首页> 外文会议>Asian Control Conference >Neural aided discrete PID active controller for non-linear hysteretic base-isolation building
【24h】

Neural aided discrete PID active controller for non-linear hysteretic base-isolation building

机译:神经辅助离散PID主动控制器,用于非线性滞后基础隔振建筑物

获取原文
获取外文期刊封面目录资料

摘要

The combination of isolation system and active control devices has been increasingly considered in the structural control community to design an efficient smart hybrid baseisolation system for seismic protection. In this paper, a control scheme based on a combination of discrete PID controller and discrete direct adaptive neural controller is proposed for the active control of a nonlinear base isolated building to reduce superstructure responses and base drifts under near-fault earthquake excitations. Even though the PID controller is a traditional and widely used in many control applications, the performance of PID controller is not satisfactory in time varying and nonlinear systems. But the efficiency of its performance can be enhanced by combining the PID controller along with neural controller. The neural controller is constructed based on a single hidden layer feed forward network and the parameters of the network are modified using extreme learning machine (ELM) — like algorithm. To ensure the stability of the system, unlike original ELM algorithm, Lyapunov update law is used to update the output parameters of the network. This approach is validated by simulating a non-linear three dimensional benchmark base-isolated structure with time history records of three near-fault earthquakes. The performance of the proposed control scheme is measured in terms of a comprehensive set of performance indices. The results show that the proposed neural aided discrete PID active controller is more effective in reducing the superstructure acceleration, inter-storey drifts and base displacement by giving an active feedback control force to the base-isolated structure.
机译:在结构控制界中越来越多地考虑将隔离系统和主动控制装置相结合,以设计一种有效的智能混合基础隔离系统来进行地震防护。提出了一种基于离散PID控制器和离散直接自适应神经控制器相结合的控制方案,用于非线性基础隔震建筑物的主动控制,以减少近断层地震激励下的上部结构响应和基础位移。尽管PID控制器是传统的并且广泛用于许多控制应用中,但是PID控制器的性能在时变和非线性系统中并不令人满意。但是,通过将PID控制器与神经控制器结合使用,可以提高其性能的效率。神经控制器是基于单个隐藏层前馈网络构建的,并且使用类似极限学习机(ELM)的算法修改了网络的参数。为了确保系统的稳定性,与原始的ELM算法不同,使用Lyapunov更新定律来更新网络的输出参数。通过模拟具有三个近断层地震的时程记录的非线性三维基准基准隔震结构,验证了该方法的有效性。建议的控制方案的性能是根据一组全面的性能指标来衡量的。结果表明,所提出的神经辅助离散PID主动控制器通过对基础隔震结构施加主动反馈控制力,在降低上层建筑加速度,层间漂移和基础位移方面更为有效。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号