Abstract
We consider the sub-Riemannian length minimization problem on the group of motions of pseudo-Euclidean plane that form the special hyperbolic group SH(2). The system comprises of left invariant vector fields with 2-dimensional linear control input and energy cost functional. We apply the Pontryagin maximum principle to obtain the extremal control input and the sub-Riemannian geodesics. A change of coordinates transforms the vertical subsystem of the normal Hamiltonian system into the mathematical pendulum. In suitable elliptic coordinates, the vertical and the horizontal subsystems are integrated such that the resulting extremal trajectories are parametrized by the Jacobi elliptic functions. Qualitative analysis reveals that the projections of normal extremal trajectories on the xy-plane have cusps and inflection points. The vertical subsystem being a generalized pendulum admits reflection symmetries that are used to obtain a characterization of the Maxwell strata.
| Original language | English |
|---|---|
| Pages (from-to) | 341-364 |
| Number of pages | 24 |
| Journal | Journal of Dynamical and Control Systems |
| Volume | 20 |
| Issue number | 3 |
| DOIs | |
| State | Published - Jul 2014 |
| Externally published | Yes |
Keywords
- Elliptic coordinates
- Extremal trajectories
- Jacobi elliptic functions
- Maxwell strata
- Parametrization
- Special hyperbolic group SH(2)
- Sub-Riemannian geometry
ASJC Scopus subject areas
- Control and Systems Engineering
- Algebra and Number Theory
- Numerical Analysis
- Control and Optimization
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