首页> 外文会议>Saint Petersburg international conference on integrated navigation systems >ERROR ANALYSIS AND IMPROVED WAYS FOR FIBER OPTIC GYROSCOPE OUTPUT IN SHOCK, VIBRATION AND HALF CARDINALS MOVEMENT EXPERIMENTS
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ERROR ANALYSIS AND IMPROVED WAYS FOR FIBER OPTIC GYROSCOPE OUTPUT IN SHOCK, VIBRATION AND HALF CARDINALS MOVEMENT EXPERIMENTS

机译:电击,振动和半基数运动实验中光纤陀螺仪输出的误差分析和改进方法

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Large disturbance and instantaneous angular acceleration are introduced into fiber optic gyroscope (FOG) in the half cardinals movement, vibration and shock experiments. Non-linear factors will occur in the closed-loop of FOG when angular acceleration is great to a certain degree. The ability of tracking input for FOG reduces, which becomes more complicated as the result of the combined action of gain and delay which affect band-width of closed-loop. Therefore, it is very important for solving half cardinals movement, vibration and shock problem to analyze the closed-loop model of FOG and confirm suitable gain and time delay. Firstly, this paper established the correct closed-loop model and analyzed system stability and band-width under different gain and delay. Secondly, it simulated the vibration and shock experiments to analyze the ability of tracking input of FOG for different gain and delay when angular acceleration increases. The analysis and the simulation show that the output of FOG under half cardinals movement, vibration and shock experiments with poor tracking performances can be improved by decreasing time delay and setting up appropriate gain of closed-loop.
机译:在半基数运动,振动和冲击实验中,将大的扰动和瞬时角加速度引入光纤陀螺仪(FOG)中。当角加速度达到一定程度时,FOG的闭环中将出现非线性因素。跟踪FOG的输入的能力降低,这是由于增益和延迟的组合作用影响了闭环带宽而变得更加复杂。因此,分析FOG的闭环模型并确定合适的增益和时延对于解决半基数运动,振动和冲击问题非常重要。首先,本文建立了正确的闭环模型,并分析了在不同增益和延迟下系统的稳定性和带宽。其次,模拟了振动和冲击实验,分析了当角加速度增加时,对于不同增益和延迟跟踪FOG输入的能力。分析和仿真表明,通过减少延时并设置适当的闭环增益,可以改善半基数运动,振动和冲击实验中跟踪性能较差的FOG的输出。

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