下,无需在DSRF上实现电流序列分解的双序列电流控制器

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Dual sequence current control is the key technique for grid-connected voltage source converter to ensure the performance or fulfill grid requirement under unbalanced grid voltage conditions. In this paper, after reviewing and analyzing the existing dual sequence current controller (DSCC), a simple DSCC is proposed based on double synchronous reference frame (DSRF) without the need of current sequence decomposition. The positive-sequence current is controlled in the positive SRF with a PI controller, while the negative-sequence current is controlled in the negative SRF only with an integrator controller. To avoid the ineffectiveness of the inductor current feed-forward (ICFF) decoupling technique in DSRF, only the decoupling components in the positive SRF is performed. This ensures the same performance with the conventional current controller under normal grid voltage conditions. Further, a new decoupling technique with reference current feed-forward can be optionally employed to provide decouple effect for both positive-sequence and negative-sequence current control. Simulation results will demonstrate the validity of the proposed DSCC.
机译:双序电流控制是并网电压源转换器确保在不平衡电网电压条件下的性能或满足电网要求的关键技术。本文在回顾和分析了现有的双序电流控制器(DSCC)之后,提出了一种基于双同步参考帧(DSRF)的简单DSCC,而无需进行电流序列分解。使用PI控制器在正SRF中控制正序电流,而仅使用积分控制器在负SRF中控制负序电流。为了避免DSRF中电感器电流前馈(ICFF)去耦技术的无效性,仅执行正SRF中的去耦组件。这可确保在正常电网电压条件下与常规电流控制器具有相同的性能。此外,可以可选地采用具有参考电流前馈的新去耦技术,以为正序和负序电流控制提供去耦效果。仿真结果将证明所提出的DSCC的有效性。

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