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Signal Processing for Output Signals of the Inertia Sensors in the Missile Control System

机译:导弹控制系统中惯性传感器输出信号的信号处理

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To improve the reliability of missiles, the reconfiguring fault tolerant control system (RFTCS) should be built in the missile control system. The key problem for building RFTCS is to separate the rigid body angle signal and different order elastic oscillation caused angle signals (RSADS) from the output signals of inertia sensors (OSOIS). Firstly, the accurate location characteristics of FFT in frequency domain are used. OSOIS are transformed by FFT. The frequencies at extrema of frequency response obtained via FFT are the frequencies of RSADS. Secondly, an elliptical filter is designed to let the signals of the frequencies go through and the test signal is designed with combined sine signals whose initial phases are zero and whose frequencies are the frequencies at extrema. The test signal is filtered by the elliptical filter. The phase lag of each sine signal in the test signal is the initial phase of each filtered sine signal. OSOIS are also filtered by the elliptical filter. The filtered signal separated from inertia sensors are adjusted with the phase lags test by the test signal. Finally, RSADS are obtained in real-time. The simulation shows the effectiveness of the approach.
机译:为了提高导弹的可靠性,应该在导弹控制系统中内置可重构容错控制系统(RFTCS)。构建RFTCS的关键问题是将惯性传感器(OSOIS)的输出信号与刚体角度信号和不同阶次的弹性振动引起的角度信号(RSADS)分开。首先,利用FFT在频域中的精确定位特性。 OSOIS通过FFT进行转换。通过FFT获得的频率响应的极值频率是RSADS的频率。其次,设计一个椭圆滤波器使频率的信号通过,而测试信号则由组合的正弦信号设计,这些正弦信号的初始相位为零,其频率为极值频率。测试信号由椭圆滤波器滤波。测试信号中每个正弦信号的相位滞后是每个滤波后的正弦信号的初始相位。 OSOIS也由椭圆过滤器过滤。与惯性传感器分离的滤波信号通过测试信号的相位滞后测试进行调整。最后,可以实时获取RSADS。仿真表明了该方法的有效性。

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