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April 18, 2026The Aeronautical Journal1 citations

Fixed-time cooperative guidance law with impact angle constraint against various motions of target

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HDHe DuMYMing YangSWSongyan Wang

Key Points

  • The aim is to develop a fixed-time cooperative guidance law for multiple flight vehicles to intercept various target motions without mode switching.
  • Developed a fixed-time distributed cooperative guidance law based on multi-intelligence cooperative control.
  • Formulated the guidance strategy along the line of sight direction.
  • Designed normal acceleration for each flight vehicle using a sliding manifold and fixed-time reaching law.
  • Employed fixed-time observers to estimate unknown target acceleration components.
  • Numerical simulations show that the guidance law effectively handles stationary, constant-velocity, and manoeuvring targets.
  • Achieved simultaneous interception of targets within a fixed time with desired impact angles.
  • Demonstrated robustness against uncertainties and switching communication topologies in comparative studies.

Abstract

Abstract A novel fixed-time cooperative guidance law is developed to enable multiple flight vehicles to simultaneously intercept various target motions with desired impact angle, including stationary, constant-velocity moving and manoeuvring targets, with a unified guidance structure that requires no mode switching or target motion classification. First, a fixed-time distributed cooperative guidance law is developed using the theory of multi-intelligence cooperative control, which is formulated along the line of sight (LOS) direction. This approach ensures that the impact time is regulated, enabling multiple flight vehicles to intercept the target simultaneously within a fixed time. In the second phase, employing a sliding manifold and a fixed-time reaching law, the normal acceleration of each flight vehicle is designed to ensure that the LOS angle converges to its target value within a fixed duration. Unknown components of the target’s acceleration are estimated via fixed-time observers and incorporated into the guidance commands, enhancing precision and robustness in the guidance process. In conclusion, the proposed approach proves the effectiveness and superiority through numerical simulations, including various target motions, switching communication topology, robustness against uncertainties based on Monte Carlo experiment and comparative studies.

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Cite This Study

Du et al. (2026) studied this question.

synapsesocial.com/papers/69e3203440886becb653f506https://doi.org/10.1017/aer.2026.10163
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