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“龙格-库塔”算法在航天器实时落点计算中的应用
引用本文:方建勋,于古胜,张斌.“龙格-库塔”算法在航天器实时落点计算中的应用[J].舰船电子工程,2009,29(6):59-62.
作者姓名:方建勋  于古胜  张斌
作者单位:91550部队;
摘    要:在介绍航天器实时落点估算的作用和实现原理的基础上,分析了采用“龙格库塔”算法进行航天器实时落点估算的优势,提出了四阶“龙格一库塔”法实时计算航天器落点模型。该方法在保证航天飞行试验强实时性的前提下有效提高了航天器实时落点估算的精度,对确保成功地实施航天器安全控制和回收提供了科学的依据。

关 键 词:“龙格-库塔”算法  测控系统  中心计算机  落点估算  飞行试验

Application of the Runge-Kutta Algorithm in Real-time Estimating Aerocraft Fall Point
Fang Jianxun,Yu Gusheng,Zhang Bin.Application of the Runge-Kutta Algorithm in Real-time Estimating Aerocraft Fall Point[J].Ship Electronic Engineering,2009,29(6):59-62.
Authors:Fang Jianxun  Yu Gusheng  Zhang Bin
Institution:91550部队,大连,116023
Abstract:On the basis of introducing functions and implementing principles of the real-time estimating aerocraft fall point,the paper discusses advantages and implementing method of adopting the four-steps Runge-Kutta algorithm to estimate the aerocraft fall point.The algorithm analysis has improved accuracy of the real-time estimating aerocraft fall point on the basis of meeting data processing.strong real-time need in the aerocraft flight test,providing scientific conclusion for ensuring flight safety control and ...
Keywords:Runge-Kutta algorithm  tracking telemetry and control system(TT&C)  central computer  estimating fall point  flight test
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