首页> 外文会议>2017 International Conference on Computer Systems, Electronics and Control >Instantaneous Frequency Estimation for Motion Echo Signal of Projectile in Bore Based on Polynomial Chirplet Transform
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Instantaneous Frequency Estimation for Motion Echo Signal of Projectile in Bore Based on Polynomial Chirplet Transform

机译:基于多项式Chirplet变换的弹丸运动回波信号瞬时频率估计

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Microwave interferometer is one of the devices for measuring the movement travel– –varying or time-varying velocity of projectile in bore. Microwave interferometer first obtains the Doppler echo signal including the motion information of the projectile in bore, then the velocity is measured based on instantaneous frequency estimation (IFE) of the processed and transformed signal. The parametric time-frequency analysis method can make spectral energy of nonlinear frequency modulation (FM) signal concentrate at some range in the new transform domain. As the motion echo signal of projectile in bore (MSPB) is a nonlinear FM signal, it could be described by polynomial chirplet, one of polynomial FM signal modes, which is used to construct transform kernel for the signal. In this paper, Polynomial chirplet transform (PCT) method is proposed to analyze the simulation and experiment echo signals of projectile in bore. The estimation error and Renyi entropy are used to measure quantify of the time-frequency distribution. Compared with short-time Fourier transform (STFT) method and Wigner-Ville distribution (WVD) method, our results show that the PCT method has most powerful anti-interference performance and highest accuracy of instantaneous frequency estimation for the simulation signal, and lowest Renyi entropy of the instantaneous frequency estimation for the experiment signal. In general, the PCT method has powerful anti-interference performance and high time-frequency concentration and accuracy of instantaneous frequency estimation for the motion echo signal of projectile in bore.
机译:微波干涉仪是用于测量弹丸在膛中的运动速度(时变或时变)的设备之一。微波干涉仪首先获取包含弹丸在膛内的运动信息的多普勒回波信号,然后基于处理后的变换信号的瞬时频率估计(IFE)来测量速度。参数时频分析方法可以使非线性调频信号的频谱能量集中在新的变换域中的某个范围内。由于弹丸的运动回波信号(MSPB)是非线性FM信号,因此可以用多项式调频信号模式之一的多项式chirplet来描述,该多项式chirplet用于构造该信号的变换核。本文提出了多项式Chirplet变换(PCT)方法来分析弹丸在膛内的仿真和实验回波信号。估计误差和仁义熵用于度量时频分布的量化。与短时傅立叶变换(STFT)方法和Wigner-Ville分布(WVD)方法相比,我们的结果表明PCT方法具有最强大的抗干扰性能和对仿真信号的瞬时频率估计的最高准确性,并且最低的Renyi实验信号的瞬时频率估计的熵。总体而言,PCT方法具有强大的抗干扰性能和较高的时频集中度,并且对弹丸在运动中的运动回波信号具有瞬时频率估计的准确性。

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