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Estimation of power quality indices in distributed generation systems during power islanding conditions

机译:电力孤岛状态下分布式发电系统中电能质量指标的估算

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This paper presents a new, fast Modified Recursive Gauss-Newton (MRGN) method for the estimation of power quality indices in distributed generating systems during both islanding and non-islanding conditions. A forgetting factor weighted error cost function is minimized by the well known Gauss-Newton algorithm and the resulting Hessian matrix is approximated by ignoring the off-diagonal terms. This simplification produces a decoupled algorithm, for the fundamental and harmonic components and results in a large reduction of computational effort, when the power signal contains a large number of harmonics. Numerical experiments have shown that the proposed approach results in higher speed of convergence, accurate tracking of power signal parameters in the presence noise, waveform distortion, etc., which are suitable for the estimation of power quality indices. In the case of a distribution network, power islands occur when power supply from the main utility is interrupted due to faults or otherwise and the distributed generation system (DG) keeps supplying power into the network. Further, due to unbalanced load conditions the DG is subject to unbalanced voltages at its terminals and suffers from increased total harmonic distortion (THD). Thus, the power quality indices estimation, along with the power system frequency estimation will play a vital role in detecting power islands in distributed generating systems. Extensive studies, both on simulated and real, benchmark hybrid distribution networks, involving distributed generation systems reveal the effectiveness of the proposed approach to calculate the power quality indices accurately.
机译:本文提出了一种新的快速改进的递归高斯牛顿(MRGN)方法,用于估计孤岛和非孤岛条件下分布式发电系统的电能质量指标。遗忘因子加权误差成本函数通过众所周知的Gauss-Newton算法最小化,并且通过忽略非对角项来近似得到的Hessian矩阵。这种简化产生了针对基波分量和谐波分量的解耦算法,并且当功率信号包含大量谐波时,可大大减少计算量。数值实验表明,所提出的方法收敛速度更快,存在噪声时功率信号参数的准确跟踪,波形失真等,适合于电能质量指标的估计。在配电网络中,当由于故障或其他原因中断了主要公用事业的电源时,就会出现功率孤岛,而分布式发电系统(DG)会继续向网络供电。此外,由于负载条件不平衡,DG的端子承受不平衡电压,总谐波失真(THD)增大。因此,电能质量指标估计以及电力系统频率估计将在检测分布式发电系统中的电力孤岛中起至关重要的作用。在涉及分布式发电系统的模拟和实际基准混合配电网络上进行的大量研究表明,该方法可有效地准确计算电能质量指标。

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