In-Flight Radome Slope Estimation for Homing Guidance Using Bearing-Only Measurement via Gaussian Process Regression

Author:

Lu Kelin,Jin Bingyu,Zhang Ning

Abstract

The radome refraction problem gives rise to guidance performance deterioration for homing missiles. Aiming to eliminate the effect of radome refraction on the radar seeker, a novel method is proposed for correcting the radome-induced measurement error by using the estimated guidance information. A dynamic model for the estimation system is formulated and the guidance information is estimated online via a multiple-model filtering framework. A Gaussian process regression scheme is introduced to reconstruct the mapping model with respect to the radome error and look angle. Furthermore, an analytical expression for radome slope estimation is derived by calculating the derivative of the surrogate function, represented with Gaussian process models. The contaminated measurement is corrected based on the estimated guidance information and radome slope. Extensive simulation results illustrate that the proposed method is able to estimate the radome slope accurately and improve the guidance accuracy effectively.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

Aerospace Engineering

Reference38 articles.

1. Coordinated Formation Guidance Law for Fixed-Wing UAVs Based on Missile Parallel Approach Method

2. Improving Missile Guidance Performance by In-Flight Two-Step Nonlinear Estimation of Radome Aberration

3. Time-Varying Radome Slope Estimation for Passive Homing Anti-Ship Missiles;Ra;Proceedings of the IEEE 58th Conference on Decision and Control,2019

4. Observability Analysis and Enhancement of Radome Aberration Estimation with Line-of-Sight Angle-Only Measurement;Seo;IEEE Trans. Aerosp. Electron. Syst.,2015

5. Basic Principles of Homing Guidance;Palumbo;Johns Hopkins APL Tech. Dig.,2010

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1. A Radome Slope Estimation Method Using Multiple-Reference-Model-Based SRUKF Filter;2023 42nd Chinese Control Conference (CCC);2023-07-24

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