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空间微重力模拟育种平台系统的控制器设计
引用本文:吕雨鑫,李伟凯,董晓威. 空间微重力模拟育种平台系统的控制器设计[J]. 农机化研究, 2016, 0(2): 35-38. DOI: 10.3969/j.issn.1003-188X.2016.02.008
作者姓名:吕雨鑫  李伟凯  董晓威
作者单位:黑龙江八一农垦大学信息技术学院,黑龙江大庆,163319
基金项目:国家自然科学基金项目(E201132)
摘    要:在地面进行模拟的空间微重力育种平台是一个随机时变、强非线性的复杂系统,无法精确建模,使得系统在较大工作范围内很难实现精确控制。为此,采用基于径向基神经网络PID的具有自调整能力的、稳定的自适应控制器应用于本系统研究:首先通过PID控制器快速调节参数值,使其恢复到理想的期望值附近,以此来初始化RBF神经网络;然后再用RBF神经网络在线动态调整PID参数的控制方法,实现系统在完成三维空间微重力模拟育种试验时所需的垂直地面Z向上的完全重力补偿;最后,通过Mat Lab对系统的控制算法进行仿真研究。

关 键 词:空间微重力模拟育种平台  径向基神经网络PID控制器  系统Z向重力补偿

The Controller Design of Space Microgravity Simulation Breeding Platform System
Lv Yuxin;Li Weikai;Dong Xiaowei. The Controller Design of Space Microgravity Simulation Breeding Platform System[J]. Journal of Agricultural Mechanization Research, 2016, 0(2): 35-38. DOI: 10.3969/j.issn.1003-188X.2016.02.008
Authors:Lv Yuxin  Li Weikai  Dong Xiaowei
Affiliation:Lv Yuxin;Li Weikai;Dong Xiaowei;College of Information Technology ,Heilongjiang Bayi Agricultural University;
Abstract:Studied in this paper on the ground to simulate the microgravity of space breeding platform is a random time-varying, strongly nonlinear complex system, so the system can not accurately model, which makes the system working in a wide range of difficult to achieve precise control.In this paper, the use of RBF neural network self-tuning PID has the ability, based on a stable adaptive controller is applied to study this system, first near the expected value of the parameter to quickly adjust it back to the desired value by PID controllers to this initializes the RBF neural network, and then use the RBF neural network control method online dynamic adjustment of PID parameters to achieve full gravity compensation system at the completion of the three-dimensional space microgravity simulation breeding experiments, the required Z di-rection perpendicular to the ground.Finally, study of the system control algorithms by matlab simulation.
Keywords:space breeding microgravity simulation platform  RBF neural network PID controller  Z to gravity compen-sation system
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