Relative Stability Assessment for Wideband Harmonic Resonances in Distributed Generation Power Plants

Zhiyong Chen, An Luo, Xucheng Huang
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引用次数: 1

Abstract

For assessing the influence of feeder's distributed parameter on the grid-connected current which is emitted by distributed generation power plants (DGPP), hyperbolic function should be introduced in the process of feeder modeling. However, the Taylor approximation of the hyperbolic function makes the Norton equivalent of the DGPP possess a certain number of poles in the right-half s plane. This pole configuration violates the impedance-based stability criterion to be applied. To this end, we proposed equivalently transforming the hyperbolic function via Euler's formula. The advantage of this transformation includes the following two aspects: 1) it could establish the direct correlation between time-domain eigenvalues and system frequencies; 2) it enables us to assess the relative stability of systems in terms of pole-zero method. By using the proposed Eu-ler's formula-based stability-analysis approach, we found that: 1) the underlying causes of the wideband harmonic resonances correlated with the motion patterns of the eigenvalues on the s plane; 2) with the system frequencies increasing, the frequencies of the arc resonance peaks exactly corresponded to the frequencies which made the dominant pole traverse the negative real axis in the s plane from top to bottom.
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分布式发电厂宽带谐波谐振的相对稳定性评估
为了评估馈线分布参数对分布式发电机组并网电流的影响,在馈线建模过程中应引入双曲函数。然而,双曲函数的泰勒近似使得DGPP的诺顿等效在s平面的右半部分具有一定数量的极点。这种极点配置违反了要应用的基于阻抗的稳定性准则。为此,我们提出用欧拉公式对双曲函数进行等效变换。该变换的优点包括:1)可以建立时域特征值与系统频率之间的直接相关关系;2)它使我们能够用极-零方法来评估系统的相对稳定性。利用提出的基于Eu-ler公式的稳定性分析方法,我们发现:1)宽带谐波共振的根本原因与s平面上特征值的运动模式相关;2)随着系统频率的增加,弧共振峰的频率与主极自上至下穿过s平面负实轴的频率正好对应。
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