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Implementation of photovoltaic models into diesel powered micro-grids and residential distribution systems using measured insolation data.

机译:使用测得的日照数据将光伏模型实施到柴油驱动的微电网和住宅配电系统中。

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摘要

Throughout the world the use of photovoltaic (PV) energy sources is quickly accelerating. The amount of energy produced by a PV system can vary greatly by location and from day to day and season to season. This presents a problem for power generation dispatch and management. This thesis contains a design for a low cost solar radiation meter which generates data that can be used to create a simulation of the power produced by a given solar system. The solar radiation sensor is based on an Arduino Uno micro computer. Over time this information can also be used to create custom realistic solar models for proposed or current solar sites. This thesis contains a simulation program written using MATLAB that uses a mathematical model of a solar cell and the data collected from the solar radiation sensor to simulate the power generation of a given defined system.;The thesis continues with an analysis of the impact of the PV generation on a small remote micro grid powered with a diesel generator. Slightly different than a traditional micro grid, these systems are completely isolated from the traditional power gird. This micro grid is modeled as a single-phase approximation of a three-phase system. A custom designed demand curve is developed based on the design and unique cycles of life associated with these remote camps. The inclusion of PV generation into these types of systems, which are often in remote locations, can have significant cost and fuel consumption reductions. Simulated in this thesis is the impact of adding a PV system of various sizes to this micro grid and the benefits of that addition. Power Systems Toolbox is used to conduct all of the simulations for this micro grid.;Finally, the impacts of adding distributed PV generation to a residential distribution system are explored. Power Systems Toolbox is again used to simulate PV generation based on real data gathered from several solar radiation sensors. The sensors collected their data on the same days, with slightly different orientations. The results of power flow in simulations at various levels of penetration with assorted orientations of panels on homes are shown. The demand curves used in this model are based on the standard residential model. This analysis serves as a prediction of the impact of increased distributed solar generation on residential distribution systems.
机译:在全世界范围内,光伏(PV)能源的使用正在迅速加速。光伏系统产生的能量量可能因位置以及每天和每个季节而异。这为发电调度和管理提出了问题。本论文包含一种用于低成本太阳辐射计的设计,该设计可生成可用于创建给定太阳系产生的功率的模拟的数据。太阳辐射传感器基于Arduino Uno微型计算机。随着时间的流逝,该信息还可用于为拟议的或当前的太阳能站点创建自定义的逼真的太阳能模型。本文包含一个使用MATLAB编写的仿真程序,该程序使用太阳能电池的数学模型以及从太阳辐射传感器收集的数据来模拟给定定义系统的发电。在由柴油发电机供电的小型远程微电网上进行光伏发电。这些系统与传统的微电网稍有不同,它们与传统的电网完全隔离。该微电网被建模为三相系统的单相近似。根据这些偏远难民营的设计和独特的生命周期,开发出定制的需求曲线。这些类型的系统(通常位于偏远地区)中包含光伏发电,可以显着降低成本和燃料消耗。本文模拟了在此微电网中添加各种尺寸的光伏系统的影响以及此添加的好处。 Power Systems Toolbox用于对该微电网进行所有仿真。最后,探讨了将分布式光伏发电添加到住宅配电系统中的影响。 Power Systems Toolbox再次用于基于从多个太阳辐射传感器收集的真实数据来模拟光伏发电。传感器在同一天收集数据,但方向略有不同。显示了在不同穿透水平以及房屋面板的各种方向上进行模拟时的功率流结果。该模型中使用的需求曲线基于标准住宅模型。该分析可以预测增加的分布式太阳能发电对住宅配电系统的影响。

著录项

  • 作者

    Barry, Nicholas G.;

  • 作者单位

    Rensselaer Polytechnic Institute.;

  • 授予单位 Rensselaer Polytechnic Institute.;
  • 学科 Electrical engineering.
  • 学位 M.S.
  • 年度 2016
  • 页码 116 p.
  • 总页数 116
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:09

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