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Upravljanje proizvodnom jedinicom spojenom na mrežu tijekom nesimetričnih napona na mreži temeljeno na kliznom režimu

机译:主电网电压不对称时基于电网的发电单元控制

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摘要

The increasing presence of inverter-based distributed generation (DG) units in distribution networks (DNs) requires control methods that achieve high performance not only during normal operating conditions, but also under unbalanced conditions. With a high probability, a type of voltage unbalance in DNs is unequal three-phase voltage magnitudes at the fundamental system frequency. This can occur temporarily due to faults or permanently due to uneven distribution of unbalanced loads, on the three-phases of the DN. This paper proposes a sliding mode (SM) based controller for grid-connected DG units, under unbalanced grid voltage condition. The proposed control strategy employs a nonlinear control scheme to directly cancel out the negative-sequence (NS) components of DG output current under unbalanced voltage condition; and directly regulate the positive-sequence (PS) active and reactive power injected by DG units to main-grid. The control method proposed in this paper is shown to be robust and stable system parameter uncertainties. The validity and effectiveness of the proposed controller is verified by using time-domain simulation studies, under the MATLAB/Simulink software environment.
机译:配电网络(DNs)中基于逆变器的分布式发电(DG)单元的不断增加,要求控制方法不仅在正常运行条件下而且在不平衡条件下也能实现高性能。在基本系统频率下,DN中电压不平衡的类型很有可能是不相等的三相电压幅度。这可能是由于故障而暂时发生的,也可能是由于DN三相上不平衡负载的不均匀分布而引起的永久性的。本文提出了在不平衡电网电压条件下并网DG机组基于滑模(SM)的控制器。所提出的控制策略采用非线性控制方案直接抵消了不平衡电压条件下DG输出电流的负序分量。并直接调节DG单元向主电网注入的正序(PS)有功和无功功率。结果表明,本文提出的控制方法具有鲁棒性和稳定性。在MATLAB / Simulink软件环境下,通过时域仿真研究验证了所提出控制器的有效性和有效性。

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