Analytical investigations of quasi-circular frozen orbits in the Martian gravity field
Xiaodong Liu, Hexi Baoyin, Xingrui Ma

TL;DR
This paper analytically investigates quasi-circular frozen orbits around Mars using two methods, revealing four orbit families, their characteristics, and stability, aiding future orbit design and reconnaissance missions.
Contribution
It introduces two analytical approaches for identifying Martian frozen orbits and validates their accuracy, providing detailed orbit characteristics and stability analysis.
Findings
Identified four families of Martian frozen orbits.
Validated analytical methods with numerical simulations.
Analyzed stability and argument of pericentre behaviors.
Abstract
Frozen orbits are always important foci of orbit design because of their valuable characteristics that their eccentricity and argument of pericentre remain constant on average. This study investigates quasi-circular frozen orbits and examines their basic nature analytically using two different methods. First, an analytical method based on Lagrangian formulations is applied to obtain constraint conditions for Martian frozen orbits. Second, Lie transforms are employed to locate these orbits accurately, and draw the contours of the Hamiltonian to show evolutions of the equilibria. Both methods are verified by numerical integrations in an 80\times80 Mars gravity field. The simulations demonstrate that these two analytical methods can provide accurate enough results. By comparison, the two methods are found well consistent with each other, and both discover four families of Martian frozen…
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