首页> 外文会议>ASME international design engineering technical conferences and computers and information in engineering conference 2011.;vol. 9. >EXPLORING INNOVATION OPPORTUNITIES IN ENERGY HARVESTING USING FUNCTIONAL MODELING APPROACHES
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EXPLORING INNOVATION OPPORTUNITIES IN ENERGY HARVESTING USING FUNCTIONAL MODELING APPROACHES

机译:使用功能建模方法探索能源收集中的创新机会

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Energy harvesting is a promising and evolving field of research capable of supplying power to systems in a broad range of applications. Energy harvesting encompasses many distinct technologies, including photovoltaic panels, wind turbines, kinetic motion harvesters, and thermal generators. Each technology utilizes different processes to transform energy from the environment into usable electrical energy. As such, there are many analogous functions and processes that are common or similar across the various domains. To leverage and understand these functions and processes, functional modeling approaches are needed to identify these similarities and functions ripe for innovation in new systems. This paper describes a method for modeling the functional architectures of a sample set of energy harvesters, using a functional common basis from the literature. Vector space analysis is used to identify patterns and correlations in the use of functions across different products and energy-harvesting domains in the sample set. The resulting analysis indicates that systems in the same domain usually have very similar function structures, differing only by the addition or removal of a few driving or supporting functions. Systems in different domains also typically have similar structures, with the substitution of different material and energy flows into the system. A generalized functional model for energy harvesting is described, along with possible design ramifications and key opportunities to innovate. Several recommendations are given for the continued development and improvement of the functional common basis and, more generally, functional modeling methodologies. These include improved standardization and explanation of abstract functions, such as blending with the environment, and of organizational conventions to improve consistency.
机译:能量收集是一个有前途且不断发展的研究领域,能够为广泛应用中的系统供电。能量收集包含许多不同的技术,包括光伏板,风力涡轮机,动能收集器和热发电机。每种技术都利用不同的过程将环境中的能量转换为可用电能。这样,在各个领域中存在许多相同或相似的类似功能和过程。为了利用和理解这些功能和过程,需要使用功能建模方法来识别这些相似性和功能,这些成熟和功能已经成熟,可以在新系统中进行创新。本文介绍了一种利用文献中的功能通用基础对能量采集器样本集的功能架构进行建模的方法。向量空间分析用于确定样本集中不同产品和能量收集域的功能使用中的模式和相关性。分析结果表明,同一域中的系统通常具有非常相似的功能结构,仅在增加或删除一些驱动或支持功能方面有所不同。不同领域中的系统通常也具有相似的结构,不同材料和能量流的替代进入系统。描述了用于能量收集的通用功能模型,以及可能的设计结果和创新的主要机会。给出了一些建议,以继续开发和改进功能通用基础,以及更一般地,功能建模方法。这些措施包括改进的标准化和对抽象功能(例如与环境的融合)的解释,以及对组织约定以提高一致性的解释。

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