Solar Design(https://solardesign.cn/)is an online photovoltaic device simulation and design platform that provides engineering modeling analysis for crystalline silicon solar cells,as well as emerging high-efficiency ...Solar Design(https://solardesign.cn/)is an online photovoltaic device simulation and design platform that provides engineering modeling analysis for crystalline silicon solar cells,as well as emerging high-efficiency solar cells such as organic,perovskite,and tandem cells.The platform offers user-updatable libraries of basic photovoltaic materials and devices,device-level multi-physics simulations involving optical–electrical–thermal interactions,and circuit-level compact model simulations based on detailed balance theory.Employing internationally advanced numerical methods,the platform accurately,rapidly,and efficiently solves optical absorption,electrical transport,and compact circuit models.It achieves multi-level photovoltaic simulation technology from“materials to devices to circuits”with fully independent intellectual property rights.Compared to commercial softwares,the platform achieves high accuracy and improves speed by more than an order of magnitude.Additionally,it can simulate unique electrical transport processes in emerging solar cells,such as quantum tunneling,exciton dissociation,and ion migration.展开更多
为全面了解云制造的研究现状以及未来发展趋势,以云制造系统运行过程中的资源流为主线对其研究成果进行综述.结合文献计量法和引文分析法,对从Web of Science和中国知识基础资源数据库(CNKI)检索到的文献成果进行定量和定性分析.首先阐...为全面了解云制造的研究现状以及未来发展趋势,以云制造系统运行过程中的资源流为主线对其研究成果进行综述.结合文献计量法和引文分析法,对从Web of Science和中国知识基础资源数据库(CNKI)检索到的文献成果进行定量和定性分析.首先阐述云制造理论研究基础;然后分析资源流动过程中资源服务化和资源配置阶段的研究现状,总结各个阶段的研究现状和不足;最后讨论新技术的应用及面临的挑战,并对未来的研究方向作展望.展开更多
基金Project supported by the Scientific Research Project of China Three Gorges Corporation(Grant No.202203092)。
文摘Solar Design(https://solardesign.cn/)is an online photovoltaic device simulation and design platform that provides engineering modeling analysis for crystalline silicon solar cells,as well as emerging high-efficiency solar cells such as organic,perovskite,and tandem cells.The platform offers user-updatable libraries of basic photovoltaic materials and devices,device-level multi-physics simulations involving optical–electrical–thermal interactions,and circuit-level compact model simulations based on detailed balance theory.Employing internationally advanced numerical methods,the platform accurately,rapidly,and efficiently solves optical absorption,electrical transport,and compact circuit models.It achieves multi-level photovoltaic simulation technology from“materials to devices to circuits”with fully independent intellectual property rights.Compared to commercial softwares,the platform achieves high accuracy and improves speed by more than an order of magnitude.Additionally,it can simulate unique electrical transport processes in emerging solar cells,such as quantum tunneling,exciton dissociation,and ion migration.
文摘为全面了解云制造的研究现状以及未来发展趋势,以云制造系统运行过程中的资源流为主线对其研究成果进行综述.结合文献计量法和引文分析法,对从Web of Science和中国知识基础资源数据库(CNKI)检索到的文献成果进行定量和定性分析.首先阐述云制造理论研究基础;然后分析资源流动过程中资源服务化和资源配置阶段的研究现状,总结各个阶段的研究现状和不足;最后讨论新技术的应用及面临的挑战,并对未来的研究方向作展望.