用序相分量分析不平衡三相配电网潮流的发展

M. Abdel-Akher, K. M. Nor, A. Abdul-Rashid
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引用次数: 32

摘要

本文提出了一种新的分析配电网不平衡的潮流方法。该方法将不平衡配电网分解为:1)带三相线段的三相主网和2)带两相和单相线段的不平衡侧网。该方法允许基于解耦的正序、负序和零序网络求解主三相网络。在相位分量中采用正/反方法求解不平衡横向。解决过程包括三个主要步骤。首先,在同相分量中,执行反步计算每个不平衡侧的等效电流注入。其次,对主要三相网络进行了分段求解。正序网络采用标准牛顿-拉夫逊和快速解耦方法求解,负序和零序网络采用两个节点电压方程表示。最后,在相位分量中,执行前向步骤来更新不平衡侧的电压。重复这三个步骤,直到趋同发生。配电网的特点,如线路耦合,变压器相移,电压调节器,光伏节点,电容器组,和现场或分布式负载与任何类型和连接被考虑。对不平衡径向给料机的求解结果表明,该混合算法是准确的。
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Development of unbalanced three-phase distribution power flow analysis using sequence and phase components
This paper presents a new power-flow method for analyzing unbalanced distribution networks. In this method, an unbalanced distribution network Is decomposed to: 1) main three-phase network with three-phase line segments and 2) unbalanced laterals with two-phase and single-phase line segments. The proposed method allows solving the main three-phase network based on the decoupled positive-, negative, and zero-sequence networks. The unbalanced laterals are solved using the forward/backward method In phase components. The solution process Involves three main steps. Firstly, In phase components, the backward step Is executed to calculate an equivalent current Injection for each unbalanced lateral. Secondly, the main three-phase network Is solved In sequence components. The standard Newton-Raphson and fast decoupled methods are used for solving the positive-sequence network whereas the negative- and zero-sequence networks are represented by two nodal voltage equations. Finally, In phase components, the forward step Is performed to update the voltages In the unbalanced laterals. The three-steps are repeated till convergence happen. Distribution network characteristics such as line coupling, transformer phase shifts, voltage regulators, PV nodes, capacitor banks, and spot or distributed loads with any type and connection are considered. Solution of unbalanced radial feeders shows that the proposed hybrid algorithm Is accurate.
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