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Transient Stability Considering Dynamic Load in Bulk Power System with High DG Penetration

机译:高DG穿透大电力系统中考虑动态负载的暂态稳定性。

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Transient stability may be seriously affected when a large number of distributed generators (DG) stop simultaneously during voltage sag. It is necessary to analyze accurately the dynamics of bulk power systems with high DG penetration. In this paper, transient stability is studied by analyzing power-angle curves of generators while considering load dynamics and model order reduction at lower voltages. Based on the analysis, a decrease in the load internal resistance after voltage sag causes transient instability of generators. The phenomenon is confirmed through simulation using a one-machine and one-load model. This paper also suggests that the simulation results might be misled by traditional bulk power system modeling such as using the static load model and ignoring impedance at lower voltages. As for the numerical simulation, a large level of DG stoppage leads to transient step out in a bulk power system, and the stability is greatly improved by DG voltage regulation.
机译:当在电压骤降期间大量分布式发电机(DG)同时停止时,瞬态稳定性可能会受到严重影响。必须准确分析具有较高DG渗透率的大功率电力系统的动态。在本文中,通过分析发电机的功率角曲线,同时考虑负载动态和在较低电压下的模型阶数减少,来研究瞬态稳定性。根据分析,电压骤降后负载内阻降低会导致发电机瞬态不稳定。通过使用一机一载模型进行仿真来确认该现象。本文还建议,模拟结果可能会被传统的大容量电力系统建模所误导,例如使用静态负载模型而忽略较低电压下的阻抗。对于数值模拟,DG停止的程度很高,会导致大功率系统中出现瞬态失步,并且通过DG电压调节可以大大提高稳定性。

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