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Optimal Distribution Network Reinforcement Considering Load Growth, Line Loss, and Reliability

机译:考虑负载增长,线路损耗和可靠性的最佳配电网加固

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In this paper, a new comprehensive planning methodology is proposed for implementing distribution network reinforcement. The load growth, voltage profile, distribution line loss, and reliability are considered in this procedure. A time-segmentation technique is employed to reduce the computational load. Options considered range from supporting the load growth using the traditional approach of upgrading the conventional equipment in the distribution network, through to the use of dispatchable distributed generators (DDG). The objective function is composed of the construction cost, loss cost and reliability cost. As constraints, the bus voltages and the feeder currents should be maintained within the standard level. The DDG output power should not be less than a ratio of its rated power because of efficiency. A hybrid optimization method, called modified discrete particle swarm optimization, is employed to solve this nonlinear and discrete optimization problem. A comparison is performed between the optimized solution based on planning of capacitors along with tap-changing transformer and line upgrading and when DDGs are included in the optimization.
机译:本文提出了一种新的综合规划方法来实施配电网的加固。在此过程中考虑了负载增长,电压曲线,配电线路损耗和可靠性。采用时间分段技术来减少计算量。考虑的选项包括使用升级配电网中传统设备的传统方法来支持负荷增长,再到使用可调度分布式发电机(DDG)。目标函数由建设成本,损失成本和可靠性成本组成。作为约束,母线电压和馈线电流应保持在标准水平内。由于效率,DDG输出功率不应小于其额定功率的比率。解决此非线性离散问题的方法是混合优化方法,称为改进离散粒子群算法。在基于电容器规划,分接变换变压器和线路升级的优化解决方案之间以及在优化过程中包括DDG时进行比较。

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