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Developed generalised unified power flow controller model in the Newton–Raphson power-flow analysis using combined mismatches method

机译:使用组合失配法在牛顿-拉夫森潮流分析中开发了通用统一潮流控制器模型

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摘要

This study proposes the generalised unified power flow controller (GUPFC) model in the hybrid current power mismatch Newton-Raphson formulation (HPCIM). In this model, active power, real and imaginary current components are injected at the terminals of series impedances of GUPFC. These injected values are calculated during the iterative process based on the desired controlled values and buses voltage at the terminals of GUPFC. The parameters of GUPFC can be calculated during the iterative process and the final values are updated after load flow convergence. Using the developed GUPFC model, the original structure and symmetry of the admittance and Jacobian matrices can still be kept, the changing of Jacobian matrix is eliminated. Consequently, the complexities of the computer load flow program codes with GUPFC are reduced. The HPCIM load flow code with the proposed model is written in C++ programming language. Where, the SuperLU library is utilised to handle the sparse Jacobian matrix. The proposed model has been validated using the standard IEEE test systems.
机译:这项研究提出了混合电流功率不匹配牛顿-拉夫森公式(HPCIM)中的广义统一潮流控制器(GUPFC)模型。在该模型中,有功功率,有功和虚电流分量注入到GUPFC串联阻抗的端子上。这些注入的值是在迭代过程中根据所需的控制值和GUPFC端子处的总线电压来计算的。可以在迭代过程中计算GUPFC的参数,并在潮流收敛后更新最终值。使用改进的GUPFC模型,仍可以保持导纳和雅可比矩阵的原始结构和对称性,消除了雅可比矩阵的变化。因此,减少了带有GUPFC的计算机潮流程序代码的复杂性。所提出模型的HPCIM潮流代码是用C ++编程语言编写的。其中,SuperLU库用于处理稀疏的Jacobian矩阵。所提出的模型已使用标准IEEE测试系统进行了验证。

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