一种用于防空指挥控制系统的目标威胁评估方法

X. Nguyen, Kim Phuong Phung, Quang Hieu Dang, Xung Ha Vo, Hoa Tien Vu
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引用次数: 0

摘要

介绍。提出了一种基于模糊逻辑推理的空中目标威胁评估方法。该方法基于Sugeno模糊模型,该模型具有多个表示目标轨迹参数的输入和单个表示目标威胁值的输出。利用与算子,建立了一套IF-THEN模糊推理规则,对输入信息进行评估。开发和测试一种算法模型,用于计算空中目标的威胁值,用于实时自动化指挥和控制系统。材料和方法。利用模糊模型建立了计算目标威胁值的算法模型。该模型以流程图的形式呈现,并附有详细的逐步实施过程。利用MATLAB中可用的工具包对所提算法的精度进行了评估。此外,还开发了一个BATE软件测试平台,以评估算法模型在实时自动化指挥控制系统中的适用性。利用MATLAB工具对10条不同参数的目标轨迹进行了仿真和测试,评价了所提模糊模型的有效性。此外,利用BATE软件对各种防空场景下的模型进行了测试。所提出的模糊模型能够有效地计算出每个目标相对于被保护对象的威胁值。所提出的模糊模型可应用于实时防空指挥控制系统战术支撑软件模块的开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Target Threat Assessment Method for Application in Air Defense Command and Control Systems
Introduction. This paper presents a solution for threat assessment of air targets using the fuzzy logic inference method. The approach is based on the Sugeno fuzzy model, which has multiple inputs representing target trajectory parameters and a single output representing the target threat value. A set of IF–THEN fuzzy inference rules, utilizing the AND operator, is developed to assess the input information.Aim. To develop and test an algorithm model to calculate the threat value of an air target for use in real-time automated command and control systems.Materials and methods. An algorithm model was developed using a fuzzy model to calculate the threat value of a target. The model is presented in the form of a flowchart supported by a detailed stepwise implementation process. The accuracy of the proposed algorithm was evaluated using the available toolkit in MATLAB. Additionally, a BATE software testbed was developed to assess the applicability of the algorithm model in a real-time automated command and control system.Results. The efficiency of the proposed fuzzy model was evaluated by its simulation and testing using MATLAB tools on a set of 10 target trajectories with different parameters. Additionally, the BATE software was utilized to test the model under various air defense scenarios. The proposed fuzzy model was found to be capable of efficiently computing the threat value of each target with respect to the protected object.Conclusion. The proposed fuzzy model can be applied when developing tactical supporting software modules for real-time air defense command and control systems.
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