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Optimal Capacity and Location Assessment of Natural Gas Fired Distributed Generation in Residential Areas.

机译:居民区天然气分布式发电的最佳容量和位置评估。

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摘要

With ever increasing use of natural gas to generate electricity, installed natural gas fired microturbines are found in residential areas to generate electricity locally. This research work discusses a generalized methodology for assessing optimal capacity and locations for installing natural gas fired microturbines in a distribution residential network. The overall objective is to place microturbines to minimize the system power loss occurring in the electrical distribution network; in such a way that the electric feeder does not need any up-gradation. The IEEE 123 Node Test Feeder is selected as the test bed for validating the developed methodology. Three-phase unbalanced electric power flow is run in OpenDSS through COM server, and the gas distribution network is analyzed using GASWorkS. The continual sensitivity analysis methodology is developed to select multiple DG locations and annual simulation is run to minimize annual average losses. The proposed placement of microturbines must be feasible in the gas distribution network and should not result into gas pipeline reinforcement. The corresponding gas distribution network is developed in GASWorkS software, and nodal pressures of the gas system are checked for various cases to investigate if the existing gas distribution network can accommodate the penetration of selected microturbines. The results indicate the optimal locations suitable to place microturbines and capacity that can be accommodated by the system, based on the consideration of overall minimum annual average losses as well as the guarantee of nodal pressure provided by the gas distribution network. The proposed method is generalized and can be used for any IEEE test feeder or an actual residential distribution network.
机译:随着天然气的使用不断增加,在居民区发现已安装天然气燃烧的微型涡轮机可在当地发电。这项研究工作讨论了一种通用方法,用于评估在居民住宅配电网中安装天然气微型燃气轮机的最佳能力和位置。总体目标是放置微型涡轮机,以最大程度地减少配电网络中发生的系统功率损耗。以这种方式,电馈线不需要任何升级。选择IEEE 123节点测试馈送器作为测试平台,以验证开发的方法。三相不平衡电力流通过COM服务器在OpenDSS中运行,并使用GASWorkS分析燃气分配网络。开发了连续灵敏度分析方法以选择多个DG位置,并进行年度模拟以最小化年度平均损失。拟议中的微型涡轮机的布置必须在气体分配网络中可行,并且不应导致天然气管道的加固。在GASWorkS软件中开发了相应的气体分配网络,并针对各种情况检查了气体系统的节点压力,以研究现有的气体分配网络是否可以容纳所选微型涡轮机的穿透力。结果表明,基于总体最小年度平均损失以及由气体分配网络提供的节点压力的保证,可以放置适合系统放置的微型涡轮机的最佳位置和系统可以容纳的容量。所提出的方法是通用的,可用于任何IEEE测试馈线或实际的住宅配电网络。

著录项

  • 作者

    Kamdar, Krutak.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Alternative Energy.;Energy.;Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2014
  • 页码 106 p.
  • 总页数 106
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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