摘要
以飞行员惯常使用的基本战术机动动作为对象,展开了对空对地攻击中武器投放过程的规划研究。采用有限状态机模型对典型的战术机动动作进行了建模,实现了对机动过程中飞行模态的准确控制。针对规划求解困难的问题,设计了基于人工免疫系统的规划算法框架,利用生物免疫系统的优良机理,提高了规划求解的速度,避免了规划解的局部收敛。仿真实验表明,规划算法求解速度较快,规划出的机动序列衔接较好,轨迹的各种战术指标符合任务要求。
Researches of weapon delivery process were carried out around the basic fighter maneuvering (BFM), the typical of which was modeled by using the finite state machine technique so as to realize the accurate control upon the flight mode. In view of the difficulty of solving a planning problem, an AIS-based planning algorithm framework was designed, taking advantage of the good characteristic of the biological immune system to make it possible to create new solutions in a short time and avoid local optima. The experiment results demonstrated that this algorithm could complete the planning mission satisfactorily.
出处
《系统仿真学报》
CAS
CSCD
北大核心
2010年第A01期158-162,共5页
Journal of System Simulation
基金
航空科学基金(20085188)