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Planning of distribution networks for medium voltage and low voltage

机译:中低压配电网规划

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摘要

Determination of the placement and rating of transformers and feeders are the main objective of the basic distribution network planning. The bus voltage and the feeder current are two constraints which should be maintained within their standard range. The distribution network planning is hardened when the planning area is located far from the sources of power generation and the infrastructure. This is mainly as a consequence of the voltage drop, line loss and system reliability. Long distance to supply loads causes a significant amount of voltage drop across the distribution lines. Capacitors and Voltage Regulators (VRs) can be installed to decrease the voltage drop. This long distance also increases the probability of occurrence of a failure. This high probability leads the network reliability to be low. Cross-Connections (CC) and Distributed Generators (DGs) are devices which can be employed for improving system reliability. Another main factor which should be considered in planning of distribution networks (in both rural and urban areas) is load growth. For supporting this factor, transformers and feeders are conventionally upgraded which applies a large cost. Installation of DGs and capacitors in a distribution network can alleviate this issue while the other benefits are gained.udIn this research, a comprehensive planning is presented for the distribution networks. Since the distribution network is composed of low and medium voltage networks, both are included in this procedure. However, the main focus of this research is on the medium voltage network planning. The main objective is to minimize the investment cost, the line loss, and the reliability indices for a study timeframe and to support load growth. The investment cost is related to the distribution network elements such as the transformers, feeders, capacitors, VRs, CCs, and DGs. The voltage drop and the feeder current as the constraints are maintained within their standard range.udIn addition to minimizing the reliability and line loss costs, the planned network should support a continual growth of loads, which is an essential concern in planning distribution networks. In this thesis, a novel segmentation-based strategy is proposed for including this factor. Using this strategy, the computation time is significantly reduced compared with the exhaustive search method as the accuracy is still acceptable. In addition to being applicable for considering the load growth, this strategy is appropriate for inclusion of practical load characteristic (dynamic), as demonstrated in this thesis.udThe allocation and sizing problem has a discrete nature with several local minima. This highlights the importance of selecting a proper optimization method. Modified discrete particle swarm optimization as a heuristic method is introduced in this research to solve this complex planning problem. Discrete nonlinear programming and genetic algorithm as an analytical and a heuristic method respectively are also applied to this problem to evaluate the proposed optimization method.
机译:确定配电网和馈线的位置和额定值是基本配电网规划的主要目标。母线电压和馈线电流是两个约束条件,应保持在其标准范围内。当规划区域位于远离发电源和基础设施的地方时,配电网络规划将得到加强。这主要是电压降,线路损耗和系统可靠性的结果。与电源负载的距离过长会导致配电线上的电压降很大。可以安装电容器和稳压器(VR)以减小电压降。这种长距离也增加了发生故障的可能性。这种高可能性导致网络可靠性降低。交叉连接(CC)和分布式发电机(DG)是可用于提高系统可靠性的设备。规划配电网络(在农村和城市地区)时应考虑的另一个主要因素是负荷增长。为了支持该因素,常规地对变压器和馈线进行了升级,这花费了大笔费用。在配电网中安装DG和电容器可以缓解此问题,同时获得其他好处。 ud在本研究中,提出了配电网的综合计划。由于配电网络由低压和中压网络组成,因此在此过程中都包括了两者。但是,这项研究的主要重点是中压网络规划。主要目标是使研究时间范围内的投资成本,线路损耗和可靠性指标最小化,并支持负载增长。投资成本与配电网络元素有关,例如变压器,馈线,电容器,VR,CC和DG。压降和馈线电流作为约束条件保持在其标准范围内。 ud除了将可靠性和线路损耗成本降至最低之外,规划的网络还应支持负载的持续增长,这在规划配电网络时至关重要。本文提出了一种新的基于细分的策略来解决这一问题。与穷举搜索方法相比,使用这种策略可以显着减少计算时间,因为准确性仍然可以接受。如本文所论证的那样,该策略除了适用于考虑负荷增长外,还适合于包含实际负荷特性(动态)。 ud分配和大小问题具有多个局部最小值的离散性质。这突出了选择适当的优化方法的重要性。为了解决这个复杂的规划问题,本研究引入了改进的离散粒子群算法作为启发式方法。离散非线性规划和遗传算法分别作为解析方法和启发式方法也被应用于该问题,以评估所提出的优化方法。

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    Ziari Iman;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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