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Atmospheric turbulence interference compensation for missile-borne infrared attitude measurement

机译:导弹红外姿态测量的大气湍流干扰补偿

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摘要

In researching the disturbance of atmospheric turbulence in the infrared attitude measurement, a compensation model for atmospheric turbulence interference with missile-borne infrared radiation is established, which improves the solution accuracy of infrared attitude measurement method. Firstly, the influence of aerodynamic turbulence on the infrared radiation transmission direction received by the missile-borne infrared sensors is analysed. Meanwhile, a model of infrared radiation propagation path under the influence of turbulence is established. Then, the infrared radiation weakening degree received by infrared sensors is calculated, and the infrared radiation compensation model is designed with the earth infrared radiation model. Finally, through the curve fitting and derivation, the calculation formula of attitude angle compensation under the influence of atmospheric turbulence is established. The results from the experiments show that the roll angle calculation error is within +/-1 degree, the ability of the anti-aerodynamic turbulence interference is improved and the problem of low accuracy of infrared radiation attitude measurement is solved.
机译:在研究红外姿态测量中的大气湍流的干扰方面,建立了对大气湍流干扰与导弹红外辐射的补偿模型,提高了红外姿态测量方法的溶液精度。首先,分析了导弹红外传感器接收的空气动力湍流对导弹红外传感器接收的红外辐射传输方向的影响。同时,建立了湍流影响下的红外辐射传播路径模型。然后,计算由红外传感器接收的红外辐射弱化程度,并且红外辐射补偿模型与地球红外辐射模型设计。最后,通过曲线拟合和衍生,建立了大气湍流影响下的姿态角度补偿的计算公式。实验结果表明,滚角计算误差在+/- 1度之内,改善了防空动力湍流干扰的能力,并解决了红外辐射姿态测量的低精度的问题。

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