北京工业大学学报
北京工業大學學報
북경공업대학학보
JOURNAL OF BEIJING POLYTECHNIC UNIVERSITY
2015年
6期
830-834
,共5页
负电容%机电耦合系数%主-被动方法%振动控制
負電容%機電耦閤繫數%主-被動方法%振動控製
부전용%궤전우합계수%주-피동방법%진동공제
negative capacitance%electro-mechanical coupling coefficient%active-passive method%vibration control
针对负电容压电阻尼振动系统中负电容电路参数对振动幅值影响较大且不能适应外界环境变化而自动进行调节的问题,提出了一种主-被动方法,该方法将负电容电路参数调节问题转化到主动控制算法中。首先,针对压电等效电路特点,推导了主-被动方法原理。依据折半搜索算法的思想,阐述了主动控制器参数调节流程。最后,基于dSPACE1104在线仿真系统,使用压电和模拟电路元件,建立了四边固定的压电合金板主-被动振动控制实验平台,对提出的主-被动方法进行了实验研究。实验结果表明:提出的方法能够让负电容控制器的电路参数达到最优,且控制效果在同等条件下优于单独的主动控制或被动控制方法。
針對負電容壓電阻尼振動繫統中負電容電路參數對振動幅值影響較大且不能適應外界環境變化而自動進行調節的問題,提齣瞭一種主-被動方法,該方法將負電容電路參數調節問題轉化到主動控製算法中。首先,針對壓電等效電路特點,推導瞭主-被動方法原理。依據摺半搜索算法的思想,闡述瞭主動控製器參數調節流程。最後,基于dSPACE1104在線倣真繫統,使用壓電和模擬電路元件,建立瞭四邊固定的壓電閤金闆主-被動振動控製實驗平檯,對提齣的主-被動方法進行瞭實驗研究。實驗結果錶明:提齣的方法能夠讓負電容控製器的電路參數達到最優,且控製效果在同等條件下優于單獨的主動控製或被動控製方法。
침대부전용압전조니진동계통중부전용전로삼수대진동폭치영향교대차불능괄응외계배경변화이자동진행조절적문제,제출료일충주-피동방법,해방법장부전용전로삼수조절문제전화도주동공제산법중。수선,침대압전등효전로특점,추도료주-피동방법원리。의거절반수색산법적사상,천술료주동공제기삼수조절류정。최후,기우dSPACE1104재선방진계통,사용압전화모의전로원건,건립료사변고정적압전합금판주-피동진동공제실험평태,대제출적주-피동방법진행료실험연구。실험결과표명:제출적방법능구양부전용공제기적전로삼수체도최우,차공제효과재동등조건하우우단독적주동공제혹피동공제방법。
In the vibration control system based on the negative capacitance piezoelectric damping, the negative capacitance circuit parameters have great influences on the vibration amplitude and cannot be automatically adjusted to adapt the environment changes. Aiming at these problems, this paper presents an active-passive method, which can transform the adjustive problem of the negative capacitance circuit parameters to the active control algorithm. First, the active-passive principle is derived according to the equivalent circuit of piezoelectric film. The active controller parameters adjustment process is described based on the binary search algorithm. Finally, the experimental platform that is an alloy rectangular thin plate clamped with the stiff base is set-up using the dSPACE1104 real-time simulation platform and the elements of analog circuit and piezoelectric. The active-passive method is studied in the experiment plat. Experimental results show that this method is able to adjust the negative capacitance circuit parameters and achieve optimal values. Furthermore, the control performance is better than the individual control method using active control or passive control under the same conditions.