Some Improvements on Relativistic Positioning Systems

  1. Màrius Josep Fullana i Alfonso
  2. Diego Pascual Sáez Milán
  3. Josep Vicent Arnau i Córdoba
  4. Neus Puchades Colmenero
Zeitschrift:
Applied Mathematics and Nonlinear Sciences

ISSN: 2444-8656

Datum der Publikation: 2018

Ausgabe: 3

Nummer: 1

Seiten: 161-166

Art: Artikel

DOI: 10.21042/AMNS.2018.1.00012 DIALNET GOOGLE SCHOLAR lock_openOpen Access editor

Andere Publikationen in: Applied Mathematics and Nonlinear Sciences

Zusammenfassung

We make some considerations about Relativistic Positioning Systems (RPS). Four satellites are needed to position a user. First of all we define the main concepts. Errors should be taken into account. Errors depend on the Jacobian transformation matrix. Its Jacobian is proportional to the tetrahedron volume whose vertexes are the four tips of the receiver-satellite unit vectors. If the four satellites are seen by the user on a circumference in the sky, then, the Jacobian and the tetrahedron volume vanish. The users we consider are spacecraft. Spacecraft to be positioned cannot be close to a null Jacobian satellites-user configuration. These regions have to be avoided choosing an appropriate set of four satellites which are not seen too close to the same circumference in the sky. Errors also increase as the user spacecraft separates from the emission satellite region, since the tetrahedron volume decreases.We propose a method to autonomously potion a user-spacecraft which can test our method. This positioning should be compared with those obtained by current methods. Finally, a proposal to position a user-spacecraft moving far from Earth, with suitable devices (autonomous), is presented