在Matlab Simulink软件环境下建立了太阳风混合电力系统的结构和计算机优化模型

N. Rozhentcova, P. V. Ganin, A. Rudakov
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引用次数: 4

摘要

本文介绍了光风混合电力系统的结构和计算机优化模型,以确定太阳能和风能设备的设计参数和优化它们的互联运行。该模型是在图形化仿真软件MatLab Simulink中开发的,并用于多维数据分析。它只列出了在这个软件环境中工作的基本细节,这些细节是实现基本算法所必需的。垂直风力涡轮机与叶片上的光伏电池以及一组电池相结合,即使在完全没有风的情况下和晚上也能持续供电。风力涡轮机和带有太阳能电池的太阳能表面正在发电。一个太阳能风混合电力系统的结构和计算机模型包含了许多保证其效率的关键子系统和对关键子系统(风力发电机、感应电机、三相桥式整流器、电池等)的工作做出贡献的子系统。关键元件可以看作是“风力发电机”和“太阳能电池”的一个子系统。推动关键子系统运行的大量子系统包括开关、整流器、控制器、逆变器、关键子系统控制参数通信模块和通信模块。
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Structural and computer optimization model of a solar-wind hybrid electrical system in the software environment Matlab Simulink
The article describes the structural and computer optimization model of a photo-wind hybrid electrical system to determine the design parameters of the solar and wind equipment and optimization of their interconnected operation. The model is developed in the graphical software environment simulation MatLab Simulink and used for multidimensional data analysis. It lists only basic details on working in this software environment which are necessary for the realization of basic algorithms. The combination of a vertical wind turbine with photovoltaic cells on its blades, as well as a set of batteries, allows continuous power supply, even at total absence of wind and at night. A wind turbine and a solar surface with solar cells are generating electricity. Structural and computer model of a solar-wind hybrid electrical system contains a number of key subsystems that ensure their efficiency and subsystems that contribute to the work of the key subsystems (wind turbine, induction machine, a three-phase bridge rectifier, battery, etc.). The crucial element can be considered to be a subsystem of “wind turbine” and “solar battery”. A large number of subsystems promoting the operation of key subsystems comprise switches, rectifiers, controllers, the inverter, blocks and blocks for communication of the key subsystems' control parameters.
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