应用科技
應用科技
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YING YONG KE JI
2013年
5期
71-74,85
,共5页
MEMS惯性测量单元%随机误差%时变特性%Allan方差%DAVAR
MEMS慣性測量單元%隨機誤差%時變特性%Allan方差%DAVAR
MEMS관성측량단원%수궤오차%시변특성%Allan방차%DAVAR
MEMS inertial measurement unit%stochastic error%time-varying characteristics%Allan variance%DAVAR
为了对受温度等外界环境影响下的MEMS惯性测量单元进行性能评估,针对经典Allan方差法不能反映各惯性器件的时变特性的缺陷,提出了采用动态Allan方差(DAVAR)法对MEMS陀螺仪和加速度计进行随机误差项的辨识和时变特性分析。经典Allan方差法和DAVAR法的随机误差辨识结果和仿真结果表明:在随机误差辨识方面,DAVAR法相比经典Allan方差法的辨识结果更为准确;在变温环境下,DAVAR法的仿真结果还能够反映出惯性器件输出信号受温度变化等环境影响下的时变特性,DAVAR法能够对MEMS惯性测量单元进行准确评价。
為瞭對受溫度等外界環境影響下的MEMS慣性測量單元進行性能評估,針對經典Allan方差法不能反映各慣性器件的時變特性的缺陷,提齣瞭採用動態Allan方差(DAVAR)法對MEMS陀螺儀和加速度計進行隨機誤差項的辨識和時變特性分析。經典Allan方差法和DAVAR法的隨機誤差辨識結果和倣真結果錶明:在隨機誤差辨識方麵,DAVAR法相比經典Allan方差法的辨識結果更為準確;在變溫環境下,DAVAR法的倣真結果還能夠反映齣慣性器件輸齣信號受溫度變化等環境影響下的時變特性,DAVAR法能夠對MEMS慣性測量單元進行準確評價。
위료대수온도등외계배경영향하적MEMS관성측량단원진행성능평고,침대경전Allan방차법불능반영각관성기건적시변특성적결함,제출료채용동태Allan방차(DAVAR)법대MEMS타라의화가속도계진행수궤오차항적변식화시변특성분석。경전Allan방차법화DAVAR법적수궤오차변식결과화방진결과표명:재수궤오차변식방면,DAVAR법상비경전Allan방차법적변식결과경위준학;재변온배경하,DAVAR법적방진결과환능구반영출관성기건수출신호수온도변화등배경영향하적시변특성,DAVAR법능구대MEMS관성측량단원진행준학평개。
In order to evaluate the performance of MEMS inertial measurement devices which are affected by external environment such as temperature, considering that the classical Allan variance method can not reflect the time-varying characteristics of each inertial device, this paper proposes dynamic Allan variance (DAVAR) method to recognize the random error term of MEMS gyroscopes and accelerometers, and analyze the time-varying characteristics of it. The stochastic error identification results and stimulation results by classic Allan variance and DAVAR methods show that, in respect of stochastic error identification, DAVAR method has more accurate recognition result compared to the classical Allan variance method;in a varying temperature environment, the simulation results of DAVAR method also reflects the time-varying characteristics of inertial devices’ output signals which are affected by temperature change or other environmental impact. Therefore, DAVAR method could evaluate the MEMS inertial measurement unit accurately.