The Mid-Lift-to-Drag Ratio Rigid Vehicle (MRV) is a proposed candidate in the NASA Evolvable Mars Campaign's (EMC) Pathfinder Entry, Descent, and Landing (EDL) architecture study. The purpose of the study is to design a mission and vehicle capable of transporting a 20mt payload to the surface of Mars. The MRV is unique in its rigid, asymmetrical lifting-body shape which enables a higher lift-to-drag ratio (L/D) than the typical robotic Mars entry capsule vehicles that carry much less mass. This paper presents the formulation and six-degree-of-freedom (6DOF) performance of the MRV's control system, which uses both aerosurfaces and a propulsive reaction control system (RCS) to affect longitudinal and lateral directional behavior
Landing humans on Mars is one of NASA's long term goals. NASA's Evolvable Mars Campaign (EMC) is foc...
Human-scale landers require the delivery of much heavier payloads to the surface of Mars than is pos...
As part of a Mars Sample Return (MSR) campaign, two Mars Ascent Vehicle (MAV) configurations have be...
In an effort to mature the design of the Mid-Lift-to-Drag ratio Rigid Vehicle (MRV) candidate of the...
The Mid-Lift-to-Drag ratio Rigid Vehicle (MRV) is a candidate in the NASA multi-center effort to det...
Current NASA Human Mars architectures require delivery of approximately 20 metric tons of cargo to t...
Defining a feasible vehicle design and mission architecture capable of reliably delivering apayload ...
Develop two evolutionary rigid vehicle concepts to deliver human-scale payloads (20 metric tons) to ...
Several technology investments are required to develop Mars human scale Entry, Descent, and Landing ...
Significant effort has been expended over the past few years in order to examine propulsion technolo...
The primary objective of the NASA RASCAL Theme 2 competition is to develop a Minimum Mars Ascent Veh...
The primary objective of the NASA RASCAL Theme 2 competition is to develop a Minimum Mars Ascent Veh...
Astronauts on a mission to Mars will require several vehicles working together to get to Mars orbit,...
Human Mars mission architecture studies have shown that the ascent vehicle mass drives performance r...
NASAs Entry, Descent and Landing Architecture Study uses a trajectory simulation framework to evalua...
Landing humans on Mars is one of NASA's long term goals. NASA's Evolvable Mars Campaign (EMC) is foc...
Human-scale landers require the delivery of much heavier payloads to the surface of Mars than is pos...
As part of a Mars Sample Return (MSR) campaign, two Mars Ascent Vehicle (MAV) configurations have be...
In an effort to mature the design of the Mid-Lift-to-Drag ratio Rigid Vehicle (MRV) candidate of the...
The Mid-Lift-to-Drag ratio Rigid Vehicle (MRV) is a candidate in the NASA multi-center effort to det...
Current NASA Human Mars architectures require delivery of approximately 20 metric tons of cargo to t...
Defining a feasible vehicle design and mission architecture capable of reliably delivering apayload ...
Develop two evolutionary rigid vehicle concepts to deliver human-scale payloads (20 metric tons) to ...
Several technology investments are required to develop Mars human scale Entry, Descent, and Landing ...
Significant effort has been expended over the past few years in order to examine propulsion technolo...
The primary objective of the NASA RASCAL Theme 2 competition is to develop a Minimum Mars Ascent Veh...
The primary objective of the NASA RASCAL Theme 2 competition is to develop a Minimum Mars Ascent Veh...
Astronauts on a mission to Mars will require several vehicles working together to get to Mars orbit,...
Human Mars mission architecture studies have shown that the ascent vehicle mass drives performance r...
NASAs Entry, Descent and Landing Architecture Study uses a trajectory simulation framework to evalua...
Landing humans on Mars is one of NASA's long term goals. NASA's Evolvable Mars Campaign (EMC) is foc...
Human-scale landers require the delivery of much heavier payloads to the surface of Mars than is pos...
As part of a Mars Sample Return (MSR) campaign, two Mars Ascent Vehicle (MAV) configurations have be...