编队对地突防中的空射诱饵弹挂载策略研究
发布时间:2018-11-04 15:44
【摘要】:针对编队对地突防中的基本型和干扰型空射诱饵弹的挂载策略问题,为有效欺骗敌方各种雷达,使成功突防概率最大化,提出了最优挂载方案计算方法。通过建立基本型空射诱饵弹数量与载机的击落概率和干扰型空射诱饵弹数量与敌方雷达的发现概率模型,给出了成功突防概率的计算方法。最后以双机编队挂载不同型号空射诱饵弹对地突防为背景,通过仿真计算,得到了最优挂载方案。仿真结果表明,合理的挂载策略可以显著提升空射诱饵弹的作战效能,模型为最优挂载策略的计算供了方法。
[Abstract]:In order to deceive enemy radar effectively and maximize the probability of successful penetration, an optimal mount scheme calculation method is proposed to solve the problem of mounting strategy of basic type and jamming type air decoy in ground penetration of formation in order to effectively deceive all kinds of enemy radars and maximize the probability of successful penetration. The method of calculating the probability of successful penetration is presented by establishing the models of the number of basic air-fired decoys and the shooting down probability of the carrier and the number of jamming decoys and the detection probability of the enemy radar. Finally, based on the ground penetration of different types of air-launched decoys mounted by two-aircraft formation, the optimal mount scheme is obtained by simulation. The simulation results show that the reasonable mount strategy can significantly improve the combat effectiveness of the aerial decoy, and the model provides a method for the calculation of the optimal mount strategy.
【作者单位】: 空军工程大学航空航天工程学院;
【分类号】:E926.3
本文编号:2310313
[Abstract]:In order to deceive enemy radar effectively and maximize the probability of successful penetration, an optimal mount scheme calculation method is proposed to solve the problem of mounting strategy of basic type and jamming type air decoy in ground penetration of formation in order to effectively deceive all kinds of enemy radars and maximize the probability of successful penetration. The method of calculating the probability of successful penetration is presented by establishing the models of the number of basic air-fired decoys and the shooting down probability of the carrier and the number of jamming decoys and the detection probability of the enemy radar. Finally, based on the ground penetration of different types of air-launched decoys mounted by two-aircraft formation, the optimal mount scheme is obtained by simulation. The simulation results show that the reasonable mount strategy can significantly improve the combat effectiveness of the aerial decoy, and the model provides a method for the calculation of the optimal mount strategy.
【作者单位】: 空军工程大学航空航天工程学院;
【分类号】:E926.3
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