徐慧, 蔡光斌, 穆朝絮, 张艳红, 李欣. 高超声速滑翔飞行器全程总红外辐射最小的轨迹优化(特邀)[J]. 红外与激光工程, 2022, 51(4): 20220194. DOI: 10.3788/IRLA20220194
引用本文: 徐慧, 蔡光斌, 穆朝絮, 张艳红, 李欣. 高超声速滑翔飞行器全程总红外辐射最小的轨迹优化(特邀)[J]. 红外与激光工程, 2022, 51(4): 20220194. DOI: 10.3788/IRLA20220194
Xu Hui, Cai Guangbin, Mu Chaoxu, Zhang Yanhong, Li Xin. Trajectory optimization of hypersonic glide vehicle with minimum total infrared radiation (Invited)[J]. Infrared and Laser Engineering, 2022, 51(4): 20220194. DOI: 10.3788/IRLA20220194
Citation: Xu Hui, Cai Guangbin, Mu Chaoxu, Zhang Yanhong, Li Xin. Trajectory optimization of hypersonic glide vehicle with minimum total infrared radiation (Invited)[J]. Infrared and Laser Engineering, 2022, 51(4): 20220194. DOI: 10.3788/IRLA20220194

高超声速滑翔飞行器全程总红外辐射最小的轨迹优化(特邀)

Trajectory optimization of hypersonic glide vehicle with minimum total infrared radiation (Invited

  • 摘要: 为降低高超声速飞行器再入过程中,产生的气动热辐射对红外探测窗口性能的影响,从轨迹优化的角度,以再入飞行全程驻点总红外辐射为目标函数,提出了一种基于改进鲸鱼优化算法(Whale Optimization Algorithm,WOA)的高超声速飞行器轨迹优化算法。首先,通过Tent混沌映射和控制因子余弦变化改进WOA,改进算法位置更新时的位置指向性,增强算法全局搜索能力;同时,将再入轨迹优化问题转化为控制量剖面参数优化问题,采用倾侧角一次翻转策略,利用普朗克公式计算驻点红外辐射,并设计目标函数,利用阻力加速度再入走廊处理路径约束,采用罚函数法将终端约束同目标函数相结合;最后,利用改进的WOA对设计的控制量剖面进行参数寻优,获得使目标函数最优的解。仿真实验表明: 文中改进的WOA能够有效完成全程总红外辐射最小的再入轨迹优化任务,全局搜索能力强,且具有较好的鲁棒性。

     

    Abstract: In order to reduce the influence of aerodynamic thermal radiation generated during the reentry process of hypersonic vehicle on the performance of infrared detection window, from the perspective of trajectory optimization, a trajectory optimization algorithm of hypersonic vehicle based on improved whale optimization algorithm was proposed with the total infrared radiation of reentry flight stagnation point as the objective function. Firstly, the Whale optimization algorithm was improved by Tent chaotic map and control factor chord change. The position directivity of the algorithm was improved when the position was updated, and the global search ability of the algorithm was enhanced. At the same time, the reentry trajectory optimization problem was transformed into the parameter optimization problem of the control profile, and a one-time reversal strategy of the inclination angle was proposed. The Planck formula was used to calculate the infrared radiation of the stagnation point, and the objective function was designed. The resistance acceleration was used to enter the corridor to deal with the path constraint. The penalty function method was used to combine the terminal constraint with the objective function. Finally, the improved Whale optimization algorithm was used to optimize the parameters of the designed control profile to obtain the optimal solution of the objective function. The simulation results showed that the improved whale algorithm can effectively complete the reentry trajectory optimization task with the minimum total infrared radiation, and has strong global search ability and good robustness.

     

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