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IEA PVPS:2024独立微电网设计与优化软件工具评估报告(英文版)(72页).pdf

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1、 Evaluation of Software Tools for Standalone Microgrid Design and Optimization 2024 PVPS Report IEA-PVPS T18-03:2024 Task 18 Off-Grid and Edge-of-Grid Photovoltaic Systems Task 18 Off-Grid and Edge-of-Grid PV Systems Microgrid software comparison What is IEA PVPS TCP?The International Energy Agency(

2、IEA),founded in 1974,is an autonomous body within the framework of the Organization for Economic Cooperation and Development(OECD).The Technology Collaboration Programme(TCP)was created with a belief that the future of energy security and sustainability starts with global collaboration.The programme

3、 is made up of 6.000 experts across government,academia,and industry dedicated to advancing common research and the application of specific energy technologies.The IEA Photovoltaic Power Systems Programme(IEA PVPS)is one of the TCPs within the IEA and was established in 1993.The mission of the progr

4、amme is to“enhance the international collaborative efforts which facilitate the role of photovoltaic solar energy as a cornerstone in the transition to sustainable energy systems.”In order to achieve this,the Programmes participants have undertaken a variety of joint research projects in PV power sy

5、stems applications.The overall programme is headed by an Executive Committee,comprised of one delegate from each country or organisation member,which designates distinct Tasks,that may be research projects or activity areas.The 25 IEA PVPS participating countries are Australia,Austria,Belgium,Canada

6、,China,Denmark,Finland,France,Germany,Israel,Italy,Japan,Korea,Malaysia,Morocco,the Netherlands,Norway,Portugal,South Africa,Spain,Sweden,Switzerland,Thailand,Turkey,and the United States of America.The European Commission,Solar Power Europe,the Smart Electric Power Alliance,the Solar Energy Industr

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本文主要对HOMER Pro和iHOGA PRO+两款软件工具在独立微电网设计优化中的应用进行了比较和评估。主要内容包括: 1. 介绍了两款软件的基本情况,包括功能、应用场景、输入输出数据要求等。 2. 定义了22个比较标准,分为定量标准和定性标准,涵盖了技术、经济和环境参数。 3. 设计了三个案例研究,分别位于澳大利亚、荷兰和美国,以模拟不同的环境条件。 4. 使用两款软件对三个案例进行了模拟,并分析了结果。结果显示两款软件在预测发电量方面与实际数据有较好的一致性。 5. 对两款软件的优缺点、结果差异和现有差距进行了评估,并给出了选择建议。 6. 结论认为,两款软件都能合理预测发电量,但结果存在一定差异。用户应根据自身需求选择合适的软件。
软件工具在独立微电网设计中的作用是什么? 为什么需要比较HOMER Pro和iHOGA PRO+软件工具? 独立微电网设计中如何选择合适的软件工具?
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