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基于Quokka软件的太阳能电池结构设计实验教学创新
引用本文:相成娣,薛梦凡,田江敏. 基于Quokka软件的太阳能电池结构设计实验教学创新[J]. 实验技术与管理, 2021, 0(1): 207-212
作者姓名:相成娣  薛梦凡  田江敏
作者单位:1.杭州电子科技大学自动化学院
基金项目:国家自然科学基金项目(61803132);杭州电子科技大学教育教学改革研究资助项目(YBJG202080),“基于太阳能电池制备仿真实验教学的研究与探索”。
摘    要:太阳能电池结构设计的课程偏重于实践和应用,但由于一般高校实验室缺乏必要的实验设备,该实验教学部分很难实现.因此,设计了基于Quokka模拟软件的仿真实验教学,以背接触IBC电池结构为例,给出了实验教学的过程,该实验设计准确度高,贴近实际电池片设计的开发流程,仿真速度快,不需要借助超级电脑就能实现大量的仿真对比.此外,该...

关 键 词:晶体硅太阳能电池  光伏  结构设计  结构优化  仿真实验教学

Experimental teaching innovation of solar cell structure design based on Quokka software
XIANG Chengdi,XUE Mengfan,TIAN Jiangmin. Experimental teaching innovation of solar cell structure design based on Quokka software[J]. Experimental Technology and Management, 2021, 0(1): 207-212
Authors:XIANG Chengdi  XUE Mengfan  TIAN Jiangmin
Affiliation:(School of Automation,Hangzhou Dianzi University,Hangzhou 310018,China)
Abstract:The course of solar cell structure design focuses on practice and application. However, due to the lack of necessary experimental equipment in most of university laboratories, the experimental teaching part is difficult to achieve. Therefore, the simulation experiment based on Quokka simulation software is designed. By taking the back contact IBC solar cell structure as an example, the experiment teaching process is presented. This experiment design has high accuracy, close to the development process of the actual solar cell design, and the simulation speed is fast. Without the help of supercomputer, a large number of simulation comparisons can be achieved. In addition, the experimental teaching method is concise, practical and convenient for students to practice in their spare time. Through this experiment, students can obtain comprehensive understanding of the whole cell structure. Without entering the laboratory with dangerous chemicals, they can get an overall concept of the cell structure. By flexibly changing the structure design of the cell, students can deepen their understanding and application of theoretical knowledge, and improve their learning, practice and innovation abilities.
Keywords:crystalline silicon solar cell  photovoltaic  structure design  structure optimization  simulation experimental teaching
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