Medina-Quesada Ángeles, Montoya Oscar Danilo, Hernández Jesus C
Department of Electrical Engineering, University of Jaén, Campus Lagunillas s/n, Edificio A3, 23071 Jaén, Spain.
Grupo de Compatibilidad e Interferencia Electromagnética, Facultad de Ingeniería, Universidad Distrital Francisco José de Caldas, Bogotá 110231, Colombia.
Sensors (Basel). 2022 Apr 11;22(8):2914. doi: 10.3390/s22082914.
This paper analyzes the power flow solution in bipolar direct current networks with radial structures considering multiple monopolar and bipolar constant power loads. The electrical configuration of the bipolar DC grid considers that the reference pole is non-grounded along the feeder, which produces important neutral currents and voltage imbalances along the DC grid. The power flow problem is formulated through the triangular-based representation of the grid topology, which generates a recursive formulation that allows determining the voltage values in the demand nodes through an iterative procedure. The linear convergence of the triangular-based power flow method is tested through multiple load variations with respect to the nominal grid operative condition. Numerical results in the 21- and the 85-bus grids reveal the relevant variations in the voltage profiles and total grid power losses when the neutral cable is solidly grounded or not.
本文分析了具有径向结构的双极直流网络中的潮流解,该网络考虑了多个单极和双极恒功率负载。双极直流电网的电气配置考虑到参考极沿馈线不接地,这会在直流电网中产生重要的中性线电流和电压不平衡。潮流问题通过基于三角形的电网拓扑表示来公式化,这产生了一个递归公式,该公式允许通过迭代过程确定需求节点中的电压值。通过相对于标称电网运行条件的多个负载变化来测试基于三角形的潮流方法的线性收敛性。21节点和85节点电网的数值结果揭示了中性电缆是否直接接地时电压分布和电网总功率损耗的相关变化。