Difference between revisions of "Comparison"
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| − | ! Feature !! Classical approach !! Blockchain approach |
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| + | ! Classical approach |
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| + | ! Blockchain approach |
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| − | | Number of used opinions for voting strategy |
+ | | Number of used opinions for voting strategy |
| + | | Last 2 opinions in robot's memory |
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| + | | Last 2 opinions in robot's blockchain |
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| Time |
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| DC, DMMD, DMVD |
| DC, DMMD, DMVD |
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| see strategies below |
| see strategies below |
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Revision as of 18:07, 30 January 2017
Problem
"How to transfer the sensors readings (quality of the opinion) into a secure dissemination strategy that is similar to the existing approach?"
Comparison
Dissemination
Broadcasting Listening Peers Decision-making strategy:| Feature | Classical approach | Blockchain approach |
|---|---|---|
| Number of used opinions for voting strategy | Last 2 opinions in robot's memory | Last 2 opinions in robot's blockchain |
| Time | proportional to sensor readings p, using a sample from an exponential distribution with pg, g = 10 | see strategies below |
| During the entire phase | During the entire phase | |
| Only in the last 3s of the phase | Figure out | |
| Send opinions to peers if distance is below 50 cm | Connect to peers (i.e., to their Ethereum process) if distance is below 50 cm | |
| DC, DMMD, DMVD | see strategies below |
Exploration
Time Peers| Sample from an exponential distribution with σ = 10 | Sample from an exponential distribution with σ = 10 |
| Not connected to any peers | Not connected to any peers}
StrategiesStrategy 1: Amount of transactions
Strategy 2: Direct modulation
Strategy 3: Dissemination time
Strategy 4: Hash-puzzle
Strategy 5: Most similar
Alternative
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