Tracking of Maneuvering Targets Using a Variable Structure Multiple Model Algorithm

Le Minh Hoang, A. Konovalov, Dao Van Luc
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Abstract

Introduction. In recent years, much attention has been paid to the development of trajectory filtering methods for tracking maneuvering targets. Multi-model (MM) algorithms are widely used for filtering maneuvering targets. Conventional MM algorithms are characterized by a fixed structure. However, highly maneuvering targets require a sufficiently large set of models covering the entire range of possible maneuvers, although an increase in the number of models cannot ensure an increase in the accuracy of tracking. To overcome these problems, multiple model algorithms with a variable structure (VSMM) were proposed. This article proposes two VSMM algorithms for tracking maritime targets performing a coordinated turn at constant speed. These are algorithms with a variable set of models based on adaptive grid and switching grid methods.Aim. To develop an adaptive trajectory tracking algorithm that uses a constant turn model to track maneuvering surface objects.Materials and methods. The resulting algorithm is based on the theory of grid adaptation in multi-model estimation methods and is used to estimate the components of the coordinate and velocity vectors of surface maneuvering targets. The algorithm efficiency was evaluated using computer statistical modeling in the MATLAB environment.Results. The structure of an adaptive VSMM algorithm was described. Simulations were carried out to confirm the algorithm efficiency. In the considered simulation scenarios, the algorithm produces effective estimates of the coordinate vectors and speed of surface maneuvering targets.Conclusion. Adaptive algorithms improve the efficiency of target tracking in comparison with multi-model algorithms with a fixed structure, at the same time as saving computational resources.
基于变结构多模型算法的机动目标跟踪
介绍。近年来,针对机动目标跟踪的弹道滤波方法的研究受到了广泛的关注。多模型算法广泛应用于机动目标滤波。传统的MM算法具有固定结构的特点。然而,高机动目标需要足够大的模型集来覆盖整个可能的机动范围,尽管模型数量的增加并不能保证跟踪精度的提高。为了克服这些问题,提出了多模型变结构(VSMM)算法。本文提出了两种VSMM算法,用于跟踪匀速协调转弯的海上目标。这些算法是基于自适应网格和切换网格方法的一组变量模型。开发了一种采用恒转弯模型跟踪机动表面目标的自适应轨迹跟踪算法。材料和方法。该算法基于多模型估计方法中的网格自适应理论,用于估计水面机动目标的坐标矢量和速度矢量分量。在MATLAB环境下,利用计算机统计建模对算法的效率进行了评价。介绍了一种自适应VSMM算法的结构。通过仿真验证了算法的有效性。在考虑的仿真场景中,该算法能有效地估计出水面机动目标的坐标向量和速度。与固定结构的多模型算法相比,自适应算法提高了目标跟踪的效率,同时节省了计算资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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