XIE Chao;GU Qingtao;GONG Liang
Journal Of Ballistics. 2022, 34(03):
28-34.
To overcome the inaccuracy,instability,lack of robustness and reference standards faults of artificial external-ballistics selection performed in real-time rocket launching,and improve the accuracy and efficiency of decision-making in control center,the coordinate transform theory and classical dynamics theory were applied,and the association models between the telemetry angle and the velocity,the apparent acceleration and the external acceleration in which the relationship between telemetry information and exterior ballistic information was established,were constructed respectively. A selection method of external ballistics based on telemetry information was proposed. Taking the theoretical trajectory and theoretical telemetry data of a rocket as data input,the correlation models between telemetry angle and external velocity,telemetry apparent acceleration and external acceleration were simulated and verified. The simulation results show that the error of the correlation model is very small,which verifies the correctness of the correlation model. Finally,taking the actual measured exterior ballistic data and telemetry parameter information of the rocket as the input,an optimal trajectory was obtained by using the trajectory optimization method. And then these trajectories including the optimal trajectory result were compared with the high-precision post-processing trajectory. The comparison results show that the comprehensive error of the optimal trajectory is the smallest,which verifies the effectiveness and correctness of the optimal method. By the external ballistics optimization method based on telemetry information,the correlation model between telemetry information and exterior ballistics information can be correctly established,and the exterior ballistics with high accuracy can be selected. Thus,the method provides more auxiliary decision-making means for trajectory optimization in control center,and has strong theoretical application value.