Off-world Power Generation Components: Difference between revisions
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* Higher-cost efficiency improvements will be accepted for review by the board, who will consider the cost impact on the success of the project.     | * Higher-cost efficiency improvements will be accepted for review by the board, who will consider the cost impact on the success of the project.     | ||
* Lower-cost improvements that result in a "statistically insignificant" efficiency loss will be accepted for review by the board.  | * Lower-cost improvements that result in a "statistically insignificant" efficiency loss will be accepted for review by the board.  | ||
{| style="background:#EEEEEE" border="1" cellpadding="2"  | |||
|-  | |||
|[[Image:GoogleResultsWalker_small.jpg|50px|left]] Off-world solar collection  | |||
|Reference implementation: [[Off-world Power Generation Lab 1: Free Space 1W Transmission|Lab 1]]  | |||
|Efficiency (W/kg): TBD  | |||
|Cost ($/W): TBD  | |||
|-  | |||
|[[Image:Boxcarkid_thumb.png|50px|left]] [http://boxcarkid.com The Boxcar Kid]  | |||
|The website for my dad's historic novel, The Boxcar Kid.  It includes a blog that he posts to regularly, don't miss it.  | |||
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* Efficiency (Wh*km): TBD  | * Efficiency (Wh*km): TBD  | ||
* Cost ($/Wh*km): TBD  | * Cost ($/Wh*km): TBD  | ||
=== Launch of off-world gear  ===  | |||
Reference implementation  | |||
* Description: TBD  | |||
* Efficiency (Wh*km): TBD  | |||
* Cost ($/Wh*km): TBD  | |||
=== Robotic self-assembly of off-world gear  ===  | |||
Requirements  | |||
* Establishment of orbit and assembly of initial gear  | |||
* Orbital delivery and assembly of supplemental gear  | |||
Reference implementation  | |||
* Description: TBD  | |||
* Cost ($/kg): TBD  | |||
Revision as of 19:50, 15 December 2018
Each component will have a reference implementation with a black box efficiency and cost rating.
- Any efficiency improvement of at least 2% with no more than a 10% cost increase will automatically qualify to be the new reference standard.
 - Any cost reduction of at least 0.5% with no loss in efficiency will automatically qualify to be the new reference standard.
 - Higher-cost efficiency improvements will be accepted for review by the board, who will consider the cost impact on the success of the project.
 - Lower-cost improvements that result in a "statistically insignificant" efficiency loss will be accepted for review by the board.
 
| Off-world solar collection | Reference implementation: Lab 1 | Efficiency (W/kg): TBD | Cost ($/W): TBD | 
| The Boxcar Kid | The website for my dad's historic novel, The Boxcar Kid. It includes a blog that he posts to regularly, don't miss it. | 
Off-world solar collection
Reference implementation
- Description: TBD
 - Efficiency (W/kg): TBD
 - Cost ($/W): TBD
 
Off-world solar storage
Reference implementation
- Description: TBD
 - Efficiency (Wh/kg): TBD
 - Cost ($/Wh): TBD
 
Off-world solar transmission
Requirements
- Transmission/receiver handshake
- for precision aiming
 - for safety; power laser cutoff within 5 seconds when transmission line of sight is blocked
 
 - Cyber-security best practices
 
Reference implementation
- Description: TBD
 - Efficiency (Wh %): TBD
 - Cost ($/Wh): TBD
 
Earthbound solar collection
Reference implementation
- Description: TBD
 - Efficiency (Wh %): TBD
 - Cost ($/Wh): TBD
 
Earthbound solar distribution
Reference implementation
- Description: TBD
 - Efficiency (Wh*km): TBD
 - Cost ($/Wh*km): TBD
 
Launch of off-world gear
Reference implementation
- Description: TBD
 - Efficiency (Wh*km): TBD
 - Cost ($/Wh*km): TBD
 
Robotic self-assembly of off-world gear
Requirements
- Establishment of orbit and assembly of initial gear
 - Orbital delivery and assembly of supplemental gear
 
Reference implementation
- Description: TBD
 - Cost ($/kg): TBD
 
