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光伏发电技术 ★ 5.0

漂浮式光伏与地面光伏公众接受度的驱动因素与障碍

Drivers and Barriers to the Public Acceptance of Floating Photovoltaics Compared to Land-Based Photovoltaics

作者 Fabio Bisegna · Alice Zaghini · Leonardo Micheli
期刊 IEEE Journal of Photovoltaics
出版日期 2024年11月
技术分类 光伏发电技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 漂浮式光伏 公众接受度 景观影响 可再生能源 解决方案
语言:

中文摘要

在漂浮式光伏(FPV)系统中,光伏组件被安装在水体上,以缓解因光伏(PV)部署不断增加而引发的土地竞争问题。然而,在水域安装人工结构可能会影响景观,甚至会引起那些支持可再生能源的人的担忧。本研究专门调查了可再生能源支持者对漂浮式光伏的公众接受度,以确定其主要驱动因素和障碍。该调查通过一项公众调查进行,有300多名支持可再生能源的受访者参与。研究结果显示,虽然公众对漂浮式光伏的接受度仍然是积极的,但低于对一般可再生能源系统的接受度。这种差异主要是由于人们对这项新技术对景观和动物群的影响存在担忧。特别是,研究发现对漂浮式光伏的接受度与对其改变景观美感的认知呈负相关。值得注意的是,对漂浮式光伏持负面看法的受访者也是那些最关注传统光伏对景观影响的人。本研究还提出了一些提高漂浮式光伏社会接受度的初步解决方案,并评估了这些潜在措施的有效性,为可再生能源领域的利益相关者和政策制定者提供了有价值的见解。

English Abstract

In floating photovoltaics (FPV), modules are installed on bodies of water to alleviate the land competition arising from the growing deployment of photovoltaics (PV). However, the installation of artificial structures on water basins can affect the landscape and raise concerns even among those in favor of renewables. This work specifically investigates the public acceptance of FPV among renewable energy supporters to identify its main drivers and barriers. The investigation was conducted through a public survey, which counted more than 300 respondents favorable to renewable energies. The findings reveal that, while public acceptance of FPV remains positive, it is lower than that experienced by renewable energy systems in general. This disparity is mainly due to concerns surrounding the landscape and fauna impacts of this novel technology. In particular, an inverse relationship between FPV acceptance and its perceived alteration of the landscape beauty is found. Notably, respondents expressing a negative opinion on FPV are also those most concerned by the landscape impact of traditional PV. The investigation also proposes some preliminary solutions for enhancing FPV's social acceptance. The effectiveness of these potential measures is evaluated, providing valuable insights for stakeholders and policymakers in the renewable energy sector.
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SunView 深度解读

该研究对阳光电源漂浮式光伏系统解决方案具有重要战略价值。针对FPV公众接受度的关键障碍,可指导SG系列逆变器在水上应用场景的防护等级优化(IP68+)和长期可靠性设计。研究揭示的环境效益认知优势,可支撑阳光电源开发FPV专用逆变器产品线,集成水质监测、生态影响评估等智能功能模块。iSolarCloud平台可增设FPV透明度展示功能,实时公开发电数据、节水效益及生态监测指标,提升公众信任度。针对政策支持需求,可联合制定FPV技术标准和认证体系,推动PowerTitan储能系统与FPV的水上联合部署方案,形成差异化竞争优势,抢占全球水上光伏市场先机。