|
所在平台: Udemy |
课程主页: https://www.udemy.com/course/learning-working-principles-of-solar-energy-and-pv-modules/
课程评论:没有评论
课程名称:掌握太阳能和光伏组件的工作原理 课程概述: 本课程由NABCEP PVIP认证专业人士领导的团队系统性设计,旨在帮助学员迅速掌握太阳能和光伏组件的基础理论,这在其他类似课程中鲜有涵盖。课程内容将有助于通过行业认证考试,如NABCEP助理考试,同时包含先进计算内容,帮助学员为高级认证做准备。 课程亮点: 1. 本课程将您的知识和理解提升到足以理解光伏理论的水平。 2. 涵盖与太阳能光伏及系统相关的多个主题,包括太阳、太阳辐射、太阳能和光伏模块/系统,为实际设计和安装太阳能光伏系统打下专业基础。所有主题均进行了全面覆盖,学习时间仅需几小时。 3. 相较于市场上类似课程,本课程价格优惠,是我们的促销手段。保证课程质量与市面上价值数百美元的课程相当,让您节省开支。 课程内容分为三个主要部分: 第一部分:光伏介绍 - 光伏的定义、优缺点、历史和应用,行业利益相关者,以及太阳能收集器的类型。 第二部分:太阳辐射、能源及地球自转 - 包括太阳辐射的各类数据、影响及其测量方法,太阳路径图,以及光伏模块的最佳方位和倾斜角度。 第三部分:光伏电池、模块和阵列 - 探讨原子、半导体的基本概念,光伏效应及电池工作原理,太阳能电池的结构与制作,模块的电流-电压-功率曲线,效率及连接方式等。 课程还包含额外的电池组和光伏系统尺寸计算讲座。通过此课程,您将获得太阳能和光伏技术的深入理解,并为相关认证考试做好准备。
* This Course is systematically and ingeniously designed by a team lead by NABCEP PVIP Certified Processional to help you quickly grasp Essential and Must Learn Theory of Solar Energy and PV Modules for Solar Photovoltaic Systems, which is rarely found in other similar courses. This course will also help you to pass industry certifications like NABCEP Associate Exam. Course includes advance Calculations which would also be helpful in preparing for advanced Certifications.* See other Courses offered by the same Instructor at affordable Prices1) This Course shall take your knowledge and understanding to a level which shall be sufficient to understand all theory behind the Photovoltaics.2) This Course will cover various topics related to Solar PV and Systems including Sun, Solar System, Solar Radiation, Solar Energy and PV Modules / PV Systems which are necessary to grasp the professional understanding prior to start practically designing and installing of Solar PV Systems. Efforts have been made that all such topics are covered and comprehensive learning takes pace in couple of hours.3) This Course comes with a nominal low price, compared to similar courses available in the market, as promotional collateral from us. Quality of the Course is promised at par with other commercially available Courses worth hundred of US$. You definitely going to Save Hundreds of Bucks.4) Course Contents (TOC)This Course has been divided four three main Sections.SECTION #1: Introduction2 INTRODUCTION TO PHOTOVOLTAICS2.1 Photovoltaics2.1.1 Introduction2.1.2 Advantages2.1.3 Disadvantages2.2 History Of Photovoltaic Solar Cell2.2.1 Inventions2.2.2 Current Pv Install Base2.3 Photovoltaic Applications2.4 Photovoltaic Industry Stakeholders2.5 Solar Energy Collectors2.5.1 Solar Concentrators Or Collectors2.5.2 Solar Thermal Energy Collectors3 SOLAR RADIATION, ENERGY AND EARTH ROTATION3.1 The Sun3.2 Solar Radiation and Solar Light3.3 Extraterrestrial Solar Radiation and Solar Constant3.3.1 Extraterrestrial Solar Radiation3.4 Terrestrial Solar Radiation and Air Mass3.4.1 Atmospheric Effects3.4.2 Global Radiation3.4.3 Direct Radiation3.4.4 Diffuse Radiation3.4.5 Albedo Radiation3.4.6 Air Mass3.5 Peak Sun Value and Hours3.5.1 Peak Sun Hours3.6 Solar Irradiance and Irradiation3.6.1 Solar Irradiance (Solar Power)3.6.2 Solar Irradiation (Solar Energy)3.7 Solar Radiation Data and Maps3.7.1 Global Radiation Maps, Charts and Tables3.8 Measuring Solar Radiation and Sunlight3.8.1 Pyranometer3.8.2 Pyrheliometer3.8.3 Irradiance Meter3.8.4 Spectral Power Density and Photon Flux3.9 Earth Orbit and Rotation3.9.1 Earth Orbit3.9.2 Sun Declination3.10 Solar Time and Equation of Time Graph3.10.1 Solar Time3.10.2 Solar Noon3.10.3 Local Standard Time3.11 Sun Path Charts and Solar Window3.11.1 Sun Path3.11.2 Sun Zenith, Altitude and Azimuth Angles3.11.3 Sun Path Charts3.11.4 Solar Window3.12 Photovoltaic Module Azimuth and Tilt Angles3.12.1 Photovoltaic Module Optimal Orientation3.12.2 Non-Optimal Orientation3.13 Solar Magnetic Declination and Tilt Angles3.14 Power and Energy Basic Electrical Equations4 PHOTOVOLTAIC CELLS, MODULES AND ARRAYS4.1 Atom, Semiconductors and Band Gap4.1.1 The Atom4.1.2 Conductor, Insulator and Semiconductor4.1.3 Band Gap of Conductor, Insulator and Semiconductor4.2 Silicon Element Structure and Doping4.2.1 Pure Silicon4.2.2 Doping4.3 Photovoltaic Effect and Solar Cell Working Principle4.3.1 Photovoltaic Effect4.3.2 p-n Junction4.3.3 Working Principle of Solar Cell4.4 Structure, Materials and Fabrication of a Solar Cell and Module4.4.1 Basic Structure4.4.2 Materials of a Solar Cell4.4.3 Fabrication of Polycrystalline and Monocrystalline Silicon4.4.4 Module Assembly4.5 Current-Voltage-Power Curves of Solar PV Modules4.5.1 Open-Circuit Voltage (Voc)4.5.2 Short-Circuit Current (Isc)4.5.3 Maximum Power Point (Pmpp)4.5.4 Operating Point4.5.5 Maximum power point tracking (MPPT)4.5.6 Response to Irradiance4.6 Temperature Coefficient and Calculating Voltages4.6.1 Response to Temperature4.6.2 Standard Test Conditions (STC)4.6.3 Calculating Voc4.6.4 Cell Temperature and Temperature Rise Coefficient4.7 Efficiency and Fill Factor4.7.1 Efficiency4.7.2 Fill Factor4.8 Module Series and Parallel Connections4.9 Bypass Diodes4.10 PV Module Labels4.11 Test Conditions4.11.1 Standard Test Conditions (STC)4.11.2 Nominal Operating Conditions (NOC)4.11.3 Standard Operating Conditions (SOC)4.12 PV Module Standards4.12.1 IEC 61215 Ed 2.0 - Crystalline Silicon PV Module Design Qualification and Type Approval4.12.2 IEC61730 Ed. 2 - PV Module Safety Qualification4.12.3 UL1703 - PV Module Safety Qualification4.12.4 IEC 61701 - Salt Mist Corrosion Type Test Approval4.13 Bonus Lecture: Calculating Battery Bank and PV System Size