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Research on Optimization of UAV Smoke Screen Jamming Bomb Deployment Strategy

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DOI: 10.23977/acss.2025.090403 | Downloads: 2 | Views: 61

Author(s)

Limi Chen 1, Yutong Yang 1

Affiliation(s)

1 Hainan Vocational University of Science and Technology, Haikou, Hainan, 571126, China

Corresponding Author

Limi Chen

ABSTRACT

In modern air defense operations, unmanned aerial vehicles (UAVs) deploying smoke screen jamming bombs to implement soft kills on incoming missiles is a low-cost and highly mobile means to improve the protection efficiency of fixed targets. Addressing the two core issues of single smoke bomb shielding effectiveness evaluation and single UAV parameter optimization, this study constructs a unified multi-entity kinematic model and a "line-of-sight-sphere intersection" effective shielding criterion, combined with the bisection method to achieve accurate calculation of shielding duration and parameter optimization. By integrating the model framework, under the established parameter scenario (UAV speed 120m/s, deployment delay 1.5s, detonation delay 3.6s), the effective shielding duration is 1.3872s; under the multi-parameter optimization scenario (course angle 180∘, speed 125m/s, deployment delay 2.1s, detonation delay 4.2s), the shielding duration is increased to 4.7612s. Empirical analysis shows that the model has extremely low sensitivity to deployment-detonation delay (relative change rate <0.0025%) and the UAV speed tolerance meets engineering requirements (relative change rate ≤1.25%), providing quantitative support for the formulation of air defense soft kill strategies.

KEYWORDS

Unmanned Aerial Vehicle (UAV); Smoke Screen Jamming Bomb; Bisection Method; Shielding Duration; Parameter Optimization

CITE THIS PAPER

Limi Chen, Yutong Yang, Research on Optimization of UAV Smoke Screen Jamming Bomb Deployment Strategy. Advances in Computer, Signals and Systems (2025) Vol. 9: 18-24. DOI: http://dx.doi.org/10.23977/acss.2025.090403.

REFERENCES

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