振动工程学报
振動工程學報
진동공정학보
JOURNAL OF VIBRATION ENGINEERING
2009年
6期
638-644
,共7页
谭平%宁响亮%卜国雄%周福霖
譚平%寧響亮%蔔國雄%週福霖
담평%저향량%복국웅%주복림
主动控制%多目标优化%Lyapunov方程%遗传算法%一体化设计
主動控製%多目標優化%Lyapunov方程%遺傳算法%一體化設計
주동공제%다목표우화%Lyapunov방정%유전산법%일체화설계
active control%multi-objective optimization%Lyapunov equation%genetic algorithm%integrated design
基于Pareto多目标遗传算法提出了结构主动控制系统的一体化多目标优化设计方法,对作动器位置与主动控制器进行同步优化设计.外界激励采用平稳过滤白噪声来模拟,在状态空间下通过求解Lyapunov方程,得到结构响应和主动控制力的均方值.主动控制器采用LQG控制算法来进行设计.以结构位移和加速度均方值最大值与相应无控响应均方值的最大值之比,以及所需控制力均方值之和作为多目标同步优化的目标函数.优化过程还考虑了结构与激励参数对优化结果的影响.最后以某6层平面框架有限元模型为例进行了计算机仿真分析,结果表明所提出的主动控制系统多目标一体化优化方法简单,高效,实用,具有较好的普适性.
基于Pareto多目標遺傳算法提齣瞭結構主動控製繫統的一體化多目標優化設計方法,對作動器位置與主動控製器進行同步優化設計.外界激勵採用平穩過濾白譟聲來模擬,在狀態空間下通過求解Lyapunov方程,得到結構響應和主動控製力的均方值.主動控製器採用LQG控製算法來進行設計.以結構位移和加速度均方值最大值與相應無控響應均方值的最大值之比,以及所需控製力均方值之和作為多目標同步優化的目標函數.優化過程還攷慮瞭結構與激勵參數對優化結果的影響.最後以某6層平麵框架有限元模型為例進行瞭計算機倣真分析,結果錶明所提齣的主動控製繫統多目標一體化優化方法簡單,高效,實用,具有較好的普適性.
기우Pareto다목표유전산법제출료결구주동공제계통적일체화다목표우화설계방법,대작동기위치여주동공제기진행동보우화설계.외계격려채용평은과려백조성래모의,재상태공간하통과구해Lyapunov방정,득도결구향응화주동공제력적균방치.주동공제기채용LQG공제산법래진행설계.이결구위이화가속도균방치최대치여상응무공향응균방치적최대치지비,이급소수공제력균방치지화작위다목표동보우화적목표함수.우화과정환고필료결구여격려삼수대우화결과적영향.최후이모6층평면광가유한원모형위례진행료계산궤방진분석,결과표명소제출적주동공제계통다목표일체화우화방법간단,고효,실용,구유교호적보괄성.
This papers proposes a new integrated design and multi-objective optimization method for active control system based on a Pareto genetic algorithms, in which both the controller and actuator allocation can be optimized simultaneously. Random seismic excitation is simulated by the stationary filtered white noise, and then the Root-Mean Square (RMS) quantities of structural responses and active control forces are obtained by solving the Lyapunov equation in the state space. The controller is designed using LQG algorithm. Minimization of the maximal RMS displacement and acceleration, normalized by the uncontrolled counterparts, together with minimizing the sum of RMS control force of actuators, have been used as the three objective functions for multi-objective optimization. The influences of structural parameters and excitation characteristic are also considered in the multi-objective optimization procedure. A 6-story plane frame is used as a numerical example to demonstrate the effectiveness of the proposed method. Results show that the proposed integrated design and optimization method is simple, efficient and practical, and of good universality.