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Analysis of Network Distance Prediction with Global Network Positioning Mathieu Rodrigue Department of Computer Science University of Hartford 17/09/2018
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Background “Predicting Internet Network Distance With Coordinates-Based Approaches” Triangulated Heuristic IDMaps Global Network Positioning (GNP)
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IDMaps Topological map of the internet Query HOPS Servers to get distance Consistent, but, many over predictions
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Global Network Positioning
Reference points are disseminated known as “Landmarks” Landmarks and hosts compute coordinates relative to each other by utilizing an objective function
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Minimization Objective function for Landmarks:
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Minimization Objective function for ordinary hosts:
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Global Network Positioning
Coordinates are applied to nodes within the network A standard vector distance function is utilized to predict network distance
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Factors that affect results:
Methodology Factors that affect results: Number of dimensions Number of Landmarks Network speed when sending ICMP ping packets Directional relative error:
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Using the Planet Lab service:
Methodology Using the Planet Lab service: Choose five initial international reference points to serve as landmarks/tracers Binghamton, New York Hamburg, Germany Christchurch, New Zealand Taipei, Taiwan Bologna, Italy Choose two international hosts Santa Cruz, California Osaka, Japan
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Results Measured Distance Matrix in milliseconds
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Results Vector/Edge distances for Landmarks in two dimensions
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Results Vector/Edge distances for Landmarks in six dimensions
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Results Vector/Edge distances for Hosts in two dimensions
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Results Vector/Edge Distances for Hosts in six dimensions
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Effective in higher dimensions
Conclusions Effective in higher dimensions Specifically six dimensions Host predictions become inconsistent Number of Landmarks? Worth investigating for future work Algorithm needs to be decentralized
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