A Universal Model for Grid-Connected Converters Reflecting Power-Internal Voltage Characteristics

Q. Peng, Jingyang Fang, Yongheng Yang, F. Blaabjerg
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引用次数: 4

Abstract

With the still increasing penetration of renewable energy, the power system is being more power electronics based and digital. The diversity of grid-connected power converters with various control strategies complicates the analysis of system dynamics, when various and detailed converter models are adopted. This paper thus proposes a universal model of grid-connected converters that can reflect the essential power-internal voltage characteristics. With that, the diversity of converter outer controllers may be discarded, as their dynamics can be represented by the deviation of active and reactive power. In the proposed model, the transfer functions from the converter output power to the internal voltage and to the Phase-Locked Loop (PLL) output frequency are obtained, enabling the exploration of the stability of the internal voltage and the PLL performance. An example system is adopted to demonstrate the proposed model and simulated in PSCAD/EMTDC. The results show that the model is accurate to reflect the impact of controller parameters on the power-internal voltage stability of the entire system.
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反映电源内部电压特性的并网变流器通用模型
随着可再生能源的不断普及,电力系统正日益电子化和数字化。当采用各种详细的并网变流器模型时,变流器控制策略的多样性使系统动力学分析变得复杂。因此,本文提出了一个能反映电源内部基本电压特性的通用并网变流器模型。这样就可以抛弃变流器外部控制器的多样性,因为它们的动态可以用有功功率和无功功率的偏差来表示。在该模型中,获得了从变换器输出功率到内部电压和锁相环输出频率的传递函数,从而可以探索内部电压和锁相环性能的稳定性。通过一个实例系统对该模型进行了验证,并在PSCAD/EMTDC中进行了仿真。结果表明,该模型能够准确反映控制器参数对整个系统电源内电压稳定性的影响。
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