TY - GEN
T1 - Optimization of multicast light-trees in real-time avionics WDM network
AU - Xiong, Ying
AU - He, Feng
AU - Xiong, Huagang
PY - 2012
Y1 - 2012
N2 - Demands for avionics Wavelength Division Multiplexing (WDM) network have been increasing dramatically in multicasting applications such as the in-flight multimedia in recent years. The topic of multicasting routing problem has been investigated with enthusiasm, because a proper design of routing can not only make full use of the resource, but also improve the performance of networks. However, different from other WDM networks like the backbone WDM network or the WDM LAN, the requirements of reliability and predictability of avionics WDM network are far stricter. In this article, we study light-trees optimization that aim to minimize the cost of the network after giving the general problem definition. In order to expand our work, we first propose the integer linear programming (ILP) algorithms for a simple situation without traffic grooming. Then we consider a more practical situation on the basis of this algorithm. By analyzing three schemes for supporting multicast connections, we select Stop-and-Go (S/G) Light-tree because it can save resource and meanwhile decrease the delay of messages. We also propose an integer linear programming algorithm for this scenario. This algorithm focuses on: 1) the delay constraint, which means sessions need to arrive at destination in limited time; 2) the load constraint to meet the requirement of reliability; 3) sparse splitting constraint, i.e., some switches are incapable of splitting light because of economical reason. The simulation results of WDM network show the algorithm can minimize the cost while ensure the timing requirement.
AB - Demands for avionics Wavelength Division Multiplexing (WDM) network have been increasing dramatically in multicasting applications such as the in-flight multimedia in recent years. The topic of multicasting routing problem has been investigated with enthusiasm, because a proper design of routing can not only make full use of the resource, but also improve the performance of networks. However, different from other WDM networks like the backbone WDM network or the WDM LAN, the requirements of reliability and predictability of avionics WDM network are far stricter. In this article, we study light-trees optimization that aim to minimize the cost of the network after giving the general problem definition. In order to expand our work, we first propose the integer linear programming (ILP) algorithms for a simple situation without traffic grooming. Then we consider a more practical situation on the basis of this algorithm. By analyzing three schemes for supporting multicast connections, we select Stop-and-Go (S/G) Light-tree because it can save resource and meanwhile decrease the delay of messages. We also propose an integer linear programming algorithm for this scenario. This algorithm focuses on: 1) the delay constraint, which means sessions need to arrive at destination in limited time; 2) the load constraint to meet the requirement of reliability; 3) sparse splitting constraint, i.e., some switches are incapable of splitting light because of economical reason. The simulation results of WDM network show the algorithm can minimize the cost while ensure the timing requirement.
UR - https://www.scopus.com/pages/publications/84872466269
U2 - 10.1109/DASC.2012.6382429
DO - 10.1109/DASC.2012.6382429
M3 - 会议稿件
AN - SCOPUS:84872466269
SN - 9781467316996
T3 - AIAA/IEEE Digital Avionics Systems Conference - Proceedings
SP - 7E61-7E69
BT - 31st Digital Avionics Systems Conference
T2 - 31st Digital Avionics Systems Conference: Projecting 100 Years of Aerospace History into the Future of Avionics, DASC 2012
Y2 - 14 October 2012 through 18 October 2012
ER -