Lunar Surface Fault-Tolerant Soft-Landing Performance and Experiment for a Six-Legged Movable Repetitive Lander

Author:

Yin Ke,Zhou Songlin,Sun Qiao,Gao Feng

Abstract

The cascading launch and cooperative work of lander and rover are the pivotal methods to achieve lunar zero-distance exploration. The separated design results in a heavy system mass that requires more launching costs and a limited exploration area that is restricted to the vicinity of the immovable lander. To solve this problem, we have designed a six-legged movable repetitive lander, called “HexaMRL”, which congenitally integrates the function of both the lander and rover. However, achieving a buffered landing after a failure of the integrated drive units (IDUs) in the harsh lunar environment is a great challenge. In this paper, we systematically analyze the fault-tolerant capacity of all possible landing configurations in which the number of remaining normal legs is more than two and design the landing algorithm to finish a fault-tolerant soft-landing for the stable configuration. A quasi-incentre stability optimization method is further proposed to increase the stability margin during supporting operations after landing. To verify the fault-tolerant landing performance on the moon, a series of experiments, including five-legged, four-legged and three-legged soft-landings with a vertical landing velocity of −1.9 m/s and a payload of 140 kg, are successfully carried out on a 5-DoF lunar gravity ground-testing platform. The HexaMRL with fault-tolerant landing capacity will greatly promote the development of a next-generation lunar prober.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

European Union's Horizon 2020 research and innovation programme under the Marie Skłodowska-Curie grant agreement

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference33 articles.

1. The Moon: From Research to Exploration (To the 50th anniversary of Luna-9 and Luna-10 Spacecraft)

2. Results of The Ranger, Lunar 9, and Surveyor 1 missions;Behm;J. Astronaut. Sci.,1967

3. A precise visual localisation method for the Chinese Chang’e‐4 Yutu‐2 rover

4. Lunar and Planetary Rovers: The Wheels of Apollo and the Quest for Mars;Young,2007

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