Solar Power Your Home: Safe Money, Go Green [3]

所在平台: Udemy

课程主页: https://www.udemy.com/course/renewable-solar-energy-systems-controllers-chargers-and-inverters/

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课程名称:为您的家庭提供太阳能:节省金钱,绿色能源 课程概述: 欢迎太阳能爱好者!本课程旨在为您提供有关并网太阳能系统的可靠信息。通过这个课程,我将分享我多年的知识和经验,并为您提供所有基本要素的浓缩版本。课程中包含多个选择题,以帮助您自测知识掌握情况。此外,我们还将进行多次虚拟参观,访问各种太阳能系统组件制造商的网站,以弥合理论与实际之间的差距。 在这门课程中,您将学习到以下内容: - 光伏太阳能电池的输出特性 - IV曲线及电流与电压之间的关系 - 辐射强度与光伏性能的关联 - 开路电压与短路电流的区别 - 最大功率点(MPP)的位置及其跟踪方法 - 如何获取您考虑购买的光伏模块的IV曲线详情 - 如何解读光伏模块规格表的信息 - 光伏模块电压与功率输出的关系 - IV曲线堆叠原理 - 光伏电池开路电压增量与短路电流组合 - 光伏电池的并联和串联连接及其堆叠效应 - 真实光伏模块案例研究:如何找到Voc、Isc和MPP值 - 模块测试协议:NMOT与STC测试 - 最大功率点跟踪(MPPT):IV曲线上的交互 - MPPT算法原理讲解 - MPPT光伏充电控制器案例研究 - 充电控制器的温度降额因素 - 根据充电器规范对光伏阵列进行过设计 - MPPT充电器的最大电流值 - 温度对光伏模块电压输出的影响 - 脉宽调制与充电算法 - PWM设备的充电行为 - 可用PWM充电器案例研究 - 充电器的输入和输出连接 - 用户接口:优缺点分析 - 多个充电器在一个系统中的堆叠优势 - 可用MPPT光伏充电器案例研究 - 串联逆变器与中央逆变器的不同 - 混合逆变器的概念与功能 - 并网混合逆变器与光伏阵列和储能系统的蓝图和操作示例 - 逆变器充电器的分离功能与操作值 - 一体化逆变器充电器的案例研究 - 当前与电压的总谐波失真(THDI, THDU) - 并网光伏能源系统的防孤岛保护概念 - 与防孤岛相关的不同术语 - 带储能的分布式能源系统(DESS)的蓝图 - 电网电力中断时的理论案例研究 - 单向与双向电网计量的基本区别 - 智能双向电网计量仪的概念 - 上网电价、净计量及后续电价的解释 - 按使用时间(TOU)补偿原则 - 各种电网计量与财务补偿模型的蓝图 - 模拟单向电网计量仪的读数原理 - 电力购买协议、净计量与净账单等模型的解析 课程大纲包括: - 光伏控制器 - IV曲线 - 堆叠效应 - MPPT算法 - PWM充电器 - 充电器选项 - 逆变器 - 串联逆变器 - 混合逆变器 - 逆变器充电器 - 防孤岛保护 - 电网计量 - 财务补偿模型 - 电网计量选项与读数示例 - 各种电网上网协议 立即采取行动!通过开始这门课程,您将能够做出明智的决策。提示:如果课程内容与您的期望不符,Udemy提供了非常慷慨的退款政策。 期待与您见面! Jesse Gorter 可再生与可持续能源工程师,工程硕士 机械工程师,能源技术,工程学士

