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Overcoming technical barriers and risks in the application of building integrated photovoltaics (BIPV): hardware and software strategies

机译:克服建筑集成光伏(BIPV)应用中的技术障碍和风险:硬件和软件策略

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Building Integrated Photovoltaics (BIPV) is a smart energy production system that incorporates solar PV panels as part of the roof, windows, facades and shading devices. BIPV products development has been ongoing for the past 30 years, but their practical applications have been slow in comparison to conventional rack-mounted solar PV. One of the main reasons is that the technical barriers, which span from design phase through to commissioning and maintenance phases, have not been understood by stakeholders. The aim of this research is to identify the technical barriers and risks associated with the application of BIPV from building design through to operation stages, together with proposing possible solutions. Where a solution could not be proposed, recommendations for future research and development are made. A four-step research approach is employed, which includes examination of previous publications and collection of feedback from the industry professionals. The research highlighted the importance to apply advanced simulation tools and energy performance monitoring platforms in practice, and encourage stakeholder collaborations in the whole supply chain. This paper contributes to the BIPV area by providing structured knowledge from systematic and longitudinal perspective in relation to the technical barriers and risks, to help professionals understand and improve their knowledge. This paper also makes a unique contribution to the research arena by providing a conceptual model of the associated barriers and risks from life-cycle perspective together with proposing five directions for future research.
机译:建筑物集成光伏(BIPV)是一种智能能源生产系统,该系统将太阳能光伏电池板作为屋顶,窗户,外墙和遮阳设备的一部分。 BIPV产品的开发在过去30年中一直在进行,但是与常规的机架式太阳能PV相比,它们的实际应用一直很慢。主要原因之一是利益相关者尚未理解从设计阶段到调试和维护阶段的技术障碍。这项研究的目的是确定从建筑设计到运营阶段与BIPV应用相关的技术障碍和风险,并提出可能的解决方案。如果无法提出解决方案,则会为未来的研究和开发提出建议。采用了四个步骤的研究方法,其中包括检查以前的出版物以及收集行业专家的反馈。该研究强调了在实践中应用先进的仿真工具和能源绩效监测平台的重要性,并鼓励利益相关者在整个供应链中进行合作。本文通过从系统和纵向的角度提供与技术障碍和风险有关的结构化知识,为BIPV领域做出贡献,以帮助专业人员理解和提高他们的知识。本文还通过从生命周期的角度提供相关障碍和风险的概念模型,并为未来的研究提出了五个方向,为研究领域做出了独特的贡献。

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