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E-mail
jiayangjxsh@163.com
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Phone
13917995152
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Address
Room 1013, A3 Floor, Greenland Future Center, Lane 1588, Wangyuan South Road, Fengxian District, Shanghai
Shanghai Jiayang Teaching Equipment Co., Ltd
jiayangjxsh@163.com
13917995152
Room 1013, A3 Floor, Greenland Future Center, Lane 1588, Wangyuan South Road, Fengxian District, Shanghai
JY-AEGF IIThe outdoor teaching and training experimental platform is mainly developed to meet the practical teaching needs of distributed photovoltaic power generation principles in higher education institutions and vocational colleges. It adopts modular design, understands the off grid and grid connected power generation functions and inversion principles of photovoltaic power stations, masters the structure and principles of solar photovoltaic distributed power generation, and learns solar photovoltaic engineering application skills. It can help students and researchers understand the principles and technologies of solar photovoltaic grid connected power generation, thereby understanding the working characteristics and principles of wind solar controllers and batteries, and preliminarily mastering the electrical characteristics of inductive and resistive loads when powered by wind and solar energy systems. Deepen the understanding of the significance and methods of power electronic conversion. Especially for changes in electrical characteristics under sudden load changes. This training platform is suitable for training and research in the fields of electrical engineering and automation, mechatronics technology, computer control technology, power system automation technology, electronic information engineering, energy and power, and new energy production enterprises in higher education institutions and vocational colleges.
2、 Systematic Teaching Planning
main purpose |
Practical Training on Basic Principles of Photovoltaic Power Generation |
Target audience |
Professional courses in vocational schools—Vocational and Technical Colleges |
capability |
1. Understand the assembly method of photovoltaic power generation system 2. Understand the configuration of photovoltaic power generation systems |
Cooperate with the course |
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Number of applicable students per unit |
5-10 people |
Distributed Photovoltaic Power Station Training Experiment Platform
III Main experimental and practical training content
1) Experimental Study on the Working Principle of Monocrystalline Silicon Photovoltaic Cells
2) Experimental Design of Solar Cell Module Array
3) Composition and Control Experiment of Photovoltaic Power Supply Device
4) DifferentPrinciple of photovoltaic module unit composition
5)Module metal structural components and anti-corrosion installation principles
6)Principle of Energy Conversion and Combination of Solar Photovoltaic Cell Modules
7)High power tracker and photovoltaic conversion efficiencyrateexperiment(Optional)
8)Experimental Study on the Influence of Light Waves on Photovoltaic Conversion Efficiency under Different Weather and Sunshine Intensity
9)Experimental study on the influence of solar orbit changes on photovoltaic energy conversion in different seasons
10)Experimental study on the influence of environmental temperature changes in different seasons on photovoltaic energy conversion
11)Low, medium, and high energy conversion experiments of photovoltaic modules through switch modules
12)Principle of module convergence and lightning protection grounding
14)Experimental study on pulse width modulation charging process of battery using optical controller
15) Discharge protection experiment of controller on battery
16) Inverter Working Principle Experiment
17) Experimental design and connection of inverters with different loads
18) Communication methods and connection experiments between configuration software and various units
19) Communication Protocol Setting Experiment
20) Application Experiment of Kingview Software
21) Single phase grid connection experiment
22) DC load inverter experiment
23) Demonstration experiment of controller load overload protection
24) Electrical Control Principle Design of Voltage Supply System
25)I-V characteristic testing experiment of photovoltaic cells