首页> 外文会议>ASME international design engineering technical conferences and computers and information in engineering conference 2014 >A CASE STUDY OF MODELING AND SIMULATION FOR MANUFACTURING, INSTALLATION, AND MAINTENANCE OF SOLAR POWER SYSTEMS
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A CASE STUDY OF MODELING AND SIMULATION FOR MANUFACTURING, INSTALLATION, AND MAINTENANCE OF SOLAR POWER SYSTEMS

机译:太阳能系统制造,安装和维护的建模与仿真案例研究

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Solar power systems are becoming increasingly popular due to the fact that solar power can offer time and money saving solutions for off-grid and grid-connected homes, cabins, and businesses with clean and affordable energy. However, there are still significant opportunities to reduce the cost of solar power systems by optimizing system design. We employ system modeling and simulation methods to compare a commercial rooftop solar system with a new concept for the same application, namely Mega Module system. In order to accomplish this, a solar power system's lifecycle is divided into three phases, namely manufacturing, installation, and maintenance. Specifically, a SysML-based conceptual model was first constructed, based on which, Arena simulation models were built for three phases of the two systems. Then, we performed input analysis on data collected onsite for the two systems, and output analysis of the theoretical seconds/watt of all three phases based on reasonable assumptions. The results of the simulation study indicate that although it increases the manufacturing time, the Mega Module system saves a significant amount of time in the installation phase and a relatively small amount of time in the maintenance phase, and thus can be more cost-effective in the long term. The case study further demonstrates the feasibility and potential to reduce costs of product-service systems by quick installation and optimization using system modeling and simulation methods.
机译:由于太阳能可以为离网和并网的房屋,小木屋以及企业提供清洁且负担得起的能源,从而为他们节省时间和金钱,因此太阳能系统变得越来越受欢迎。然而,通过优化系统设计来降低太阳能系统的成本仍然存在巨大的机会。我们采用系统建模和仿真方法,将商用屋顶太阳能系统与针对同一应用的新概念(即Mega Module系统)进行比较。为此,太阳能发电系统的生命周期分为三个阶段,即制造,安装和维护。具体而言,首先构建了基于SysML的概念模型,在此基础上,为两个系统的三个阶段构建了Arena仿真模型。然后,我们对两个系统的现场数据进行了输入分析,并基于合理的假设对所有三相的理论秒数/瓦特进行了输出分析。仿真研究的结果表明,Mega Module系统虽然增加了制造时间,但在安装阶段可节省大量时间,在维护阶段可节省相对较少的时间,因此在制造阶段可以更具成本效益。从长远来看。案例研究进一步证明了通过使用系统建模和仿真方法进行快速安装和优化来降低产品服务系统成本的可行性和潜力。

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