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Power flow models of unified power flow controllers in various operation modes

机译:各种运行模式下统一潮流控制器的潮流模型

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A comprehensive UPFC steady-state model for power flow analysis will be proposed. With considering resistances of coupling transformers and converter losses, this new model can implement any desired control actions, including any combinations of active/reactive power control and voltage magnitude control, within the same framework. The d-q axis decomposition of UPFC control variables will be considered as UPFC unknown variables in conventional Newton-Raphson power flow solvers. An IEEE 118 test system embedded with 2 UPFCs is studied to validate our new model. Performance comparisons between our new model and the voltage-source-based (VSB) model are also performed. Simulation results demonstrate that the quadratic convergence of the Newton-Raphson algorithm is still maintained in our model even under different operation modes. Influence of coupling transformers and converter loss are also studied in detail.
机译:将提出全面的UPFC稳态模型,用于电流分析。考虑到耦合变压器和转换器损耗的电阻,这种新模型可以实现任何所需的控制动作,包括在同一框架内的主动/无功控制和电压幅度控制的任何组合。 UPFC控制变量的D-Q轴分解将被认为是传统的牛顿Raphson电源流量求解器中的UPFC未知变量。研究了嵌入具有2个UPFC的IEEE 118测试系统,以验证我们的新模型。还执行了我们的新模型与电压源(VSB)模型之间的性能比较。仿真结果表明,即使在不同的操作模式下,我们的模型中仍然维持牛顿-Raphson算法的二次收敛。还详细研究了耦合变压器和转换器损耗的影响。

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