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Hello Solar Energy Enthusiast!My goal is to make sure you will enjoy this course! Since you are reading this, it means you are looking for a reliable source of information related to grid-tied solar energy systems: Through this course, I will share with you my extensive knowledge and experience.And lucky you! Through this course you will get a condensed version of all the fundamentals you need to be aware of. I have included several short multiple choice questions, though which you can self-test whether you have absorbed the knowledge adequately throughout the course. And to spice it up, we will also take numerous virtual excursions to websites of manufacturers of different components of your solar system. Through this approach, we makes sure that we bridge the following gaps:We make sure that you get the relevant and unbiased knowledge from an experienced professionalYou have the possibility to test your knowledge and freely browse through the content of the course as per your preferencesWe will bridge the gap between theory & real-life examples by reviewing numerous product options which you might come across as you will be shopping for your system componentsI am glad you are interested in this course: It will teach you all the relevant knowledge, without any 'fluff', and includes several brief multiple-choice questions to test your knowledge.I have created this course for you, fueled by my academic background in Renewable Energy Engineering and extensive field experience in the design and installation of PV Energy Systems. You are getting a very good deal: I will summarize for you all that I have learned over the years, and all you have to do is push the button and starting soaking up the information. Lucky you!During this course, we will review and learn about the following topics:The output characteristics of a PV Solar CellThe IV Curve and relationship between current and voltageThe correlation between irradiance and PV performanceThe difference between the Open Circuit Voltage and Short Circuit CurrentThe location of the Maximum Power Point, and how to track itWhere to find the IV Curve details of a PV Module you consider to buyHow to interpret the specification sheet information of a particular PV ModuleThe relationship between the PV Module voltage and power outputThe principles of IV Curve stackingPV Cell Open Circuit Voltage increments versus Short Circuit Current combinationsParallel and Series connection of PV Cells and the stacking effectCase study of a real life PV Module: How to find the Voc, Isc an MPP valuesModule test protocols: NMOT versus STC testingMaximum Power Point Tracking: the interactions on the IV CurveThe MPPT algorithm principles explainedCase Study of a MPPT PV Charge Controller: The performance and design characteristics explainedTemperature derating factors of a charge controllerOverdesigning your PV array compared to the charger specification valuesThe maximum current values for a MPPT chargerThe effect of temperature on your PV module voltage outputPulse Width Modulation and charging algorithmsCharging behavior with PWM devicesBattery voltage versus Vmpp with PWM chargersEfficiency loss during Pulse Width Modulation chargingCase study of available PWM chargers: Design and performance limitsInput & Output connections on chargersUser Interfaces: advantages and disadvantagesThe advantage of stacking multiple chargers in one systemCase Study of available MPPT PV Chargers: Connection types, Terminal sizes and Design parametersThe difference between String Inverters and Central InvertersThe concepts and functionality of Hybrid InvertersBlue print and operation examples of a Grid Tied Hybrid Inverter with a PV Array and a Energy Storage SystemDedicated versus integrated Inverter-Chargers Blue print examples of a Grid Tied PV System with both String Inverters and Hybrid InvertersCase Study: 2kVA and 3kVA 120VAC Inverter-ChargersSeparate functionality and operation values for Integrated Inverter-ChargersCase Study: All in one Hybrid Inverter, the design and operation valuesThe difference between the current and voltage Total Harmonic Distortion values [THDI, THDU]The concept of Anti Islanding for Grid Tied PV Energy SystemsThe different terminologies used related to Anti IslandingBlue print of a typical Distributed Energy System with Energy Storage [DESS] Theoretical case study of a DESS within a power grid during power outagesThe basic differences between Uni- and Bidirectional Grid MetersThe concept of SMART Bidirectional Grid MetersFeed-in Tariff, Net Metering and the Successor Tariffs explainedThe principle of Time Of Use [TOU] compensation for Grid Tied SystemsBlue prints of a Grid Tied System with various Grid Meters and financial compensation modelsRead-Out principles of analog unidirectional grid metersPower Purchase Agreements, Net Metering Vs. Net Billing, Market Rate Metering and other models explainedThe main outline of this course is as follows:PV ControllersIV CurveStacking EffectMPPT AlgorithmPWM ChargersCharger optionsInvertersString InvertersHybrid InvertersInverter-ChargersAnti Islanding ProtectionGrid MetersThe different Financial Compensation ModelsGrid Meter options and Read-Out ExamplesThe different Grid Feed-In AgreementsTake action now! Educate yourself by starting this course, so that you will be able to make well-informed decisions for your system. TIP: Udemy offers a very generous refund policy in case the course content turns out different than what you expected.See you soon!JesseJesse GorterRenewable an Sustainable Energy Engineer, Master of EngineeringMechanical Engineer, Energy Technology, Bachelor of Engineering

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