Trajectory generation with complex no-fly zone constraints for hypersonic morphing vehicle

Authors

  • Yong Li
  • Hui Li
  • Lixin Wang
  • Luhua Liu

DOI:

https://doi.org/10.24425/bpasts.2026.1950

Abstract

This paper investigates the flight capability and trajectory generation of hypersonic morphing vehicles under complex no-fly zone constraints. A target flight path containing only position information is constructed and discretized based on the characteristics of the complex no-fly zone. An optimization model for the control variables is formulated, and an iterative stepping strategy along with a no- ly zone avoidance strategy is designed to develop a tracking algorithm for the target flight path. The trajectory generation algorithm for complex no-fly zone constraints is then completed. The reachable domain under no-fly zone constraints and the applicability of the proposed algorithms are analyzed using both a hypersonic morphing vehicle model and a hypersonic fixed-wing vehicle model. Simulation results demonstrate that the hypersonic morphing vehicle can utilize the proposed trajectory generation algorithm to design a feasible trajectory that complies with the complex no-fly zone constraints. Compared with the hypersonic fixed-wing vehicle, the hypersonic morphing vehicle exhibits a larger reachable domain under no-fly zone constraints and demonstrates a stronger capability for avoiding complex no-fly zone constraints.

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Published

2026-08-11

How to Cite

Li, Yong, et al. “Trajectory Generation With Complex No-Fly Zone Constraints for Hypersonic Morphing Vehicle”. Bulletin of the Polish Academy of Sciences Technical Sciences, Aug. 2026, p. 1950, doi:10.24425/bpasts.2026.1950.

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