舰载机着舰下滑段飞行员操纵策略研究
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国家自然科学基金资助项目(51505493)和国家重点基础研究发展计划(973)资助项目(2011CB707002)


Research on piloting principle in carrier landing
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    摘要:

    为提高舰载机在不同返航着舰重量下的着舰精度,对飞行员着舰操纵策略进行了研究.首先对着舰操纵基准状态进行了探讨.研究表明,为避免满载返航失速,应以最大着舰重量状态作为操纵基准状态.而后采用人机闭环着舰仿真,对“保持迎角不变”和“保持速度不变”操纵策略进行了对比研究(简称“保角”和“保速度”策略).结果表明,不同着舰重量下,“保角”策略相对表现更好,“保速度”策略着舰点“发散”,“保角”策略着舰点相对“集中”.在算例中,“保角”策略着舰点集中在-1.8~9.4m 之间,而“保速度”策略着舰点集中7.2~17m 之间.此外对两种策略着舰差异产生原因进行分析,结果表明,“保角”策略首先针对不同着舰重量,采用了恒定的基准姿态角;其次“保角”策略不仅通过跟踪下滑光束保持了轨迹角,减小了高度误差,而且通过保持基准迎角不变减小姿态角误差?进而减小了尾钩误差,因此在不同着舰重量下,“保角”策略着舰精度更为稳定.但这一结论仍需在实际飞行中进一步验证.

    Abstract:

    To improve the carrier aircraft landing accuracy in different recovery weights status, the pilot operation principles are investigated. Firstly, the landing control reference status is discussed, it shows that the maximum recovery weight trim status should set to be the reference status to avoid stall when fully loaded in recovery.Then, the principle of “constant angle of attack”(“AOA?hold”for short) and “constant velocity” (“V?hold” for short) are investigated through pilot?aircraft?environment close?loop simulation. It shows that in different weights recovering,the principle “AOA?hold” performs better than principle “V?hold”. In principle of “V?hold”, the touchdown points are divergent and the touchdown dispersion of “AOA?hold” is concentrated in the safe landing area. In “AOA?hold” controlling, the touchdown points are concentrated between -1.8 to 9.4 meters,while the landing scope of “V?hold” is between -7.2 to 17 meters. Meanwhile, the main factors affecting the pilot operational principles are analyzed, it shows that,in principle of “AOA?hold”, the pilot not only keeps the glide path steady by FLOLS lights tracking but also decreases the attitude error. Therefore, the principle of “AOA?hold”performs more steady and accurate, but it still needs to be more tested and evaluated in real flight and simulation.

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刘嘉,向锦武,张颖,甄冲.舰载机着舰下滑段飞行员操纵策略研究[J].动力学与控制学报,2018,16(1):87~96; Liu Jia, Xiang Jinwu, Zhang Ying, Zhen Chong. Research on piloting principle in carrier landing[J]. Journal of Dynamics and Control,2018,16(1):87-96.

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  • 收稿日期:2015-11-05
  • 最后修改日期:2016-03-15
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  • 在线发布日期: 2018-02-09
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