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Planning of optimal location and sizes of distribution transformers using integer programming

机译:使用整数规划来规划配电变压器的最佳位置和尺寸

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During planning of the development of medium voltage distribution networks, new distribution transformers medium/low voltage can be developed on more than one location and have more options of connecting to the network. On the other side, planning of development medium-voltage distribution network usually includes optimization of location and rates of substations as well as optimal locations and feeder shaping, while the problem of location optimization and rate of distribution transformers has not been treated in literature so far available. Problem is brought down to associating distribution transformers geographically in to the supply area, associating one supply area to one distribution transformer. The most frequent case is that in one part (observed) of a consumer group appears a need to build one distribution transformer station with a possibility of construction on more than one location. It is enough to apply separate calculations to all possible locations and by comparing to attain the best possible solution. General and rather rare case is when in observed part of a consumer group there is a need to develop more than one distribution transformer with possibility, in addition to be in more locations, that individual distribution transformer also to be installed in different size (for example, 630 kV A and/or 2 X 630 kV A). In that case (general) it is needed to approach with more complex selection way, i.e. with optimization. In this paper a solution has been proposed for optimization of location for a new distribution transformer by associating one consumer area to several distribution transformers that together supply the corresponding area. Optimization is being performed by appliance of network penalty factors and integer programming. Penalty factors are obtained by calculation of medium voltage network state, voltage drops and losses in every medium voltage feeder. The basic idea is to choose from the set of solutions the most qualitative one, from the view point of annual investment costs, voltage drops, load of feeders and substations. At the same time a problem of reinforcement of the existing distribution network is concerned. By observing of one area for more distribution transformers instead of one area for one distribution transformer, the exploitation level of medium voltage network is being raised, since it is being decided to build a one distribution transformer out of the given set, which leads to the least increase of power losses and voltage drops in relation to newly made investment costs. Thus obtained results can be used for more precious definition of locations and powers of distribution transformer, in solving short-term development planning problems after made development plans for distribution system in the way as it has been so far done. Test example shows that developed method can be also used as an additional tool in planning distribution networks development.
机译:在规划中压配电网的过程中,可以在多个位置开发新的中/低压配电变压器,并且可以选择更多的连接到网络的方法。另一方面,发展中压配电网的规划通常包括变电站的位置和费率的优化,以及最佳位置和馈线整形,而到目前为止,文献中还没有解决位置优化和配电变压器的费率问题。可用。问题归结为将配电变压器在地理位置上与供电区域相关联,将一个供电区域与一个配电变压器相关联。最常见的情况是,在一组(观察到)的消费者群体中,似乎需要建立一个配电变电站,并且有可能在多个地点建造。将单独的计算应用于所有可能的位置并通过比较来获得最佳解决方案就足够了。一般且很少见的情况是,在一个消费者群体的观察部分中,有必要开发一个以上的配电变压器,并且除了在更多的位置外,还有可能以不同的尺寸安装单个配电变压器(例如,630 kV A和/或2 X 630 kV A)。在那种情况下(一般),需要采用更复杂的选择方式,即优化。在本文中,已经提出了一种解决方案,用于通过将一个用电区域与几个一起提供相应区域的配电变压器相关联来优化新配电变压器的位置。网络惩罚因子和整数编程正在执行优化。通过计算每个中压馈线中的中压网络状态,电压降和损耗来获得惩罚因子。从年度投资成本,电压降,馈线和变电站的负荷的角度出发,基本思想是从解决方案集中选择最优质的解决方案。同时,还涉及加强现有分销网络的问题。通过观察更多配电变压器的一个区域而不是一个配电变压器的一个区域,提高了中压网络的开发水平,因为决定从给定的集合中构建一个配电变压器,这导致了相对于新的投资成本而言,功率损耗和电压下降的增加最小。这样获得的结果可以用于配电变压器的位置和功率的更珍贵的定义,以迄今已完成的方式为配电系统制定开发计划后解决短期发展计划问题。测试示例表明,开发的方法还可以用作规划配电网络开发的附加工具。

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