Chuanhao ZHANG, Haojie LI, Xuefeng GONG, et al. Design and Verification of Polymorphic Safety Logic Control Method for Cruise Ammunition Fuze Based on Electronic Safety System[J]. Acta Armamentarii, 2023, 44(10): 3079-3090.
DOI:
Chuanhao ZHANG, Haojie LI, Xuefeng GONG, et al. Design and Verification of Polymorphic Safety Logic Control Method for Cruise Ammunition Fuze Based on Electronic Safety System[J]. Acta Armamentarii, 2023, 44(10): 3079-3090. DOI: 10.12382/bgxb.2022.0522.
Design and Verification of Polymorphic Safety Logic Control Method for Cruise Ammunition Fuze Based on Electronic Safety System
To adapt to the transition of the safety state of the cruising missile ammunition in swarm combat and ensure reliable safety recovery and rearming
a polymorphic safety logic control method is proposed for cruise ammunition fuzes based on an electronic safety system. The decision result is selected as the target-based arming environment
and the input-output relationship between the two FPGAs of the electronic safety system and the polymorphic safety logic control process are determined according to the structure of the electronic safety system. Based on the established deprotection logic
the accidental failure rate of the fuze safety system before launch is analyzed and calculated
meeting the safety criteria. By designing two state machines running inside the FPGA to control the transition of the safety state of the cruise ammunition fuze and achieve polymorphic safety logic control
the feasibility is validated through simulation. Experiment results demonstrate successful realization of the designed safety state transition.
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references
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