Photovoltaic Systems

所在平台: Coursera

课程主页: https://www.coursera.org/learn/photovoltaic-systems

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课程简介

课程名称:光伏系统 概述:本课程提供光伏系统技术领域的高级知识。我们将学习太阳能资源及光伏能量转换如何用于发电。从这一基础出发,我们将涵盖不同太阳能电池和模块技术的设计与制造、各种光伏系统组件的组成、光伏电站的设计及能量产量模拟、能源经济学的基本要素、运维和可靠性评估,以及光伏能源在可持续能源系统中的角色。课程独特之处在于它将我们从太阳能电池的纳米物理学引导至公用事业规模太阳能农场的建模。课程分为九个部分,每部分预计耗时2-3小时,面向技术大学的硕士研究生以及能源行业的工程师。完成本课程将为您在光伏领域的职业生涯奠定良好的基础。 课程大纲: 1. **光伏导论**:包括光伏领域的基本术语,光伏的历史概述及技术的工业应用。 2. **太阳能资源与几何**:涵盖太阳资源的物理学及各种辐照度模型,以计算最大化光伏发电所需的最佳倾斜角度。 3. **太阳能电池物理**:介绍理解太阳能电池工作原理所需的物理知识,以及光伏设备的电气特性和建模基础。 4. **电池互连与模块设计**:讲解电池互连的原则及各种模块组件的特性,以设计和制造光伏模块。包括环境变量对光伏模块性能影响的可选内容。 5. **光伏电力电子**:将深入探讨光伏系统中使用的电力电子技术。 本课程是光伏技术深入学习的绝佳途径,适合需要深入掌握光伏系统设计和应用的专业人士。

课程大纲

Name:Introduction to Photovoltaics

Description:These lectures serve as an introduction to the field of photovoltaics in general, which includes the most basic terminology, an overview of the history of PV as well as the industrial deployment of the technology.

Name:The Solar Resource and Geometry

Description:These lectures cover the physics of the solar resource as well as various irradiance models to calculate the optimal tilt angle necessary for maximizing PV power production.

Name:Physics of Solar Cells

Description:These lectures cover the physics necessary for understanding the working principles of solar cells, as well as an introduction to electrical characterization and modelling of photovoltaic devices.

Name:Cell Interconnection and Module Design

Description:These lectures cover the principles of cell interconnection and properties of various module components necessary for designing and fabricating photovoltaic modules. Optional content is provided dealing with the environmental variables impacting the performance of PV modules in the field.

Name:PV Power Electronics

Description:

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课程详情

This course offers you advanced knowledge within the field of photovoltaic system technology. We'll learn about the solar resource and how photovoltaic energy conversion is used to produce electric power. From this fundamental starting point we'll cover the design and fabrication of different solar cell and module technologies, the various photovoltaic system components, how to design a photovoltaic plant and carry out energy yield simulations, essentials in energy economics, O&M and reliability assessment, as well as the role of photovoltaic energy in sustainable energy systems. This course is unique in that it takes you from the nanoscale physics of a solar cell to the modelling of a utility scale solar farm. The course is made up of 9 sections with an estimated workload of 2-3 hours each. The academic level is targeted at master students at technical universities and engineers from the energy industry. Passing this course offers you a great basis for a career in the field of photovoltaics.

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