TY - JOUR
T1 - Dynamic routing algorithm for increasing robustness in satellite networks
AU - Li, Dong Ni
AU - Zhang, Da Kun
PY - 2008/9
Y1 - 2008/9
N2 - In low earth orbit (LEO) and medium earth orbit (MEO) satellite networks, the network topology changes rapidly because of the high relative speed movement of satellites. When some inter-satellite links (ISLs) fail, they can not be repaired in a short time. In order to increase the robustness for LEO/MEO satellite networks, an effective dynamic routing algorithm is proposed. All the routes to a certain node are found by constructing a destination oriented acyclic directed graph (DOADG) with the node as the destination. In this algorithm, multiple routes are provided, loop-free is guaranteed, and as long as the DOADG maintains, it is not necessary to reroute even if some ISLs fail. Simulation results show that comparing to the conventional routing algorithms, it is more efficient and reliable, costs less transmission overhead and converges faster.
AB - In low earth orbit (LEO) and medium earth orbit (MEO) satellite networks, the network topology changes rapidly because of the high relative speed movement of satellites. When some inter-satellite links (ISLs) fail, they can not be repaired in a short time. In order to increase the robustness for LEO/MEO satellite networks, an effective dynamic routing algorithm is proposed. All the routes to a certain node are found by constructing a destination oriented acyclic directed graph (DOADG) with the node as the destination. In this algorithm, multiple routes are provided, loop-free is guaranteed, and as long as the DOADG maintains, it is not necessary to reroute even if some ISLs fail. Simulation results show that comparing to the conventional routing algorithms, it is more efficient and reliable, costs less transmission overhead and converges faster.
KW - Acyclic directed graph
KW - Inter-satellite link
KW - Routing
KW - Satellite networks
UR - http://www.scopus.com/inward/record.url?scp=54049140449&partnerID=8YFLogxK
M3 - Article
AN - SCOPUS:54049140449
SN - 1004-0579
VL - 17
SP - 305
EP - 310
JO - Journal of Beijing Institute of Technology (English Edition)
JF - Journal of Beijing Institute of Technology (English Edition)
IS - 3
ER -