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Decoupled three-phase load flow method for unbalanced distribution systems

机译:不平衡配电系统的三相解耦潮流方法

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This paper proposes a decoupled three-phase load flow analysis method for unbalanced distribution systems. The power flows are solved through nodal current injection mismatch equations written in rectangular coordinates. The voltage changes resulting from nodal current injection mismatches and nodal admittance matrix have been decoupled into one contribution from the real part, conductance matrix, and the other contribution from the imaginary part, susceptance matrix. The method determines voltage changes resulting from conductance and susceptance matrices respectively, and determines the voltages of a node as a linear combination of those voltage changes. The relative contributions are determined based on the diagonals of the conductance and susceptance matrices. The constant active power and voltage magnitude(PV) nodes have been converted into constant active and reactive power(PQ) ones based on a sensitivity matrix determined through Kron reduction of the nodal admittance matrix, and the corresponding reactive powers are adjusted after each solution has converged. The zero-impedance branches are merged with adjacent impedance branches, and the three phases of a balanced-voltage PV bus are merged into one single-phase PV bus to be modeled in the nodal admittance matrix. Numerical examples on IEEE 37 node test feeder and IEEE 123 node test feeder are presented to demonstrate the effectiveness of the proposed method.
机译:本文提出了一种不平衡配电系统的三相潮流解耦分析方法。通过用直角坐标编写的节点电流注入失配方程来求解功率流。由节点电流注入失配和节点导纳矩阵引起的电压变化已被分解为一个部分,即实部,电导矩阵,而另一部分,是虚部,电纳矩阵。该方法分别确定由电导和电纳矩阵引起的电压变化,并将节点的电压确定为那些电压变化的线性组合。相对贡献是基于电导和电纳矩阵的对角线确定的。基于节点导纳矩阵的Kron折减确定的灵敏度矩阵,将恒定有功功率和电压幅值(PV)节点转换为恒定有功和无功功率(PQ)节点,并在每种解决方案求解后调整相应的无功功率融合。零阻抗支路与相邻的阻抗支路合并,平衡电压PV母线的三相合并为一个单相PV母线,以在节点导纳矩阵中建模。给出了IEEE 37节点测试馈线和IEEE 123节点测试馈线的数值示例,以证明该方法的有效性。

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