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Power electronics modeling fidelity: Impact on stability estimate of micro-grid systems

机译:电力电子建模的​​逼真度:对微电网系统稳定性评估的影响

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Stability analysis of AC and DC distributed power systems dominated by power electronics devices is a challenge for designers of connected or isolated micro-grids, due to the ideal conditions considered by the manufacturers; this should cause that the system reach an unstable state. This paper focuses in the analysis based on impedance representation of a single phase inverter operating as voltage source, where the Nyquist criteria is realized for a renewable energy micro-grid isolated configuration. Also, three small signal input impedance modeling methods are described, the first is the reduced order modeling methodology or steady state variables averaged model, the second is based on the assumption of no energy storage at the AC and DC side of the inverter, and the third uses an approximation of the impedance with current frequency components. For the three methods a comparative evaluation with the impedance obtained was realized by the application of a voltage perturbation to the DC side. The obtained results show that the proposed method of no energy storage can be employed in the studies of stability for micro grid systems.
机译:由于制造商考虑的理想条件,电力电子设备主导的交流和直流分布式电源系统的稳定性分析对于连接或隔离的微电网的设计人员是一个挑战。这将导致系统达到不稳定状态。本文着重分析基于作为电压源的单相逆变器的阻抗表示,其中针对可再生能源微电网隔离配置实现了奈奎斯特标准。此外,描述了三种小信号输入阻抗建模方法,第一种是降阶建模方法或稳态变量平均模型,第二种是基于逆变器的交流和直流侧没有能量存储的假设,以及第三种使用阻抗与电流频率分量的近似值。对于这三种方法,通过在直流侧施加电压扰动来实现获得阻抗的比较评估。所得结果表明,所提出的无能量存储方法可用于微电网系统的稳定性研究。

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