寻的导引头动力学和噪声特性建模及估计器设计

Anirban Krishna Bhattacharya, S. Bhattacharya, Tanushree Garai, S. Mukhopadhyay
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引用次数: 6

摘要

射频导引头提供了目标与跟踪器之间的相对运动特性,即目标值,用于寻的制导计算。由于日蚀、闪烁、RCS波动、天线罩畸变、角噪声、陀螺漂移等因素的影响,导引头的测量噪声具有非平稳性和相关性。此外,源于接收机、信号处理和稳定回路的轨迹环动力学导致运动失稳率与测量值之间存在一定的延迟。这就需要对导引头估计器中LOS速率测量动力学和噪声特性进行适当的建模,而不是将测量结果视为带有加性白噪声和平稳噪声的运动学。本文讨论了射频导引头噪声的测量动力学建模和非平稳相关噪声。在实际交战场景下的仿真结果表明,与没有这些模型相比,适当的测量动态和噪声模型的实现改善了LOS率的估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling of RF Seeker Dynamics and Noise Characteristics for Estimator Design in Homing Guidance Applications
RF seekers provide the relative kinematics between the target and the pursuer in terms of LOS rates which are used for homing guidance computation. The measurement noise of the seeker is non-stationary and correlated due to eclipsing, Glint, RCS fluctuation, Radome distortion, angular noise, Gyro drift, etc. Further, the track loop dynamics originated from the receiver, signal processing and the stabilization loop result in certain delay between the kinematic LOS rate and the measurements. These necessitate appropriate modeling of the LOS rate measurement dynamics and the noise characteristics to incorporate in the seeker estimator, rather than considering the measurements as kinematics with additive white and stationary noise. The modeling of measurement dynamics and non-stationary and correlated noise of the RF seeker noise are discussed in this paper. The results of simulation in a realistic engagement scenario show that implementation of suitable measurement dynamics and noise model improves estimation of LOS rates as compared to absence of such models.
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