2015Beijing Hangkong Hangtian Daxue xuebaoRequires access

Trajectory linearization control based tracking guidance design for entry flight

Shen Zuoju

Open publisher page 0 citations

Abstract

A novel use of trajectory linearization control( TLC) method was introduced in the guidance law design for hypersonic vehicle entry flight. By exploiting the inherent characteristics of time scale separation of entry vehicle dynamics,altitude and velocity could be controlled separately via outer and inner loop design.In the outer loop,path angle was used as pseudo-control for controlling the altitude. In the inner loop,the flight path angle command and velocity were tracked using bank angle and angle of attack as controls. A linear time-varying controller was designed for the feedback loop to stabilize the error dynamics. Feedback gains were computed online and are the symbolical functions of reference trajectory,therefore no explicit gain scheduling or mode-switching were needed. Extensive dispersion simulations show that this guidance algorithm can achieve precise trajectory tracking and is trajectory-independent. The simulations also show that an integrated entry guidance approach which combines the use of TLC-based tracking guidance law design and on-board reference trajectory planning can significantly enhance the autonomy and adaptability of entry flight.

About this research paper

What this paper is about

A novel use of trajectory linearization control( TLC) method was introduced in the guidance law design for hypersonic vehicle entry flight. By exploiting the inherent characteristics of time scale separation of entry vehicle dynamics,altitude and velocity could be controlled separately via outer and inner loop design.In the outer loop,path angle was used as pseudo-control for controlling the altitude. In the inner loop,the flight path angle command and velocity were tracked using bank angle and angle of attack as controls. A linear time-varying controller was designed for the feedback loop to stabilize the error dynamics. Feedback gains were computed online and are the symbolical functions of reference trajectory,therefore no explicit gain scheduling or mode-switching were needed. Extensive dispersion simulations show that this guidance algorithm can achieve precise trajectory tracking and is trajectory-independent. The simulations also show that an integrated entry guidance approach which combines the use of TLC-based tracking guidance law design and on-board reference trajectory planning can significantly enhance the autonomy and adaptability of entry flight.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

A novel use of trajectory linearization control( TLC) method was introduced in the guidance law design for hypersonic vehicle entry flight. By exploiting the inherent characteristics of time scale separation of entry vehicle dynamics,altitude and velocity could be controlled separately via outer and inner loop design.In the outer loop,path angle was used as pseudo-control for controlling the altitude. In the inner loop,the flight path angle command and velocity were tracked using bank angle and angle of attack as controls. A linear time-varying controller was designed for the feedback loop to stabilize the error dynamics. Feedback gains were computed online and are the symbolical functions of reference trajectory,therefore no explicit gain scheduling or mode-switching were needed. Extensive dispersion simulations show that this guidance algorithm can achieve precise trajectory tracking and is trajectory-independent. The simulations also show that an integrated entry guidance approach which combines the use of TLC-based tracking guidance law design and on-board reference trajectory planning can significantly enhance the autonomy and adaptability of entry flight.

Key concepts: Trajectory, Control theory (sociology), Inner loop, Feedback loop, Feedback linearization, Angle of attack, Linearization, Tracking (education)

Related papers

Back to paper searchBrowse research topicsOriginal source
Trajectory linearization control based tracking guidance design for entry flight — Research Paper | ScholarLens