Title :
Predictable Mobile Routing for Spacecraft Networks
Author :
Fischer, D. ; Basin, David ; Eckstein, K. ; Engel, Thomas
Author_Institution :
Eur. Space Agency - ESOC, Darmstadt, Germany
Abstract :
In predictable mobile networks, network nodes move in a predictable way and therefore have dynamically changing but predictable connectivity. We have developed a model that formalizes predictable dynamic topologies as sequences of static snapshots. We use this model to design and evaluate a predictable mobile-routing protocol based on link-state routing, whose performance is superior to its static and ad hoc counterparts. Our routing protocol accounts for occurrences of additional, unpredictable changes, as well as their interaction with predictable changes. We evaluate our protocol using simulations based on randomly generated topologies and spacecraft-network scenarios. In both cases, we show that our protocol outperforms traditional routing protocols and is well suited for routing in next-generation space networks.
Keywords :
next generation networks; routing protocols; satellite communication; telecommunication network topology; link state routing; network nodes; next generation space networks; predictable connectivity; predictable dynamic topologies; predictable mobile routing protocol; spacecraft networks; Mobile communication; Mobile computing; Network topology; Routing; Silicon; Space vehicles; Topology; Routing; predictable mobility; space link; spacecraft networks;
Journal_Title :
Mobile Computing, IEEE Transactions on
DOI :
10.1109/TMC.2012.93