In this paper, the wheel-soil interaction for a future lunar exploration mission is investigated by physical model tests and numerical simulations. Firstly, a series of physical model tests was conducted using the TJ-1 lunar soil simulant with various driving conditions, wheel configurations and ground void ratios. Then the corresponding numerical simulations were performed in a terrestrial environment using the Distinct Element Method (DEM) with a new contact model for lunar soil, where the rolling resistance and van der Waals force were implemented. In addition, DEM simulations in an extraterrestrial (lunar) environment were performed. The results indicate that tractive efficiency does not depend on wheel rotational velocity, but decrease...
All robotic rovers for planetary exploration and the vehicles used to carry astronauts on the surfac...
In contrast to terrestrial environment, the harsh lunar environment conditions include lower gravity...
In contrast to terrestrial environment, the harsh lunar environment conditions include lower gravity...
This paper introduced a testbed developed from a perspective of soil mechanics which not only focuse...
In this paper, a rigid wheel of the rover is designed. We discuss the physical parameters of the typ...
The pressurized lunar rover has become one of the most important equipment in lunar exploration and ...
The pressurized lunar rover has become one of the most important equipment in lunar exploration and ...
All robotic rovers for planetary exploration and the vehicles used to carry astronauts on the surfac...
Explorations of celestial bodies have been conducted by wheel type robots known as rovers, in recen...
All robotic rovers for planetary exploration and the vehicles used to carry astronauts on the surfac...
Based on insufficient studies of the tractive performance of a planetary rover's rigid wheels in sof...
In consequence of growing interests of science exploration on our solar system’s planets and moons,...
This paper presents analytical models to investigate the steering maneuvers of planetary exploration...
Travelling long distances with maximum reliability are necessary requirements for future lunar rover...
All robotic rovers for planetary exploration and the vehicles used to carry astronauts on the surfac...
All robotic rovers for planetary exploration and the vehicles used to carry astronauts on the surfac...
In contrast to terrestrial environment, the harsh lunar environment conditions include lower gravity...
In contrast to terrestrial environment, the harsh lunar environment conditions include lower gravity...
This paper introduced a testbed developed from a perspective of soil mechanics which not only focuse...
In this paper, a rigid wheel of the rover is designed. We discuss the physical parameters of the typ...
The pressurized lunar rover has become one of the most important equipment in lunar exploration and ...
The pressurized lunar rover has become one of the most important equipment in lunar exploration and ...
All robotic rovers for planetary exploration and the vehicles used to carry astronauts on the surfac...
Explorations of celestial bodies have been conducted by wheel type robots known as rovers, in recen...
All robotic rovers for planetary exploration and the vehicles used to carry astronauts on the surfac...
Based on insufficient studies of the tractive performance of a planetary rover's rigid wheels in sof...
In consequence of growing interests of science exploration on our solar system’s planets and moons,...
This paper presents analytical models to investigate the steering maneuvers of planetary exploration...
Travelling long distances with maximum reliability are necessary requirements for future lunar rover...
All robotic rovers for planetary exploration and the vehicles used to carry astronauts on the surfac...
All robotic rovers for planetary exploration and the vehicles used to carry astronauts on the surfac...
In contrast to terrestrial environment, the harsh lunar environment conditions include lower gravity...
In contrast to terrestrial environment, the harsh lunar environment conditions include lower gravity...