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Analysis and correction of voltage profile in low voltage distribution networks containing photovoltaic cells and electric vehicles

机译:包含光伏电池和电动汽车的低压配电网络中的电压曲线分析和校正

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摘要

Voltage drop and rise at network peak and off–peak periods along with voltage unbalance are the major power quality problems in low voltage distribution networks. Usually, the utilities try to use adjusting the transformer tap changers as a solution for the voltage drop. They also try to distribute the loads equally as a solution for network voltage unbalance problem. On the other hand, the ever increasing energy demand, along with the necessity of cost reduction and higher reliability requirements, are driving the modern power systems towards Distributed Generation (DG) units. This can be in the form of small rooftop photovoltaic cells (PV), Plug–in Electric Vehicles (PEVs) or Micro Grids (MGs). Rooftop PVs, typically with power levels ranging from 1–5 kW installed by the householders are gaining popularity due to their financial benefits for the householders. Also PEVs will be soon emerged in residential distribution networks which behave as a huge residential load when they are being charged while in their later generation, they are also expected to support the network as small DG units which transfer the energy stored in their battery into grid. Furthermore, the MG which is a cluster of loads and several DG units such as diesel generators, PVs, fuel cells and batteries are recently introduced to distribution networks. The voltage unbalance in the network can be increased due to the uncertainties in the random connection point of the PVs and PEVs to the network, their nominal capacity and time of operation. Therefore, it is of high interest to investigate the voltage unbalance in these networks as the result of MGs, PVs and PEVs integration to low voltage networks. In addition, the network might experience non–standard voltage drop due to high penetration of PEVs, being charged at night periods, or non–standard voltage rise due to high penetration of PVs and PEVs generating electricity back into the grid in the network off–peak periods. In this thesis, a voltage unbalance sensitivity analysis and stochastic evaluation is carried out for PVs installed by the householders versus their installation point, their nominal capacity and penetration level as different uncertainties. A similar analysis is carried out for PEVs penetration in the network working in two different modes: Grid to vehicle and Vehicle to grid. Furthermore, the conventional methods are discussed for improving the voltage unbalance within these networks. This is later continued by proposing new and efficient improvement methods for voltage profile improvement at network peak and off–peak periods and voltage unbalance reduction. In addition, voltage unbalance reduction is investigated for MGs and new improvement methods are proposed and applied for the MG test bed, planned to be established at Queensland University of Technology (QUT). MATLAB and PSCAD/EMTDC simulation softwares are used for verification of the analyses and the proposals.
机译:网络高峰和非高峰时段的电压下降和上升以及电压不平衡是低压配电网络中的主要电能质量问题。通常,公用事业公司会尝试使用调节变压器分接开关来解决电压降的问题。他们还尝试平均分配负载,以解决网络电压不平衡问题。另一方面,不断增长的能源需求以及降低成本的必要性和更高的可靠性要求,正将现代电力系统推向分布式发电(DG)装置。它可以采用小型屋顶光伏电池(PV),插电式电动车(PEV)或微电网(MG)的形式。屋顶光伏通常由家庭安装,其功率级别在1-5 kW之间,这是由于其为家庭带来的经济利益而越来越受欢迎。 PEV也将很快出现在住宅配电网中,当它们被充电时,其表现为巨大的住宅负荷,而在其下一代中,它们也有望作为小型DG单元来支持该网络,这些DG单元将存储在电池中的能量转移到电网中。此外,作为负载集群的MG和一些DG单元(例如柴油发电机,PV,燃料电池和蓄电池)最近被引入配电网络。由于PV和PEV到网络的随机连接点,标称容量和运行时间的不确定性,可能会增加网络中的电压不平衡。因此,研究由于MG,PV和PEV集成到低压网络而导致的这些网络中的电压不平衡引起了人们的极大兴趣。此外,由于PEV的高穿透性,在夜间充电,网络可能会遭受非标准的电压降,或者由于PV和PEV的高穿透性而将电力回馈至电网中的电网,网络可能会出现非标准的电压上升–高峰期。本文针对住户安装的光伏发电与安装点,标称容量和穿透水平等不同不确定性进行了电压不平衡灵敏度分析和随机评估。对于PEV在网络中以两种不同模式工作的渗透率进行了类似的分析:网格到车辆和车辆到网格。此外,讨论了用于改善这些网络内的电压不平衡的常规方法。后来,通过提出新的有效的改进方法,以改善网络高峰期和非高峰期的电压曲线以及减少电压不平衡的情况,继续了这一工作。此外,还对MG的电压不平衡降低进行了研究,并提出了新的改进方法,并将其应用于MG测试台,该测试台计划在昆士兰科技大学(QUT)建立。 MATLAB和PSCAD / EMTDC仿真软件用于验证分析和建议。

著录项

  • 作者

    Shahnia Farhad;

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