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UPC TEAM
2
UPC TEAM
1- Sustainable profit-making long-term plan
Google Lunar X Prize UPC Team
1- Sustainable profit-making long-term plan• Lunar Base Site Scouting: YES• Premium Entertainment Package: YES• Personal Glory: No• Lunar Communications Architecture: No• Martian X Prize: No• Far Side Lunar Observatory: YES• Google Earth 3.0: Explore the whole world in 3D: YES
• Lunar Base Site Scouting: YES– Difficult mission but very attractive (it is the end
goal of the project).– A human colony is still far from our project.– Lunar payload delivery, lunar mining.
1- Sustainable profit-making long-term plan
• Premium Entertainment Package: YES– Good amount of money to make profit.– Very similar to GLXP initial mission.– Heavy requirement of data adquisition and
transmition, and may be a large Rover range.
1- Sustainable profit-making long-term plan
• Personal Glory: NO– Easy mission but...– Non ethical or political correction.– Other personal glories may be better than country
flags.
1- Sustainable profit-making long-term plan
1- Sustainable profit-making long-term plan• Lunar Communications Architecture: NO
– Communication satellites orbiting are needed, and the project does not include anyone.
– It might be a huge project for a new company.
1- Sustainable profit-making long-term plan• Martian X Prize: No, different mission requirements
– It is a very difficult mission for 50M$.– The requirements may change a lot.– It could be better to develop projects on the
moon.
1- Sustainable profit-making long-term plan
• Far Side Lunar Observatory: YES– It is a good amount of money for setting up a
modular network.– Payload mission must be incremented a lot.– Additional contacts may concern a good profit for
a long-term.
1- Sustainable profit-making long-term plan• Google Earth 3.0: Explore the whole world in 3D
– It could be included in our first mission, because of the benefit.
– The most difficult point is the camera used (not very high requirement).
1- Sustainable profit-making long-term plan• Other possibilities for profit making:
– Possibility to move the Rover by radio control over using Internet from peoples home, and take personal pictures.
– Send people’s ashes that wanted to go to the moon and loved it.
– Safety place for enterprise data.– Possibility of advertisement in the first GLXP.
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UPC TEAM
Fund Raising: Getting started to win the GLXP!
Google Lunar X Prize UPC Team
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WE NEED LOTS OF MONEY…
May, 2008 Google Lunar X Prize UPC Team
MarketingMarketing
Marketing
Marketing
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Fund Raising
May, 2008 Google Lunar X Prize UPC Team
Venture Capitalist (Ownership of our company) 49%
Sponsoring of publicity (equipment)
Individual donations (minimum)
Sponsors: Publicity in our mission
To do before…To do before…
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Fund Raising
May, 2008 Google Lunar X Prize UPC Team
To do after…To do after…
IPO
Long-term-plan actions (already explained)
Bonus (Heritage & Range)
16
UPC TEAM
De la Terre à la Lune !
Google Lunar X Prize UPC Team
17
De la Terre à la Lune !
May, 2008 Google Lunar X Prize UPC Team
There are diferents rockets in history, we can choose what is the ideal rocket for launch…
But we want a Sustainable Project.- We want an economy launch
- Emerging country in space race
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De la Terre à la Lune !
May, 2008 Google Lunar X Prize UPC Team
Ariane
Atlas
EnergyN-1
Proton
Redstone
Saturno ISaturno V
Titan
V2
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De la Terre à la Lune !
May, 2008 Google Lunar X Prize UPC Team
Wich is better?
Ardiane 5or
Falcon 2x ?
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De la Terre à la Lune !
May, 2008 Google Lunar X Prize UPC Team
X Y
Advantatge
Disvantatge
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De la Terre à la Lune !
May, 2008 Google Lunar X Prize UPC Team
Payload
Go out one Spacecraft
22May, 2008 Google Lunar X Prize UPC Team
We can arrived at moon in 4 days !!!! -Lunar Transfer Inserche –
De la Terre à la Lune !
23May, 2008 Google Lunar X Prize UPC Team
De la Terre à la Lune !
When Spacecraft is near start a break with hidrazine
N2H4 to…
24May, 2008 Google Lunar X Prize UPC Team
De la Terre à la Lune !
To…when Spacecraft is near at Moon Surfice leave a
TETRAHEDRON
With a coated air balls (airbags)
25May, 2008 Google Lunar X Prize UPC Team
De la Terre à la Lune !
Then… tetrahedron have a crash landing!!BUT CONTROLABLE!!!
Bouncnig Effect
But where??
26May, 2008 Google Lunar X Prize UPC Team
De la Terre à la Lune !
Landing on theLunar Equator:
Advantages- Safer- Earth View- Type of Landing- Solar Power Availability
27May, 2008 Google Lunar X Prize UPC Team
De la Terre à la Lune !
- Air of balls desapair- Open 3 sides (always open
with the correct position)- Robot arm with antennas seeking signs of land - Rover is still anchored on one side
28May, 2008 Google Lunar X Prize UPC Team
De la Terre à la Lune !
Tetraedro Open- 3 antenas
- 1 Parabolic to Earth- 2 with Rover
-Solar Arrays- 3 arms with 2 camaras everyone (for 3D)Rover
start its mission
29May, 2008 Google Lunar X Prize UPC Team
De la Terre à la Lune !
- Where is the rover??
30May, 2008 Google Lunar X Prize UPC Team
De la Terre à la Lune !
Rover is RUN!!!
Rover - Has 2 arms with
2 antennas- Has Solar Arrays- 6 wires- 2 arms with 2 camaras everyone with 3D
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On the Surface of the Moon: Mobility and Mooncast !
Google Lunar X Prize UPC Team
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On the Surface of the moon.
May, 2008 Google Lunar X Prize UPC Team
Lunar station Communications between Earth and Moon Communications between Rover and Lunar station
Rover Moon exploration Autonomous and Remote Controlled
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On the Surface of the moon.
May, 2008 Google Lunar X Prize UPC Team
Lunar station X - Ku Band between Earth & Moon, nearly to 10GHz, CNAF may provide this band.
Modulation by C-OFDM maybe is a good option infront of multi-path error, but posterior studies in BER must corroborate it. Rechargeable Batteries with and small energy plant.
Recently technologies provide to Littium-Polimery batteries a high power, and very high discharge peak, however extremely conditions have not been tested. 2 kinds of Communications between Rover and Lunar Station.
Data Instruction Transfer (about 800Mhz). Radio Modem transmission can solve the problem of error and modulation, because provide a full- duplex communication FSK and error detection & correction by Hamming procedure. Video Transfer 2,4Ghz simple communication where is only receiving video from Rover
34
On the Surface of the moon.
May, 2008 Google Lunar X Prize UPC Team
Rover Autonomous and Remote Control Available .
From Earth and using Data Instruction Transfer is possible change it between mode.
If autonomous mode is desired, using artificial vision coming from video cameras, IA (fuzzy and Neural
Networks) is able to dote of this system to the rover. Rechargeable Batteries with solar panel.
Recently technologies provide to Littium-Polimery batteries a high power, and very high discharge peak, however extremely conditions have not been tested. 2 kinds of Communications between Rover and Lunar Station.
Data Instruction Transfer Video Transfer 2,4Ghz(Explained before)