• Title/Summary/Keyword: Agrophotovoltaics

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A Study on Farmers' Acceptance Intention of Agrophotovoltaics - Focusing on the Extended Unified Theory of Acceptance and Use of Technology 2 - (농업인의 영농형 태양광 수용의도에 관한 연구 - 확장된 통합기술수용이론(UTAUT2)을 중심으로 -)

  • Won-Bin Kim;Ju-Young An;Geun-Ho Shim;Ji-Bum Um
    • Journal of Agricultural Extension & Community Development
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    • v.30 no.1
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    • pp.15-29
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    • 2023
  • Recently, there has been increasing interest in renewable energy in the agricultural sector. Agrophotovoltaics, producing electricity while farming, has attracted much attention. This study aims to identify the factors influencing the acceptance intention of Agrophotovoltaics. Using the UTAUT2 model, we designed a research model to examine the impact of performance expectancy, effort expectancy, facilitating conditions, social influence, and investment utility on the intention to adopt Agrophotovoltaics through the mediation effect of the user's innovativeness. We conducted a survey on farmers and obtained 212 responses for the final analysis. The results showed that effort expectancy and innovativeness significantly positively affected the intention to adopt Agrophotovoltaics. Furthermore, innovativeness was found to fully mediate the relationship among performance expectancy, facilitating conditions, investment utility, and acceptance intention. This suggests that focusing supportive measures on innovative groups could promote the adoption of Agrophotovoltaics.

Computer Simulation of Lower Farmland by the Composition of an Agrophotovoltaic System (영농형 태양광 발전 시스템 구성에 따른 하부 농지 일사량의 전산모사 연구)

  • Kim, DeokSung;Kim, ChangHeon;Park, JongSung;Kim, ChangHan;Nam, JaeWoo;Cho, JaiYoung;Lim, CheolHyun
    • New & Renewable Energy
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    • v.16 no.1
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    • pp.41-46
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    • 2020
  • The share of agrophotovoltaics in the "renewable energy 3020", which is the Korean government policy for revitalizing new and renewable energy, is increasing gradually. In this study, the distribution of solar radiation received by crops growing on virtual farmland under a range of conditions, such as module height, module angle, shading ratio, and module type, was quantified and analyzed using an Ecotect program, which allows insolation analysis during the period from spring to fall. As the module angle increases, transmissive modules increase the amount of solar radiation delivered to the lower farmland. In addition, the difference between 3x12 Cell Type and 4x9 Cells Type, which are types of photovoltaic modules used in practice, was found to be small. The analysis results can be used as a design standard for the future establishment of agrophotovoltaic systems.