配电网络中的电力损耗和能源分配

Ya. I. Krupeneva, E. Boloev, I. I. Golub
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摘要

研究的目的是利用平衡智能电表和用户智能电表的测量数据,确定计算三相四线低压配电网络中功率损耗的方法,并确定影响功率损耗的因素以及功率损耗在单根电网导线、负载和用户之间的分配。这项研究包括研究三种确定电流测量快照功率损耗的方法。第一种方法建议将损耗计算为网络供电功率与总消耗功率之间的差值。第二种方法使用贡献法计算功率损耗。第三种方法除测量信息外,还需要了解网络组件的拓扑结构和参数,根据状态估计方法的结果确定功率损耗。 研究提出了一种从四线制配电网络模型过渡到三线制配电网络模型的算法。该算法在相线之间分配中性线的功率损耗。研究结果表明,不平衡相负载网络中的负损耗是由于负载最小相的节点处电压高于供电节点处的电压造成的。负载最小相损耗较高的原因是各相负载分配不均。此外,研究还发现,与状态估计结果得出的损耗相比,贡献法(即直接从智能电表的测量结果中得出)得出的电能损耗值更接近从平衡电表和用户电表的读数中得出的损耗。本文以现实世界中配备智能电表的配电网络为例,说明了所考虑的电能损耗计算和分配方法。 本文演示了在相线和中性线之间、仅在相线之间以及在相节点的总负载和相中的单个用户之间分配总功率损耗的示例。
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Allocation of power losses and energy in the distribution network
The goal is to determine methods for calculating power losses in a three-phase four-wire low voltage distribution network using measurements of a balance smart meter and consumer smart meters, and to establish the factors influencing the power losses and their allocation among individual network wires, loads, and consumers. The study involved examining three methods for determining power losses for  current measurement snapshot. The first method suggests calculating losses as the difference between the power supplied to the network and the total power consumed. The second method calculates power losses using the contribution method. The third method, which in addition to measurement information requires knowledge of the topology and parameters of the network components, determines power losses based on the results of the state estimation method.  The research proposes an algorithm for transition from a four-wire distribution network modeling to a three-wire one. The algorithm allocates power losses of the neutral wire among the phase wires. The findings indicate that the negative losses in the network with unbalanced phase loads are caused by the presence at the nodes of the least loaded phase of higher voltage than the voltage at the power supply node. The reason for higher losses in phases with minimal load is the uneven allocation of loads in the phases. In addition, the study reveals that the power loss values obtained by the contribution method, i.e. directly from the measurements of smart meters, are closer to the losses determined from the readings of the balance meter and consumer meters, compared to the losses found from the state estimation results. The considered methods for calculation and allocation of power losses are illustrated by an example of a real-world distribution network equipped with smart meters.  The paper demonstrates the examples of allocating total power losses between phase wires and a neutral wire, among phase wires only, and between total loads at phase nodes and individual consumers in phases.
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