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A BIOLOGICALLY INSPIRED DESIGN APPROACH FOR LOW COST SOLAR PANEL SYSTEMS

机译:低成本太阳能面板系统的生物启发设计方法

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摘要

Biologically inspired design is the process of using biological systems as analogues to develop innovative solutions for engineering problems. This paper describes an effective and successful implementation of problem-driven biologically inspired design in a real-world problem. In support of the Department of Energy SunShot Initiative, a national collaborative effort to make solar energy cost-competitive with other forms of electricity by the end of the decade, solar panel designs were carried out by engineering and architectural design teams. Solar Photovoltaic (PV) systems were developed using analogical design, and more specifically, bio-inspired design. Some systems were also designed using non-biological analogues. Functional decompositions were employed as the first step in the design process, as a way to identify the key functions essential to the system's reliability and cost effectiveness. Six key functions were identified. Analysis of the final designs by the teams showed that the solar panel system designs using biologically inspired analogues were more effective in meeting the six key functions identified during functional decomposition. Employing a combination of divergent and convergent design thinking is also discussed as a way for effective biologically inspired design. The top three designs selected for prototyping were biologically inspired and exceeded the project goal of reducing the installation and labor costs of solar PV systems by 50%.
机译:受生物启发的设计是使用生物系统作为类似物为工程问题开发创新解决方案的过程。本文描述了在实际问题中有效且成功地实施问题驱动的生物学启发设计的方法。为了支持能源部SunShot计划,这是一项全国合作的努力,目的是到20世纪末使太阳能与其他形式的电力具有成本竞争力,工程和建筑设计团队进行了太阳能电池板设计。太阳能光伏(PV)系统是使用类比设计(更具体地说是生物启发设计)开发的。一些系统还使用非生物类似物设计。功能分解是设计过程中的第一步,是确定系统可靠性和成本效益必不可少的关键功能的一种方法。确定了六个关键功能。研究小组对最终设计的分析表明,采用受生物启发的类似物进行的太阳能电池板系统设计在满足功能分解过程中确定的六个关键功能方面更为有效。还讨论了采用发散和收敛设计思想相结合的方法,以作为有效的受生物启发的设计方法。被选作原型的前三项设计是受生物学启发的,并且超出了将太阳能光伏系统的安装和人工成本降低50%的项目目标。

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