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August 17, 2025Aerospace2 citationsOpen Access

Precise Orbit Determination for Cislunar Space Satellites: Planetary Ephemeris Simplification Effects

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HLHejin LvNXNan XingYHYong Huang

Key Points

  • Maintaining orbital prediction accuracy within 10 m is possible with targeted gravitational perturbations.
  • Simulation results indicate significant efficiency improvements with reduced memory usage by approximately 60%.
  • The method employs Hermite interpolation for Sun and Moon positions, enhancing orbit determination processes.
  • Using a 6-day arc length with specific interpolation intervals allows meter-level accuracy for navigation satellites.

Abstract

The cislunar space navigation satellite system is essential infrastructure for lunar exploration in the next phase. It relies on high-precision orbit determination to provide the reference of time and space. This paper focuses on constructing a navigation constellation using special orbital locations such as Earth–Moon libration points and distant retrograde orbits (DRO), and it discusses the simplification of planetary perturbation models for their autonomous orbit determination on board. The gravitational perturbations exerted by major solar system bodies on spacecraft are first analyzed. The minimum perturbation required to maintain a precision of 10 m during a 30-day orbit extrapolation is calculated, followed by a simulation analysis. The results indicate that considering only gravitational perturbations from the Moon, Sun, Venus, Saturn, and Jupiter is sufficient to maintain orbital prediction accuracy within 10 m over 30 days. Based on these findings, a method for simplifying the ephemeris is proposed, which employs Hermite interpolation for the positions of the Sun and Moon at fixed time intervals, replacing the traditional Chebyshev polynomial fitting used in the JPL DE ephemeris. Several simplified schemes with varying time intervals and orders are designed. The simulation results of the inter-satellite links show that, with a 6-day orbit arc length, a 1-day lunar interpolation interval, and a 5-day solar interpolation interval, the accuracy loss for cislunar space navigation satellites remains within the meter level, while memory usage is reduced by approximately 60%.

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Cite This Study

Lv et al. (2025) studied this question.

synapsesocial.com/papers/68a36c210a429f797332fbcahttps://doi.org/10.3390/aerospace12080716
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