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Robust finite-time guidance against maneuverable targets with unpredictable evasive strategies

  • Ran Zhang
  • , Jiawei Wang
  • , Huifeng Li*
  • , Zhenhong Li
  • , Zhengtao Ding
  • *Corresponding author for this work
  • Beihang University
  • University of Manchester

Research output: Contribution to journalArticlepeer-review

Abstract

This paper presents a robust finite-time guidance (RFTG) law to a short-range interception problem. The main challenge is that the evasive strategy of the target is unpredictable because it is determined not only by the states of both the interceptor and the target, but also by external un-modeled factors. By robustly stabilizing a line-of-sight rate, this paper proposes an integrated continuous finite-time disturbance observer/bounded continuous finite-time stabilizer strategy. The design of this integrated strategy has two points: 1) effect of a target maneuver is modeled as disturbance and then is estimated by the second-order homogeneous observer; 2) the finite-time stabilizer is actively coupled with the observer. Based on homogeneity technique, the local finite-time input-to-state stability is established for the closed-loop guidance system, thus implying the proposed RFTG law can quickly render the LOS rate within a bounded error throughout intercept. Moreover, convergence properties of the LOS rate in the presence of control saturation are discussed. Numerical comparison studies demonstrate the guidance performance.

Original languageEnglish
Pages (from-to)534-544
Number of pages11
JournalAerospace Science and Technology
Volume77
DOIs
StatePublished - Jun 2018

Keywords

  • Finite-time input-to-state stability
  • Maneuverable target
  • Robust finite-time guidance
  • Unpredictable evasive strategy

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