技術簡介
目標在於建立一個具備可持續發展特性的農電共生光電系統,透過整合現代化的最佳化設計方法與先進模擬技術,實現農業與能源的協同發展。研究將運用田口方法與灰色關聯分析,對透光型太陽能板的架設參數進行多品質特性最佳化設計,在提高系統發電效率的同時,確保農田的日照量能滿足作物生長需求,平衡能源效益與農業生產效益。
Abstract
The object is to establish an agricultural and electricity symbiosis photovoltaic system with sustainable development characteristics, and to achieve the coordinated development of agriculture and energy by integrating modern optimal design methods and advanced simulation technology. The research will use Taguchi method and gray relational analysis to optimize the multi-quality characteristics of the erection parameters of translucent solar panels. While improving the power generation efficiency of the system, it will ensure that the amount of sunlight in farmland can meet the needs of crop growth and balance energy efficiency. and agricultural production efficiency.
技術規格
1. 根據田口方法生成的 L9(3^4) 正交表,設計並生成九組對應參數的 3D 模型,需要將每個實驗的參數(如地點、立柱高度、模組傾斜角度、方位角)與支架結構設計結合,並在 3D 建模工具SolidWorks進行建模。
2. 通過灰關聯分析 將多品質特性(如發電效率和日照分佈)進行綜合分析,找出最具影響力的控制因子及其最佳參數組合,最終確定發電與日照條件的最佳化架構設計。
Technical Specification
1. Based on the L9(3^4) orthogonal table generated by the Taguchi method, design and generate nine sets of 3D models with corresponding parameters. The parameters of each experiment (such as location, column height, module tilt angle, azimuth angle) need to be Combined with the bracket structure design and modeled in the 3D modeling tool SolidWorks.
2. Comprehensive analysis of multi-quality characteristics (such as power generation efficiency and sunshine distribution) through gray correlation analysis to find out the most influential control factors and their optimal parameter combinations, and finally determine the optimal architecture design for power generation and sunshine conditions.
技術特色
透光型太陽能板的應用可改善作物的日照分布,有助於穩定農作物生產,且能降低因極端氣候帶來的經濟損失例如(暴晒、高溫、颱風)。這一模式為有限土地資源下的能源與農業結合提供了創新解決方案,有助於推動永續發展。
應用範圍
太陽光電系統建置規劃與評估。
接受技術者具備基礎建議(設備)
具有太陽光電系統或太陽光電系統建置評估需求。
接受技術者具備基礎建議(專業)
有建置太陽光電系統經驗者。
聯絡資訊
聯絡人:謝建俊 先進光電與整合應用技術組
電話:+886-6-3636876 或 Email:Merle@itri.org.tw
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