New Moon Rover Concept
- Problems:
- High energy consumption.
- Huge Size.
- Difficult to take to place of exploration.
- High Cost of manufacturing.
- High time consuming.
- Large human and natural resources consumption.
- Low efficiency.
- Low data collection.
- Require large launch vehicles.
- Require huge battery backup.
- Working Slowly.
- Lesser area coverage.
- Smaller production.
2. Solutions:
- Appropriate Design.
- Better look.
- High efficiency.
- Fast movement.
- Low energy consumption.
- Smaller size.
- Mass production.
- Lower cost of manufacturing.
- Large data collection.
- Require smaller launch vehicles.
3.Positively change lives if it was scaled globally:
- Lesser human and natural resources consumption.
- Lesser time for manufacturing.
- Easier for manufacturing.
- Give time for future generations missions.
- Provides future project betterment.
- Helps for more clear information.
- Huge data collection.
- Helps for our study.
- Helps to take on future missions.
- Saves money for other lots of projects.
- Fast manufacturing.
- Easier to explore a huge area.
Problems on the past rovers:
- High weight.
- Large size.
- Small scale of manufacture.
- Large human and natural resources consumption.
- Time consuming.
- Cost reaches to 1 billion dollars.
- Huge loss of money.
- Lesser area coverage.
- Specific to a particular place.
- Workers with high power consumption.
- Low efficiency and effective.
- Waste time in a particular project.
- Takes the time of other projects.
- Less data collection.
- Requires large launch vehicles
Everyone in the earth would get affected by it.
Using gravity of Moon and smaller size is the main benefit of the concept.
Globally, Every projects made were with high energy consuming with huge size. The rover in past aren't using the gravity of Moon.
Solutions:
- Appropriate Design.
- Better look.
- High efficiency.
- High area coverage system.
- Low energy consuming systems.
- Smaller size.
- Mass production.
- Round surface for bouncing easier.
- Lower cost of manufacturing.
- Bouncing and rolling system
- Smaller size with smaller launch vehicles.
- Require smaller battery backup.
- Fast moving robotic movement systems.
Positively change lives if it was scaled globally:
- Lesser human and natural resources consumption.
- Lesser time for manufacturing.
- Easier for manufacturing.
- Give time for future generations missions.
- Provides future project betterment.
- Helps for more clear information.
- Huge data collection.
- Helps for our study.
- Helps to take on future missions.
- Saves money for other lots of projects.
- Fast manufacturing.
- Easier to explore a huge area.
- Other
- Problems:
- High energy consumption.
- Huge Size.
- High Cost of manufacturing.
- High time consuming.
- Large human and natural resources consumption.
- Low efficiency.
- Require large launch vehicles.
- Require huge battery backup.
- Lesser area coverage.
- Smaller production.
2. Solutions:
- Appropriate Design.
- High efficiency.
- High area coverage.
- Low energy consumption.
- Smaller size.
- Mass production.
Everyone in the earth would get affected by it.
Using gravity of Moon and smaller size is the main benefit of the concept.
Globally, every project made were with high energy consuming with huge size. The rover in past aren't using the gravity of Moon.
- Scale: A sustainable enterprise working in several communities or countries that is looking to scale significantly, focusing on increased efficiency.
On the surface of Moon.
- A new technology
3.Positively change lives if it was scaled globally:
- Lesser human and natural resources consumption.
- Lesser time for manufacturing.
- Easier for manufacturing.
- Give time for future generations missions.
- Provides future project betterment.
- Helps for more clear information.
- Huge data collection.
- Helps for our study.
- Helps to take on future missions.
- Saves money for other lots of projects.
- Fast manufacturing.
- Easier to explore a huge area.
- Artificial Intelligence / Machine Learning
- Big Data
- GIS and Geospatial Technology
- Imaging and Sensor Technology
- Manufacturing Technology
- Materials Science
- Robotics and Drones
- Software and Mobile Applications
- Virtual Reality / Augmented Reality
- Women & Girls
- Pregnant Women
- LGBTQ+
- Infants
- Children & Adolescents
- Elderly
- Rural
- Peri-Urban
- Urban
- Poor
- Low-Income
- Middle-Income
- Refugees & Internally Displaced Persons
- Minorities & Previously Excluded Populations
- Persons with Disabilities
- 9. Industry, Innovation and Infrastructure
- Australia
- India
0 now billions in the future.
low cost and time consuming with innovative idea.
- Hybrid of for-profit and nonprofit
1
singly working on it.
Take every as a part of 5he project and make them feel how it is important.
- Government (B2G)
Lage Lunar vehicles without using moon's gravity.
- Human Capital (e.g. sourcing talent, board development, etc.)
- Financial (e.g. improving accounting practices, pitching to investors)
- Monitoring & Evaluation (e.g. collecting/using data, measuring impact)
- Product / Service Distribution (e.g. expanding client base)
- Technology (e.g. software or hardware, web development/design, data analysis, etc.)
The team of these people are required for making it real.
NASA, ASA, ISRO etc.
- Yes, I wish to apply for this prize
require funding
- Yes, I wish to apply for this prize
The project would save a lot of money and would be easy to make by every background of people for making them involved in the space exploration
- Yes, I wish to apply for this prize
It is the advancement of the future technology to reality
- Yes, I wish to apply for this prize
wwe would include every background of people to get involved in the space exploration. Giving everyone a chance to get them educated about space.
- Yes, I wish to apply for this prize
- Yes, I wish to apply for this prize