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小型风-光-沼互补发电控制系统的设计与仿真
引用本文:王康,吴佳文,吴仕宏,刘博林,吴军. 小型风-光-沼互补发电控制系统的设计与仿真[J]. 电气传动, 2020, 0(2): 67-72
作者姓名:王康  吴佳文  吴仕宏  刘博林  吴军
作者单位:沈阳农业大学信息与电气工程学院;国网沈阳市东陵区供电公司;中国人民解放军空军工程大学信息与导航学院;国网辽阳供电公司
基金项目:十二五国家科技支撑项目(2012BAJ26B00);辽宁省科学技术计划项目(2014027001)。
摘    要:为提升风-光-沼互补发电系统的供电可靠性和智能化控制,设计一套以STC8F系列单片机为核心的小型风-光-沼互补发电控制系统,介绍系统的工作原理,并对软硬件进行设计,该控制器可以控制各个发电子系统协调工作,对蓄电池进行合理的充放电管理,并能实现对系统的最大功率点的跟踪(MPPT)。通过Proteus和Matlab等软件对整个控制系统的设计和控制过程进行仿真和数据分析,仿真结果表明:该系统运行可靠,适用性强,可广泛应用于多种能量互补的智能控制。

关 键 词:风-光-沼互补发电  单片机  智能控制系统  最大功率跟踪  设计与仿真

Design and Simulation for Small Wind-solar-biogas Hybrid Power Generation Control System
WANG Kang,WU Jiawen,WU Shihong,LIU Bolin,WU Jun. Design and Simulation for Small Wind-solar-biogas Hybrid Power Generation Control System[J]. Electric Drive, 2020, 0(2): 67-72
Authors:WANG Kang  WU Jiawen  WU Shihong  LIU Bolin  WU Jun
Affiliation:(College of Information and Electrical Engineering,Shenyang Agricultural University,Shenyang110866,Liaoning,China;State Grid Shenyang Dongling Area Electric Power Supply Branch,Shenyang 110015,Liaoning,China;Institute of Information and Navigation,The People’s Republic of China Air Engineering University,Xi’an 710077 Shaanxi,China;State Grid Liaoyang Electric Power Supply Company,Liaoyang 111000,Liaoning,China)
Abstract:In order to improve the power supply reliability and intelligent control of the wind-solar-biogas complementary power generation system,a set of wind-solar-biogas hybrid power generation control system based on STC8F series microcontrollers was designed,and the working principle of the system was introduced.The software and hardware were designed.The controller can control the coordination of each power subsystem,manage the battery charge and discharge reasonably,and achieve the maximum power point tracking(MPPT)of the system.The simulation and data analysis of the whole control system design and control process were carried out by software such as Proteus and Matlab.The simulation results show that the system is reliable and adaptable,and can be widely used in a variety of intelligent control of energy complementarily.
Keywords:wind-solar-biogas complementary generation  microcontroller  intelligent control system  maximum point power tracking(MPPT)  design and simulation
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