An advanced estimation design for high speed reentry targets

Yung-Yu Chen, Chun Liang Lin, Chun Wei Huang, Yu Pin Lin

Research output: Chapter in Book/Report/Conference proceedingConference contribution

1 Citation (Scopus)

Abstract

Trajectory estimation design of tactical ballistic missiles (TBM) is an important issue to build up an antimissile system and attracts a lot of attentions in it. Unfortunately, the relative trajectory estimation technologies are still secrets of specific countries and of course, cannot be easily obtained. Based on this reason, in this research, an advanced trajectory estimation design is investigated with combined the input estimation and extended Kalman filter. In this proposed method, estimation abilities extend from high speed reentry target's position and velocity to uncertain maneuverable accelerations and ballistic coefficient, i.e., more information of the targets can be offered by this method, besides, the acceptable trajectory estimation performance are shown from scenarios with different testing conditions.

Original languageEnglish
Title of host publicationASCC 2011 - 8th Asian Control Conference - Final Program and Proceedings
Pages470-475
Number of pages6
Publication statusPublished - 2011 Aug 29
Event8th Asian Control Conference, ASCC 2011 - Kaohsiung, Taiwan
Duration: 2011 May 152011 May 18

Publication series

NameASCC 2011 - 8th Asian Control Conference - Final Program and Proceedings

Other

Other8th Asian Control Conference, ASCC 2011
CountryTaiwan
CityKaohsiung
Period11-05-1511-05-18

Fingerprint

Reentry
Trajectories
Ballistic missiles
Extended Kalman filters
Ballistics
Testing

All Science Journal Classification (ASJC) codes

  • Control and Systems Engineering

Cite this

Chen, Y-Y., Lin, C. L., Huang, C. W., & Lin, Y. P. (2011). An advanced estimation design for high speed reentry targets. In ASCC 2011 - 8th Asian Control Conference - Final Program and Proceedings (pp. 470-475). [5899117] (ASCC 2011 - 8th Asian Control Conference - Final Program and Proceedings).
Chen, Yung-Yu ; Lin, Chun Liang ; Huang, Chun Wei ; Lin, Yu Pin. / An advanced estimation design for high speed reentry targets. ASCC 2011 - 8th Asian Control Conference - Final Program and Proceedings. 2011. pp. 470-475 (ASCC 2011 - 8th Asian Control Conference - Final Program and Proceedings).
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abstract = "Trajectory estimation design of tactical ballistic missiles (TBM) is an important issue to build up an antimissile system and attracts a lot of attentions in it. Unfortunately, the relative trajectory estimation technologies are still secrets of specific countries and of course, cannot be easily obtained. Based on this reason, in this research, an advanced trajectory estimation design is investigated with combined the input estimation and extended Kalman filter. In this proposed method, estimation abilities extend from high speed reentry target's position and velocity to uncertain maneuverable accelerations and ballistic coefficient, i.e., more information of the targets can be offered by this method, besides, the acceptable trajectory estimation performance are shown from scenarios with different testing conditions.",
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Chen, Y-Y, Lin, CL, Huang, CW & Lin, YP 2011, An advanced estimation design for high speed reentry targets. in ASCC 2011 - 8th Asian Control Conference - Final Program and Proceedings., 5899117, ASCC 2011 - 8th Asian Control Conference - Final Program and Proceedings, pp. 470-475, 8th Asian Control Conference, ASCC 2011, Kaohsiung, Taiwan, 11-05-15.

An advanced estimation design for high speed reentry targets. / Chen, Yung-Yu; Lin, Chun Liang; Huang, Chun Wei; Lin, Yu Pin.

ASCC 2011 - 8th Asian Control Conference - Final Program and Proceedings. 2011. p. 470-475 5899117 (ASCC 2011 - 8th Asian Control Conference - Final Program and Proceedings).

Research output: Chapter in Book/Report/Conference proceedingConference contribution

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N2 - Trajectory estimation design of tactical ballistic missiles (TBM) is an important issue to build up an antimissile system and attracts a lot of attentions in it. Unfortunately, the relative trajectory estimation technologies are still secrets of specific countries and of course, cannot be easily obtained. Based on this reason, in this research, an advanced trajectory estimation design is investigated with combined the input estimation and extended Kalman filter. In this proposed method, estimation abilities extend from high speed reentry target's position and velocity to uncertain maneuverable accelerations and ballistic coefficient, i.e., more information of the targets can be offered by this method, besides, the acceptable trajectory estimation performance are shown from scenarios with different testing conditions.

AB - Trajectory estimation design of tactical ballistic missiles (TBM) is an important issue to build up an antimissile system and attracts a lot of attentions in it. Unfortunately, the relative trajectory estimation technologies are still secrets of specific countries and of course, cannot be easily obtained. Based on this reason, in this research, an advanced trajectory estimation design is investigated with combined the input estimation and extended Kalman filter. In this proposed method, estimation abilities extend from high speed reentry target's position and velocity to uncertain maneuverable accelerations and ballistic coefficient, i.e., more information of the targets can be offered by this method, besides, the acceptable trajectory estimation performance are shown from scenarios with different testing conditions.

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Chen Y-Y, Lin CL, Huang CW, Lin YP. An advanced estimation design for high speed reentry targets. In ASCC 2011 - 8th Asian Control Conference - Final Program and Proceedings. 2011. p. 470-475. 5899117. (ASCC 2011 - 8th Asian Control Conference - Final Program and Proceedings).