The development and formulation of a power flow using d - q reference frame components

S. Saleh
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引用次数: 3

Abstract

This paper develops a new approach for formulating and the power flow for power systems. The developed approach is based on expressing the active and reactive power injections at each bus, in a power system, using the d-q-axis components of bus voltages and admittance matrix. The new power flow formulation produces a scaled Jacobian matrix, which can offer a fast convergence to the solution. The proposed power flow formulation can also model bus type conversions without affecting its accuracy or fast convergence. In addition, the d-q-axis power flow (DQPF) offers a simplified and reliable representation of PV buses that have distributed generation units (DGUs). The DQPF is implemented with a step-by-step procedure for performance evaluation on several power systems operated at different conditions. Performance results demonstrate fast convergence, reduced computations, and minor sensitivity to the number of buses, loading conditions, and levels of DGU penetration. Furthermore, performance results show that DQPF power flow can attain solutions in less iterations than Newton-Raphson, Fast Decoupled, and Iwamoto power flow methods.
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使用d - q参考系元件的潮流的发展和公式
本文提出了一种新的电力系统潮流计算方法。所开发的方法是基于使用母线电压和导纳矩阵的d-q轴分量来表示电力系统中每个母线的有功和无功功率注入。新的潮流公式产生一个缩放的雅可比矩阵,可以提供快速收敛的解决方案。所提出的潮流公式还可以在不影响其准确性和快速收敛的情况下对母线型转换进行建模。此外,d-q轴功率流(DQPF)提供了具有分布式发电机组(dgu)的光伏母线的简化和可靠的表示。DQPF是一个逐步实施的程序,用于在不同条件下运行的几个电力系统的性能评估。性能结果显示快速收敛,减少计算量,并且对总线数量,负载条件和DGU渗透水平的敏感性较小。此外,性能结果表明,DQPF潮流比Newton-Raphson, Fast解耦和Iwamoto潮流方法可以在更少的迭代中获得解。
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