红外与激光工程
紅外與激光工程
홍외여격광공정
INFRARED AND LASER ENGINEERING
2014年
11期
3646-3650
,共5页
胥青青%刘伟%纪明%杨光%尹明东%李红光
胥青青%劉偉%紀明%楊光%尹明東%李紅光
서청청%류위%기명%양광%윤명동%리홍광
红外探测系统%稳瞄%二级稳定%快速反射镜
紅外探測繫統%穩瞄%二級穩定%快速反射鏡
홍외탐측계통%은묘%이급은정%쾌속반사경
infrared detection system%stabilized sighting%two﹣level stabilization%FSM
瞄准线稳定精度是远程红外探测系统的关键指标之一,主要由伺服环路带宽和隔离度决定。介绍了远程红外探测系统的组成,分析了基于FSM的二级稳定技术的原理,建立了粗级稳定平台机电模型、精级稳定平台机电模型和光学传递函数模型,最终搭建了二级稳定伺服控制系统数学模型,通过分析带宽和隔离度传递函数,提出了扰动全补偿的边界条件,同时分析了影响稳定带宽和隔离度的主要因素,对比了二级稳定和传统稳定的稳定效果。仿真结果显示,系统速率稳定回路带宽提升至200 Hz,1 Hz隔离度可达-66 dB,实际测试稳定精度达到12μrad,满足远程红外探测系统对于稳定精度的要求。
瞄準線穩定精度是遠程紅外探測繫統的關鍵指標之一,主要由伺服環路帶寬和隔離度決定。介紹瞭遠程紅外探測繫統的組成,分析瞭基于FSM的二級穩定技術的原理,建立瞭粗級穩定平檯機電模型、精級穩定平檯機電模型和光學傳遞函數模型,最終搭建瞭二級穩定伺服控製繫統數學模型,通過分析帶寬和隔離度傳遞函數,提齣瞭擾動全補償的邊界條件,同時分析瞭影響穩定帶寬和隔離度的主要因素,對比瞭二級穩定和傳統穩定的穩定效果。倣真結果顯示,繫統速率穩定迴路帶寬提升至200 Hz,1 Hz隔離度可達-66 dB,實際測試穩定精度達到12μrad,滿足遠程紅外探測繫統對于穩定精度的要求。
묘준선은정정도시원정홍외탐측계통적관건지표지일,주요유사복배로대관화격리도결정。개소료원정홍외탐측계통적조성,분석료기우FSM적이급은정기술적원리,건립료조급은정평태궤전모형、정급은정평태궤전모형화광학전체함수모형,최종탑건료이급은정사복공제계통수학모형,통과분석대관화격리도전체함수,제출료우동전보상적변계조건,동시분석료영향은정대관화격리도적주요인소,대비료이급은정화전통은정적은정효과。방진결과현시,계통속솔은정회로대관제승지200 Hz,1 Hz격리도가체-66 dB,실제측시은정정도체도12μrad,만족원정홍외탐측계통대우은정정도적요구。
Stabilization accuracy of the line﹣of﹣sight is one of the key specifications of the remote infrared detection system, which is mainly determined by the servo loop bandwidth and isolation. In this paper the composition of the remote infrared detection system was described, the principle of two﹣level stabilization techniques based on FSM was analyzed, coarse stable platform electromechanical model, fine stable platform electromechanical model, the optical transfer function model and the control system transfer function were established, through the analysis of bandwidth and isolation transfer function, the boundary conditions of the disturbance compensation were explained in detail, stabilized ability of the two﹣level stabilization and common stabilization were contrastly analyzed. Simulation results show that the bandwidth of stabilization loop reaches about 200 Hz, isolation is superior to - 66 dB at 1 Hz, Stabilization accuracy reached 12μrad by actual test, meet the requirements of remote infrared detection system for stabilization accuracy.