Artemis (Adams-based Rover Terramechanics and Mobility Interaction Simulator) is a software tool developed to simulate rigid-wheel planetary rover traverses across natural terrain surfaces. It is based on mechanically realistic rover models and the use of classical terramechanics expressions to model spatially variable wheel-soil and wheel-bedrock properties. Artemis's capabilities and limitations for the Mars Exploration Rovers (Spirit and Opportunity) were explored using single-wheel laboratory-based tests, rover field tests at the Jet Propulsion Laboratory Mars Yard, and tests on bedrock and dune sand surfaces in the Mojave Desert. Artemis was then used to provide physical insight into the high soil sinkage and slippage encountered by Op...
Abstract: A dynamic computer simulator was developed to study planetary rover mobility. The simulato...
The term of terramechanics is somewhat deceptive when used in conjunction with planetary exploration...
All robotic rovers for planetary exploration and the vehicles used to carry astronauts on the surfac...
To help minimize risk of high sinkage and slippage during drives and to better understand soil prope...
AbstractMars Exploration Rovers (MERs) experienced mobility problems during traverses. Three-dimensi...
A rover\u27s performance on extraterrestrial terrain can be predicted by simulating the physical com...
The paper presents a tool develop to provide a general purpose testbed to validate the design, to si...
Based on insufficient studies of the tractive performance of a planetary rover's rigid wheels in sof...
Rovers on Mars or Moon for planetary exploration are obtainig increased importance within the spacef...
Mars is recently the most popular destination for planetary exploitation. A large extent of scienti...
Locomotion on unstructured, sandy terrain poses a great danger to planetary rovers. To counteract th...
A thorough analysis of wheel-terrain interaction is critical to ensure the safe and efficient operat...
This paper presents analytical models to investigate the steering maneuvers of planetary exploration...
Legged rovers offer a potentially superior alternative to wheeled locomotion for the exploration of ...
This thesis outlines a systematic study of different mobility/suspension systems that have been prop...
Abstract: A dynamic computer simulator was developed to study planetary rover mobility. The simulato...
The term of terramechanics is somewhat deceptive when used in conjunction with planetary exploration...
All robotic rovers for planetary exploration and the vehicles used to carry astronauts on the surfac...
To help minimize risk of high sinkage and slippage during drives and to better understand soil prope...
AbstractMars Exploration Rovers (MERs) experienced mobility problems during traverses. Three-dimensi...
A rover\u27s performance on extraterrestrial terrain can be predicted by simulating the physical com...
The paper presents a tool develop to provide a general purpose testbed to validate the design, to si...
Based on insufficient studies of the tractive performance of a planetary rover's rigid wheels in sof...
Rovers on Mars or Moon for planetary exploration are obtainig increased importance within the spacef...
Mars is recently the most popular destination for planetary exploitation. A large extent of scienti...
Locomotion on unstructured, sandy terrain poses a great danger to planetary rovers. To counteract th...
A thorough analysis of wheel-terrain interaction is critical to ensure the safe and efficient operat...
This paper presents analytical models to investigate the steering maneuvers of planetary exploration...
Legged rovers offer a potentially superior alternative to wheeled locomotion for the exploration of ...
This thesis outlines a systematic study of different mobility/suspension systems that have been prop...
Abstract: A dynamic computer simulator was developed to study planetary rover mobility. The simulato...
The term of terramechanics is somewhat deceptive when used in conjunction with planetary exploration...
All robotic rovers for planetary exploration and the vehicles used to carry astronauts on the surfac...