<p>Radar threats pose significant hazards in the penetration of Anti-ship Missile (Hereinafter referred to as ASM). How to suppress and evade these threats effectively becomes a crucial point for enhancing the survival capability of ASM. However, there are numerous drawbacks in current literatures, which primarily focus on the hard penetration problem of ASM whereas rarely considering the context with multiple threat sources. To address these issues, this paper constructs a missile route planning model in an electronic countermeasure environment. Thus, we propose a route planning method for ASM supported by Electronic Jamming Devices(Hereinafter referred to as EJD), which analyses the suppression effect of EJD on radar threats, as well as constructs threat cost, track processing, and constraint models of ASM routes with/without the support of these devices. Then, the simulation results are obtained using Particle Swarm Optimization method, indicating that with the support of EJD, the continuous tracking capability of radar threats on ASM can be thoroughly weakened. By two suppression strategy, the reduction of threat cost can reach to 49.4% at most, while in three suppression circumstances, this percentage can increase to 61%.</p>

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Anti-ship missile counter-detection strategies analyzing supported by electronic jamming device

  • Yupeng Xie,
  • Pengfei Sun,
  • Xuelong Hou,
  • Jia Liu,
  • Changsheng Dai

摘要

Radar threats pose significant hazards in the penetration of Anti-ship Missile (Hereinafter referred to as ASM). How to suppress and evade these threats effectively becomes a crucial point for enhancing the survival capability of ASM. However, there are numerous drawbacks in current literatures, which primarily focus on the hard penetration problem of ASM whereas rarely considering the context with multiple threat sources. To address these issues, this paper constructs a missile route planning model in an electronic countermeasure environment. Thus, we propose a route planning method for ASM supported by Electronic Jamming Devices(Hereinafter referred to as EJD), which analyses the suppression effect of EJD on radar threats, as well as constructs threat cost, track processing, and constraint models of ASM routes with/without the support of these devices. Then, the simulation results are obtained using Particle Swarm Optimization method, indicating that with the support of EJD, the continuous tracking capability of radar threats on ASM can be thoroughly weakened. By two suppression strategy, the reduction of threat cost can reach to 49.4% at most, while in three suppression circumstances, this percentage can increase to 61%.