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Techno-economic simulation and optimization of residential grid-connected PV system for the Queensland climate

机译:昆士兰州气候的住宅并网光伏系统的技术经济模拟和优化

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摘要

With the environmental advantages of solar energy, the use of solar photovoltaic (PV) in residential electricity generation is encouraged by Australian governments incentives, however, what number of residents benefit from installing a grid-connected PV system and how much electricity generated by such a system is not clearly understood yet. This study aims to investigate the economic, technical and environmental performance of residential PV system running under the Queensland (Australia) climatic conditions, and optimize the size and slope of PV array in the system. The solar irradiation data of the 4 typical climate zones of Queensland, including tropical, sub-tropical, hot arid, and warm temperature zone, are investigated. Using global solar irradiation as solar energy resource data, the price of PV devices, batteries, converters, and grid electricity tariff and sale-back tariff as economic analysis inputs, the system is simulated and optimized by HOMER software. The optimized system not only satisfies the typical residential load of 23 kWh per day but also meets the requirement of minimizing the total costs of system investment and electricity consumption during the system's lifetime. It is found that under the specific climatic conditions of the eleven main cities of Queensland, a PV system is an effective way to decrease electricity bills and mitigate carbon dioxide emission. In particular, a 6 kW PV system in Townsville is able to deal with 61% of the total electricity load and conserves more than 90% of electricity payments and reduce approximately 95% of carbon dioxide emission. It is also found that for all the cities the systems with 20—25 degrees of slope have the best performance including the least cost of energy (COE) and the least carbon dioxide emission.
机译:凭借太阳能的环境优势,澳大利亚政府的鼓励措施鼓励在住宅发电中使用太阳能光伏(PV),但是,安装并网光伏系统可为多少居民带来收益,以及通过这种方式可产生多少电能系统尚不清楚。本研究旨在调查在昆士兰(澳大利亚)气候条件下运行的住宅光伏系统的经济,技术和环境性能,并优化系统中光伏阵列的大小和斜率。研究了昆士兰州4个典型气候区的太阳辐射数据,包括热带,亚热带,干旱和温暖的温度区。使用全球太阳辐射作为太阳能资源数据,将光伏设备,电池,转换器的价格以及电网电价和回售电价作为经济分析输入,利用HOMER软件对该系统进行了仿真和优化。经过优化的系统不仅可以满足每天23 kWh的典型住宅负荷,还可以满足在系统寿命期内最大限度地减少系统投资和电力消耗总成本的要求。研究发现,在昆士兰州11个主要城市的特定气候条件下,光伏发电系统是减少电费和减少二氧化碳排放的有效方法。特别是,汤斯维尔(Townsville)的6 kW光伏系统能够处理61%的总电力负荷,并节省90%以上的用电量,并减少约95%的二氧化碳排放。还发现,对于所有城市而言,具有20-25度倾斜度的系统都具有最佳性能,包括最低的能源成本(COE)和最少的二氧化碳排放量。

著录项

  • 来源
    《Renewable energy 》 |2012年第2012期| p.146-155| 共10页
  • 作者单位

    Central Queensland University, Power & Energy Research Croup, Faculty of Sciences, Engineering and Health, Australia;

    Central Queensland University, Power & Energy Research Croup, Faculty of Sciences, Engineering and Health, Australia;

    Central Queensland University, Power & Energy Research Croup, Faculty of Sciences, Engineering and Health, Australia;

    Central Queensland University, Power & Energy Research Croup, Faculty of Sciences, Engineering and Health, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    photovoltaic; resident; grid; simulation; emission mitigation;

    机译:光伏;居民;电网;模拟;减排;

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